The AH276K-PL is a high-performance Hall Effect sensor IC designed by Diodes Incorporated, a leading global manufacturer and supplier of high-quality application-specific standard products within the broad discrete, logic, analog, and mixed-signal semiconductor markets. This sensor is tailored to meet the stringent requirements of precision and durability for a variety of industrial and consumer applications.
Key Features
- High Sensitivity: The AH276K-PL is equipped with a sensitive Hall Effect plate that allows for the detection of magnetic fields with high accuracy.
- Reverse Voltage Protection: This product is designed to withstand reverse voltage conditions, ensuring robust performance and longevity.
- Chopper Stabilized: The inclusion of a chopper stabilization feature helps in reducing the sensor's offset, enhancing its stability and accuracy over a wide range of operating conditions.
- Wide Operating Voltage Range: The AH276K-PL operates over a broad voltage range, making it versatile for use in various circuit configurations.
- Output Overvoltage Protection: The sensor includes protection against output voltage spikes, safeguarding the IC during unexpected voltage surges.
Applications
The AH276K-PL is ideally suited for a variety of applications where precision magnetic field detection is critical. These include:
- Position and proximity sensing
- Brushless DC motor control systems
- Speed detection and RPM (revolutions per minute) measurement
- Flow meters
- Linear and angular encoders
Technical Specifications
| Parameter |
Specification |
| Supply Voltage |
3.5V to 20V |
| Output Current |
25mA (max) |
| Operating Temperature |
-40°C to 85°C |
| Sensitivity |
High |
| Package Type |
SIP-3L |
With its robust design and high sensitivity, the AH276K-PL from Diodes Incorporated stands as a reliable choice for designers looking to integrate a Hall Effect sensor into their systems. Its wide range of features ensures performance stability and adaptability to various applications, making it a versatile component in the field of magnetic sensing technology.