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The Studica T-Slot 3030 V-Rail is available in 10 different lengths from 48mm to 1000mm. It is strong while light weight. It can be easily cut to your own custom size. It has a 14mm through hole that will fit the Studica 6mmID x 14mmOD Flanged Bearing or Bronze Bushing. It uses the M3 T-Slot Nut Hammer Head Series 20. It also has four M3 threaded holes on each end. Use it as structure on infinite applications.
Specifcations,
Standoffs can be used to space parallel plates, channel, brackets, etc.
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Standoffs can be used to space parallel plates, channel, brackets, etc.
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The Studica Square Beam is 8mm by 8mm. As with the other Studica Robotics building components, it has the common hole pattern which makes it easy to connect to other structure with very little or no additional machining required. You can easily connect to other channel, extrusions, bushings, bearing, mounting brackets and more so you can quickly assemble and disassemble robots and automated systems.
Specifications:
The Studica Square Beam is 8mm by 8mm. As with the other Studica Robotics building components, it has the common hole pattern which makes it easy to connect to other structure with very little or no additional machining required. You can easily connect to other channel, extrusions, bushings, bearing, mounting brackets and more so you can quickly assemble and disassemble robots and automated systems.
Specifications:
The Studica Square Beam is 8mm by 8mm. As with the other Studica Robotics building components, it has the common hole pattern which makes it easy to connect to other structure with very little or no additional machining required. You can easily connect to other channel, extrusions, bushings, bearing, mounting brackets and more so you can quickly assemble and disassemble robots and automated systems.
Specifications:
The Studica Square Beam is 8mm by 8mm. As with the other Studica Robotics building components, it has the common hole pattern which makes it easy to connect to other structure with very little or no additional machining required. You can easily connect to other channel, extrusions, bushings, bearing, mounting brackets and more so you can quickly assemble and disassemble robots and automated systems.
Specifications:
The Studica Square Beam is 8mm by 8mm. As with the other Studica Robotics building components, it has the common hole pattern which makes it easy to connect to other structure with very little or no additional machining required. You can easily connect to other channel, extrusions, bushings, bearing, mounting brackets and more so you can quickly assemble and disassemble robots and automated systems.
Specifications:
The Studica Square Beam is 8mm by 8mm. As with the other Studica Robotics building components, it has the common hole pattern which makes it easy to connect to other structure with very little or no additional machining required. You can easily connect to other channel, extrusions, bushings, bearing, mounting brackets and more so you can quickly assemble and disassemble robots and automated systems.
Specifications:
The Studica Square Beam is 8mm by 8mm. As with the other Studica Robotics building components, it has the common hole pattern which makes it easy to connect to other structure with very little or no additional machining required. You can easily connect to other channel, extrusions, bushings, bearing, mounting brackets and more so you can quickly assemble and disassemble robots and automated systems.
Specifications:
The Servo Mount Offset Plate is one option to mount the Multi-Mode Smart Servo (75002) to the Studica building structure.
The Servo Mount Flat Plate is one option to mount the Multi-Mode Smart Servo (75002) to the Studica building structure.
The Servo Standard Front Mounting Bracket is one option to mount the Multi-Mode Smart Servo (75002) to the Studica building structure.
The Motor Mount Plate is used with the Maverick 12V DC Gear Motor (Part# 75001) to attach it inside the anyone of the U Channels 76010 to 76018. This is an example of a chassis with 4 motors mounted inside the U-Channel using a Motor Mounting Plate.
The Studica Robot Base Plate (288mm x 336mm x 3mm) is 3mm thick and as with the other Studica Robotics building components, it has the common hole pattern which makes it easy to connect to other structure with very little or no additional machining required. You can easily connect to other channel, extrusions, bushings, bearing, mounting brackets and more so you can quickly assemble and disassemble robots and automated systems.
Specifications:
The Studica VMX FRC Training Bot (FRC Trainer) is a smaller, sturdy, lightweight, and less expensive robot than your typical FRC robot. If you have a large FRC team, often only a handful of students get to learn how to create and program your team’s costly competition robot. The FRC Trainer solves this problem and is ideal for groups of two to three to participate in hands-on learning in a classroom environment. Schools can equip their labs with multiple FRC Trainers, benefiting from the great value and compact size. Students can even take it home with them!
This affordable solution is intended for:
The FRC-compatible Trainer is an intelligent and autonomous robot that uses the VMX Advanced Robotics Controller which can be programmed in C++ and Java. VMX’s multitude of modern digital communications interfaces and Linux-based operating system allow users to directly access most modern devices (e.g., Intel RealSense tracking and depth cameras and LIDAR).
VMI-Pi Key Use Case Document is available here
* For Hex Shaft, please comment 74000H
The Mobile Robotics VMX/Titan Workshop Kit is used in the classroom for teaching, testing and doing research in Autonomous Mobile Robotics. It also includes each of the essential components referenced in the WorldSkills Mobile Robotics training material.
* For Hex Shaft, please comment 70203H
These round groove pulleys are also referred to as U groove pulleys. They are made of 6061-T6 Aluminum with a D Shaft hole through of 6mm, and 2 set screws for ultimate strength. Use it with the 5mm Round Belt and for gearing up or down combine them with the other round groove pulleys that range from 10mm to 60mm.
Specifications:
These round groove pulleys are also referred to as U groove pulleys. They are made of 6061-T6 Aluminum with a D Shaft hole through of 6mm, and 2 set screws for ultimate strength. Use it with the 5mm Round Belt and for gearing up or down combine them with the other round groove pulleys that range from 10mm to 60mm.
Specifications:
These round groove pulleys are also referred to as U groove pulleys. They are made of 6061-T6 Aluminum with a D Shaft hole through of 6mm, and 2 set screws for ultimate strength. Use it with the 5mm Round Belt and for gearing up or down combine them with the other round groove pulleys that range from 10mm to 60mm.
Specifications:
These round groove pulleys are also referred to as U groove pulleys. They are made of 6061-T6 Aluminum with a D Shaft hole through of 6mm, and 2 set screws for ultimate strength. Use it with the 5mm Round Belt and for gearing up or down combine them with the other round groove pulleys that range from 10mm to 60mm.
Specifications:
These round groove pulleys are also referred to as U groove pulleys. They are made of 6061-T6 Aluminum with a D Shaft hole through of 6mm, and 2 set screws for ultimate strength. Use it with the 5mm Round Belt and for gearing up or down combine them with the other round groove pulleys that range from 10mm to 60mm.
Specifications: