electrosyncDesignSpark sent me one of their Air Quality IoT kits to beta test and I decided to test in on 3D printing resins to see just how bad they are.
@DesignSparkRS developed the *Environmental Sensor Development Kit* (ESDK) as an open source hardware platform with the ability to add sensors to suit your project needs. The brains of the ESDK consists of a main board with touch screen and GPS that connects to a Raspberry Pi Linux computer. DesignSpark’s Air Quality Project is the first to utilise the ESDK’s compact and modular architecture that allows plug and play for sensors (no soldering and coding is optional).
I deployed the kit in my workshop where I have resin and FDM 3D printers as well as the associated materials and chemicals. I decided to target the effects of resin 3D printing on air quality as it is the ‘smellier’ operation and it personally concerns me more than FDM. Resin 3D printing utilises photopolymer resin to build up prints in layers and in my case, isopropyl alcohol is used to clean the finished prints. Resins and IPA are typically loaded with volatile organic compounds, so the TVOC board should be ideal to monitor that. I decided to test three different resin types and measure whether there are any differences in the TVOCs present in the workshop.
FDM parts were printed on a Creality Ender 3 Pro using 3D Fillies PLA+ filament with a 0.4 mm nozzle. SLA parts were printed on a Creality LD-002R printer using the resins shown in the video. CAD design was done in DesignSpark Mechanical. Shot on Canon EOS M50, Insta360 One R, Insta360 Go 2 and DJI RSC2.
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0:00 Intro 0:21 DesignSpark ESDK Kit 1:06 Design and Build 2:13 Kit Functions 2:50 DesignSpark Metric Dashboard 3:04 What are VOCs? 3:46 Testing the VOC Sensor 3:58 Setting up the Experiment 4:39 Resins and Air Quality 5:56 What about the Wash? 6:24 What does this Mean?
How Bad is Resin 3D Printing for Air Quality?electrosync2022-06-07 | DesignSpark sent me one of their Air Quality IoT kits to beta test and I decided to test in on 3D printing resins to see just how bad they are.
@DesignSparkRS developed the *Environmental Sensor Development Kit* (ESDK) as an open source hardware platform with the ability to add sensors to suit your project needs. The brains of the ESDK consists of a main board with touch screen and GPS that connects to a Raspberry Pi Linux computer. DesignSpark’s Air Quality Project is the first to utilise the ESDK’s compact and modular architecture that allows plug and play for sensors (no soldering and coding is optional).
I deployed the kit in my workshop where I have resin and FDM 3D printers as well as the associated materials and chemicals. I decided to target the effects of resin 3D printing on air quality as it is the ‘smellier’ operation and it personally concerns me more than FDM. Resin 3D printing utilises photopolymer resin to build up prints in layers and in my case, isopropyl alcohol is used to clean the finished prints. Resins and IPA are typically loaded with volatile organic compounds, so the TVOC board should be ideal to monitor that. I decided to test three different resin types and measure whether there are any differences in the TVOCs present in the workshop.
FDM parts were printed on a Creality Ender 3 Pro using 3D Fillies PLA+ filament with a 0.4 mm nozzle. SLA parts were printed on a Creality LD-002R printer using the resins shown in the video. CAD design was done in DesignSpark Mechanical. Shot on Canon EOS M50, Insta360 One R, Insta360 Go 2 and DJI RSC2.
I use Epidemic Sound for music and sound effects - sign up for your 30-day trial here: share.epidemicsound.com/jbztrl (affiliate link).
0:00 Intro 0:21 DesignSpark ESDK Kit 1:06 Design and Build 2:13 Kit Functions 2:50 DesignSpark Metric Dashboard 3:04 What are VOCs? 3:46 Testing the VOC Sensor 3:58 Setting up the Experiment 4:39 Resins and Air Quality 5:56 What about the Wash? 6:24 What does this Mean?
#3dprinting #resin #airqualityBuilding the Worlds Fastest Roombaelectrosync2022-10-10 | I built the world’s fastest Roomba! After finding that the few fast Roombas online weren't exactly the real deal, I decided to build my own. @Make Cool Stuff did build the real deal and that was the benchmark that I set out to beat. I used a 10 year old iRobot Roomba 630 and added some high tech motors, electronics and radio control gear to bring it all to life. I CAD designed and 3D printed parts in @3Dfillies PLA and PETG to fit all of the gear to the Roomba. It turned out to be a handful to drive, but very fast and a lot of fun.
Thanks to AndyMark Robotics for the great gear and advice they provided: andymark.com
FDM parts were printed on a Creality Ender 3 Pro using 3D Fillies PLA+ and PETG filament with a 0.4 mm nozzle. CAD design was done in Autodesk Fusion 360. Shot on Canon EOS M50, Insta360 One R, Insta360 Go 2 and DJI RSC2. More project info is available at www.electrosync.com.au
I use Epidemic Sound for music and sound effects - sign up for your 30-day trial here: share.epidemicsound.com/jbztrl (affiliate link).
0:00 Intro 1:01 Design Rules 1:37 Strip and Build 4:40 Workshop Floor Test 5:31 Hitting the Courts 6:26 More Traction/Less Wheelies 6:57 Backroad Action 8:54 Less Room and More Zoom 10:23 Back to the Backroad 11:21 Where to Next?
A little while back I designed a snap close connector (STL link below) and some of you wanted to know just how strong it was. But I also wanted to find out how strong the design could be if it was 3D printed in metal. PCBWay were kind enough to provide me with aluminium (AlSi10Mg) and stainless steel (316L) 3D printing services. Using their selective laser melting (SLM) 3D printers they printed some amazing parts that I assembled into my snap clips (frog). Next, I needed to build a tensile strength testing rig to test these things - and it was going to have to be strong! So I built a 1 tonne tensile testing machine that uses a bottle jack to tension the parts. The results were a little surprising!
Electrosync designs featured in this video are available for free at Thangs.com:
We all know that you can build CO2 rockets and CO2 dragsters, but what about using CO2 under water? When I was growing up, torpedoes were a big feature in movies, TV and video games and something about them fascinated me. Now that I’m all grown up, I decided to make my very own CO2 powered torpedoes that you can launch in a small space like a pool. After a prototype design that proved the concept, I settled on a three piece 3D printed design that houses a 16 gram carbon dioxide cartridge as well as ballast to keep everything traveling smoothly. Printing takes about six hours for the torpedo and another four hours for the launcher. The torpedoes are launched by a device with a spring loaded nail that pierces the seal on the CO2 cartridge and sets the torpedo on its way. These things are great fun! Down the track, I’m going to look at altering the launching system to fit a radio controlled vehicle for some underwater battles.
The torpedo won't harm anyone, but be cautious around the launcher (sharp object) and CO2 gas (high pressure and cold)
All parts were printed on Creality Ender 3 Pro using mostly 3D Fillies PLA+ filament with a 0.4 mm nozzle. The specific print settings and hardware used are listed on Thangs.com at the link below. CAD design was done in Fusion 360. Shot on Canon EOS M50, Insta360 One R, Insta360 Go 2, DJI Mini and iPhone for slow motion.
I use Epidemic Sound for music and sound effects - sign up for your 30-day trial here: share.epidemicsound.com/jbztrl (affiliate link).
Electrosync Designs Featured in this Video are Available at Thangs.com:
0:00 Intro 0:18 Submarine Intel 0:45 Design and Build 2:51 First Test 3:13 Refining the Launcher 3:40 Second test 4:12 Redesign and Build 4:52 Second Test 5:22 Action Montage 7:16 Free Files and What's Next
Watch Next:
Exploring Underwater with a 3D Printed Head Tracking FPV Camera Dome youtu.be/SGGKnoSkMQ4
#3Dprinted #CO2 #TorpedoExploring Underwater with a Head Tracking FPV Cameraelectrosync2022-01-12 | We all know that FPV is a lot of fun in the air with quadcopters and fixed wings, but what about from underneath a boat looking below the water? And what if you could immerse yourself in that underwater world and control the camera with your head? That’s what I wanted to find out, so I dusted off my big 3D printed catamaran RC boat (link to files below) and set about adding a head tracking, first person view camera system all housed in a waterproof dome with its own dedicated lighting system.
I used a combination of 3D printing and acrylic to build the dome housing and LED lights to light things up (link to files below). Everything was waterproofed using a combination of hot glue, silicone sealant and polyester resin. The 3 axis pan and tilt mechanism is a cheap off the shelf unit that uses micro servos that provides about 180 degrees of rotation. An analogue FPV camera is used to provide the live video feed back to goggles and an Insta360 Go 2 provides the HD video recording. These are both mounted on a custom 3D printed mount that attaches to the pan and tilt mechanism (link to files below). Head tracking is done via an Arduino Nano BLE 33 running dlktdr’s HeadTracker firmware (link below) housed in a small 3D printed case (link to files below). This is all wired in to a radio control receiver and transmitter – I ran out of channels on the boat, so there are now two dedicated radio systems to control the boat and operate the FPV. Needless to say, it’s getting a little bit complicated to film all the action at the same time solo!
Small parts were printed on a Creality Ender 3 Pro using 3D Fillies PLA+ filament with a 0.4 mm nozzle and 0.2 mm layer height. Large parts were printed on a Creality CR-10 in 3D Fillies PLA+ filament with a 0.6 mm nozzle and 0.36 mm layer height. Specific print settings are listed in the model links below. CAD design was done in Fusion 360. Shot on Canon EOS M50, Insta360 One R, Insta360 Go 2 and DJI Mini.
Electrosync Designs Featured in this Video are Available at Thangs.com:
0:00 Intro 0:22 Why a Dome? 1:14 Building the Dome 2:02 Lighting System 2:48 Pan & Tilt and Head Tracking 3:53 Wiring and Control Box 4:38 Test Run 5:12 Field Test 1 6:41 Field Test 2 9:00 What Did I Learn?
Crates are great! And even better if they're miniature, collapsible and stackable! I designed a mini crate that you can use to store bits and pieces on your desk or workbench. It's simple to 3D print and easy to assemble suing snap fit connections and no hardware. Print them in your fav colours or mix and match for a rainbow look for all your storage needs.
Printed on Creality Ender 3 Pro using 3D Fillies PLA+ (Pink, Sand, Olive Drab, Light Grey, Dark Grey) with 0.4 mm nozzle, 0.2 mm layer height, 15% infill (or more). No supports required.
Parts designed in Fusion360. Shot on Canon EOS M50.
#3DPrinting #Collapsible #CrateWelcome to Electrosyncs Obscurely Useful Thingselectrosync2021-11-19 | G'day and welcome! Alister here, and I design and build obscurely, useful, things. Join me as I make bigger, faster, better creations and test them out here. Featuring CAD/CAM, 3D printing, radio control, electronics and whatever else I can find to turn my ideas into reality.3D Printing a Seat Belt Buckleelectrosync2021-11-07 | Grab the .STL files for free at Thangs.comthangs.com/electrosync/Seat-Belt-Buckle-Desk-Fidget-Toy-35206?manualModelView=true
Seat belt buckles have a pretty satisfying mechanism, but it’s not a great idea to play with them on the road! Now you can 3D print your own fidget and desk seat belt buckle toy to play with anytime that you want. The design features a double action mechanism for locking and unlocking the tongue as well as ejecting it. It’s 100% 3D printed with no other hardware required. Featuring 20 plus different car tongue styles, you can rep your ride! Want a different car make or model style on your tongue? Edit your own or let me know what you want in the comments and I'll add it to the files so that you can get to 3D printing your own.
Printed on Creality Ender 3 Pro using (mostly) 3D Fillies PLA+ with 0.4 mm nozzle, 15% infill (or more) and the following part specific settings:
Button Spring – 0.2 mm layer height, 3 mm brim Button – 0.2 mm layer height, supports and 3 mm brim Case Bottom – 0.2 mm layer height Case Top – 0.2 mm layer height Latch – 0.12 mm layer height Tongues – 0.2 mm layer height (colour changes optional)
Parts designed in Fusion360. Shot on Canon EOS M50.
0:00 Introduction and Design 0:35 3D Printing and Build 3:05 Rep your Ride
This is a fun little 3D printed afternoon project. I based this design on Kong's Frog clip design that has had its patent expire. It's a popular gadget used for climbing and rescues. The connector was designed in Fusion 360 and it requires no support material. The design uses four 3D printed parts and one DIY torsion spring made from a paperclip. Some hardware is required to join the sides of the connector together. The parts print in about two hours and you probably have the few bits of hardware at home already.
Seriously, don't use one of these to hold any sort of load or in a situation that could injure you or someone else.
Parts list:
3 x M3 x 14 mm screws 3 x 3 mm washers 50 mm paper clip
Printed on Creality Ender 3 Pro and CR-10 3D printers using 3D Fillies PLA+ for the regular sized design with 0.4 mm nozzle at 0.2 layer height (Ender 3) and 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big one. Parts designed in Fusion360. Shot on Canon EOS M50.
0:00 Introducing the Frog(s) 0:13 Product, Design and Printing 0:44 Assembly 3:03 Colour Show 2:20 Things you can do 4:06 Things you can't do 4:09 Frog's Descent
If you want to own your very own radio control toy Minecraft boat with skipper Steve on board, you would be out of luck... until now. I designed a scale remote control boat in Fusion 360 that uses a brushed motor and propeller to drive the boat. There's also a realistic RC rowing action provided by a micro geared motor and 3D printed gearbox. The boat motors around and features realistic fishing action for catching trash and treasure in the water. Steve has two degrees of freedom powered by servos so that you can move his waist and right arm. A fishing rod is equipped with a neodymium magnet to haul in 3D printed items. You can control all this via the transmitter to have some fun in the pool or wherever else you like to boat and fish.
Printed on Creality CR-10 and Ender 3 Pro 3D printers using 3D Fillies PLA+ and Sunlu Wood PLA with 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big parts and with 0.4 mm nozzle at 0.2 layer height (Ender 3) for the smaller parts. Parts designed in Fusion360. Shot on Canon EOS M50, 360 video footage shot on Insta360 One R and action cam footage on Insta360 Go 2.
#Minecraft #RC #3DprintedSwooping Aussie Magpie vs 3D Printed Things - V2.0electrosync2021-08-30 | Swooping Aussie magpies are scary! The birds swoop and attack during the spring time in Australia. After last spring's video where I 3D printed things to defend against the swooping birds, I received a bit of feedback from you all. So, here we have version 2.0 of bigger and better defenses made using 3D printing - all road tested against a real Swoopy Boi.
The experiment features new, improved versions of the cable ties, fake eyes and robotic bird. The new version of the Madpie 3000 features the form of a Peregrine Falcon with flapping wing action powered by a LiPo battery, brushed motor and helical gears attached to tie rods. The high powered CREE LEDs return for eyes and this time around the robot bird faces backwards because you all told me I was stupid! The future of Magpie attached prevention is now!
Printed on Creality CR-10 and Ender 3 Pro 3D printers using 3D Fillies PLA+ with 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big parts and with 0.4 mm nozzle at 0.2 layer height (Ender 3) for the smaller parts. The small or detailed parts were printed on a Creality ld-002r resin printer. Parts designed in DesignSpark Mechanical. Shot on Canon EOS M50, 360 video footage shot on Insta360 One R and action cam footage on Insta360 Go 2.
0:00 Intro 0:23 Australian Magpie 0:36 Test Set-up 0:51 Control 1:20 Cable Pies V2 2:02 Pie Eyes V2 2:44 Pie Eyes V3 3:17 Madpie 3000 V2 4:35 Summing Up
Watch Next
3D Printing a Radio Controlled Drink and Snack Boat for the Pool youtu.be/8s3EcwMF5F8
#3Dprinted #Swooping #MagpieBuilding an Overpowered RC Drink and Snack Pool Boatelectrosync2021-08-15 | A radio controlled boat that delivers drinks and snacks in your pool for summer fun! That’s what I searched for online and found one model that had been discontinued. So why not build a 3D printed one? To make it a little more fun, I added a water cannon, sound system with MP3 player, FPV and a tiny little pirate flag all operated via remote control - all made using 3D printing and standard RC gear. Not only will it cater for your pool party, but it will also raise the pirate flag and attack using its water pistol. Keep your eye on which flag is raised!
Printed on Creality CR-10 and Ender 3 Pro 3D printers using 3D Fillies PLA+ with 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big parts and with 0.4 mm nozzle at 0.2 layer height (Ender 3) for the smaller parts. The small or detailed parts were printed on a Creality ld-002r resin printer. Parts designed in DesignSpark Mechanical. Shot on Canon EOS M50, 360 video footage shot on Insta360 One R and action cam footage on Insta360 Go 2.
#3Dprinted #RadioControlled #PoolMonitor Water Quality with a 3D Printed RC Utility Boatelectrosync2021-06-13 | I've had a lot of requests to release the files for my 3D printed radio controlled utility boat. I finally found the time to refine them and I've also produced a Build Guide to go with them. At this stage the files and guide are only for the hull and drive system (pretty much the boat in the first few shots of this video). If there is enough interest, I will also release the files for the modular deck and water sampling system.
#3Dprinted #Monitoring #WaterQualityBuilding a Pool Cleaning Roombaelectrosync2021-06-04 | Roombas and robotic vacuums are good at cleaning floors, but can they be converted with the help of 3D printing to move on water and clean pools? This is the question I’ve been pondering for a while. I picked up a cheap Roomba lookalike robot vacuum and built it into a pool skimming, debris eating robot with a personality.
Printed on Creality CR-10, Ender 3 Pro and LD-002R 3D printers using 3D Fillies PLA+ with 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big parts and with 0.4 mm nozzle at 0.2 layer height (Ender 3) for the smaller parts. Parts design and modification was done by me in DesignSpark Mechanical. Shot on Canon EOS M50, 360 video footage shot on Insta360 One R and DJI Mavic Mini for the aerial shots.
00:00 Intro 00:40 Build Platform 01:12 Starting the Build 02:25 Float and Finishing Touches 02:59 Pool Test 04:51 Outro
#Roomba #3Dprinted #Pool3D Printed RC Utility Boat - Water Sampling Mission - Part 3electrosync2021-04-04 | I designed and 3D printed a big radio controlled boat. It's designed as a sort of utility airboat and will house water monitoring and other utility systems. In part three of this video series I take the boat out to a lake to test the water sampling systems and then have the samples analysed for blue-green algae.
You can check out the algae test result reports here: https://electrosync.com.au/2021/01/08/3d-printed-rc-utility-boat/
Printed on Creality CR-10 and Ender 3 Pro 3D printers using 3D Fillies PLA+ with 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big parts and with 0.4 mm nozzle at 0.2 layer height (Ender 3) for the smaller parts. Parts design and modification was done by me in DesignSpark Mechanical. Shot on Canon EOS M50, 360 video footage shot on Insta360 One R and DJI Mavic Mini for the aerial shots.
00:00 Intro 00:45 Hitting the Road 01:26 Lake Moodemere 02:06 Quick Test 02:38 Collecting the Samples 04:26 Back on the Road 05:07 Water Test Results 06:39 Outro
#3Dprinted #RadioControlled #Boat3D Printed RC Utility Boat - Water Sampling System - Part 2electrosync2021-03-13 | I designed and 3D printed a big radio controlled boat. It's designed as a sort of utility airboat and will house water monitoring and other utility systems. In part two of this video series I build a remotely operated water sampling system and sample bottle carousel.
Printed on Creality CR-10 and Ender 3 Pro 3D printers using 3D Fillies PLA+ with 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big parts and with 0.4 mm nozzle at 0.2 layer height (Ender 3) for the smaller parts. Parts design and modification was done by me in DesignSpark Mechanical. Shot on Canon EOS M50, 360 video footage shot on Insta360 One R and DJI Mavic Mini for the aerial shots.
Bits and pieces featured in this video:
3D Fillies PLA+ Arduino Nano Every Nema 17 Stepper Motor Matek Systems UBEC Duo Flytron Cree LED 12 v self priming water pump Lots of wiring
Watch Next
3D Printed RC Utility Boat - Part 1 - Hull and Drive System youtu.be/0KblE-0bh7o
00:00 Intro 01:22 Changes Since the Last Video 02:37 Building the Sample System 03:12 Wiring the Electronics 03:53 Still Building the Sample System 04:22 Overview of Modules 04:46 Bench Testing the Sample System 07:05 Outro
#3Dprinted #RadioControlled #BoatSubway PLAY Gaming Console #shortselectrosync2021-01-26 | I 3D printed a Subway gaming console: The Subway PLAY. Easy dubs and warm subs! Sure to give the KFConsole, McDonalds McRig and Burger King BK Box a run for their money!
Printed on Creality CR-10 and Ender 3 Pro 3D printers using 3D Fillies PLA+ with 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big parts and with 0.4 mm nozzle at 0.2 layer height (Ender 3) for the smaller parts.
Watch Next
3D Printed RC Utility Boat - Part 1 - Hull and Drive System youtu.be/0KblE-0bh7o
#shortsBurger King BK Box Gaming Console #shortselectrosync2021-01-14 | I 3D printed a Burger King gaming console: The BK Box. It flame grills and thrills! Sure to give the KFConsole and McDonalds McRig a run for it's money!
Printed on Creality CR-10 and Ender 3 Pro 3D printers using 3D Fillies PLA+ with 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big parts and with 0.4 mm nozzle at 0.2 layer height (Ender 3) for the smaller parts.
Watch Next
3D Printed RC Utility Boat - Part 1 - Hull and Drive System youtu.be/0KblE-0bh7o
#shortsMcDonalds McRig Gaming Console #shortselectrosync2021-01-10 | I 3D printed a McDonald's gaming console based on MotionD's conceptual design named the 'McRig'. Sure to give the KFConsole a run for it's money!
Printed on Creality CR-10 and Ender 3 Pro 3D printers using 3D Fillies PLA+ with 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big parts and with 0.4 mm nozzle at 0.2 layer height (Ender 3) for the smaller parts.
Watch Next
3D Printed RC Utility Boat - Part 1 - Hull and Drive System youtu.be/0KblE-0bh7o
#shortsKFConsole - KFC Gaming Console #shortselectrosync2021-01-01 | We all want one, so I designed and 3D printed a KFConsole. Featuring a toasty chicken warming drawer and able to play great games like I Love You, Colonel Sanders! at an incredible 240 FPS!*
*May not actually warm chicken or play games.
Printed on Creality CR-10 and Ender 3 Pro 3D printers using 3D Fillies PLA+ with 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big parts and with 0.4 mm nozzle at 0.2 layer height (Ender 3) for the smaller parts.
Watch Next
3D Printed RC Utility Boat - Part 1 - Hull and Drive System youtu.be/0KblE-0bh7o
#shorts3D Printed RC Utility Boat - Hull and Drive System - Part 1electrosync2020-10-14 | I designed and 3D printed a big radio controlled boat. It's designed as a sort of utility airboat and will house water monitoring and other utility systems. In part one of this video series I build the basics of the boat and test it out on some open water.
Printed on Creality CR-10 and Ender 3 Pro 3D printers using 3D Fillies PLA+ and Aurarum Carbon PLA with 0.6 mm nozzle at 0.36 mm layer height (CR-10) for the big parts and with 0.4 mm nozzle at 0.2 layer height (Ender 3) for the smaller parts. Parts design and modification was done by me in DesignSpark Mechanical. Shot on Canon EOS M50, 360 video footage shot on Insta360 One R and DJI Mavic Mini for the aerial shots.
#3Dprinted #RadioControlled #BoatSwooping Aussie Magpie vs 3D Printed Defenses - V1.0electrosync2020-09-20 | There’s nothing more Aussie than a swooping magpie in spring! They’re a common bird around Australia and the bane of cyclists and walkers for a few weeks of the year when they attack. I thought I’d try and 3D print some defence mechanisms and see if they actually work to reduce or stop the birds swooping.
Printed on Creality CR-10 and Ender 3 Pro 3D printers using 3D Fillies PLA+ at 0.36 layer height (CR-10) for the big parts and 0.2 layer height (Ender 3) for the smaller parts. Parts design and modification was done in DesignSpark Mechanical. 360 video footage shot on Insta360 One R
0:00 Intro 0:28 Australian Magpie 1:00 Test Set-up 1:29 Control 2:09 PLAstick 2:47 Pie Eyes 3:28 Cable Pies 4:03 Madpie-3000 4:59 Statistyncs 5:32 Outro