参数资料
型号: PG001M
元件分类: 运动控制电子
英文描述: STEPPER MOTOR CONTROLLER, 0.015 A, PDIP16
封装: PLASTIC, DIP-16
文件页数: 10/12页
文件大小: 213K
代理商: PG001M
PG001M
PARALLEL-TO-SERIAL
DATA CONVERTER
Integra
ted
Cir
cuits
7
www.allegromicro.com
Figure 3 — Typical 'Integrated' Microstepping System
REF/ENABLE
CLOCK
STROBE
SERIAL DATA
Dwg. EK-014A
1
MODE SELECT
MONITOR
CCW/CW
RESET
VECTOR CONTROL
MODE SELECT2
P
CLOCK IN
SLA7042M
or
SLA7044M
R
S
B
R
S
A
GND
B
GND
A
PG001M
GND
A
B
V
DD
A
B
A
B
A
B
OUT
V
BB
CONTROL SUPPLY
B
+5 V
A
B
After the RESET pulse, the first (two) full-steps in the
microstepping sequence, MS
1 is switched LOW and the
control IC shifts into the 1/4-step mode. It becomes very
apparent that any microstepping directly from a
P to the
SLA7042/44M module 'burdens' the
P, complicates the
software, and might entail a 'dedicated' microcontroller in
many motion-control systems.
The PG001M controller IC precludes loading a
P
with direct serial-data signals to the power multi-chip
module. Because the step motor is updated at eight times
the step rate, this CMOS IC both simplifies software and
eliminates loading a system microprocessor with 'house-
keeping' control of step motors.
As illustrated in figures 4 and 5, the controller IC
eliminates the requirement to program the system for the
various modes of operation and the continual updating of
the serial-data signals to the power multi-chip module.
NOTE — In figures 4 and 5, the clock frequency is
constant during the few steps of operation that are shown
and half-step operation is not included.
Depicted in figure 4 are the 'front-end' I/O signals
(from RESET to VECTOR CONTROL), converted signals
from the controller IC to the microstepping power module
(CLOCK
OUT, SERIAL DATAA, SERIAL DATAB, and
STROBE), plus the MONITOR (readback) to the
microcontroller. Finally, the power multi-chip module
current ratios are illustrated (OUT
A and OUTB).
As shown, initially the counter is reset, and then the
motor is operating in quarter-step mode; then MS
2 is
switched while MO is LOW. The two steps following are
full-step (100% torque vector). The final (fourth quadrant)
portion of figure 4 is the maximum (141%) torque mode,
after VECTOR CONTROL has been switched from LOW
to HIGH. Three of the five operational modes are shown,
and none require the
P to continually update the clock,
serial-data input, or strobe to the SLA7042/44M module.
The microstepping operation is illustrated in figure 5.
Initially the counter is reset, and with both MODE SE-
LECTs HIGH the controller is furnishing clock, serial
data, and strobe logic signals for 1/8th step increments.
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