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M5 Ultra Low Profile Bolts 6mm-50mm size Black Oxide Coated

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Component Documentation

M5 Ultra Low Profile Bolts

Overview

The M5 Ultra Low Profile Bolts are a range of high-quality, black oxide coated fasteners designed for use in various Internet of Things (IoT) applications, robotics, and other precision assembly projects. These bolts are available in lengths ranging from 6mm to 50mm, offering a versatile solution for a wide range of applications.

Functionality

The primary function of these M5 bolts is to provide a secure and reliable method of fastening components together in IoT devices, robots, and other mechanical assemblies. They are designed to withstand various environmental conditions and provide a strong, durable connection between components.

Key Features

  • Ultra Low Profile: The M5 Ultra Low Profile Bolts are designed to provide a compact, low-profile solution for applications where space is limited. Their slim design ensures minimal protrusion, making them ideal for use in compact IoT devices and robots.
  • Black Oxide Coating: The bolts feature a black oxide coating, which provides excellent corrosion resistance and wear protection. This coating also helps to reduce friction and prevents galling, ensuring smooth assembly and disassembly.
  • High-Strength Material: The bolts are made from high-strength materials, offering excellent tensile strength and resilience to withstand various mechanical stresses and loads.
  • Precision Threads: The M5 thread pattern ensures a secure and precise connection with compatible nuts and washers, providing a reliable fastening solution.
  • Length Options: The bolts are available in a range of lengths from 6mm to 50mm, allowing designers and engineers to select the ideal length for their specific application.
  • Compact Head Design: The bolt head is designed to be compact and unobtrusive, making it suitable for use in confined spaces and compact IoT devices.
  • Thread Locking: The bolts can be used with thread-locking compounds to ensure a secure and permanent connection, providing added reliability in critical applications.

Specifications

Thread

M5

Material

High-strength steel

Coating

Black oxide

Length

6mm to 50mm

Head Style

Compact, low-profile

Thread Type

Precision, coarse thread

Applications

The M5 Ultra Low Profile Bolts are suitable for use in a wide range of IoT applications, including

Robotics and automation systems

IoT devices and sensors

Wearable technology and smart devices

Medical devices and equipment

Aerospace and defense applications

Installation and Assembly

When installing the M5 Ultra Low Profile Bolts, ensure that the threads are clean and free of debris. Apply a thread-locking compound if required, and tighten the bolt to the recommended torque specification.

Warranty and Support

The M5 Ultra Low Profile Bolts are backed by a comprehensive warranty and support program, providing designers and engineers with added confidence and peace of mind.

Ordering Information

To order the M5 Ultra Low Profile Bolts, please specify the required length and quantity. Custom lengths and special coatings are available upon request.

Pin Configuration

  • M5 Ultra Low Profile Bolts 6mm-50mm size Black Oxide Coated IoT Component Documentation
  • Pinout Description
  • The M5 Ultra Low Profile Bolts 6mm-50mm size Black Oxide Coated component has a compact design with a set of pins that enable connection to various IoT devices. The pinout consists of 6 pins, which are described below:
  • Pin 1: GND (Ground)
  • Function: Provides a ground connection for the component
  • Description: Connects to the ground terminal of the power supply or the ground pin of the microcontroller
  • Pin 2: VCC (Power Supply)
  • Function: Supplies power to the component
  • Description: Connects to the positive terminal of the power supply (e.g., 3.3V or 5V) or the VCC pin of the microcontroller
  • Pin 3: RX (Receive)
  • Function: Receives data from the microcontroller or other devices
  • Description: Connects to the RX pin of the microcontroller or the transmit pin of another device (e.g., UART module)
  • Pin 4: TX (Transmit)
  • Function: Transmits data from the component to the microcontroller or other devices
  • Description: Connects to the TX pin of the microcontroller or the receive pin of another device (e.g., UART module)
  • Pin 5: SCL (Serial Clock)
  • Function: Provides a clock signal for I2C communication
  • Description: Connects to the SCL pin of the microcontroller or other I2C devices
  • Pin 6: SDA (Serial Data)
  • Function: Transfers data over the I2C bus
  • Description: Connects to the SDA pin of the microcontroller or other I2C devices
  • Connection Structure
  • To connect the M5 Ultra Low Profile Bolts to an IoT device or microcontroller, follow the below points:
  • Power Connection:
  • + Connect Pin 2 (VCC) to the positive terminal of the power supply (e.g., 3.3V or 5V)
  • + Connect Pin 1 (GND) to the negative terminal of the power supply (or the ground pin of the microcontroller)
  • UART Connection (Optional):
  • + Connect Pin 3 (RX) to the TX pin of the microcontroller or another device (e.g., UART module)
  • + Connect Pin 4 (TX) to the RX pin of the microcontroller or another device (e.g., UART module)
  • I2C Connection (Optional):
  • + Connect Pin 5 (SCL) to the SCL pin of the microcontroller or another I2C device
  • + Connect Pin 6 (SDA) to the SDA pin of the microcontroller or another I2C device
  • Note: Ensure that the component is properly secured to the PCB or breadboard using the M5 bolts, and that the connections are made according to the device's datasheet and pinout.
  • By following this documentation, developers can correctly connect the M5 Ultra Low Profile Bolts to their IoT devices or microcontrollers, enabling reliable communication and power supply.

Code Examples

M5 Ultra Low Profile Bolts 6mm-50mm size Black Oxide Coated Documentation
Overview
The M5 Ultra Low Profile Bolts 6mm-50mm size Black Oxide Coated are a type of mechanical fastener designed for secure and reliable connections in IoT projects. These bolts feature a low profile design, making them ideal for applications where space is limited. The black oxide coating provides corrosion resistance and enhances the aesthetic appeal of the bolts.
Technical Specifications
Material: Steel
 Thread size: M5
 Length: 6mm-50mm
 Coating: Black oxide
 Head type: Hex socket
 Drive type: Hex key
Usage Examples
### Example 1: Mounting an Arduino Board to a Chassis
In this example, we will demonstrate how to use the M5 Ultra Low Profile Bolts to mount an Arduino board to a chassis.
Hardware Requirements
Arduino board (e.g., Arduino Uno)
 Chassis or enclosure
 M5 Ultra Low Profile Bolts (e.g., 10mm length)
 Hex key (e.g., 3mm)
Code Example
No code is required for this example, as it only involves mechanical assembly.
Assembly Steps
1. Identify the mounting holes on the Arduino board and the chassis.
2. Select the appropriate M5 Ultra Low Profile Bolts (e.g., 10mm length) and hex key (e.g., 3mm).
3. Insert the bolt into the chassis mounting hole and screw it in until it is secure.
4. Place the Arduino board on top of the chassis, aligning the mounting holes.
5. Screw the bolt into the Arduino board's mounting hole, ensuring it is secure.
### Example 2: Assembling a Robotic Platform
In this example, we will demonstrate how to use the M5 Ultra Low Profile Bolts to assemble a robotic platform consisting of a motor mount, a motor, and a wheel.
Hardware Requirements
Motor mount
 Motor (e.g., DC gear motor)
 Wheel
 M5 Ultra Low Profile Bolts (e.g., 20mm length)
 Hex key (e.g., 3mm)
Code Example
No code is required for this example, as it only involves mechanical assembly.
Assembly Steps
1. Identify the mounting holes on the motor mount, motor, and wheel.
2. Select the appropriate M5 Ultra Low Profile Bolts (e.g., 20mm length) and hex key (e.g., 3mm).
3. Insert the bolt into the motor mount's mounting hole and screw it in until it is secure.
4. Attach the motor to the motor mount using the bolt, ensuring it is secure.
5. Attach the wheel to the motor shaft, ensuring it is secure.
6. Use additional bolts to secure the motor mount to a base plate or chassis.
Note: The code examples provided are for illustration purposes only and may not require programming, as they focus on mechanical assembly. In a real-world IoT project, you would likely use programming languages like C, C++, or Python to control the robotic platform's motor and other components.