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 LAB
TOP VIEW
+V O A 1 VC A 2 VS S 3
14 13 12 11 10 9 8
SEME
IP1M10 SERIES IP1M12 SERIES
200mA DUAL H-BRIDGE
-V O A VE A
PWM A DIR A GND
VE B -V O B
FEATURES
* 200mA Continuous output current per bridge (100mA for IP1Mxx, IP2Mxx) * Internal output clamp diodes * Hysteretic logic inputs for noise immunity * Thermal shutdown protection * Peak current limit protection * Crossover current blanking * Separate +5V logic supply for minimum power dissipation (1M10 series only) * Separate +7V to +36V logic supply (1M12 series only)
P WM B 4 DIR B 5
VC B 6 +V O B 7
J Package - 14 Pin Ceramic DIP N Package - 14 Pin Plastic DIP D Package - 14 Pin Plastic (150) SOIC
Order Information
Part Number IP1M10 IP2M10 IP3M10 IP1M12 IP2M12 IP3M12 J-Pack 14 Pin N-Pack 14 Pin D-14 14 Pin Temp. Range -55 to +125C -40 to +85C 0 to +70C -55 to +125C -40 to +85C 0 to +70C Note: To order, add the package identifier to the part number. eg. IP1M10J IP2M10D-14 IP3M12N
ABSOLUTE MAXIMUM RATINGS (Tcase = 25C unless otherwise stated)
VSS VC Logic Supply Voltage Driver Supply Voltage Logic Inputs Output Current Peak Output Current PD PD TJ TSTG Power Dissipation Derate above 50C Power Dissipation Derate above 25C Operating Junction Temperature Storage Temperature Range
Telephone (01455) 556565. Telex: 341927. Fax (01455) 552612.
1M10 Series 1M12 Series
+7V +40V +40V -0.3 to +40V 250mA Internally Limited
TA = 25C TC = 25C
1W 10mW/C 2W 16mW/C See Ordering Information -65 to +150C
Prelim. 7/95
Semelab plc.
LAB
DESCRIPTION
SEME
IP1M10 SERIES IP1M12 SERIES
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 available in the 14 lead ceramic DIP, 14 lead plastic DIP, and 14 lead plastic SOIC packages.
BLOCK DIAGRAM
VCA
2
VSS
3
VCB
6
DIR A
11
5
DIR B
14
1
-VOA PWM A
12
+VOA
INTERNAL BIASING
7
8
+VOB
-VOB
4
PWM B
13
10
9
VEA
25
GND
25
VEB
INPUTS
DIR
LOW LOW HIGH HIGH
OUTPUTS
+VO
Z* LOW HIGH
PWM
LOW HIGH LOW
-VO
HIGH HIGH Z* LOW
HIGH HIGH * Z = High Impedance.
RECOMMENDED OPERATING CONDITIONS
VSS VC Logic Supply Voltage Driver Supply Voltage Logic Inputs Output Current, DC Peak Output Current TAMB Operating Ambient Temperature Range 1Mxx / 2Mxx Series 3Mxx Series 1Mxx / 2Mxx Series 3Mxx Series 1Mxx Series 2Mxx Series 3Mxx Series 1M10 Series 1M12 Series +4.75 to +5.25V +7 to +36V +4.75 to +36V 0 to +36V 100mA 200mA 125mA 250mA -55 to +125C -40 to +85C 0 to +70C
Prelim. 7/95
Semelab plc.
Telephone (01455) 556565. Telex: 341927. Fax (01455) 552612.
LAB
ELECTRICAL CHARACTERISTICS (Over Full Operating Temperature Range)
Parameter
Logic Supply Voltage (Pin 3)
SEME
IP1M10 SERIES IP1M12 SERIES
Test Conditions
VSS = +5.25V 1M10 Series VSS = +5.25V VSS = +5.25V VSS = +36V ILOADS = 0 ILOADS = 100mA ILOADS = 200mA ILOADS = 0 ILOADS = 100mA ILOADS = 200mA
Min.
Typ.
5 8 12 8 1 15 2.5
Max.
12 20 28 18 25 32 8 2 3
Units
mA
Logic Supply Voltage
(Pin 3)
1M12 Series VSS = +36V VSS = +20V ILOAD = 0 Falling
Quiescent Bridge Current (Pin 2 or 6)
mA
0.8 1.2 0.4 VIN = 0 VIN = 36V 0.8 1.2 0.2 VIN = 0 VIN = 36V ILOAD = 100mA ILOAD = 200mA IDIODE = 100mA IDIODE = 200mA 3M10 / 3M12 Only
1.5 2.5 1 -20 0.1 1.5 2.3 0.8 -20 0.1 1.8 2.1 1.1 1.2
PWM Input Threshold
(Pins 4 and 12)
Rising Hysterisis
V
PWM Input Current
(Pins 4 and 12)
Low High Falling
-100 10 2 3
A
DIR Input Threshold
(Pins 5 and 11)
Rising Hysterisis
V
DIR Input Current Total Saturation Voltage
(Pins 5 and 11)
Low High
-100 10 2.25 2.7 1.4 1.6 100 100
A
VSAT(SINK) + VSAT(SOURCE) Diode Forward Voltage Output Leakage Current (Pins 1, 7, 8 and 14) Low High
V
V A
VO = 0 VO = VC = 36V
VC = 36V
1 1
SWITCHING CHARACTERISTICS @ TAMB = 25C
Parameter
Sink Turn-On Delay Sink Current Rise Time Sink Turn-Off Delay Sink Current Fall Time Source Turn-On Delay Source Rise Time Source Turn-Off Delay Source Fall Time Sink to Source Deadtime Source to Sink Deadtime
Test Conditions
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 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
Min.
Typ.
1250 200 300 200 800 400 1000 500 500 250
Max.
Units
ns
ns
ns
Semelab plc.
Telephone (01455) 556565. Telex: 341927. Fax (01455) 552612.
Prelim. 7/95
LAB
Output State vs DIR Input Voltage
SEME
IP1M10 SERIES IP1M12 SERIES
TYPICAL PERFORMANCE CHARACTERISTICS -- ERROR AMPLIFIER
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
Semelab plc.
Telephone (01455) 556565. Telex: 341927. Fax (01455) 552612.
Prelim. 7/95


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