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Acouto ZMPT101B Voltage Transformer Module with Active AC Output Sensor Board for 250V Measurements in Saudi Arabia Acouto ZMPT101B Voltage Transformer Module with Active AC Output Sensor Board for 250V Measurements in Saudi Arabia Acouto ZMPT101B Voltage Transformer Module with Active AC Output Sensor Board for 250V Measurements in Saudi Arabia Acouto ZMPT101B Voltage Transformer Module with Active AC Output Sensor Board for 250V Measurements in Saudi Arabia Acouto ZMPT101B Voltage Transformer Module with Active AC Output Sensor Board for 250V Measurements in Saudi Arabia Acouto ZMPT101B Voltage Transformer Module with Active AC Output Sensor Board for 250V Measurements in Saudi Arabia Acouto ZMPT101B Voltage Transformer Module with Active AC Output Sensor Board for 250V Measurements in Saudi Arabia Acouto ZMPT101B Voltage Transformer Module with Active AC Output Sensor Board for 250V Measurements in Saudi Arabia Acouto ZMPT101B Voltage Transformer Module with Active AC Output Sensor Board for 250V Measurements in Saudi Arabia

Acouto ZMPT101B Voltage Transformer Module with Active AC Output Sensor Board for 250V Measurements

SAR 33

Brand
Acouto
1 +

Special Features

  • Machined - The ZMPT101B voltage transformer module is engineered with a high- voltage transformer along with a reliable operational amplifier circuit, ensuring accurate readings of up to 250V AC power signals. With this module, you'll experience precise measurements which are crucial for reliable project outcomes, helping both hobbyists and professionals maintain accuracy in their electrical applications.
  • Dynamic Sampling - Thanks to its advanced miniature voltage transformer, this module excels at accurate sampling and compensation. This means disturbances in quality are minimized, and you can count on consistent results. Whether you are conducting experiments or developing new products, this feature enhances the reliability of your data collection.
  • Voltage Capabilities - Capable of measuring AC voltage levels up to 250V, this device gives you versatility in usage. You can easily adjust the output analog quantity, making it suitable for various applications, from simple voltage assessments to more complex engineering projects. This adaptability is particularly important for electronics enthusiasts and engineers alike.
  • Sine Accuracy - As a single-phase AC active output voltage sensor module, the ZMPT101B provides a precise sine output. This ensures that the resulting waveform has a mid-value, or DC component, calculated as /2 VCC, which is essential for maintaining performance standards. The clear sine allows for easy integration into various testing setups.
  • Robust Construction - With a design that prioritizes fine workmanship and Durability-Optimized, this voltage sensor module offers both durability and reliability. Its compact form factor makes it easy to handle and integrate into circuits, ensuring it can withstand the demands of both use and applications.

Description

1. Machined CONFIGURE: Equipped with ZMPT101B series Machined voltage transformer and Machined operational amplifier circuit, which can easily realize 250V AC power signal acquisition
2. ACCURATE SAMPLE AND PROPER COMPENSATE: Equipped with accurate miniature voltage transformer, the module has the ability to accurately sample and properly compensate the signal
3. MEASURE WITHIN 250V AC VOLTAGE: The module can measure AC voltage within 250V, which can be adjusted according to the output analog quantity
4. SINE WAVE OUTPUT: This is a ZMPT101B voltage transformer module single phase AC active output voltage sensor module. The output signal is a sine wave, and the mid value (DC component) of the waveform is 1/2 VCC
5. EXCELLENT PERFOFMANCE: Made with fine workmanship, possess compact appearance and Durability-Optimized, can make sure durability and stability

Specification:
Item Type: Voltage Transformer Module
Power Supply Voltage: 5~30V
Motherboard Size: Approx. 50 x 20mm / 1.97 x 0.79in

How to Use:
1. When L and N are connected to AC220V, VCC, GND input DC5V‑30V. Connect OUT and GND to an oscilloscope to get a sine wave.
2. Adjusting the potentiometer can change the amplitude of the output waveform (the middle value will not change during the adjustment process), and the waveform in the 0‑VCC range.
3. If waveform distortion occurs in the process of increasing the amplitude, can be solved by appropriately increasing the working voltage VCC. If you want to move the middle value of the waveform to 0 o'clock, you can connect a capacitor of about 105pF in series with OUT to filter out the DC component in the waveform.

PackageList:
1 x Voltage Transformer Module

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