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Home > products > Display Driver ICs > A4983SETTR-T programmed integrated semiconductor DMOS Microstepping Driver with Translator

A4983SETTR-T programmed integrated semiconductor DMOS Microstepping Driver with Translator

manufacturer:
Manufacturer
Description:
Bipolar Motor Driver DMOS Logic 28-QFN (5x5)
Category:
Display Driver ICs
Price:
Negotiation
Payment Method:
T/T, Western Union,PayPal
Specifications
VBB:
35 V
IOUT:
±2 A
VIN:
–0.3 To 7 V
VSENSE:
0.5 V
VREF:
4V
Highlight:

programming ic chips

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programmable audio chip

Introduction

 

A4983SETTR-T programmed integrated semiconductor DMOS Microstepping Driver with Translator

 


Features and Benefits

▪ Low RDS(ON) outputs

▪ Automatic current decay mode detection/selection

▪ Mixed and Slow current decay modes

▪ Synchronous rectification for low power dissipation

▪ Internal UVLO

▪ Crossover-current protection

▪ 3.3 and 5 V compatible logic supply

▪ Very thin profile QFN package

▪ Thermal shutdown circuitry

 

Description

The A4983 is a complete microstepping motor driver with built-in translator for easy operation. It is designed to operate bipolar stepper motors in full-, half-, quarter-, eighth, and sixteenth-step modes, with an output drive capacity of up to 35 V and ±2 A. The A4983 includes a fixed off-time current regulator which has the ability to operate in Slow or Mixed decay modes.

 

The translator is the key to the easy implementation of the A4983. Simply inputting one pulse on the STEP input drives the motor one microstep. There are no phase sequence tables, high frequency control lines, or complex interfaces to program. The A4983 interface is an ideal fit for applications where a complex microprocessor is unavailable or is overburdened. 

 

The chopping control in the A4983 automatically selects the current decay mode (Slow or Mixed). When a signal occurs at the STEP input pin, the A4983 determines if that step results in a higher or lower current in each of the motor phases. If the change is to a higher current, then the decay mode is set to Slow decay. If the change is to a lower current, then the current decay is set to Mixed (set initially to a fast decay for a period amounting to 31.25% of the fixed off-time, then to a slow decay for the remainder of the off-time). This current decay control scheme results in reduced audible motor noise, increased step accuracy, and reduced power dissipation 

 

 

 

Time Duration   Symbol  Typ.  Unit
STEP minimum, HIGH pulse width tA   μs
STEP minimum, LOW pulse width  tB   μs
Setup time, input change to STEP tC 200  ns

 

 

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