STK672-080 Sanyo Semicon Device, STK672-080 Datasheet

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STK672-080

Manufacturer Part Number
STK672-080
Description
Stepping Motor Driver (Sine Wave Drive) Output Current : 2.8 A (No Heat Sink)
Manufacturer
Sanyo Semicon Device
Datasheet

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Ordering number : ENN6507A
Overview
The STK672-080 is a stepping motor driver hybrid IC that
uses power MOSFETs in the output stage. It includes a
built-in microstepping controller and is based on a
unipolar constant-current PWM system. The STK672-080
supports application simplification and standardization by
providing a built-in 4 phase distribution stepping motor
controller. It supports five excitation methods: 2 phase,
1-2 phase, W1-2 phase, 2W1-2 phase, and 4W1-2 phase
excitations, and can provide control of the basic stepping
angle of the stepping motor divided into 1/16 step units. It
also allows the motor speed to be controlled with only a
clock signal.
The use of this hybrid IC allows designers to implement
systems that provide high motor torques, low vibration
levels, low noise, fast response, and high-efficiency drive.
Compared to the earlier SANYO STK672-050, the
STK672-080 features a significantly smaller package for
easier mounting in end products.
Applications
• Facsimile stepping motor drive (send and receive)
• Paper feed and optical system stepping motor drive in
• Laser printer drum drive
• Printer carriage stepping motor drive
• X-Y plotter pen drive
• Other stepping motor applications
Features
• Can implement stepping motor drive systems simply by
copiers
providing a DC power supply and a clock pulse
generator.
TOKYO OFFICE Tokyo Bldg., 1-10, 1 Chome, Ueno, Taito-ku, TOKYO, 110-8534 JAPAN
Any and all SANYO products described or contained herein do not have specifications that can handle
applications that require extremely high levels of reliability, such as life-support systems, aircraft’s
control systems, or other applications whose failure can be reasonably expected to result in serious
physical and/or material damage. Consult with your SANYO representative nearest you before using
any SANYO products described or contained herein in such applications.
SANYO assumes no responsibility for equipment failures that result from using products at values that
exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or other
parameters) listed in products specifications of any and all SANYO products described or contained
herein.
SANYO Electric Co.,Ltd. Semiconductor Company
Unipolar constant-current chopper (external excitation PWM) circuit with built-in microstepping controller
Stepping Motor Driver (Sine Wave Drive) Output Current: 2.8 A (No Heat Sink*)
<Control Block Features>
• One of five drive types can be selected with the drive
• Phase retention even if excitation is switched.
• The MOI phase origin monitor pin is provided.
• The CLK input counter block can be selected to be one of
Note*: Conditions: V
Package Dimensions
unit: mm
4186
mode settings (M1, M2, and M3)
—2 phase excitation drive
—1-2 phase excitation drive
—W1-2 phase excitation drive
—2W1-2 phase excitation drive
—4W1-2 phase excitation drive
the following by the high/low setting of the M3 input pin.
—Rising edge only
—Both rising and falling edges
excitation mode.
3.6
(6.6)
1
14 2.0=28
2.0
46.6
41.2
52004TN (OT) / 22002TN (OT) No. 6507-1/17
CC
[STK672-080]
1 = 24 V, I
15
0.5
STK672-080
OH
Thick-Film Hybrid IC
= 2.0 A, 2W1-2
Continued on next page.
8.5
0.4
2.9

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STK672-080 Summary of contents

Page 1

... Stepping Motor Driver (Sine Wave Drive) Output Current: 2.8 A (No Heat Sink*) Unipolar constant-current chopper (external excitation PWM) circuit with built-in microstepping controller Overview The STK672-080 is a stepping motor driver hybrid IC that uses power MOSFETs in the output stage. It includes a built-in microstepping controller and is based on a unipolar constant-current PWM system ...

Page 2

... A and B when the motor position is held fixed due to the adoption of external excitation. • The reference voltage Vref can be set to any level between 0 and 1 This allows the STK672-080 CC Specifications Absolute Maximum Ratings 25°C Parameter Maximum supply voltage1 ...

Page 3

... Vref 2W1-2, W1-2 Vref 2W1-2 Vref 2W1-2, W1-2, 1-2 Vref 2W1-2 Vref 2W1-2, W1-2 Vref 2W1-2 Vref 2 Vref PWM frequency fc Note: A constant-voltage power supply must be used. The design target value is shown for the current distribution ratio. STK672-080 Conditions = 1/8 = 2/8 = 3/8 = 4/8 = 5/8 = 6/8 = 7/8 Ratings Unit min typ max 100 % ...

Page 4

... Internal Block Diagram STK672-080 No. 6507-4/17 ...

Page 5

... To measuring fc: With SW1 set to the a position, set Vref and switch SW3. To measuring Icc: Set the ENABLE pin low STK672-080 SW2 B 3 STK672-080 SW3 A13258 SW1 A13260 No. 6507-5/17 ...

Page 6

... STK672-080 2 power is first applied to this hybrid IC 2= STK672-080 11 1 RESET 13 10 MoI 14 RoX Motor current waveform W1-2 phase excitation 2W1-2 phase excitation 2W1-2 phase excitation 4W1-2 phase excitation 1=10V to 45V ...

Page 7

... CWB Rotation direction setting (CW/CCW) 15 ENABLE Output cutoff M1, M2, M3 Excitation mode setting 13 RESET System reset 7 Vref Current setting STK672-080 Enable ØA (control signal) CR Divider oscillator 45kHz S R Noise Q Latch circuit filter AND Driver Block Basic Circuit Structure Pin circuit type ...

Page 8

... ENABLE is low: This hybrid IC goes to the hold state and excitation drive output (motor current) is forcibly turned off. In this mode, the hybrid IC system clock is stopped and no inputs other than the reset input have any effect on the hybrid IC state. STK672-080 CLK Input Acquisition Timing (M3 = Low) Excitation counter up/down ...

Page 9

... Phase excitation monitor Output Signal Functions and Timing • and B (Motor phase excitation outputs) Function —In the 4 phase and 2 phase excitation modes, a 3.75 µs (typical) interval is set up between the A and A and B and B output signal transition times. STK672-080 W1-2 phase excitation ...

Page 10

... Excitation phase according to the first clock input pulse after changing the excitation mode setting (M1 to M2) Excitation phase immediately before setting the excitation mode STK672-080 2W1-2 phase 1-2 phase ...

Page 11

... A 1-2 phase 2 phase phase 1-2 phase STK672-080 2W1-2 phase 1-2 phase W1-2 phase 1-2 phase ...

Page 12

... RESET CWB CLK MOI MOI 100% 92% 71% 40% Vref A 100% 92% 71% 40% Vref B STK672-080 1-2 Phase Excitation Timing Chart (M3= RESET CWB CLK MOI 100% 71% Vref A 100% 71% Vref B 2W1-2 Phase Excitation Timing Chart (M3= ...

Page 13

... M3 0 RESET CWB CLK MOI 100% 92% 83% 71% 55% 40% 20% Vref A 100% 92% 83% 71% 55% 40% 20% Vref B STK672-080 W1-2 Phase Excitation Timing Chart (M3= RESET CWB CLK MOI 100% 92% 71% 40% Vref A 100% 92% 71% 40% Vref B 4W1-2 Phase Excitation Timing Chart (M3=0) ...

Page 14

... I : Phase current peak value (A) OH t1: Phase current rise time (s) t2: Constant-current operating time (s) t3: Phase switching current regeneration time (s) STK672-080 fclock · ————— · (Vsat · Vdf · t3 fclock = 0.64 · {(Vsat + Vdf) · ——— · I ...

Page 15

... Vsat = I · Ron + I · Vdf = Vdf + I · The steady-state thermal resistance of a power MOSFET is 15.6°C/W. STK672-080 Tc max: Hybrid IC substrate temperature (°C) Ta: Application internal temperature (° Hybrid IC internal average loss ( the heat sink from the graphs shown below. 2 ...

Page 16

... Motor voltage — Reference Voltage vs. Input Current 450 400 350 300 250 200 150 100 0.5 1 1.5 Reference voltage, Vref — V STK672-080 Substrate temperature, Tc — °C Internal Diode Forward Voltage vs. Motor Current 1.6 1 ...

Page 17

... SANYO believes information herein is accurate and reliable, but no guarantees are made or implied regarding its use or any infringements of intellectual property rights or other rights of third parties. This catalog provides information as of May, 2004. Specifications and information herein are subject to change without notice. STK672-080 ...

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