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PWM to 0-10V Voltage Converter Module | Digital to Analog for PLC & MCU

PWM to 0-10V Voltage Converter Module | Digital to Analog for PLC & MCU

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Regular price HK$25.00
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Short Product Description

Seamlessly bridge the gap between your digital controllers and analog hardware. This PWM to 0-10V Voltage Converter Module instantly translates 0%-100% PWM digital signals into precise 0-10V analog outputs. Compact, easy to calibrate, and highly reliable, it is the perfect signal switching solution for PLCs, MCUs, and custom industrial control boards.

Key Features

  • Universal Signal Conversion: Converts 0%-100% PWM digital signals to 0-10V analog voltage, enabling seamless communication between different hardware standards.
  • Selectable Input Ranges: Features a short-circuit jumper to easily switch between 5V (for standard MCUs) and 24V (for PLCs) peak input levels.
  • Onboard Potentiometer Tuning: Allows for precise calibration and manual fine-tuning, ensuring your output voltage is perfectly synced with your frequency.
  • MCU Embedded Architecture: Guarantees stable, low-latency signal processing for time-sensitive control applications.
  • Ultra-Compact Footprint: Saves valuable space on DIN rails or custom PCB enclosures, making installation incredibly straightforward.

Full Product Description

Bridge Digital and Analog Systems with Ease

Integrating modern microcontrollers with legacy industrial equipment can be a frustrating bottleneck. The LC-LM358-PWM2V Module solves this by providing a direct, reliable bridge. By converting digital PWM signals into smooth, readable 0-10V analog voltage, you can effortlessly control inverters, motors, and lighting systems without rewriting complex logic.

 

Precision Control at Your Fingertips

Accuracy matters in industrial automation and DIY electronics. This module features a built-in calibration potentiometer, allowing you to fine-tune the output voltage to match your exact duty cycle requirements. Whether you are running a 5V MCU setup or a 24V industrial PLC, the onboard short-circuit jumper lets you select the perfect input level range instantly.

 

Compact, MCU-Embedded Reliability

Space is often limited in control panels and custom project enclosures. Engineered with MCU embedded technology, this module delivers high-performance conversion in a highly compact footprint. It is built for sustained operation, ensuring a stable signal translation that keeps your hardware running smoothly and safely.

Technical Specifications

  • Model: LC-LM358-PWM2V
  • Working Voltage: DC 12V – 30V (> 100mA)
  • PWM Receiver Frequency: 1 kHz – 3 kHz
  • Input Level (5V Jumper): 4.5V to 10V peak (for 5V MCUs)
  • Input Level (24V Jumper): 12V to 24V peak (for PLCs)
  • Conversion Range: 0% – 100% PWM to 0–10V analog output
  • Allowable Error Margin: ~±5%

Delivery Options

  • Local delivery within Hong Kong and in-store pickup.​
  • Free shipping for orders of HK$400 or above; HK$35 shipping fee for orders below HK$400.​
  • Shipped by SF Express, usually dispatched the same day for orders confirmed before 6:00 PM (Mon–Sat).​
  • Estimated delivery time: 1–3 business days after dispatch (Hong Kong).​
  • In-store pickup details (location and time) will be confirmed by email or phone message.​
  • Delivery times are estimates and may be affected by weather or unforeseen circumstances.​

FAQ Section

Q. How do I calibrate this module for the first time?
A. Power the module on and input a 50% duty cycle signal to the PWM/GND pins (ensure the frequency is between 1KHz and 3KHz). Use a multimeter to measure the VOUT and GND pins. Adjust the onboard potentiometer until the multimeter displays exactly 5.00V.

Q. Can I use this with an Arduino or Raspberry Pi?
A. Yes. Simply set the short-circuit jumper to the "5V" position. Your 5V microcontrollers will easily trigger the module to output the required 0-10V analog signal.

Q. What happens if the input frequency changes during operation?
A. The module is optimized for a 1KHz to 3KHz range. If your frequency drastically shifts outside of your initial calibration point, the output mapping may be slightly offset and require a quick re-calibration via the potentiometer for optimal accuracy.

Target Users / Applications

  • Industrial automation engineers configuring PLC networks.
  • STEM students and educators working on advanced robotics or IoT projects.
  • DIY electronics hobbyists integrating Arduino/Raspberry Pi with analog motors or dimmers.
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