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Fix the driver behind crashes, sound loss and screen glitchesFind Drivers →Clear out junk files and repair common Windows errorsFree Scan →Scan for outdated or missing drivers - takes under a minuteDriver Scan →Jeremy Fielding is a project-led engineering educator who uses machines and mechanisms to make mechanical engineering approachable. His official site says his goal is to draw people to the field through projects, inspire them with ideas, and teach them how to make things. YouTube is where most of his content appears. His work is united by a practical fascination with motion: things that fold, spin, drive, or cut.
How a family project led to engineering
Fielding told Make: in a March 9, 2021 profile that he began making things because he wanted to build a clubhouse for his children. At the time, he said, he had little equipment, no formal training, and no experience. He started with YouTube building videos, then turned to mechanical-design books and CAD as he learned to design and build.
That self-directed start eventually intersected with a professional opportunity. In a SOLIDWORKS interview, Fielding recalled that his YouTube channel began before he became a mechanical engineer. A mechanical engineer who knew him offered an internship after seeing the channel; Fielding said the company offered him a full-time role six months later. That is his retrospective account, not a current employment listing.
Why mechanisms are at the center of his work
In the Make: profile, Fielding described his interest in objects that move and said he especially enjoys mechanisms that fold, spin, drive, or cut. Examples named in the profile include wooden mechanical clocks, CNC machines, and a human-scale baseball-batting machine. Together, they show the breadth of his interest: from precise movement to machines built around a dramatic physical action.
#1 Best Overall
- 【Upgrade Electric DC Motor Basic Parameters】: 72V 5000W BLDC Brushless Motor,providing 8.5N.m of torque.Peak Torque:35N.m. rated speed 5000rpm, maximum speed 8000rmb(no-load speed), current 60A(Max80~100A), small size, aluminum body, all copper wire motor. The motor has a temperature sensing function,which can effectively control the motor overheating and prevent the motor damage. The motor kit is made of Class F insulation (155 °C) with an IP54 rating to prevent the entry of dust. Even if the motor is used in a muddy place, it can be used without worrying about the normal use of the motor and will not damage the motor.
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His stated ambition is educational as well as practical. “My ultimate goal is to inspire more people to take an interest in engineering,” he told Make:. The projects give viewers a tangible way into ideas that might otherwise feel abstract: how parts fit, how motion is transmitted, and how a mechanism can solve a real problem.
A workshop problem became a way to teach
In the SOLIDWORKS interview, Fielding recounted making a flip workbench to save space in his workshop. He shared a video about it, then continued publishing projects and ideas. The episode illustrates how a constraint familiar to builders—a workshop with limited room—can become both a design challenge and an explanation of engineering choices.
Rank #2
- Pay attention: Please read the instructions or pictures carefully, use the correct circuit diagram to avoid short circuit, short circuit will produce high temperature and Causing accessory damage
- Shaft Propeller Aperture:2mm/0.078"; Diameter:60mm/2.36"; Number of vane:4 vane and 3 vane;colour:Red & Blue & Yellow&Green&Clear(Random Color)
- DC Motors Color:Siler+Red;Voltage:DC 3V-12V;No-load speed: 9000RPM- 25000RPM ±10%; Motor Body Diameter:27mm/1.06";Shaft Size:10x2.0mm/0.39"x0.08"(L*D);Motor Body Length;38mm/1.46"
- High torque Strong magnetic Brushed Electric 130 MOTOR, can be used for Science Educational models, DIY STEM toys, etc.. It is recommended to use a 3V battery drive to avoid high-speed operation affecting the motor life.
- Package including:6pcs DC motor,6pcs 9V Battery Clip Connector,6pcs 2 x AA Battery Holder,6pcs motor mounting bracket,6pcs boat rocker switches,12pcs x electronic wire(25cm),8pcs Plastic wheels,4pcs 2*100mm shaft,4pcs 4 vanes propeller,2pcs 3 vanes propeller and 40cmΦ3 Heat shrink tube
A documented robot-design workflow
A SOLIDWORKS community post dated April 12, 2021 describes Fielding building an industrial-style robot from scratch. It says he used desktop SOLIDWORKS for many components and 3D Sculptor, also called xShape, for more organic forms. This is a snapshot of one documented project, not evidence of the software he uses today or a comparison of design tools.
The Make: profile also said Fielding was building a six-axis robot arm at the time of its 2021 interview and that it would not be 3D printed. That was a plan reported then; it does not establish the project’s present status.
Recommended Free Tools
Rank #3
- The EUDAX DIY Simple Electric Motor Model Assemble Kit, which fully demonstrates how the motor works, is designed for electronics enthusiasts, easy to assemble and disassemble, and is ideal for learning science projects and teaching.
- The working voltage of the motor model is 1.5v-6v.It is not recommended to use 12v voltage for testing.When the power is turned on, the motor model can be rotated like a real motor.
- When you are assembled, turn on the power(Do not include battery, you need to prepare 4 AA batteries), but the motor model does not work. You can check whether the copper brush is closely touched with the rotor , rotate the rotor to drive the motor model to work.
- Come with the English manual, detailed assembly process and precautions, if you encounter any problems during assembly and use, please contact us and we will solve it for you.
What aspiring makers can take from his learning path
Fielding’s account suggests a useful progression for someone starting with a build rather than a formal engineering background: identify a concrete need, study how others solve related problems, learn the mechanical principles, and use CAD to develop a design. His example is not a prescription that every project needs the same tools or sequence; it shows how a modest practical goal can prompt deeper learning.
- Start with a real constraint. Fielding’s initial goal was a clubhouse for his children; the later flip workbench addressed limited workshop space.
- Study mechanisms, not just finished objects. His interests—folding, spinning, driving, and cutting—point toward asking how a machine produces and controls movement.
- Use learning resources as tools. Fielding described learning from videos, mechanical-design books, and CAD. The sources do not identify a particular book or endorse a specific title.
- Explain the decisions. A project becomes more useful to others when it reveals the problem, the mechanism, and the reasoning behind the design—not only the finished machine.
What the profile does—and does not—establish
Make: described Fielding in 2021 as a North Alabama “Contraption Engineer,” designing and often building machines and widgets for clients or businesses, with work ranging from science-experiment machines to military projects. That is the publication’s dated description, not verification of his current location or employment. The available accounts establish his educational mission and several examples of his project work, but do not establish his current project list, publishing cadence, or software use.
Quick Recap
Best Value
- Principle: The simple motor model assembly kit fully demonstrates the working principle of the motor.
- Easy to use: Easy to assemble and disassemble, very suitable for school science projects or teaching.
- Working voltage: The working voltage of the motor model is 3v-6v. The demonstration motor equipped with a power cord will rotate like a real motor after it is connected to the 3-6V power supply.
- Widely used: Suitable for electronics enthusiasts and DIY beginners to learn, simple design is easy to use.
- Test: After assembling the kit, there is no problem with the test power supply, but it still does not work, then please check the armature coil and brushes. If they are in poor contact, please adjust them to be in close contact (turn the rotor bracket to make the gap between the two brushes) Located in the middle).
Rank #4
- Product Description: Our product includes all the accessories on the main picture (about 465pcs), you can refer to our colorful instructions to assemble, at least 16 projects can be assembled, you can also free to create, and share good ideas to other children!
- Benefits of DIY Handicrafts: Keep your children away from electronic products, Improve hands-on ability; Cultivate patience and perseverance; Improve creativity and imagination; Enhance self-confidence; Improve the ability of your children to learn and develop their own skills. They will be very happy when they see the project they assembled move successfully.
- DIY STEM SCIENCE EXPERIMENTATION KIT: This is a very popular electronic science experiment kit that can be a great way to inspire and motivate kids to learn science. We offer a very wide range of accessories for kids to turn new ideas and inventions into reality, and it is also perfect for children's school science, STEM engineering programs.
- PERFECT GIFT: This electric motor kit is suitable for curious kids, which can develop their imagination and creativity as well as exercise their hands-on skills. Cultivate your child's practical ability, so that knowledge is no longer theoretical knowledge
- Pay attention:Suggest to read the instruction manual in detail for assembly,Please control the usage time, use time should not exceed 5 minutes each time, to avoid short circuits. When your project is completed or unattended, it is recommended that you turn off the switch, remove the battery, and store it properly.Tools for super glue or hot melt adhesive for bonding are not included in the kits. Be careful of scald caused by short circuits. The kids must use it under the supervision of adults
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