The 7Semi INA240 Breakout Board features Texas Instruments' INA240 current-sense amplifier, offering a 50 V/V gain for precise bidirectional current measurement across a wide common-mode voltage range of -4V to 80V. It provides enhanced PWM rejection, ensuring accurate readings in noisy environments, and is suitable for applications like motor drives and power management systems.
Key Advantages:
- Wide Voltage Range (-4V to 80V): Seamlessly measure current across a broad common mode voltage range, even in applications operating below ground.
- Enhanced PWM Rejection: Maintain precision even in the presence of large common mode transients, ensuring accurate measurements in systems with PWM signals.
- High-Precision Voltage Output: The INA240A2 onboard provides a proportional voltage output for effortless integration with your existing setup.
- Compact & Convenient: The compact breakout board design simplifies integration into your projects while offering easy access to essential pins and connections.
- Diverse Applications: Ideal for motor drives, solenoid control, battery management, power monitoring, and a wide range of other applications.
Unleash the Potential of Your Projects:
The 7Semi INA240 breakout board sets a new benchmark for precision current sensing. Its combination of wide voltage range, superior PWM rejection, and high-precision output make it an indispensable asset for engineers and hobbyists alike. Whether you are designing cutting-edge motor drives or monitoring power consumption, the INA240 delivers the accuracy and reliability you demand.
Why Choose the 7Semi INA240 Breakout Board?
- Uncompromising Accuracy: Experience unparalleled precision in your current sensing applications.
- Adaptability: Tackle a diverse range of projects with confidence, thanks to the board's wide voltage range and PWM rejection capabilities.
- Ease of Integration: The compact design and accessible connections streamline the integration process.
- Reliability: Trust in the robustness and performance of the INA240, ensuring consistent and accurate results.