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ACS773LCB-100B-PFF-T
+StücklisteSENSOR CURRENT HALL 100A 5-CB
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HerstellerAllegro MicroSystems
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Herstellerteil #ACS773LCB-100B-PFF-T
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Auf Lager5157
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Spezifikationen
| Attribut | Wert |
| Part Status | Active |
| For Measuring | AC/DC |
| Sensor Type | Hall Effect |
| Current - Sensing | 100A |
| Number of Channels | 1 |
| Output | Ratiometric, Voltage |
| Sensitivity | 13.2mV/A |
| Frequency | DC ~ 200kHz |
| Linearity | ±0.9% |
| Voltage - Supply | 3V ~ 3.6V |
| Response Time | 2.5µs |
| Current - Supply (Max) | 15mA |
| Operating Temperature | -40°C ~ 150°C |
| Polarization | Bidirectional |
| Mounting Type | Through Hole |
| Package / Case | 5-CB Formed Leads, PFF |
| Supplier Device Package | 5-CB Module |
| Base Product Number | ACS773 |
| Grade | Automotive |
| Qualification | AEC-Q100 |
Übersicht
Description
Key features of the ACS773LCB-100B-PFF-T include high bandwidth, low noise, and a fast response time, making it suitable for dynamic current sensing applications. It operates over a wide temperature range, enhancing its reliability in various environmental conditions. The device is housed in a compact, surface-mount package, which facilitates easy integration into circuit designs. The sensor's output is typically ratiometric to the supply voltage, enabling simple interfacing with microcontrollers and other analog components.
Overall, the ACS773LCB-100B-PFF-T offers an efficient solution for precise current measurement in applications such as motor control, power inverters, and battery management systems.
Equivalent
1. Melexis MLX91205 - A programmable Hall-effect current sensor.
2. Infineon TLI4970 - A high-precision current sensor with digital output.
3. LEM LF xx05 Series - Closed-loop Hall-effect current transducers.
4. Honeywell CSNX25 Series - Contactless current sensors for similar applications.
Ensure to verify specifications and compatibility before substituting to match application needs.
Features
1. Current Sensing: It can measure current up to ±100A while providing a high degree of precision.
2. Isolation: Offers galvanic isolation, making it safe for high-voltage applications.
3. Output: Provides a linear analog voltage output that is proportional to the sensed current.
4. Low Resistance: Features a low internal resistance for minimal power loss and self-heating.
5. Response Time: Has a fast response time, making it suitable for dynamic load conditions.
6. Overcurrent Capability: Can handle overcurrent conditions without damage, ensuring robust operation.
7. Temperature Range: Operates effectively across a wide temperature range, typically from -40°C to 125°C.
8. Package: Comes in a compact surface-mount package, facilitating easy integration into circuit designs.
These features make the ACS773LCB-100B-PFF-T suitable for a variety of applications, including motor control, power inverters, and battery monitoring systems.
Pinout
1. VCC: Power supply input.
2. GND: Ground reference for the IC.
3. VIOUT: Analog output voltage proportional to the input current.
4. FILTER: Allows adjustment of the bandwidth and response time through an external capacitor.
5. Additional pins may be used for enhanced functionality or be connected internally.
This device is designed to measure current up to 100 A with high accuracy and reliability. The Hall-effect design allows for galvanic isolation between the primary current path and the IC's signal and power circuitry. It is suitable for applications requiring precise current measurement with minimal power loss and thermal management challenges.
Manufacturer
Application
1. Industrial Automation: Monitoring and controlling motor currents to ensure efficient operation.
2. Renewable Energy Systems: Measuring current in solar inverters and wind turbines for performance optimization.
3. Power Supply Systems: Current sensing in power converters and battery management systems for improved safety and efficiency.
4. Automotive: Used in electric and hybrid vehicle power systems for battery management and motor control.
5. Consumer Electronics: Protecting and managing power in devices with high-current demands.
These applications benefit from its high accuracy, isolation, and linearity.