IP1M12D [SEME-LAB]

200mA Dual H Bridge ; 200毫安双H桥\n
IP1M12D
型号: IP1M12D
厂家: SEME LAB    SEME LAB
描述:

200mA Dual H Bridge
200毫安双H桥\n

接口集成电路 光电二极管 驱动
文件: 总4页 (文件大小:56K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
IP1M10 SERIES  
IP1M12 SERIES  
SEME  
LAB  
TOP VIEW  
200mA DUAL H-BRIDGE  
1
2
3
4
5
6
7
1 4  
1 3  
1 2  
1 1  
1 0  
9
+VO A  
–VO A  
VE A  
VC A  
FEATURES  
• 200mA Continuous output current per bridge  
(100mA for IP1Mxx, IP2Mxx)  
VS S  
PW M A  
DIR A  
GND  
VE B  
PWM B  
DIR B  
VC B  
• Internal output clamp diodes  
• Hysteretic logic inputs for noise immunity  
• Thermal shutdown protection  
• Peak current limit protection  
• Crossover current blanking  
8
+VO B  
–VO B  
J Package – 14 Pin Ceramic DIP  
N Package – 14 Pin Plastic DIP  
D Package – 14 Pin Plastic (150) SOIC  
• Separate +5V logic supply for minimum power  
dissipation (1M10 series only)  
• Separate +7V to +36V logic supply  
(1M12 series only)  
Order Information  
Part  
Number  
J–Pack  
14 Pin  
N–Pack  
14 Pin  
D–14  
14 Pin  
Temp.  
Range  
Note:  
IP1M10  
IP2M10  
IP3M10  
IP1M12  
IP2M12  
IP3M12  
-55 to +125°C  
-40 to +85°C  
0 to +70°C  
-55 to +125°C  
-40 to +85°C  
0 to +70°C  
To order, add the package identifier to the part number.  
eg.  
IP1M10J  
IP2M10D–14  
IP3M12N  
ABSOLUTE MAXIMUM RATINGS (T  
= 25°C unless otherwise stated)  
case  
V
Logic Supply Voltage  
1M10 Series  
1M12 Series  
+7V  
SS  
+40V  
V
Driver Supply Voltage  
Logic Inputs  
+40V  
C
-0.3 to +40V  
±250mA  
Output Current  
Peak Output Current  
Internally Limited  
P
P
Power Dissipation  
Derate above 50°C  
T = 25°C  
1W  
D
D
A
10mW/°C  
Power Dissipation  
Derate above 25°C  
T = 25°C  
2W  
C
16mW/°C  
T
T
Operating Junction Temperature  
Storage Temperature Range  
See Ordering Information  
–65 to +150°C  
J
STG  
Prelim. 7/95  
Semelab plc. Telephone (01455) 556565. Telex: 341927. Fax (01455) 552612.  
IP1M10 SERIES  
IP1M12 SERIES  
SEME  
LAB  
DESCRIPTION  
The IP1M10 and IP1M12 series each contain two full H-bridge power drivers capable of delivering 200 mA continuous  
output current per channel (100mA for 1Mxx / 2Mxx). Each bridge may be run from its own supply voltage of up to 36V  
and is controlled by 2 high voltage protected logic level inputs with internal hysteresis for noise immunity.  
Protection features include thermal shutdown, peak current limiting, crossover current blanking, and internal output  
clamp diodes. Logic supply current is provided by a separate pin so that standby power dissipation may be minimised.  
The IP1M10 series requires a +5V logic supply while the IP1M12 series requires a logic supply voltage of +7V or greater,  
and is typically used in single supply applications.  
The IP1M10 and IP1M12 are available in a 14 lead ceramic DIP while the IP2M10, IP2M12, IP3M10, IP3M12 are avail-  
able in the 14 lead ceramic DIP, 14 lead plastic DIP, and 14 lead plastic SOIC packages.  
BLOCK DIAGRAM  
VCA  
VSS  
VCB  
2
3
6
11  
5
DIR  
A
DIR  
B
14  
1
7
8
INTERNAL  
BIASING  
–VOA +VOA  
+VOB –VOB  
12  
4
PWM  
A
PWM  
B
10  
9
13  
VEA  
GND  
VEB  
25  
25Ω  
INPUTS  
OUTPUTS  
DIR  
PWM  
+VO  
-VO  
LOW  
LOW  
HIGH  
HIGH  
LOW  
HIGH  
LOW  
HIGH  
Z*  
HIGH  
HIGH  
Z*  
LOW  
HIGH  
HIGH  
LOW  
* Z = High Impedance.  
RECOMMENDED OPERATING CONDITIONS  
SS  
V
Logic Supply Voltage  
1M10 Series  
+4.75 to +5.25V  
+7 to +36V  
1M12 Series  
V
Driver Supply Voltage  
Logic Inputs  
+4.75 to +36V  
0 to +36V  
C
Output Current, DC  
1Mxx / 2Mxx Series  
3Mxx Series  
±100mA  
±200mA  
Peak Output Current  
1Mxx / 2Mxx Series  
3Mxx Series  
±125mA  
±250mA  
T
Operating Ambient Temperature Range 1Mxx Series  
-55 to +125°C  
-40 to +85°C  
0 to +70°C  
AMB  
2Mxx Series  
3Mxx Series  
Prelim. 7/95  
Semelab plc. Telephone (01455) 556565. Telex: 341927. Fax (01455) 552612.  
IP1M10 SERIES  
IP1M12 SERIES  
SEME  
LAB  
ELECTRICAL CHARACTERISTICS (Over Full Operating Temperature Range)  
Parameter  
Test Conditions  
Min.  
Typ.  
Max. Units  
VSS = +5.25V  
1M10 Series VSS = +5.25V  
VSS = +5.25V  
ILOADS = 0  
5
12  
Logic Supply Voltage (Pin 3)  
ILOADS = 100mA  
ILOADS = 200mA  
ILOADS = 0  
8
20  
12  
8
28  
mA  
18  
VSS = +36V  
Logic Supply Voltage (Pin 3)  
1M12 Series VSS = +36V  
VSS = +20V  
ILOADS = 100mA  
ILOADS = 200mA  
1
25  
32  
15  
2.5  
1.5  
2.5  
1
Quiescent Bridge Current (Pin 2 or 6)  
PWM Input Threshold (Pins 4 and 12)  
ILOAD = 0  
8
2
3
mA  
V
Falling  
0.8  
1.2  
0.4  
Rising  
Hysterisis  
Low  
High  
V
IN = 0  
-20  
0.1  
1.5  
2.3  
0.8  
-20  
0.1  
1.8  
2.1  
1.1  
1.2  
1
-100  
±10  
2
PWM Input Current  
DIR Input Threshold  
(Pins 4 and 12)  
(Pins 5 and 11)  
(Pins 5 and 11)  
µA  
VIN = 36V  
Falling  
Rising  
Hysterisis  
Low  
0.8  
1.2  
0.2  
3
V
VIN = 0  
-100  
±10  
2.25  
2.7  
DIR Input Current  
µA  
V
High  
VIN = 36V  
Total Saturation Voltage  
ILOAD = 100mA  
V
SAT(SINK) + VSAT(SOURCE)  
ILOAD = 200mA 3M10 / 3M12 Only  
IDIODE = 100mA  
1.4  
Diode Forward Voltage  
V
IDIODE = 200mA  
1.6  
Output Leakage Current  
(Pins 1, 7, 8 and 14)  
Low  
VO = 0  
VC = 36V  
100  
100  
µA  
High  
VO = VC = 36V  
1
SWITCHING CHARACTERISTICS @ T  
= 25°C  
AMB  
Parameter  
Test Conditions  
Min.  
Typ.  
Max. Units  
Sink Turn-On Delay  
t: Vi = Vi(TH) to VO = VS /2  
1250  
Sink Current Rise Time  
Sink Turn-Off Delay  
t: IO = (0.1 to 0.9) ILOAD  
t: Vi = Vi(TH) to VO = VS /2  
t: IO = (0.9 to 0.1) ILOAD  
t: Vi = Vi(TH) to VO = VS /2  
t: IO = (0.1 to 0.9) ILOAD  
t: Vi = Vi(TH) to VO = VS /2  
t: IO = (0.9 to 0.1) ILOAD  
200  
300  
200  
800  
400  
1000  
500  
500  
250  
ns  
Sink Current Fall Time  
Source Turn-On Delay  
Source Rise Time  
ns  
Source Turn-Off Delay  
Source Fall Time  
Sink to Source Deadtime  
Source to Sink Deadtime  
ns  
Prelim. 7/95  
Semelab plc. Telephone (01455) 556565. Telex: 341927. Fax (01455) 552612.  
IP1M10 SERIES  
IP1M12 SERIES  
SEME  
LAB  
TYPICAL PERFORMANCE CHARACTERISTICS — ERROR AMPLIFIER  
Output State vs DIR Input Voltage  
Output State vs PWM Input Voltage  
Diode Forward Voltage vs  
Ambient Temperature  
Total Saturation Voltage vs  
Ambient Temperature  
Peak Output Current vs  
Ambient Temperature  
Logic Supply Current vs  
Ambient Temperature  
Prelim. 7/95  
Semelab plc. Telephone (01455) 556565. Telex: 341927. Fax (01455) 552612.  

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