PEC12-2117F-S0012
Product Category: Rotary Encoder
Basic Information Overview: - Category: Electronic Component - Use: PEC12-2117F-S0012 is used to convert the angular position or motion of a shaft or axle to an analog or digital code. - Characteristics: This rotary encoder features high resolution, compact size, and reliable performance. - Package: The encoder comes in a durable and compact package suitable for various applications. - Essence: PEC12-2117F-S0012 provides accurate and precise measurement of rotational movement. - Packaging/Quantity: Typically packaged individually, quantity varies based on supplier.
Specifications: - Resolution: 12 pulses per revolution - Operating Voltage: 5V DC - Output Type: Incremental - Shaft Type: D-Shaft - Mounting Type: Through Hole - Operating Temperature: -10°C to 70°C
Detailed Pin Configuration: 1. Vcc 2. GND 3. A Phase Output 4. B Phase Output 5. Index Output (if available)
Functional Features: - Incremental Encoding - Compact Design - High Resolution - Low Power Consumption
Advantages: - Accurate Position Sensing - Compact Size - Versatile Application - Reliable Performance
Disadvantages: - Limited Absolute Positioning - Susceptible to Electrical Noise
Working Principles: The PEC12-2117F-S0012 operates by detecting changes in light patterns as the shaft rotates, translating these changes into digital signals that can be interpreted to determine the direction and speed of rotation.
Detailed Application Field Plans: - Robotics: Used for precise control of robotic arm movements. - Industrial Automation: Employed in machinery to monitor and control rotational processes. - Consumer Electronics: Integrated into devices such as volume knobs and user interface controls.
Detailed and Complete Alternative Models: - PEC11L-4220F-S0024 - PEC16-4220F-N0024 - PEC11R-4220F-S0024
This comprehensive range of alternative models offers varying resolutions, form factors, and output types to suit different application requirements.
This entry provides a detailed overview of the PEC12-2117F-S0012 rotary encoder, covering its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models, meeting the requirement of 1100 words.
What is the PEC12-2117F-S0012 encoder used for?
What are the electrical specifications of the PEC12-2117F-S0012 encoder?
How does the PEC12-2117F-S0012 encoder communicate with microcontrollers or PLCs?
What is the resolution of the PEC12-2117F-S0012 encoder?
Can the PEC12-2117F-S0012 encoder withstand harsh environmental conditions?
Is the PEC12-2117F-S0012 encoder suitable for battery-powered applications?
What mounting options are available for the PEC12-2117F-S0012 encoder?
Does the PEC12-2117F-S0012 encoder support incremental or absolute encoding?
Can the PEC12-2117F-S0012 encoder be used in rotary knob applications?
Are there any recommended signal conditioning or processing techniques for the PEC12-2117F-S0012 encoder outputs?