A3973

Specifications ±1 A, 35 V Continuous Output Rating Low rDS(on) DMOS Output Drivers Optimized Microstepping via 6-Bit Linear DACs Programmable Mixed, Fast, and Slow Current-Decay Modes 4 MHz Internal Oscillator for Digital Timing ...

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SeekIC No. : 004260249 Detail

A3973: Specifications ±1 A, 35 V Continuous Output Rating Low rDS(on) DMOS Output Drivers Optimized Microstepping via 6-Bit Linear DACs Programmable Mixed,...

floor Price/Ceiling Price

Part Number:
A3973
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/4/29

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Product Details

Description



Specifications

  • ±1 A, 35 V Continuous Output Rating
  • Low rDS(on) DMOS Output Drivers
  • Optimized Microstepping via 6-Bit Linear DACs
  • Programmable Mixed, Fast, and Slow Current-Decay Modes
  • 4 MHz Internal Oscillator for Digital Timing
  • Serial-Interface Controls Chip Functions
  • Synchronous Rectification for Low Power Dissipation
  • Internal UVLO and Thermal Shutdown Circuitry
  • Crossover-Current Protection
  • Precision 2 V Reference
  • Inputs Compatible with 3.3 V or 5 V Control Signals
  • Sleep and Idle Modes




Description

Designed for pulse-width modulated (PWM) current control of bipolar microstepping stepper motors, the A3973SB and A3973SLB are capable of continuous output currents to ±1 A and operating voltages to 35 V. Internal fixed off-time PWM current-control timing circuitry can be programmed via a serial interface to operate in slow, fast, and mixed current-decay modes. The A3973SB (DIP) and the A3973SLB (SOIC) are electrically identical and differ only in package style.

The desired load-current level is set via the serial port with two 6-bit linear DACs in conjunction with a reference voltage. The six bits of control allow maximum flexibility in torque control for a variety of step methods, from microstepping to full-step drive. Load current is set in 1.56% increments of the maximum value.

Synchronous rectification circuitry allows the load current to flow through the low rDS(on) of the DMOS output driver during the current decay. This feature will eliminate the need for external clamp diodes in most applications, saving cost and external component count, while minimizing power dissipation.

Internal circuit protection includes thermal shutdown with hysteresis, transient-suppression diodes, and crossover-current protection. Special power-up sequencing is not required.




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