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VN750PEP
HIGH SIDE DRIVER
TARGET SPECIFICATION
TYPE VN750PEP
s
RDS(on) 60 mΩ
IOUT 6A
VCC 36 V
CMOS COMPATIBLE INPUT s ON STATE OPEN LOAD DETECTION s OFF STATE OPEN LOAD DETECTION s SHORTED LOAD PROTECTION s UNDERVOLTAGE AND OVERVOLTAGE SHUTDOWN s PROTECTION AGAINST LOSS OF GROUND s VERY LOW STAND-BY CURRENT
s
PowerSSO-12
REVERSE BATTERY PROTECTION (*)
ORDER CODES PACKAGE TUBE T&R PowerSSO-12 VN750PEP VN750PEP13TR
DESCRIPTION The VN750PEP is a monolithic device designed in STMicroelectronics VIPower M0-3 Technology, intended for driving any kind of load with one side connected to ground. Active VCC pin voltage clamp protects the device against low energy spikes (see ISO7637 transient compatibility table). Active current limitation combined with thermal shutdown and automatic restart protect the device against overload.
The device detects open load condition both is on and off state. Output shorted to VCC is detected in the off state. Device automatically turns off in case of ground pin disconnection.
BLOCK DIAGRAM
VCC
VCC CLAMP
OVERVOLTAGE DETECTION UNDERVOLTAGE DETECTION
GND Power CLAMP
INPUT LOGIC
DRIVER OUTPUT CURRENT LIMITER
STATUS
ON STATE OPENLOAD DETECTION OVERTEMPERATURE DETECTION
OFF STATE OPENLOAD AND OUTPUT SHORTED TO VCC DETECTION
(*) See application schematic at page 8
October 2003 - Revision 1.2 (Working document)
1/14
This is preliminary information on a new product foreseen to be developed. Details are subject to change without notice.
VN750PEP
ABSOLUTE MAXIMUM RATING
Symbol VCC - VCC - Ignd IOUT - IOUT IIN ISTAT Parameter DC Supply Voltage Reverse DC Supply Voltage DC Reverse Ground Pin Current DC Output Current Reverse DC Output Current DC Input Current DC Status Current Electrostatic Discharge (Human Body Model: R=1.5KΩ; C=100pF) - INPUT VESD - STATUS - OUTPUT - VCC Ptot Tj Tc Tstg Power Dissipation TC=25°C Junction Operating Temperature Case Operating Temperature Storage Temperature 4000 4000 5000 5000 74 Internally limited - 40 to 150 - 55 to 150 V V V V W °C °C °C Value 41 -0.3 -200 Internally limited -6 +/- 10 +/- 10 Unit V V mA A A mA mA
CONNECTION DIAGRAM (TOP VIEW)
VCC GND INPUT N.C. STATUS VCC
1 2 3 4 5 6
12 11 10 9 8 7
OUTPUT OUTPUT OUTPUT OUTPUT OUTPUT OUTPUT TAB = VCC
CURRENT AND VOLTAGE CONVENTIONS
IS
IIN INPUT ISTAT STATUS
VCC
IOUT OUTPUT GND VCC
VIN VSTAT IGND
VOUT
2/14
VN750PEP
THERMAL DATA
Symbol Rthj-case Rthj-amb Parameter Thermal Resistance Junction-case Max Thermal Resistance Junction-ambient Max Value 1.7 70 (*) Unit °C/W °C/W
(*) *) When mounted on a standard single-sided FR-4 board with 1 cm2 of Cu (at least 35µm thick) connected to all V CC pins.
ELECTRICAL CHARACTERISTICS (8VVOV
OPEN LOAD without external pull-up INPUT LOAD VOLTAGE STATUS
Tj INPUT LOAD CURRENT STATUS
TTSD TR
OVERTEMPERATURE
7/14
1 1
VN750PEP
APPLICATION SCHEMATIC
+5V
+5V
Rprot STATUS
VCC
Dld µC Rprot INPUT OUTPUT
GND
VGND
RGND
DGND
GND PROTECTION REVERSE BATTERY
NETWORK
AGAINST
Solution 1: Resistor in the ground line (RGND only). This can be used with any type of load. The following is an indication on how to dimension the RGND resistor. 1) RGND ≤ 600mV / (IS(on)max). 2) RGND ≥ (−VCC) / (-IGND) where -IGND is the DC reverse ground pin current and can be found in the absolute maximum rating section of the device’s datasheet. Power Dissipation in RGND (when VCC
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