Manufacturer Part Number
ACS772KCB-150B-PFF-T
Manufacturer
allegro-microsystems
Introduction
The ACS772KCB-150B-PFF-T is a high-precision, low-noise current sensor IC that uses the Hall effect to provide an analog voltage output proportional to the AC or DC current flowing through a conductor. It offers excellent linearity, accuracy, and fast response time, making it suitable for a wide range of current sensing applications.
Product Features and Performance
Measures AC/DC current up to 150A
Hall effect-based sensor with ratiometric voltage output
Sensitivity of 13.33mV/A
Frequency response up to 200kHz
Linearity of ±0.9%
Fast response time of 2.5μs
Low current consumption of 15mA maximum
Product Advantages
Excellent linearity and accuracy
Wide frequency bandwidth
Compact through-hole package
Bidirectional current sensing
Suitable for automotive and industrial applications
Key Reasons to Choose This Product
Highly accurate and reliable current sensing
Fast response for dynamic current monitoring
Low power consumption for energy-efficient designs
Robust construction for demanding environments
Ease of integration with microcontrollers and other systems
Quality and Safety Features
Automotive-grade qualification (AEC-Q100)
Designed for safe and reliable operation
Compatibility
The ACS772KCB-150B-PFF-T is compatible with a variety of systems and applications that require high-precision current sensing, such as motor control, battery management, and power electronics.
Application Areas
Electric vehicles and hybrid electric vehicles
Industrial automation and control systems
Power supplies and power conversion equipment
Renewable energy systems
Medical equipment
Product Lifecycle
The ACS772KCB-150B-PFF-T is an active product, and there are no known plans for discontinuation. Allegro Microsystems offers several equivalent or alternative models with different current ranges, package options, and features to meet the specific needs of customers. If you require more information or assistance, please contact our website's sales team.