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ALLEGRO ASEK770ECB-200B-T-DK product image
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ALLEGRO ASEK770ECB-200B-T-DKRoHS

Manufacturer
MPN
ASEK770ECB-200B-T-DK
LCSC Part #
C17232293
Packaging
-
Customer #
Key Attributes
Sensor Evaluation Boards RoHS
Datasheetpdf iconALLEGRO ASEK770ECB-200B-T-DK
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1+$ 95.4198$ 95.42
200+$ 38.0744$ 7614.88
500+$ 36.802$ 18401.00
1,000+$ 36.1734$ 36173.40
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Products Specifications

All
TypeDescription
CategoryDevelopment Boards, Kits, Programmers/Evaluation Boards/Sensor Evaluation Boards
ManufacturerALLEGRO
Packaging-
FeaturesTemperature compensation;Digital filtering/signal processing

Introduction

AI Translation

The Allegro ACS770 family of current sensor ICs provides economical and precise solutions for AC or DC current sensing. Typical applications include motor control, load detection and management, power supply and DC- to- DC converter control, inverter control, and overcurrent fault detection. The device consists of a precision, low- offset linear Hall circuit with a copper conduction path located near the die. Applied current flowing through this copper conduction path generates a magnetic field that is concentrated by a low magnetic hysteresis core, then converted by the Hall IC into a proportional voltage. Device accuracy is optimized through the close proximity of the magnetic signal to the Hall transducer. A precise, proportional output voltage is provided by the low- offset, chopper- stabilized BiCMOS Hall IC, which is programmed for accuracy at the factory. Proprietary digital temperature compensation technology greatly improves the IC accuracy and temperature stability without influencing the high- bandwidth operation of the analog output. High- level immunity to current conductor dV/dt and stray electric fields is offered by Allegro proprietary integrated shield technology for low output voltage ripple and low offset drift in high- side, high- voltage applications. The output of the device has a positive slope (>VCC / 2 for bidirectional devices) when an increasing current flows through the primary copper conduction path (from terminal 4 to terminal 5), which is the path used for current sampling. The internal resistance of this conductive path is 100μΩ typical, providing low power loss. The thickness of the copper conductor allows survival of the device at high overcurrent conditions. The terminals of the conductive path are electrically isolated from the signal leads (pins 1 through 3). This allows the ACS770 family of sensor ICs to be used in applications requiring electrical isolation without the use of opto- isolators or other costly isolation techniques. The device is fully calibrated prior to shipment from the factory. The ACS770 family is lead (Pb) free. All leads are plated with 100% matte tin, and there is no Pb inside the package. The heavy gauge leadframe is made of oxygen- free copper.

Features

AI Translation
  • Industry-leading total output accuracy achieved with new piecewise linear digital temperature compensation of offset and sensitivity
  • Industry-leading noise performance through proprietary amplifier and filter design techniques
  • 120kHz typical bandwidth
  • 4.1μs output rise time in response to step input current
  • Integrated shield greatly reduces capacitive coupling from current conductor to die due to high dV/dt signals, and prevents offset drift in high-side, high-voltage applications
  • Greatly improved total output error through digitally programmed and compensated gain and offset over the full operating temperature range
  • Small package size, with easy mounting capability
  • Monolithic Hall IC for high reliability
  • Ultralow power loss: 100μΩ internal conductor resistance
  • Galvanic isolation allows use in economical, high-side current sensing in high-voltage systems
  • 4.5 to 5.5V, single supply operation
  • Output voltage proportional to AC or DC currents
  • Factory-trimmed for accuracy
  • Extremely stable output offset voltage
  • Undervoltage lockout for VCC below specification
  • AEC-Q100 automotive qualified
  • UL certified, File No. US-29755-UL

Applications

AI Translation
  • motor control
  • load detection and management
  • power supply and DC- to- DC converter control
  • inverter control
  • overcurrent fault detection