[00:20.380 --> 00:20.900] Hello. [00:32.400 --> 00:33.840] It's good to be back. [00:34.160 --> 00:35.660] I was here two years ago. [00:35.940 --> 00:38.440] We got a lot of positive feedback on that. [00:40.180 --> 00:45.400] Two years ago I was here to talk about lockpicking and the way that we experience it. [00:46.040 --> 00:49.380] We are practicing lockpicking as a sport, as a hobby. [00:49.800 --> 00:51.440] And it's really big in Germany. [00:51.940 --> 00:55.180] We're hoping to get a kick in the Netherlands and other parts. [00:55.180 --> 00:59.580] And so far I have not known of an American lockpicking. [01:02.500 --> 01:04.440] Introduce Mike Grazer. [01:04.740 --> 01:07.840] He made the electronic control panel. [01:08.000 --> 01:08.680] Access control. [01:10.140 --> 01:14.260] And now we take a step back from the electronic world to the analog world. [01:14.520 --> 01:22.380] And picking and manipulating normal locks without any chips or any of those type of things. [01:24.060 --> 01:25.800] Mike brought a lot of tools. [01:26.100 --> 01:31.140] I understand that he brought a cutaway multi-lock, high security lock. [01:31.660 --> 01:33.040] There's only two in the world though. [01:33.200 --> 01:34.360] Maybe you can tell something about it. [01:34.640 --> 01:36.740] It's big, it's expensive and it's rare. [01:37.220 --> 01:38.480] It's a big multi-lock lock. [01:38.620 --> 01:40.380] Multi-lock made two of them for demonstration. [01:41.320 --> 01:43.140] One multi-lock has and one is here today. [01:43.960 --> 01:44.880] It's a really big key. [01:45.100 --> 01:46.220] It's a fully functional lock. [01:46.420 --> 01:47.180] I don't know if you can see from there. [01:47.300 --> 01:48.180] We'll put another thing after. [01:48.660 --> 01:49.820] But these things do fully move. [01:49.980 --> 01:50.820] It's a real multi-lock key. [01:50.920 --> 01:51.280] It's derivative. [01:53.480 --> 01:55.640] And it makes a nice noise when you put the key in. [02:00.180 --> 02:01.570] Yeah, I've never actually counted. [02:01.760 --> 02:02.140] I think it's five. [02:04.480 --> 02:08.960] One, two, three, one, two, three, four, four, five, six. [02:10.960 --> 02:13.480] Regular multi-lock usually has six pins. [02:13.640 --> 02:16.980] Some of them have five, depending on if you go with one inch motor cylinder or an inch in eight. [02:18.660 --> 02:22.160] Okay, anyway, let's go back into the details later. [02:24.060 --> 02:26.220] So, we're here to talk about lock picking. [02:26.740 --> 02:31.880] The first five minutes of this introduction are always boring for people who know anything about it already. [02:31.880 --> 02:39.740] But there is just some basic things we need to explain for people to understand how lock picking works and what makes it work. [02:42.060 --> 02:48.820] When I asked it last time for people to raise their hand when they already knew something about picking, almost 80% lift their hands. [02:49.000 --> 02:50.060] But I want to check it anyway. [02:50.220 --> 02:51.900] Who knows anything about lock picking? [02:53.060 --> 02:54.200] Yeah, that's amazing. [02:54.440 --> 02:54.780] That's nice. [02:56.600 --> 03:03.000] But still, for you, okay, taken up to five minutes, I'll try to explain for the other people a little bit on how it works. [03:04.600 --> 03:06.600] I hope I can get this to work. [03:06.880 --> 03:08.920] This is a cutaway padlock. [03:09.460 --> 03:12.040] I'll try to focus on padlocks a little bit today. [03:12.560 --> 03:15.920] I think it's fun, especially for picking locks. [03:16.140 --> 03:17.780] It's a nice thing to hold in your hand. [03:17.780 --> 03:23.720] And any other locks, yeah, they just don't have the good feel. [03:23.960 --> 03:25.940] And when the lock opens, it gives a nice click. [03:26.420 --> 03:29.640] So, for a hobby, it's real nice to pick padlocks. [03:30.720 --> 03:34.300] Also, I want to say a little disclaimer about picking locks. [03:38.620 --> 03:39.520] Stealing bad. [03:40.100 --> 03:41.180] Stealing bad, okay. [03:41.840 --> 03:46.020] Anyway, all the things I will explain today are sort of common knowledge. [03:46.200 --> 03:49.340] You have to look for them, but you can always find it. [03:50.060 --> 03:53.680] But, yeah, you could use it in a wrong way. [03:54.420 --> 04:12.380] However, if you want to use wrong techniques to open locks, then picking really is not your thing, because to actually become mastering the art lock picking will take you many years to practice it right before you get to a level that you could actually use it. [04:13.020 --> 04:16.940] People that are into bad things, they know with a screwdriver, they can have the same effect. [04:17.080 --> 04:18.620] They just pop open doors. [04:19.480 --> 04:26.270] If you want to do bad stuff, brute force is your friend, because it's much easier to break a lock than to pick a lock. [04:27.530 --> 04:32.640] A lot of the techniques that I will talk about are also described in a very good book. [04:35.480 --> 04:37.700] We call it The Lockpick Bible. [04:38.120 --> 04:41.030] And it's written by a guy, Mark Tobias. [04:41.320 --> 04:49.910] And this really is a book that talks about from the oldest locks from Egypt to the newest high security locks. [04:50.760 --> 04:53.900] If you're into lock picking, get this Bible. [04:54.110 --> 04:56.060] You can get it on security.org. [04:56.230 --> 04:57.350] You can order it there. [04:57.850 --> 05:00.880] And it's really the best book so far. [05:00.880 --> 05:04.650] I have found only little locks that are not in this book. [05:05.440 --> 05:08.520] And most of the time it will even tell you the weak spots of the lock. [05:09.760 --> 05:10.320] And... [05:10.320 --> 05:11.030] What type? [05:11.700 --> 05:13.900] It's called Locks, Safes and Security. [05:14.170 --> 05:15.140] The second edition. [05:15.730 --> 05:18.960] He also has a number of CDs that come with the book. [05:19.790 --> 05:20.960] There's three categories. [05:21.260 --> 05:25.530] The normal people, the locksmiths, and the intelligence community. [05:26.770 --> 05:29.000] For the normal people, I think it's two CDs. [05:29.380 --> 05:30.820] For the locksmiths, it's four CDs. [05:31.060 --> 05:33.780] And for the intelligence community, there's ten CDs. [05:34.350 --> 05:36.500] So, not all the techniques are in the book. [05:37.020 --> 05:41.170] And if this book says, this lock cannot be picked, take it with a grain of salt. [05:41.170 --> 05:47.960] Because there is higher interest in, you know, if the lock is in the door of the Iraqi embassy. [05:48.290 --> 05:50.400] They're not going to tell you it can be picked. [05:50.720 --> 05:51.160] But... [06:01.910 --> 06:02.350] OK. [06:03.150 --> 06:03.590] OK. [06:03.690 --> 06:05.710] Let's talk about the basics of picking locks. [06:07.430 --> 06:11.930] Normally, a lock has a row of pins. [06:12.990 --> 06:16.710] The lock construction is... [06:17.670 --> 06:18.210] Yeah. [06:19.490 --> 06:20.030] Complex. [06:20.930 --> 06:22.570] There's a core in the lock here. [06:23.010 --> 06:23.190] You see? [06:25.010 --> 06:26.530] Then there is... [06:26.530 --> 06:27.450] What do you call it, Mike? [06:27.730 --> 06:28.490] The base. [06:28.750 --> 06:29.870] And what do you call it? [06:31.270 --> 06:32.590] What piece do you mean? [06:33.070 --> 06:33.450] OK. [06:33.730 --> 06:35.050] There's a rotating part. [06:35.270 --> 06:35.770] The plug. [06:35.930 --> 06:36.750] The plug, OK. [06:36.990 --> 06:38.150] And the rest is the core. [06:38.610 --> 06:40.730] The rest would be the cylinder or the body. [06:41.210 --> 06:41.410] OK. [06:41.410 --> 06:42.070] Do you want to use this one? [06:43.230 --> 06:45.550] Maybe you better explain how the lock works, because... [06:45.550 --> 06:46.210] OK. [06:46.330 --> 06:47.550] Let me throw them both on there, then. [06:48.330 --> 06:48.710] OK. [06:57.040 --> 06:58.260] There's two colorway cylinders. [06:59.080 --> 07:02.300] The easiest way to do a show is I'm just going to pull out the key and watch what happens. [07:02.540 --> 07:05.780] You have the springs, then top pins, then bottom pins. [07:06.160 --> 07:09.040] The place between the top pin and bottom pin is called the shear line. [07:09.620 --> 07:12.380] And now, everything I say right now, I'm keeping very basic. [07:12.660 --> 07:16.360] So anyone who knows about master keying and all kinds of ball bearing systems, ignore it now. [07:16.840 --> 07:18.100] So, right up, it's just very basic. [07:19.000 --> 07:20.940] When you pull out the key, I don't know if you can see this. [07:21.240 --> 07:22.600] Someone yell at me if you can't see it well. [07:24.200 --> 07:26.780] When you pull out the key, the different pins move up and down until... [07:28.140 --> 07:33.220] Now, if you look very closely, the shear lines are not matched up with the plug and the cylinder shear line. [07:33.220 --> 07:35.560] So the pins are in different places than the plug. [07:36.560 --> 07:41.300] Unless they line up and you have a straight line, you're not going to lock unless you have a big screwdriver. [07:42.460 --> 07:45.360] So what you want to do is you want to get them to line up. [07:45.480 --> 07:49.600] You can either use a key, a pick, a pick gun, or a couple other ways. [07:49.980 --> 07:52.440] And that's basic lock terminology. [07:52.500 --> 07:54.980] Plug, cylinder or body. [07:55.460 --> 07:57.600] On the back, you have a camera tailpiece. [07:58.020 --> 07:58.880] You have any other type of lock. [07:59.060 --> 07:59.900] A couple of set screws. [08:00.620 --> 08:01.320] Some pins. [08:01.720 --> 08:02.200] Some springs. [08:03.180 --> 08:04.820] While we're at it, let's show this real quick. [08:05.040 --> 08:07.420] So, a pin kit for when you set up locks with a locksmith. [08:07.520 --> 08:08.060] You've used this. [08:08.580 --> 08:09.400] Just throw it on there. [08:20.530 --> 08:21.410] Keep going. [08:23.690 --> 08:24.130] Okay. [08:25.230 --> 08:26.810] That's about as far out as I can go. [08:27.610 --> 08:29.750] That's many, many, many different sized pins. [08:30.430 --> 08:31.910] And this kit happens to go from... [08:31.910 --> 08:33.810] For top pins, those are flat on both sides. [08:33.930 --> 08:36.330] The bottom pins have a point, so the key flows better. [08:36.750 --> 08:37.190] Theoretically. [08:38.810 --> 08:42.610] The bottom pins go from one ten thousandths of an inch. [08:42.970 --> 08:44.190] All the way up to... [08:47.070 --> 08:47.860] Where over there? [08:49.240 --> 08:49.910] It's like 185. [08:51.280 --> 08:52.570] Ten thousandths of an inch. [08:52.880 --> 08:53.880] The bottom pins are going from... [08:59.670 --> 09:00.830] Real little to real big. [09:12.070 --> 09:15.410] The Bible usually I refer to on most locks like... [09:15.410 --> 09:16.210] Where do I have it? [09:16.750 --> 09:18.270] In this type of lock... [09:18.270 --> 09:19.070] Can we... [09:19.070 --> 09:19.890] Can we see that? [09:20.090 --> 09:23.150] In this piece, where the springs are in... [09:23.150 --> 09:24.290] A lot of people call that the Bible. [09:24.510 --> 09:26.370] Only reason I'm not is just to keep the name simple. [09:26.510 --> 09:28.450] I only think there's some books you read to see that. [09:28.490 --> 09:29.050] True, true, true. [09:29.170 --> 09:30.450] Some books do call it the Bible as a cylinder. [09:30.670 --> 09:30.870] Thank you. [09:32.230 --> 09:32.550] Okay. [09:32.930 --> 09:33.070] Okay. [09:33.230 --> 09:33.990] That's enough for picking this. [09:34.450 --> 09:35.090] That's a lock. [09:36.090 --> 09:36.370] Basic. [09:36.830 --> 09:37.550] Don't drop this. [09:48.830 --> 09:50.150] Okay, for picking... [09:50.150 --> 09:53.450] Sometimes you see a movie, James Bond is walking to a door. [09:53.450 --> 09:54.710] He sticks in something. [09:54.970 --> 09:55.850] Up, he's in. [09:56.150 --> 09:56.990] That's called the key. [10:06.810 --> 10:06.870] That's called the key. [10:06.870 --> 10:08.690] We lock pickers use always two... [10:10.660 --> 10:12.330] They're called the tension wrench. [10:12.920 --> 10:15.280] I'm putting a few up here. [10:16.240 --> 10:20.120] And actually, what you are doing with the tension wrench... [10:28.120 --> 10:30.680] Is you insert it into the lock. [10:39.960 --> 10:40.820] Like this. [10:41.620 --> 10:45.920] And thereby forcing the lock to bind on one or two pins. [10:46.300 --> 10:50.280] As you can see, there's five rows of double pins. [10:50.580 --> 10:51.520] Low and high pins. [10:52.640 --> 10:57.500] What you do with the tensioner is you put it in and you turn it as if it was a key. [10:57.500 --> 11:04.820] But since the pins are not aligned in the correct height, the pins will jam the lock from turning. [11:05.300 --> 11:06.180] That's the whole idea. [11:06.700 --> 11:09.780] You're pushing tension on the lock, it will bind. [11:10.480 --> 11:19.180] Because of mechanical imperfect stuff, the lock will not bind on all five pins at the same time. [11:19.320 --> 11:25.340] There's always one or two pins that are a little bit thicker or that the lock has not drilled perfectly well. [11:25.340 --> 11:29.500] And when you put tension on the lock, it will normally bind on one or two pins. [11:30.600 --> 11:34.820] Then what you do is you go in with what is called a feeler pick. [11:35.400 --> 11:39.280] And it's just a simple... it's like a finger. [11:39.640 --> 11:41.760] They call it the finger pick, the feeler pick. [11:42.140 --> 11:46.660] And what you do is once you have tension on the lock, you go into the lock. [12:04.780 --> 12:09.980] And with the feeler pick, you go one by one of the pins, you try to push them up. [12:10.320 --> 12:13.780] And if you feel resistance, then that is a pin that is binding. [12:14.240 --> 12:17.460] And that pin, when you put tension on the lock, you find a binding pin. [12:17.720 --> 12:24.120] You lift it up and if you reach the right height where the lock will actually turn, the lock will make a little click. [12:25.160 --> 12:28.300] The inner core will rotate just a little bit. [12:28.900 --> 12:32.820] And the tension will go off the pin because you will feel it fall back. [12:33.180 --> 12:34.700] There's no strength on it anymore. [12:34.940 --> 12:36.540] And you just set one pin. [12:37.380 --> 12:38.860] Now, there's five pins in there. [12:39.240 --> 12:42.400] Say that, for instance, the first pin was the number two that was binding. [12:43.540 --> 12:45.080] Then you set the number two. [12:45.280 --> 12:49.420] Then you go feel for the rest and you feel, for instance, that the number four is binding. [12:49.420 --> 12:53.620] You try to set it and that's actually how it goes. [12:53.820 --> 12:57.780] You just set all the pins in the right position. [12:59.460 --> 13:00.840] So far, any questions? [13:02.120 --> 13:03.480] One quick thing, actually. [13:05.640 --> 13:15.200] What you're saying, basically, is, from my understanding, because of mechanical imperfection in the manufacturing process, since you can't make it perfect, is why lock picking is possible. [13:15.320 --> 13:21.780] Since pins aren't exactly perfectly inside the channels, they have a little bit of play. [13:22.240 --> 13:24.140] The more play, the easier to pick, as a general rule. [13:24.600 --> 13:27.480] If it's very, very tightly manufactured, it's going to be very hard to pick. [13:27.820 --> 13:33.320] Because they can slightly cock and slightly move, you can catch it right at that shear line, potentially, and catch that shear line. [13:33.680 --> 13:34.620] That's what picks is all about. [13:34.740 --> 13:38.140] When you have to do one pin, another pin, et cetera, et cetera, so you run out of pins and lock hookings. [13:38.140 --> 13:38.500] Yes? [13:39.100 --> 13:44.340] Well, like, Cobra 3 systems, things like that, are they successful in the majority? [13:44.540 --> 13:45.100] Can they battle? [13:45.500 --> 13:51.620] Okay, I've just been notified that for questions, we need a microphone, so they can also take the question. [13:51.900 --> 13:56.620] So let's first do the 20-minute intro, and then we go to the questions. [13:56.940 --> 13:58.040] I've been asked to do this, so. [13:58.560 --> 14:01.640] Okay, I here have a very cheap padlock. [14:01.840 --> 14:03.940] I mean, it's like two or three dollars. [14:04.320 --> 14:11.500] But for demonstrating, it's very good, because there's a lot of people, a lot of tension, and if I don't pick the lock, we land. [14:11.940 --> 14:12.660] We land. [14:13.080 --> 14:15.440] Okay, so here's this cheap lock. [14:15.780 --> 14:16.800] Here's the tensioner. [14:16.960 --> 14:18.460] I insert it high into the lock. [14:18.560 --> 14:19.320] I hope you can see it. [14:19.380 --> 14:20.180] I hope it's in focus. [14:20.940 --> 14:21.380] Okay. [14:22.300 --> 14:24.280] Let's see if I can focus a little bit better. [14:36.990 --> 14:37.430] Okay. [14:37.430 --> 14:37.490] Okay. [14:37.850 --> 14:46.890] Now, I take the filler pick, go in, and try to push the pins, and I find that the number one pin is binding. [14:47.450 --> 14:47.610] Thick. [14:47.910 --> 14:48.670] I just said it. [14:49.110 --> 14:50.270] This is a very cheap lock. [14:50.450 --> 14:51.070] It doesn't have... [14:51.070 --> 14:53.290] I don't even think it has five rows of pins. [14:53.930 --> 14:54.930] I go in more. [15:03.860 --> 15:05.720] Remember when people watch, they would never work. [15:05.720 --> 15:06.440] It's true. [15:06.580 --> 15:06.780] Okay. [15:07.040 --> 15:07.620] I picked it. [15:07.900 --> 15:08.560] It's open. [15:18.620 --> 15:21.940] Okay, as I told you, this is a very cheap lock. [15:22.480 --> 15:27.380] And today we'll talk about picking, but I'll also talk about bypassing. [15:27.700 --> 15:34.360] Because picking is nice, but sometimes there are even faster ways and quicker ways to pick a lock. [15:35.720 --> 15:50.200] For instance, when I look at the mechanical inside of this lock, and we opened one up in the Netherlands, I found that the mechanism that's holding the shackle can actually be pushed straight away. [15:50.340 --> 15:54.340] If I just push in anything, it opens. [16:00.710 --> 16:04.370] So for this you don't need to be a good lock picker. [16:04.910 --> 16:05.470] It [16:08.660 --> 16:09.840] will just open. [16:11.220 --> 16:12.480] But there's more. [16:14.060 --> 16:23.040] When you look at the padlock, you see here the two cuts that hold the shackle in the body, as I call it. [16:24.860 --> 16:26.740] There's two types of mechanisms. [16:27.240 --> 16:28.340] There's the right and the wrong. [16:30.360 --> 16:40.940] The right one are mechanical perfect systems that if you turn the key, actually a piece of metal is being rotated and taken out. [16:41.940 --> 16:44.900] And you can only close these locks when the key is inside. [16:46.140 --> 16:52.320] So you really need to turn the lock in order to remove the part that's holding the shackle in place. [16:53.060 --> 16:54.380] Well, this is a cheap lock. [16:54.640 --> 16:58.700] It's just a spring-loaded ball holding the shackle in place. [16:59.140 --> 17:01.420] And there's a tool for that. [17:01.660 --> 17:02.360] It's this. [17:03.200 --> 17:08.240] It's called the padlock shim. [17:08.240 --> 17:13.700] And what it does is it goes in between the shackle. [17:15.480 --> 17:16.000] Rotated. [17:17.020 --> 17:18.180] Where is the other one? [17:28.220 --> 17:29.040] That's a secret. [17:29.220 --> 17:29.680] Don't tell anyone. [17:39.130 --> 17:48.490] I'm actually pushing in this thing that's holding the shackle in place. [17:49.610 --> 17:51.190] I'll demo it once and then. [17:57.090 --> 18:05.030] So when you pick locks, you don't normally necessarily always go with the pick tools first. [18:05.350 --> 18:07.690] You first look, how is the lock constructed? [18:07.910 --> 18:08.670] What's the thing? [18:09.270 --> 18:16.790] For instance, the organization of H2K2, which I would like to thank for this great event anyway. [18:16.790 --> 18:18.210] It's really nice so far. [18:19.450 --> 18:21.010] They came with this lock. [18:21.450 --> 18:23.310] It's a master padlock. [18:24.950 --> 18:27.350] Every gym lock in the world has one of these. [18:27.970 --> 18:31.110] At-School Locker and everything else, basically. [18:31.770 --> 18:33.890] Okay, they said we want to secure some areas. [18:33.930 --> 18:34.910] Is this a good lock? [18:35.350 --> 18:37.890] Well, I didn't know it. [18:38.010 --> 18:41.490] And that's why I also requested people on the website to bring some U.S. [18:41.490 --> 18:45.330] locks so we can get some experience with these locks. [18:45.870 --> 18:49.430] And I looked at the lock and I said, well, I can give it a try. [18:49.610 --> 18:52.190] And I put in the padlock shim. [19:04.090 --> 19:09.870] Now, I must say that when I demonstrated this to some people, their mouth really fell open. [19:11.330 --> 19:15.630] And they said, did you know that every high school in America is using this lock? [19:16.490 --> 19:18.930] And I said, I don't want to know this, but... [19:22.070 --> 19:28.190] So, I didn't even try if I could manipulate the lock. [19:28.370 --> 19:30.750] Because it probably might be possible as well. [19:30.910 --> 19:31.030] It is. [19:33.210 --> 19:36.930] Okay, but I didn't even bother to go deeper into the knowledge. [19:36.930 --> 19:41.270] But this is a really bad example because... [19:41.270 --> 19:43.610] Or it is actually a good example of bad design. [19:44.010 --> 19:50.270] If so many of these locks are sold, it's probably only like one cent more expensive to make it mechanically. [19:50.490 --> 19:58.270] So that you cannot push this part inside with spring-loaded stuff. [19:58.270 --> 20:00.830] It's very easy to make it mechanically perfect. [20:01.730 --> 20:06.410] But, yeah, the fact that they don't do it is just because to save one cent, they make a million locks. [20:06.990 --> 20:09.070] They think, well, go for it. [20:09.590 --> 20:10.150] So, anyway. [20:11.490 --> 20:14.470] Yeah, that's the part on bypassing locks. [20:16.670 --> 20:20.390] I also brought some other tools. [20:21.510 --> 20:22.550] Like this. [20:26.390 --> 20:30.390] This is actually what a lot of locksmiths use to open locks. [20:30.850 --> 20:33.150] They don't bother to learn how to pick locks. [20:33.490 --> 20:38.130] Because there is much easier ways to open locks than by picking. [20:38.450 --> 20:43.530] As I told in the intro, picking is a very time-extensive thing. [20:43.850 --> 20:45.050] You have to practice a lot. [20:45.350 --> 20:46.350] You've got to have some feeling. [20:47.230 --> 20:48.990] It really takes a lot of time. [20:49.170 --> 20:49.750] It's great. [20:49.950 --> 20:50.630] It's a nice hobby. [20:50.630 --> 20:52.610] I even pick it when I'm watching a movie. [20:55.490 --> 20:59.790] I also did pick locks when I was traveling on airplanes. [21:00.110 --> 21:04.110] But since September 11, I decided to leave my picks alone. [21:04.390 --> 21:06.650] Because some of them are sharp. [21:06.870 --> 21:09.310] And you never know what people might think. [21:09.830 --> 21:11.290] But that really is a shame. [21:13.130 --> 21:14.090] The pick gun. [21:14.670 --> 21:16.770] Now, how does a pick gun work? [21:17.110 --> 21:19.490] I talked about that two years ago a little bit. [21:19.490 --> 21:22.410] I didn't have any pick guns with me by that time. [21:22.810 --> 21:24.050] So I thought, well, I'll break some now. [21:24.730 --> 21:26.890] What the pick gun does is... [21:26.890 --> 21:28.490] It works with the... [21:29.870 --> 21:30.910] What do you call it? [21:31.290 --> 21:31.690] Vibration. [21:32.090 --> 21:32.490] Pins. [21:32.670 --> 21:33.530] No, no, no. [21:34.030 --> 21:34.430] Vibration. [21:35.050 --> 21:36.070] Vibration, spring tension. [21:36.590 --> 21:38.170] What it does is actually pop the pins. [21:38.350 --> 21:39.730] So that the top and bottom separate. [21:40.270 --> 21:42.310] Once the top and bottom separate, you turn real quick. [21:42.310 --> 21:43.710] And cast your one. [21:44.030 --> 21:44.510] Vibration. [21:50.630 --> 21:51.110] Vibration. [21:51.430 --> 21:54.610] Normally, a lock has two pins. [21:54.830 --> 21:58.210] And we'll think of these two locks as pins. [21:58.810 --> 22:01.510] And when they're at the right height, the lock will turn. [22:02.050 --> 22:04.390] Now think of this as two pool balls. [22:06.170 --> 22:07.210] Here's the third one. [22:07.210 --> 22:14.130] When I hit with this one straight onto the middle ball now, what will happen? [22:15.690 --> 22:17.090] Only the top one will go. [22:17.610 --> 22:19.630] And this one will stay in place. [22:20.650 --> 22:24.390] Almost no matter how hard you can hit it, only the top one will move. [22:24.390 --> 22:27.130] And that's exactly what this pick gun will do. [22:28.450 --> 22:31.850] The needle of the pick gun will stick into the lock. [22:32.110 --> 22:33.850] It will reach all the lower pins. [22:34.210 --> 22:39.990] And it will hit the top pins all in a row up. [22:40.450 --> 22:44.990] So at one moment, there's just this split second of gap. [22:45.410 --> 22:48.750] And in this split second of gap, you have to turn it. [22:49.650 --> 22:54.550] That's the moment that you have to apply attention to the lock to turn it. [22:55.970 --> 22:57.150] Mike here brought me a lock. [22:57.330 --> 23:00.250] I have not tried to open it with this pick gun yet. [23:00.890 --> 23:01.750] So, let's... [23:04.130 --> 23:04.490] Stress. [23:05.790 --> 23:06.930] Sometimes when you try... [23:06.930 --> 23:07.690] Oh, let's see how this gets. [23:12.380 --> 23:12.740] Sometimes... [23:13.340 --> 23:15.600] Most drops I went on, I tried picking for five minutes. [23:15.940 --> 23:21.700] If I couldn't get in five minutes, I'd either drill the lock, pop the door, or use another method, depending on what kind of lock it was. [23:23.500 --> 23:27.380] Considering the fact of cars, I almost never would pick a car lock. [23:29.400 --> 23:29.800] Um... [23:29.800 --> 23:31.140] Some locks you pick, some you can't. [23:31.320 --> 23:32.300] Well, none you can't. [23:32.400 --> 23:33.160] Some are really hard. [23:34.180 --> 23:35.600] As most people here would say. [23:36.980 --> 23:37.740] Do you get it? [24:07.400 --> 24:15.340] Okay, now you mentioned that there is locksmiths that do this all day, and they normally only take one or two shots, and they just pop open the lock. [24:15.560 --> 24:18.620] It's real easy, it's real addictive when you are... [24:19.160 --> 24:29.900] No, but when you are into picking locks, I can sometimes spend like 15 minutes in opening a lock, and I know that if I have the gun, two or three pops, and it can be opened. [24:31.080 --> 24:38.000] So this technique works with trying to hit a shear line, and then quickly turning it. [24:38.220 --> 24:39.400] There's also another tool. [24:43.040 --> 24:44.060] It's this one. [24:44.560 --> 24:45.860] It's not a vibrant one. [24:47.180 --> 24:48.280] Well, it is, in fact. [24:54.200 --> 24:57.120] Now, this pick has been modified by the owner. [24:58.040 --> 24:59.500] I'm not the owner of the tool. [25:00.220 --> 25:02.700] There's this guy in the Netherlands called Paul Krauel. [25:02.960 --> 25:05.260] He runs a company in Lock Tools. [25:05.580 --> 25:06.940] It's also called Lock Tools. [25:07.600 --> 25:08.760] And he was... [25:08.760 --> 25:10.100] Yeah, he borrowed me the tool. [25:10.300 --> 25:15.580] And he modified it a little bit so it became even a better tool, but it became a little bit more noisy. [25:15.580 --> 25:20.220] Which, for him, doesn't matter because he's an official door opener. [25:20.380 --> 25:23.140] When people lose their keys, he'll open it for them. [25:23.320 --> 25:25.140] And this is one of his favorite tools. [25:26.280 --> 25:36.040] What it does is it just hits the hammer, or it hits the spike, many times, thereby creating a lot of shear lines. [25:36.580 --> 25:39.920] And what you do with this is you just stick it in the lock. [25:40.100 --> 25:41.960] You hit it a few times. [25:42.180 --> 25:44.980] You put tension on random intervals. [25:44.980 --> 25:47.940] And most of the time, the lock will open real quick. [25:48.820 --> 25:49.940] We're going to try it. [25:50.460 --> 25:51.900] That's hard doing handheld, by the way. [25:52.100 --> 25:54.000] You usually have a lock mounted on something. [25:54.640 --> 25:55.140] This is too big. [26:17.060 --> 26:20.020] A lot of the real pros also use this tool. [26:20.220 --> 26:23.900] I've seen SWAT teams use it to open doors. [26:25.100 --> 26:27.560] This is real professional here. [26:27.880 --> 26:30.820] But it's also available on the net. [26:31.080 --> 26:33.240] I mean, people can just buy that. [26:33.240 --> 26:36.520] And I'm not sure whether or not that's a good thing. [26:36.880 --> 26:40.380] Because you really don't need a lot of experience to operate one. [26:40.940 --> 26:44.760] But, yeah, people can make better locks, more high secure locks. [26:44.940 --> 26:46.860] And I think they should do that as well. [26:47.240 --> 26:52.840] But as long as the industry makes these locks, people can easily get into them. [26:53.720 --> 26:54.980] Does it work on a padlock? [26:56.410 --> 26:57.920] It could work on a padlock. [26:58.000 --> 27:00.320] There's no reason for it not to work on any standard type cylinder. [27:00.620 --> 27:01.900] Most padlocks are standard type. [27:02.040 --> 27:02.580] You'll see the difference. [27:03.180 --> 27:04.760] But as far as most questions, it's a whole standard. [27:04.980 --> 27:05.160] I think so. [27:05.940 --> 27:06.240] Okay. [27:06.380 --> 27:08.220] I hear that there's only 20 minutes left. [27:08.320 --> 27:09.580] Yeah, let's really raise the mic. [27:10.040 --> 27:10.160] Okay. [27:11.820 --> 27:12.360] Let's get. [27:12.660 --> 27:13.340] Yeah, okay. [27:13.580 --> 27:13.900] Let's see. [27:14.980 --> 27:15.580] High security? [27:15.740 --> 27:16.780] You want to stand-ass that for a little while. [27:18.080 --> 27:19.400] Let's go into high security. [27:20.820 --> 27:24.200] Maybe you demonstrate your multi-lock lock. [27:24.300 --> 27:24.500] Okay. [27:24.800 --> 27:27.780] Do you want to show us your thing with your multi-lock cylinder like this? [27:28.740 --> 27:29.480] Yeah, I'll... [27:30.460 --> 27:33.460] This is the multi-lock pick-proof lock, which he's going to pick now. [27:36.500 --> 27:38.720] This cylinder is kind of larger than normal. [27:38.960 --> 27:39.900] There's two of these in the world. [27:40.100 --> 27:40.880] Multi-lock has one. [27:40.960 --> 27:41.520] I have the other. [27:41.780 --> 27:42.720] Hold it up, says the guy. [27:42.880 --> 27:43.600] Okay, let's hold this up. [27:43.720 --> 27:45.500] I can't speak while I hold it up, so hold me for a second. [27:46.760 --> 27:47.120] Clap. [27:48.060 --> 27:48.180] Clap. [28:25.600 --> 28:25.960] Clap. [28:28.510 --> 28:28.870] Clap. [28:29.170 --> 28:30.290] Don't have to clap at everything. [28:30.450 --> 28:30.630] Come on. [28:30.810 --> 28:31.290] Just clap. [28:32.970 --> 28:34.050] Well, this is multi-lock. [28:34.170 --> 28:41.430] Multi-lock uses a double pin or pin-in-pin system where you have an exterior pin, and if you just had exterior pins, it would be just like a normal lock. [28:41.650 --> 28:46.670] But if you took a drill, it drills straight through the inside of an exterior pin, you have an inside pin. [28:47.070 --> 28:48.590] So you have to take both of them to match. [28:49.290 --> 28:52.370] Plus, the keyway is a horizontal keyway instead of a vertical keyway. [28:52.370 --> 28:57.150] So when you take out your key, everybody gets the key stuck in the door because they're sitting there with a straight up and down, and it goes sideways. [28:57.710 --> 28:59.250] So if you ever have a problem, turn it sideways. [28:59.590 --> 29:00.270] You look like a hero. [29:00.810 --> 29:02.310] This is a fully functional lock. [29:04.110 --> 29:05.570] This is a fully functional key. [29:05.950 --> 29:07.970] It's an awfully big fully functional key there. [29:08.910 --> 29:11.130] And that's pretty much the way it works. [29:11.370 --> 29:13.010] It's a very simple concept. [29:13.270 --> 29:14.330] A very well designed concept. [29:14.450 --> 29:15.990] He's going to pick it now that it's so well designed. [29:16.550 --> 29:21.370] And, uh, I don't know if you can see in the picture how the pin moves. [29:23.250 --> 29:25.730] If you look carefully, uh, the... [29:26.210 --> 29:26.910] I can't see. [29:27.010 --> 29:28.530] I'm just going to hold this in my hand. [29:28.690 --> 29:29.110] Does this work? [29:29.590 --> 29:29.750] Yeah. [29:34.280 --> 29:35.860] I'm going to hate you for one of those mics. [29:37.860 --> 29:37.980] Okay. [29:38.320 --> 29:39.280] I cannot see the wall. [29:41.400 --> 29:44.220] Got the, uh, red pins here, which are going to be the top pins. [29:44.740 --> 29:45.300] Can you see? [29:45.420 --> 29:46.280] I can't see what I'm doing. [29:46.480 --> 29:46.880] See how it works? [29:47.240 --> 29:47.560] Yeah. [29:48.120 --> 29:51.320] We've got the red pins here, which are the top pins. [29:51.620 --> 29:51.920] Okay. [29:52.040 --> 29:52.820] That's the outer top pins. [29:52.900 --> 29:53.160] You got it? [29:53.300 --> 29:53.940] You pick one already. [29:54.420 --> 29:57.180] You've got the outer top pins, you've got the inner top pins. [29:57.620 --> 29:58.440] And I'm going to respond. [29:58.440 --> 30:01.520] Then you would have the bottom pins down here, which, since there's a key in there, aren't going to move. [30:01.740 --> 30:05.000] Now when you push it all in, everything lines up, and it turns. [30:06.200 --> 30:06.840] That's a... [30:06.840 --> 30:07.880] It's supposed to turn. [30:08.940 --> 30:09.260] Oh. [30:09.700 --> 30:11.380] And if you put the key all the way, it works better. [30:17.880 --> 30:18.200] Okay. [30:18.340 --> 30:18.960] The lock's broken. [30:22.600 --> 30:24.860] So that's basically multi-locking a quick overview. [30:25.240 --> 30:27.320] Uh, for more detail, it's publicly available, isn't it? [30:27.740 --> 30:29.120] Uh, let's go on to some other locks real quick. [30:29.280 --> 30:30.480] But he just picked that one real quick. [30:30.620 --> 30:31.220] I can do that. [30:31.220 --> 30:31.760] I wish he could. [30:33.000 --> 30:35.880] Well, picking the multi-lock is not as easy as it looks like. [30:36.160 --> 30:37.320] Uh, it takes a lot of training. [30:37.660 --> 30:42.420] And even I run into some multi-locks that are, uh, virtually impossible to pick. [30:42.560 --> 30:47.520] Sometimes it takes me more than half an hour, 45 minutes, to pick one of these locks. [30:47.840 --> 30:50.300] On the other hand, sometimes it only takes like 10 seconds. [30:50.520 --> 30:55.560] Some variety, and one time it works, one time it doesn't work. [30:56.200 --> 30:59.020] Uh, I brought this lock because I knew I could open it. [30:59.380 --> 31:00.420] Uh, yeah. [31:00.420 --> 31:03.840] Maybe if somebody has a multi-lock with him, I can try to pick it. [31:04.020 --> 31:05.980] But it probably won't go as fast as this one. [31:06.400 --> 31:11.840] Although it is very nice to demonstrate that it's, yeah, it's really a big, heavy, uh, lock. [31:11.940 --> 31:13.280] And many people are really impressed. [31:13.980 --> 31:17.280] Okay, now this is protected, so you cannot use padlock shims. [31:17.560 --> 31:19.380] So I have to re-pick it again. [31:20.900 --> 31:23.020] Well, I'm just going to show you a couple different size locks. [31:23.240 --> 31:26.640] A standard mortise cylinder, which would be a normal size cylinder, is this big. [31:26.860 --> 31:27.320] If you want to see it. [31:28.300 --> 31:31.040] Then you go up one size to a Corp Grossman jumbo cylinder. [31:31.180 --> 31:33.680] These have been used in about 20 years, but they're still floating around. [31:34.320 --> 31:34.780] Like that. [31:35.700 --> 31:36.640] Then you go up one size. [31:36.740 --> 31:38.860] This is a lock most people here will hopefully never see. [31:38.860 --> 31:41.840] If I know you see it, I'm going to really kind of laugh at you guys. [31:42.420 --> 31:44.620] Uh, this is a detention cylinder used only in prisons. [31:45.720 --> 31:51.840] I've never seen this lock, and normally you wouldn't have this, but it just so happened my company reps up, so I was going to get my hands on it too. [31:52.940 --> 31:53.640] Here's one of those. [31:54.620 --> 31:57.060] If you look inside of there, there are bowl barrels for the pin to roll. [31:57.180 --> 32:00.040] There's all kinds of amazingly good things that means I can't pick it. [32:00.220 --> 32:01.780] And I don't know if he can, but he's trying. [32:02.180 --> 32:03.600] I don't think he got it. [32:03.740 --> 32:05.260] It's a really, really hard lock to pick. [32:05.540 --> 32:07.460] It's basically just a really big cylinder though. [32:07.460 --> 32:09.060] Lots of metal hard to break. [32:09.480 --> 32:09.920] Okay. [32:11.020 --> 32:16.200] Time is running out, so I will quickly demonstrate some more lock pick to the tools. [32:18.080 --> 32:21.460] For instance, last time I was here, I got a lot of questions about... [32:21.980 --> 32:22.800] This type of lock. [32:23.540 --> 32:25.060] You call it the ace lock? [32:25.340 --> 32:25.620] Yes. [32:26.260 --> 32:26.960] Ace lock. [32:27.240 --> 32:27.320] Right. [32:28.280 --> 32:32.400] There's a tool available for a long, long, long time, and it's this tool. [32:34.340 --> 32:40.060] And it really works on the most beautiful way a tool could ever work. [32:40.240 --> 32:41.620] Because you don't have to do anything. [32:42.280 --> 32:44.900] You're just sticking the tool in the lock. [32:45.940 --> 32:47.380] You wiggle it a little bit. [32:48.940 --> 32:51.500] You wiggle it, and you wiggle it, and there it goes. [32:53.400 --> 32:54.800] Now the lock is open. [32:54.800 --> 32:58.520] Unfortunately, I don't have the shackle with it, but you probably... [33:00.540 --> 33:02.200] Normally, that would mean you pull out the shackle, man. [33:02.360 --> 33:04.660] That's a bicycle lock for those U-bolts. [33:04.760 --> 33:05.300] Everybody see it? [33:05.500 --> 33:06.120] That's what that is. [33:06.800 --> 33:07.720] Cripknight brand-nomer. [33:07.920 --> 33:08.840] Like that, yeah. [33:11.380 --> 33:13.840] That's a basic tubular ace lock in my pick. [33:13.840 --> 33:15.340] That one's on a server machine. [33:15.360 --> 33:15.540] Now... [33:15.540 --> 33:16.020] That's... [33:16.020 --> 33:18.360] That one's on a server machine, yes. [33:18.520 --> 33:19.820] Those have different pin configurations. [33:19.980 --> 33:20.900] Some are five, some are seven. [33:21.180 --> 33:21.540] There's four. [33:21.880 --> 33:22.360] A standard one. [33:22.500 --> 33:23.880] How does the technique work? [33:24.160 --> 33:26.040] Because that's, of course, the really interesting part. [33:26.180 --> 33:28.060] It's nice that you can open it with just wiggling it. [33:28.380 --> 33:29.660] But what's the technique behind it? [33:30.460 --> 33:32.780] You can see the... [33:35.680 --> 33:37.420] You can see all the pins. [33:51.520 --> 33:53.520] In a perfect world, you can see all the pins. [33:54.640 --> 33:56.920] Okay, well, just trust me when I say that... [33:57.420 --> 33:59.700] You can see all the pins in this lock. [33:59.880 --> 34:01.060] You can actually see them all. [34:01.460 --> 34:03.780] And what's happening is that... [34:03.780 --> 34:06.540] Once you stick this tool in... [34:07.540 --> 34:10.060] All the pins are being pushed back all the way at the back. [34:11.740 --> 34:13.160] This is how you reset the tool. [34:13.740 --> 34:16.580] Once you do that, once you insert the tool... [34:16.580 --> 34:17.200] You're out of frame. [34:17.700 --> 34:21.660] Okay, I now reset the tool. [34:21.660 --> 34:26.280] So all the feelers are in the deepest position. [34:26.500 --> 34:27.240] You're out of camera. [34:27.340 --> 34:27.640] Okay. [34:32.000 --> 34:33.380] There's some sort of ratchet. [34:33.660 --> 34:35.600] Okay, they're all in the highest position. [34:36.120 --> 34:38.140] Now, when I insert it into the lock... [34:38.140 --> 34:43.880] The pins are actually going to push the feelers back. [34:45.100 --> 34:46.980] And when they are at the right position... [34:47.800 --> 34:49.200] They're not binding anymore. [34:49.680 --> 34:51.860] And they're not pushing the tool back anymore. [34:52.180 --> 34:53.060] And that's how it works. [34:53.160 --> 34:53.780] Here, I got it again. [34:55.280 --> 34:57.080] And the lock just... [34:58.040 --> 34:58.520] Impressions... [34:58.520 --> 35:00.060] It gives a perfect impression... [35:00.580 --> 35:02.020] Of what the key looks like. [35:02.120 --> 35:03.640] I could even bring this to a key shop. [35:03.980 --> 35:06.920] And get a copy of this key. [35:07.480 --> 35:08.940] Which really is... [35:08.940 --> 35:11.100] It was a good design for many years. [35:11.280 --> 35:14.340] I think it was like 15 years that nobody could actually pick this lock. [35:14.600 --> 35:18.200] And then somebody found out and made this tool. [35:18.520 --> 35:24.780] But impressioning, as this is called, is really a very valuable technique in lock picking. [35:25.600 --> 35:30.740] There's also something else that I don't think has been demonstrated quite a lot. [35:31.900 --> 35:33.940] People asked me about dimple keys. [35:34.700 --> 35:35.720] That's this type. [35:45.210 --> 35:46.470] Okay, this is clear. [35:47.550 --> 35:50.690] I here have a cut-away dome lock. [35:50.790 --> 35:51.250] D-O-M. [35:51.770 --> 35:54.150] And it has five dimples. [35:54.430 --> 35:55.830] Which means just holes. [35:56.310 --> 35:58.110] And here's a little ball. [35:58.490 --> 36:00.130] And the little ball is an extra protection. [36:00.430 --> 36:02.390] When you insert the key into the lock... [36:02.390 --> 36:04.210] The little ball will be pushed up. [36:04.430 --> 36:07.870] So it reaches a higher point than the blank normally can get. [36:08.130 --> 36:10.670] And that's also a copy protection. [36:10.970 --> 36:16.110] Because in this way nobody can make a blank for this key. [36:16.550 --> 36:18.810] It's very difficult to pick this lock. [36:19.150 --> 36:20.390] It's extremely difficult. [36:20.690 --> 36:24.150] They put in all sorts of anti-pick pins. [36:24.650 --> 36:27.470] It really is a very nasty lock to pick. [36:27.810 --> 36:31.590] On the other hand, I just explained to you a little bit about freshening. [36:31.590 --> 36:35.630] And there is a very easy trick to open these locks. [36:35.970 --> 36:37.410] And I'll try to demonstrate it. [36:41.210 --> 36:43.910] Here you see the original key. [36:44.230 --> 36:48.370] It has a deep cut, not so deep cut, deeper cut, not so deep cut. [36:48.590 --> 36:51.130] And here's the blank that we prepared. [36:51.570 --> 36:54.150] The blank has the cuts all the way to the deepest. [36:54.150 --> 36:56.750] So this key will never open a lock. [36:57.070 --> 36:59.110] We even made it a little bit deeper. [37:00.210 --> 37:03.470] All the holes are just a little bit deeper than they normally would get. [37:04.050 --> 37:10.450] And what I'm going to try to do now is put some aluminum tape over this blank key. [37:10.790 --> 37:12.310] So it becomes high again. [37:12.610 --> 37:13.630] Stick it in the lock. [37:13.630 --> 37:18.790] Then the pins will push on the prepared key. [37:20.190 --> 37:21.290] They will bind. [37:21.610 --> 37:23.690] I will move it left and right. [37:23.990 --> 37:28.550] And the keys that bind will actually push deeper and deeper into the foil. [37:28.850 --> 37:33.710] And at one moment, hopefully, the lock will turn and I have an exact copy of the key. [37:33.710 --> 37:40.250] And this is a technique that is possible on almost all dimple lock keys. [37:40.590 --> 37:42.250] It's not possible on the multi-locks. [37:42.350 --> 37:43.610] Because they have pin in pin. [37:43.890 --> 37:45.930] And some have to be pushed upwards. [37:46.110 --> 37:47.550] And therefore, it doesn't work on that. [37:47.750 --> 37:51.670] But it works on an amazingly amount of locks. [37:51.970 --> 37:53.990] Let's see, I had a small sensor somewhere. [37:54.810 --> 37:55.770] A small sensor. [37:56.070 --> 37:56.150] Okay. [38:00.210 --> 38:02.790] How is that if this is in a quick areas? [38:03.830 --> 38:05.770] There's a lot of other high security locks out there. [38:06.530 --> 38:08.630] If we had a lot more time, we would be able to go over that. [38:09.030 --> 38:11.970] So I'm just going to quickly show them right after he finishes the event. [38:13.330 --> 38:14.250] If you can find the scissor. [38:15.970 --> 38:16.230] Okay. [38:16.310 --> 38:18.090] Until you find the scissor, I'll show them one at a time real quick. [38:19.330 --> 38:19.830] You got it? [38:19.990 --> 38:20.190] Okay. [38:20.970 --> 38:21.470] Real quick. [38:22.390 --> 38:23.590] Let's go with Medico first. [38:23.750 --> 38:26.430] Medico is just probably the most popular lock in New York City when you can go on high security. [38:27.250 --> 38:29.390] Medico locks, if you can see that poster, that's how they work. [38:29.570 --> 38:30.970] If you can't see the poster, you're not going to find out. [38:31.970 --> 38:33.590] The way they work is they have normal pins. [38:34.370 --> 38:35.410] Up and down cuts. [38:38.510 --> 38:42.850] But, if you look very closely at the key, you're going to see the key cuts are not straight. [38:42.990 --> 38:43.630] They're the angles. [38:50.810 --> 38:57.090] If you look at those angles, what they're doing on the inside is the pins spin up to a third, I think. [38:57.210 --> 38:57.990] Up to about a third. [38:58.390 --> 39:00.390] And in the side of the pin, there's a slot. [39:00.710 --> 39:03.570] So that once you spin it, it has to be in line with that slot. [39:04.050 --> 39:06.070] What happens on the side is there are a bunch of fingers. [39:06.070 --> 39:08.190] Those fingers have to go into the slot for it to turn. [39:08.410 --> 39:10.950] So you both have to do up and down and those angles. [39:11.570 --> 39:13.290] There's left, right, and center angles. [39:13.570 --> 39:15.730] And there's a standard of six cuts. [39:16.070 --> 39:18.410] And when you start trying to pick that, you're going to have a heck of trouble. [39:18.630 --> 39:20.210] I personally don't know anyone who can pick it. [39:20.310 --> 39:22.170] I've heard there's one guy out of the middle of nowhere that can. [39:22.710 --> 39:24.530] This side consider a pretty darn good lock. [39:25.590 --> 39:26.670] No, the cam locks are good. [39:26.990 --> 39:28.090] Oh, the cam locks are a little bit different. [39:28.270 --> 39:28.770] Very different. [39:29.470 --> 39:29.730] Yeah. [39:30.170 --> 39:32.570] Basically, that goes a very, very good hard to pick lock. [39:33.030 --> 39:34.770] Let me go with another one while he's making the key. [39:38.130 --> 39:39.610] I'll show you what I do. [39:39.790 --> 39:47.930] I put some of this aluminum foil that is being used in the car industry and the heating industry over this blank. [39:48.210 --> 39:49.730] So as you can now see, it's covered. [39:49.730 --> 39:56.170] The trick is that the way where the key will enter the lock, it has to be perfect. [39:56.870 --> 40:00.950] Because that's where it will probably jam up if this goes wrong. [40:04.290 --> 40:06.410] Okay, I'll try to insert it. [40:06.650 --> 40:08.130] We pick locks, we don't make films. [40:08.810 --> 40:09.050] Okay. [40:10.030 --> 40:13.130] Now, the prepared blank is in the lock. [40:13.470 --> 40:15.830] And now I will wiggle it. [40:17.130 --> 40:20.070] This will take a little bit longer than the Ace Lock. [40:21.070 --> 40:23.470] But hopefully, the result will be the same. [40:27.010 --> 40:28.550] But anyway, if... [40:28.550 --> 40:30.550] On average, that would open the lock. [40:31.250 --> 40:34.950] Of course, the tin foil would slowly shape into the right levels. [40:35.210 --> 40:37.630] You go in there, you wiggle, wiggle, wiggle, wiggle, pop. [40:38.170 --> 40:39.230] That's how it would average. [40:39.850 --> 40:40.810] It wouldn't take very long. [40:40.970 --> 40:41.370] Okay, there we go. [40:57.580 --> 41:00.400] Now remember, this is a $150 lock. [41:02.300 --> 41:06.580] And some people are really going to be upset because this works with a lot of these dimple locks. [41:06.800 --> 41:11.440] I hope you can see that, for instance, this deep cut, this not-so-deep cut. [41:12.540 --> 41:13.900] I hope you can see that. [41:14.960 --> 41:16.840] But they're actually quite similar. [41:17.060 --> 41:21.820] And I don't know if you can make a key from this, but who needs a key when you can choose... [41:21.820 --> 41:22.900] Okay, nice. [41:23.480 --> 41:25.260] Here's another one very much similar to. [41:25.380 --> 41:26.840] It's called Yardini, or Yardeni. [41:27.200 --> 41:28.760] Once again, just another dimple key setup. [41:29.640 --> 41:31.460] Same thing would probably work on it. [41:31.760 --> 41:32.200] I haven't tried yet. [41:32.300 --> 41:33.040] Do you want me to get home? [41:33.380 --> 41:33.760] Okay. [41:34.260 --> 41:35.740] Then there's one more thing. [41:36.640 --> 41:38.040] Then we go to the questions. [41:38.820 --> 41:40.460] There's this brand called ABUS. [41:40.860 --> 41:45.700] And they had on their website this very challenging text saying, Nobody can pick our locks. [41:45.820 --> 41:50.660] No locksmith, no test institute, no burglars are ever known to pick our locks. [41:50.660 --> 41:53.540] And this is actually the type of key. [41:54.180 --> 41:54.640] Focus. [41:55.260 --> 41:55.500] Focus. [41:55.500 --> 41:55.600] Okay. [41:56.160 --> 41:56.240] Focus. [41:58.260 --> 42:00.300] Don't you love it when someone says it's impossible? [42:00.640 --> 42:02.940] Isn't that just so great when you prove them wrong? [42:03.560 --> 42:03.580] Yeah. [42:05.720 --> 42:06.380] What a rush. [42:06.980 --> 42:07.500] Okay. [42:08.000 --> 42:08.480] In focus. [42:08.680 --> 42:09.540] Hope everybody can see. [42:10.560 --> 42:14.380] In Germany, from my German lockpick friends, I bought this tool. [42:15.080 --> 42:15.760] Which is now... [42:17.360 --> 42:18.200] Nobody leave. [42:18.500 --> 42:19.620] And it's... [42:19.620 --> 42:20.060] Yeah. [42:20.300 --> 42:20.960] It's this tool. [42:22.880 --> 42:26.940] And it's called the Fall tool because Mr. Fall made it. [42:27.240 --> 42:29.540] And it's a decoder pick. [42:29.800 --> 42:32.920] It picks the lock, but it also reads the lock. [42:33.100 --> 42:34.280] So you can make the key. [42:34.840 --> 42:41.200] Here you can see what pin you are picking. [42:41.860 --> 42:45.760] And here you can see the depth of the key. [42:46.200 --> 42:52.480] And yeah, with this tool you can open the lock that they claimed on their website could not be picked. [42:52.760 --> 42:55.580] It was a real challenge for us to pick it. [42:57.560 --> 43:02.040] What they do with this lock is they have discs in the lock. [43:02.240 --> 43:03.440] So there's no pins but discs. [43:03.980 --> 43:06.760] I'll just show you a few of these discs I know. [43:18.920 --> 43:19.420] Okay. [43:21.440 --> 43:25.680] Okay, well here you can see the discs that are inside. [43:26.300 --> 43:30.760] And here's the real notch and they put some fake notches in as well. [43:31.400 --> 43:39.940] So when you start manipulating the lock, you'll experience like it's in the right position, but it's actually not. [43:40.200 --> 43:45.840] And it took us quite a while to figure out how to actually pick this lock because of the false notches. [43:46.600 --> 43:55.780] And then Paul, Paul Krauwel from One Tools, he found out that there's a technique that if you put the pick in the lock. [44:03.900 --> 44:04.460] Okay. [44:04.900 --> 44:06.160] Wow, that's a big thumb. [44:07.320 --> 44:07.940] Thumbs up. [44:07.980 --> 44:08.700] Thumbs up. [44:08.980 --> 44:10.160] Thumbs up. [44:11.020 --> 44:11.500] Okay. [44:11.820 --> 44:13.260] Now I'm at the first disc. [44:16.640 --> 44:19.100] And I'm trying to feel the cuts. [44:19.160 --> 44:19.820] Here's one cut. [44:22.700 --> 44:23.900] Okay, now I'll put it here. [44:24.000 --> 44:25.620] Then I'll go to the disc two. [44:32.240 --> 44:34.180] How many discs are usually in there? [44:34.580 --> 44:35.200] Like eight. [44:41.900 --> 44:43.280] It's possible to get the false cut. [44:43.780 --> 44:49.800] Now, what Paul found out about these false cuts is that they are actually just a little bit tighter. [44:50.120 --> 44:51.680] So what you do is you go to one disc. [44:52.040 --> 44:54.180] You feel, hey, okay, it's getting. [44:54.480 --> 44:55.780] And you feel it's getting again. [44:55.780 --> 45:02.940] And you just go for the widest, you just go from one point of the cut to the other. [45:03.240 --> 45:05.380] And the widest is the right cut. [45:05.880 --> 45:07.500] And that actually was the trick. [45:07.500 --> 45:11.500] You have to feel the cuts. [45:12.380 --> 45:14.000] Is that the tensioner, that black thing? [45:14.240 --> 45:17.120] The tensioner that I'm holding here with my pin case. [45:21.090 --> 45:22.010] Do you know this top? [45:22.230 --> 45:23.310] I know nothing about the top. [45:23.510 --> 45:24.850] I've seen it in my catalogs. [45:24.870 --> 45:25.430] I've sold a couple. [45:25.570 --> 45:26.750] I've never had time to play with it. [45:27.070 --> 45:27.350] Okay. [45:27.350 --> 45:28.090] I wish I did. [45:28.450 --> 45:29.190] I assumed it would fall well down. [45:29.410 --> 45:34.270] Up there, the shackle, is that to prevent a shim or just a little more high-tech? [45:34.430 --> 45:35.710] It keeps both colors off it. [45:35.970 --> 45:36.890] You can't get to the side of it. [45:37.110 --> 45:40.430] You can still go to the tip, but it's usually pretty hard the way it's locked on, it locks it. [45:41.650 --> 45:44.310] Well, they probably call it the insurance lock. [45:44.890 --> 45:46.910] I don't know why that is like that. [45:47.670 --> 45:53.110] And people at ABUS were pretty upset that people were publicly picking their lock. [45:53.110 --> 45:56.170] Of course, they had on their website this nice text. [46:01.550 --> 46:02.750] Now, I need to focus. [46:03.370 --> 46:05.190] Do they still have that on their web page? [46:05.830 --> 46:06.190] Sure. [46:06.370 --> 46:06.630] Go ahead. [46:08.290 --> 46:09.150] Okay, well, I think so. [46:09.250 --> 46:12.070] We're going to get some people online for the microphone for some questions real quick. [46:12.250 --> 46:14.110] So, everyone jump and run and push each other! [46:14.350 --> 46:14.710] I mean, no. [46:15.770 --> 46:17.050] I can't just get there once... [46:17.050 --> 46:17.490] Wait, one sec! [46:17.610 --> 46:17.870] Wait, wait! [46:20.970 --> 46:28.570] I'm sorry if I'm wrong about this, but I also don't think you mentioned that professional lockpick tools in certain states are illegal. [46:28.870 --> 46:29.570] I mean, you'll go to... [46:30.150 --> 46:30.550] Okay. [46:30.750 --> 46:32.250] Lockpicking tools are non-illegal. [46:32.770 --> 46:33.810] Burdenary tools are illegal. [46:34.070 --> 46:37.750] When I'm driving down the street with a hacksaw in my car and a whole bunch of money, I'm illegal. [46:37.990 --> 46:39.930] I personally always have had lockpicks in my wallet. [46:41.170 --> 46:43.170] Lockpicking tools, I'm not licensed. [46:43.530 --> 46:43.870] Oh, okay. [46:43.870 --> 46:44.930] I'm certified, personally. [46:45.410 --> 46:46.250] But, um... [46:46.250 --> 46:46.770] I'm certified. [46:47.310 --> 46:47.950] I'm certified. [46:48.250 --> 46:51.350] A little associated locksmiths of America and a master locksmiths of North Jersey. [46:51.530 --> 46:51.850] I'm from Jersey. [46:52.110 --> 46:52.230] Sorry. [46:53.230 --> 46:53.790] But, uh... [46:53.790 --> 46:54.390] What exits? [46:54.770 --> 46:55.210] What exits? [46:56.250 --> 46:58.390] Pull over with the picks. [46:59.290 --> 47:01.710] And some good, expensive stuff on your front seat. [47:01.910 --> 47:02.750] You're probably in trouble. [47:02.870 --> 47:10.490] If you get pulled over for no good reason, and you haven't had picks with you, and they ask what they are, and you say, it's one of my hobbies, uh, depending on who the cop is, you can probably... [47:10.490 --> 47:12.870] It's, it's a burglary tool, so is a hammer. [47:13.270 --> 47:15.470] That's how it falls under most laws, as far as I've seen it. [47:15.690 --> 47:17.790] Other than that, um, good luck. [47:19.010 --> 47:20.830] You can get picked up for almost any tool. [47:25.630 --> 47:25.950] Okay. [47:26.410 --> 47:30.150] You can, you, as far as burglary tools, any burglary tool they can pick you up for in New York. [47:30.450 --> 47:32.350] It doesn't matter what, there's a hammer as a burglary tool. [47:32.450 --> 47:32.850] So are picks. [47:32.910 --> 47:35.670] Picks are probably going to be more of a burglary tool than anything else they can find. [47:35.670 --> 47:38.350] Except for maybe, uh, a bunch of slings into your car. [47:39.310 --> 47:40.170] Okay, it's open. [47:40.550 --> 47:41.490] In, in many states... [47:53.280 --> 47:56.460] Now, ABUS made an improvement on the lock. [47:56.880 --> 48:02.080] So that this tool actually, uh, only works at a certain range of their locks. [48:02.640 --> 48:07.040] But the people from the German support group, they made a tool that beats that. [48:08.820 --> 48:12.320] At this moment, there is negotiation with ABUS what to do. [48:13.600 --> 48:14.200] But when [48:25.770 --> 48:26.470] ABUS... [48:26.470 --> 48:26.570] Yes, Rick. [48:26.870 --> 48:34.270] With the, with the master combination lock demonstration, are there any, uh, commercially available combination locks that you can recommend that aren't vulnerable to that trick? [48:34.790 --> 48:34.930] It's a shame. [48:35.470 --> 48:38.150] Uh, off the top of my head, I don't know any other arts that I'm out there. [48:38.270 --> 48:39.310] I don't know any off the top of my head. [48:39.990 --> 48:42.050] The sort of the green leaf padlocks. [48:42.290 --> 48:42.610] Yes indeed. [48:43.130 --> 48:47.050] Yeah, that, that are used in the military to keep cabinets closed. [48:48.790 --> 48:50.510] Yeah, yeah, these S&G basic locks. [48:50.750 --> 48:55.190] Well, it used to be that locksmiths could look at these mechanical locks and try to figure out what's wrong. [48:55.350 --> 48:59.850] But now, with electronic locks, you need software engineers to take them apart. [48:59.850 --> 49:07.270] And there can be back doors in the microcode, factory combinations and bypass codes, which no locksmith would ever know about. [49:07.990 --> 49:09.790] So he's calling the computer guy who's a locksmith too. [49:10.150 --> 49:10.430] Right. [49:10.670 --> 49:11.510] Not too many of us. [49:12.550 --> 49:12.950] Yes. [49:13.190 --> 49:13.950] What do you think about that? [49:13.950 --> 49:16.090] Real quick, I'm going to show you a lot of that. [49:16.150 --> 49:17.430] It's really interesting with a lot of people here. [49:17.870 --> 49:22.550] If anyone here happens to have a real good engineer who's a micro tool, I can make a thing for this, but so far I can. [49:23.250 --> 49:25.170] Instead of using pins, it's called Miwa, it's for Japan. [49:25.690 --> 49:29.510] Instead of using pins that are normal, he uses magnetic pins. [49:30.110 --> 49:30.310] Alright. [49:30.730 --> 49:32.290] So, all those little things inside... [49:32.290 --> 49:32.710] Am I a camera? [49:33.350 --> 49:33.550] Yeah. [49:33.910 --> 49:36.390] All those little pieces inside, if you can see them, there's... [49:37.310 --> 49:37.770] See that? [49:37.910 --> 49:38.370] You can see now. [49:38.610 --> 49:41.730] All those little pieces are actually magnets, polarizing them from the other. [49:42.050 --> 49:44.810] So instead of pushing and pulling the pins physically, it magnetically does it. [49:45.390 --> 49:48.850] Now, I haven't picked it yet, because I don't have someone make me a really little magnet. [49:49.330 --> 49:49.970] But it really does. [49:50.730 --> 49:51.730] Magnet on a stick, you know? [49:52.130 --> 49:52.890] That should do it. [49:53.010 --> 49:53.510] That's Miwa. [49:53.970 --> 49:55.030] Let me get the other one. [49:55.390 --> 49:56.470] This one's called Vachey. [49:56.610 --> 49:57.410] This isn't really made anymore. [49:57.670 --> 49:59.230] It might still be made, I haven't seen them around anymore. [50:00.010 --> 50:01.550] That's a pretty fancy looking cable. [50:01.910 --> 50:02.730] You guys can see that? [50:04.650 --> 50:06.510] It's big, it's heavy, it's butch. [50:07.510 --> 50:09.010] I mean, it's a nice size lock. [50:09.290 --> 50:11.090] Look at the key way, if I'm in the camera right there. [50:11.490 --> 50:12.650] It's a pretty butch lock. [50:12.890 --> 50:13.910] It's all over France. [50:14.250 --> 50:15.830] Yeah, very much all over France. [50:15.890 --> 50:17.070] In the US, I've seen them a few places. [50:17.170 --> 50:18.470] I just happened to find one in the back of the truck. [50:18.930 --> 50:20.850] This one is called The Concept. [50:21.750 --> 50:22.910] Literally, it was in the front of my shop. [50:22.910 --> 50:24.930] I saw this and I went, hey cool, I've never seen that before. [50:25.230 --> 50:26.930] It's nothing more than three pin tumblers. [50:27.510 --> 50:30.770] Or three sets of tumblers in one lock. [50:31.570 --> 50:34.310] He looks very much like a big pointy sharp thing. [50:34.870 --> 50:36.270] It's just a bunch of cuts. [50:36.870 --> 50:37.870] So basically three. [50:38.110 --> 50:39.190] I've never seen this anywhere else. [50:39.370 --> 50:41.130] But it looked cool to me, so I found my own phone. [50:41.330 --> 50:42.150] I've seen the Chinese logo. [50:42.890 --> 50:43.890] I've seen the Chinese logo. [50:44.790 --> 50:46.810] The last pick to show is Ass-A-Locks. [50:47.310 --> 50:49.130] This is a very good lock. [50:49.290 --> 50:50.130] I've never picked it. [50:50.290 --> 50:51.170] I think he said he had it. [50:51.330 --> 50:52.150] Have you ever picked this one? [50:52.790 --> 50:53.610] The Ass-A-Twin? [50:53.830 --> 50:53.870] No. [50:54.030 --> 50:54.110] No. [50:54.670 --> 50:55.310] It's possible. [50:56.310 --> 50:57.030] It's possible. [50:57.250 --> 50:59.610] But the trick with this is there's the standard cuts. [50:59.790 --> 51:00.710] If you can see at this angle. [51:01.110 --> 51:02.170] There's the standard cuts on top. [51:02.290 --> 51:04.150] And on the side there's another set of cuts. [51:04.670 --> 51:08.610] Those cuts, rather than being pinned normally, they're pinned with little fingers on the side. [51:08.730 --> 51:09.430] They're right up and down. [51:09.750 --> 51:11.910] So you have to pick the first set and the second set once. [51:12.810 --> 51:14.250] And I ain't that good yet. [51:15.450 --> 51:16.270] What metal is it? [51:17.070 --> 51:18.390] They don't mouthful pick on either. [51:18.390 --> 51:18.570] They don't mouthful pick on either. [51:19.350 --> 51:20.010] That's Ass-A. [51:20.210 --> 51:21.930] And real quick, because I know we're going to be running out of time. [51:22.010 --> 51:22.470] How are we on time? [51:23.430 --> 51:23.670] 30 minutes. [51:23.970 --> 51:24.370] 30 minutes. [51:24.530 --> 51:24.790] Thank you. [51:26.790 --> 51:27.310] Safe lock. [51:27.450 --> 51:27.550] Look. [51:27.670 --> 51:27.990] It's shiny. [51:28.170 --> 51:28.470] It's square. [51:29.330 --> 51:29.810] That's it. [51:30.610 --> 51:30.970] Padlock. [51:32.090 --> 51:32.810] That's a padlock. [51:32.810 --> 51:34.470] It's got hardened stuff and metal. [51:34.990 --> 51:39.170] This one is actually a cheap clone of the American 7-on-1, which is a common padlock on every store front. [51:39.930 --> 51:40.850] They're real good padlocks. [51:40.970 --> 51:41.770] This is a real cheap padlock. [51:42.050 --> 51:44.130] If it doesn't say American on it, I personally don't trust it. [51:44.470 --> 51:45.210] And that's not my product myself. [51:45.350 --> 51:45.590] Yes, sir. [51:47.170 --> 51:49.030] This one can be. [51:49.170 --> 51:49.930] The Americans can be. [51:50.210 --> 51:50.710] Yes, sir. [51:50.770 --> 51:50.950] Question. [51:51.330 --> 51:53.890] Where would you go to get this tool, the lockpick tool scenario? [51:54.510 --> 51:55.150] The internet. [51:55.670 --> 51:56.970] Everything is on the internet. [51:57.110 --> 51:59.150] Or related to the lockpick, which I found out when I was 11. [52:00.350 --> 52:00.990] Silvietsky.com. [52:01.070 --> 52:02.070] When I was 11, I bought my lockpick. [52:02.070 --> 52:04.290] I bought a lockpick. [52:04.350 --> 52:04.610] Yes, sir. [52:05.010 --> 52:05.970] I brought a lockpick for you. [52:06.090 --> 52:07.810] It's a lock that the Noah's owner uses. [52:08.070 --> 52:08.890] They use a lockup. [52:09.090 --> 52:11.510] M110, M16s, Night Mission Goblet. [52:11.550 --> 52:12.450] I'll pick it for you. [52:21.080 --> 52:21.800] American padlock. [52:22.500 --> 52:24.380] These pins, the top pins, have staggers in them. [52:24.920 --> 52:27.120] It's actually pretty hard, so I'll let him do it because I saw it. [52:28.580 --> 52:29.080] That's special. [52:29.540 --> 52:31.460] Question about the Miwa, the magnetic one. [52:31.560 --> 52:31.860] Yes, sir. [52:32.160 --> 52:36.120] Those pins, is there a range where they have to fall, or is it an all or nothing? [52:36.280 --> 52:37.360] It's positive or negative. [52:38.060 --> 52:38.960] They're either up or down. [52:39.180 --> 52:39.420] So basically... [52:40.020 --> 52:45.680] If you wired that with a little electromagnet to engineer them, somebody could write an algorithm just to flip all the pre-mutations pretty fast. [52:46.020 --> 52:47.740] Only the limitation has the physical... [52:47.740 --> 52:48.340] Oh, yeah. [52:48.480 --> 52:49.580] There's a spring pushing at it. [52:49.660 --> 52:49.760] Yeah. [52:49.920 --> 52:51.080] And you just risk the springs. [52:51.080 --> 52:59.580] I think, personally, if you took a stick with a little magnetic head that reads positive and negative, and you read each of them, and there's only eight on each side, it would take you about 30 seconds, and you just take the key and stick it in. [52:59.720 --> 53:00.040] Woo-hoo! [53:00.280 --> 53:01.280] Or just invert the... [53:01.840 --> 53:02.700] You can make a rake. [53:03.500 --> 53:05.240] You can make a rake for those, but it's really hard to get the attention. [53:05.320 --> 53:05.580] Yes, sir. [53:05.660 --> 53:05.820] Question. [53:05.820 --> 53:07.520] I got a question about the... [53:07.520 --> 53:15.080] I don't know if there are any other locks than the rest that have this sort of a layout, but the key stuff to the new Volkswagen, so it's got a groove cut on the side. [53:15.280 --> 53:16.620] Those are called laser cuts. [53:17.000 --> 53:18.280] Can I take a question? [53:18.780 --> 53:19.120] Go for it. [53:19.940 --> 53:21.860] You're talking about this lock. [53:28.130 --> 53:30.510] And, yeah, they look pretty sophisticated. [53:30.510 --> 53:31.690] I hope I can zoom in. [53:34.470 --> 53:35.330] Zoom, zoom, zoom. [53:35.390 --> 53:35.610] Okay. [53:36.330 --> 53:42.290] And, actually, some people found out how to pick them, and they made this... they designed this pick. [53:47.190 --> 53:48.690] This guy's name is Randy Mize. [53:48.830 --> 53:50.710] He's a little southern guy with no teeth. [53:52.170 --> 53:54.790] Some guy cursed him and said, it's impossible, so he said, it's for you! [53:54.790 --> 53:55.270] Oh, man. [53:59.210 --> 54:00.070] Real nice guy, though. [54:01.390 --> 54:02.370] No problem with Randy Mize. [54:05.690 --> 54:06.550] He's building, it's okay. [54:06.710 --> 54:07.330] It's off camera. [54:08.090 --> 54:09.410] Once he's not building, he doesn't put it on camera. [54:10.570 --> 54:11.190] No, he's on camera. [54:13.490 --> 54:14.730] Part 12, I don't know. [54:14.890 --> 54:15.430] Part 6, I don't know. [54:16.030 --> 54:16.910] Part 6, I don't know. [54:17.730 --> 54:19.450] That was a little bit different. [54:20.270 --> 54:22.030] And Shmeet definitely is holding this lock. [54:42.850 --> 54:44.430] If it's not there anymore, it was him. [54:44.430 --> 54:45.190] He [54:51.640 --> 54:54.080] used, was modified by the owner. [54:54.260 --> 54:56.240] I was just curious as to how it was modified. [54:56.680 --> 55:00.340] Um, yeah, so it has better raking motion, but... [55:00.340 --> 55:00.600] Oh, yeah? [55:00.880 --> 55:08.160] He just took out a few things to make it more silent, but to make it more effective with the power transfer from the engine to the... [55:08.160 --> 55:09.180] Summary, he overclocked it. [55:11.160 --> 55:16.260] Took out a little extra buffers, heap noise down, and add in extra power, and pop, pop, pop, pop, pop. [55:16.380 --> 55:20.600] Can you recommend any particular website or anything where you can find a good setup? [55:20.600 --> 55:24.240] Yeah, there's this guy in the Netherlands, this is Paul Crowder. [55:24.860 --> 55:25.560] Military log. [55:25.600 --> 55:30.200] Uh, locktools.nl, locktools.nl, locktools.nl, locktools.nl, locktools.nl, locktools.nl. [55:30.340 --> 55:34.720] And on security.nl, you can find a lot of information about specific logs. [55:35.000 --> 55:36.460] If you say, well... [55:36.600 --> 55:37.040] A padlock. [55:37.160 --> 55:37.320] A padlock. [55:37.320 --> 55:37.860] A padlock camera? [55:38.180 --> 55:39.340] Yeah, open a military log. [55:39.660 --> 55:40.200] Military log. [55:40.360 --> 55:41.200] Okay, I can give it a try. [55:42.060 --> 55:47.740] And also, the German people, uh, from the German Sport Group, they have a real nice website. [55:48.220 --> 55:50.100] It's, uh, lockpicking.org. [55:50.600 --> 55:53.920] So, these are the three websites, uh, that you could probably get this one. [55:54.980 --> 55:55.900] Any other questions? [55:56.180 --> 55:56.740] Line's gone. [55:57.300 --> 55:58.680] Okay, some guy way in the back. [55:58.800 --> 55:59.220] You're gonna have to stay. [55:59.580 --> 56:00.140] I think we're running out of time. [56:00.220 --> 56:00.820] Just about out of time. [56:00.920 --> 56:01.600] So, scream real loud. [56:01.860 --> 56:02.100] Yeah. [56:02.540 --> 56:06.080] How much good? [56:06.880 --> 56:07.240] FedEx. [56:07.920 --> 56:08.380] I'm FedEx. [56:16.820 --> 56:17.900] Better be safe, I'm sorry. [56:18.580 --> 56:20.840] So, we're just about done, uh, wrapping up. [56:21.260 --> 56:21.940] Okay, one guy in the back. [56:22.020 --> 56:22.420] Scream loud. [56:23.200 --> 56:23.920] General question. [56:24.180 --> 56:26.720] Would you prefer a key lock or a combination lock? [56:27.020 --> 56:28.020] I prefer key locks. [56:28.320 --> 56:31.560] But if you don't want to carry a key with you, get a combination lock. [56:31.700 --> 56:33.840] If you don't want to carry a combination with you, get a keypad. [56:34.400 --> 56:34.880] Don't care a keypad. [56:34.880 --> 56:34.940] Not at all. [56:34.940 --> 56:36.180] Don't get a cheap one that I'm using. [56:37.020 --> 56:39.580] Eh, mister does make a high security series. [56:39.800 --> 56:40.560] Uh, that's not it. [56:40.920 --> 56:42.320] Uh, yes sir, running in the middle of the back. [56:42.740 --> 56:47.780] Quick, uh, besides the mast that you just recommended, are there any other, um, brands of combination lock? [56:47.780 --> 56:52.140] Yeah, he mentioned the sergeant green leaf makes a very nice combination lock. [56:52.440 --> 56:53.880] It's hard to have to do with these tubes by the military. [56:54.080 --> 56:55.920] I think it's the X-12 or X-2 or something like that. [56:56.940 --> 56:57.760] We're running out of time. [56:58.120 --> 57:00.900] Yeah, without the ship, how can you pick a combination lock? [57:01.580 --> 57:02.080] What was that? [57:02.780 --> 57:05.900] Without the ship, how can you pick a combination lock? [57:06.120 --> 57:08.280] Go on like the Amicus Co-cooker and find out. [57:09.360 --> 57:12.120] It's in there, it's just you basically can feel out the master padlock. [57:12.400 --> 57:16.680] Otherwise, when talking about real safe locks, it's hard. [57:17.440 --> 57:18.040] It's real hard. [57:18.160 --> 57:19.320] I got one here, I can show you how. [57:20.520 --> 57:21.420] Yes, in the back. [57:21.700 --> 57:23.220] How are some of your best locks? [57:23.840 --> 57:25.800] Best is just a brand name like any other lock. [57:26.160 --> 57:28.680] Best makes an IC core, that's a nice lock. [57:28.760 --> 57:30.160] We're wrapping it up because he's doing this thing. [57:30.480 --> 57:30.840] What's this? [57:31.140 --> 57:31.700] What's this mean? [57:31.840 --> 57:31.920] Come on. [57:31.980 --> 57:32.640] Running out of time. [57:32.740 --> 57:33.500] Running out of time, kill him. [57:36.120 --> 57:37.600] Okay, I didn't pick the lock. [57:38.000 --> 57:38.300] Too bad. [57:38.580 --> 57:39.060] Next time. [57:39.740 --> 57:40.960] See you guys in three years. [57:41.180 --> 57:41.720] Thanks a lot, man. [57:41.780 --> 57:42.080] Have a good night. [57:54.920 --> 57:56.640] We're going to be starting off the next panel. [57:56.900 --> 57:58.160] It's the media man here. [57:58.160 --> 57:59.440] So stay tuned. [57:59.800 --> 58:04.520] Freedom Down Time did start to roll at 1pm directly behind you. [58:04.660 --> 58:06.600] Freedom Down Time is rolling right now. [58:06.860 --> 58:07.640] So we're going to catch it. [58:07.760 --> 58:08.340] We're going to start [58:12.660 --> 58:15.880] at around 3pm after Freedom Down Time. [58:16.040 --> 58:18.840] There will be a final discussion again. [58:30.150 --> 58:32.350] So our next panel will be up here at the moment. [58:40.410 --> 58:41.990] Hello, it's room under the light. [58:42.690 --> 58:43.110] I'm [58:46.790 --> 58:46.790] in a robinabilism as well. [58:46.790 --> 58:48.370] We'll be getting back on when we're gonna do it. [58:48.490 --> 58:48.570] It'll beably a speed flight, as well.