參數(shù)資料
型號(hào): MC3479
廠商: ON SEMICONDUCTOR
英文描述: Stepper Motor Driver(步進(jìn)電機(jī)驅(qū)動(dòng)器)
中文描述: 步進(jìn)電機(jī)驅(qū)動(dòng)器(步進(jìn)電機(jī)驅(qū)動(dòng)器)
文件頁(yè)數(shù): 7/11頁(yè)
文件大?。?/td> 182K
代理商: MC3479
MC3479
http://onsemi.com
7
V
D
This pin allows for provision of a current path for the
motor coil current during switching, in order to suppress
back
EMF voltage spikes. V
D
is normally connected to V
M
(Pin 16) through a diode (zener or regular), a resistor, or
directly. The peaks instantaneous voltage at the outputs must
not exceed V
M
by more than 6.0 V. The voltage drop across
the internal clamping diodes must be included in this portion
of the design (see Figure 6). Note the parasitic diodes
(Figure 5) across each Q
L
of each output provide for a
complete circuit path for the switched current.
Figure 6. Clamp Diode Characteristics
I
D
(mA)
300
100
200
0
0
1.0
2.0
3.0
V
F
Full/Half Step
When this input is at a Logic “0” (< 0.8 V), the outputs
change a full step with each clock cycle, with the sequence
direction depending on the CW/CCW input. There are four
steps (Phase A, B, C, D) for each complete cycle of the
sequencing logic. Current flows through both motor coils
during each step, as shown in Figure 7.
When taken to a Logic “1” (>2.0 V), the outputs change
a half step with each clock cycle, with the sequence direction
depending on the CW/CCW input. Eight steps (Phase A to
H) result for each complete cycle of the sequencing logic.
Phase A, C, E and G correspond (in polarity) to Phase A, B,
C, and D, respectively, of the full step sequence. Phase B, D,
F and H provide current to one motor coil, while
de
energizing the other coil. The condition of the outputs of
the de
energized coil depends on the OIC input, see Figure 7
timing diagram.
OIC
The output impedance control input determines the output
impedance to the de
energized coil when operating in the
half
step mode. When the outputs are in Phase B, D, F or H
(Figure 7) and this input is at a Logic “0” (<0.8 V), the two
outputs to the de
energized coil are in a high impedance
condition
Q
L
and Q
H
of both outputs (Figure 5) are off.
When this input is at a Logic “1” (>2.0 V), a low impedance
output is provided to the de
energized coil as both outputs
have Q
H
on (Q
L
off). To complete the low impedance path
requires connecting V
D
to V
M
as described elsewhere in this
data sheet.
Bias/Set
This pin can be used for three functions: a) determining
the maximum output sink current; b) setting the internal
logic to a known state; and c) reducing power consumption.
a) The maximum output sink current is determined by the
base drive current supplied to the lower transistors (Q
L
s of
Figure 5) of each output, which in turn, is a function of I
BS.
The appropriate value of I
BS
can be approximated using
Figure 11.
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