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STK672-642AN-E Datasheet, PDF (1/28 Pages) ON Semiconductor – 2-phase Stepper Motor Driver
Ordering number : ENA2277A
STK672-642AN-E
Thick-Film Hybrid IC
2-phase Stepper Motor Driver
http://onsemi.com
Overview
The STK672-642AN-E is a hybrid IC for use as a unipolar, 2-phase stepper motor driver with PWM current control.
Applications
 Office photocopiers, printers, etc.
Features
 Built-in overcurrent detection function, overheat detection function (output current OFF).
 FAULT signal (active low) is output when overcurrent or overheat is detected.
 Built-in power on reset function.
 The motor speed is controlled by the frequency of an external clock signal.
 2 phase or 1-2 phase excitation switching function.
 Phase is maintained even when the excitation mode is switched.
 Rotational direction switching function.
 Supports schmitt input for 2.5V high level input.
 Incorporating a current detection resistor (0.089Ω: resistor tolerance 2%), motor current can be set using two
external resistors.
 The ENABLE pin can be used to cut output current while maintaining the excitation mode.
 With a wide current setting range, power consumption can be reduced during standby.
 No motor sound is generated during hold mode due to external excitation current control.
 Supports compatible pins with STK672-640AN/-630AN/-632AN-E.

Specifications
Absolute Maximum Ratings at Tc = 25C
Parameter
Symbol
Conditions
Ratings
Unit
Maximum supply voltage 1
Maximum supply voltage 2
Input voltage
Output current 1
Output current 2
Output current 3
Allowable power dissipation 1
Allowable power dissipation 2
Operating substrate temperature
Junction temperature
Storage temperature
Vcc max
VDD max
Vin max
IOP max
IOH max
IOF max
PdMF max
PdPK max
Tcmax
Tjmax
Tstg
No signal
No signal
Logic input pins
10μs 1 pulse (resistance load)
VDD = 5V, CLOCK  200Hz
16pin Output current
With an arbitrarily large heat sink. Per MOSFET
No heat sink
52
V
0.3 to 6.0
V
0.3 to 6.0
V
20
A
4.0
A
10
mA
8.3
W
2.8
W
105
°C
150
°C
40 to 125
°C
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the Recommended Operating
Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect device reliability.
ORDERING INFORMATION
See detailed ordering and shipping information on page 28 of this data sheet.
Semiconductor Components Industries, LLC, 2014
January, 2014 Ver. 2.2
12014HK/10914HK 018-13-0067 No.A2277-1/28