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PBL3775QN 参数 Datasheet PDF下载

PBL3775QN图片预览
型号: PBL3775QN
PDF下载: 下载PDF文件 查看货源
内容描述: 双步进电机驱动器 [Dual Stepper Motor Driver]
分类和应用: 驱动器电机
文件页数/大小: 8 页 / 165 K
品牌: ERICSSON [ ERICSSON ]
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PBL 3775/1  
oscillator triggers the flip-flops of both  
channels simultaneously, which turns on  
the output transistors again, and the  
cycle is repeated.  
To prevent erroneous switching due to  
switching transients at turn-on, the  
PBL 3775/1 includes a digital filter. The  
clock oscillator provides a blanking  
pulse which is used for digital filtering of  
the voltage transient across the current  
sensing resistor during turn-on.  
reference voltage will produce an output  
current of approximately 500 mA. RS  
should be selected for maximum motor  
current. Be sure not to exceed the  
absolute maximum output current which  
is 850 mA. Chopping frequency, winding  
inductance and supply voltage also  
affect the current, but to much less  
extent.  
For accurate current regulation, the  
sensing resistor should be a 0.5 - 1.0 W  
precision resistor, i. e. less than 1%  
tolerance and low temperature  
coefficient.  
Functional Description  
Each channel of the PBL 3775/1  
consists of the following sections: an  
output H-bridge with four transistors and  
four recirculation diodes, capable of  
driving up to 750 mA continuous current  
to the motor winding,  
a logic section that controls the output  
transistors, an S-R flip-flop, and a com-  
parator. The clock-oscillator is common  
to both channels.  
Constant current control is achieved  
by switching the output current to the  
windings. This is done by sensing the  
peak current through the winding via a  
current-sensing resistor RS, effectively  
connected in series with the motor  
winding. As the current increases, a  
voltage develops across the sensing  
resistor, which is fed back to the  
comparator. At the predetermined level,  
defined by the voltage at the reference  
input VR, the comparator resets the flip-  
flop, which turns off the upper output  
transistor. The turn-off of one channel is  
independent of the other channel. The  
current decreases until the clock  
The current paths during turn-on, turn-  
off and phase shift are shown in figure 5.  
Applications Information  
Current sense filtering  
Current control  
At turn-on a current spike occurs, due to  
the recovery of the recirculation diodes  
and the capacitance of the motor  
winding. To prevent this spike from  
reseting the flip-flops through the  
current sensing comparators, the clock  
oscillator generates a blanking pulse at  
turn-on. The blanking pulse pulse  
disables the comparators for a short  
time. Thereby any voltage transient  
across the sensing resistor will be  
ignored during the blanking time.  
The regulated output current level to the  
motor winding is determined by the  
voltage at the reference input and the  
value of the sensing resistor, RS. The  
peak current through the sensing  
resistor (and the motor winding) can be  
expressed as:  
IM,peak = 0.1•VR / RS [A]  
With a recommended value of 0.5 ohm  
for the sensing resistor RS, a 2.5 V  
V
VMM  
+5 V  
MM  
1
+
0.1 µF  
0.1 µF  
10 µF  
12  
4
19  
V
V
V
3
CC  
MM1  
MM2  
M
M
M
9
10  
7
A1  
Phase  
1
2
Dis  
1
1
B1  
A2  
B2  
V
3
R1  
PBL 3775/1  
20  
14  
13  
16  
Phase  
2
RS  
Dis  
2
22  
M
V
R2  
GND  
C
E
C
E
2
RC  
11  
STEPPER  
MOTOR  
2
1
1
2
15  
21  
8
5, 6,  
17, 18  
Motor Current  
12 k  
+5 V  
Pin numbers refer  
to DIL package.  
4 700 pF  
R
R
S
S
1
2
3
0.47 Ω  
0.47 Ω  
GND (V  
)
GND (V  
CC  
)
MM  
Fast Current Decay  
Slow Current Decay  
Time  
Figure 5. Output stage with current paths  
during turn-on, turn-off and phase shift.  
Figure 6. Typical stepper motor driver application with PBL 3775/1.  
5