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 HIGH-VOLTAGE INVERTING DC-DC CONVERTER
January 29, 1998
SC1650
TEL:805-498-2111 FAX:805-498-3804 WEB:http://www.semtech.com
DESCRIPTION
The SC1650 is a high performance inverting DC-DC converter, designed to drive an external power switch to generate programmable negative voltages. In the particularly suitable LCD bias contrast application, maximum efficiency of 90% can be achieved with low cost PNP bipolar transistor drivers. The 4V to 24V input operation range allows the SC1650 to be powered directly by the battery pack in most batteryoperated applications for greater efficiency. The output voltage can be scaled to -40V by two external resistors. A pulse frequency modulation scheme is employed to maintain high efficiency conversion under wide input voltage ranges. Quiescent current is about 100A and can be reduced to 8A in shutdown mode. With a switching frequency range of 100kHz to 320kHz, small size switching components may be used, which is ideal for battery powered portable equipment such as notebook and palmtop computers.
FEATURES * 4V to 24V input voltage operation * Adjustable output voltage up to -40V * Low quiescent current at 100A * Pulse frequency modulation maintains high * * *
efficiency (max 90%) 100kHz to 320kHz switching frequency Power-Saving shutdown mode (8A typical) High efficiency with low cost external PNP bipolar transistor
APPLICATIONS * Negative LCD contrast bias for
1. Notebook & palmtop computers 2. Pen-based data systems 3. Portable data collection terminals 4. Personal digital assistants Negative voltage supplies
*
BLOCK DIAGRAM ORDERING INFORMATION
DEVICE
(1)
VOUT Adj
PACKAGE SO-8
SC1650CS
Note: (1) Add suffix `TR' for tape and reel.
ABSOLUTE MAXIMUM RATINGS
Parameter Supply Voltage Symbol V+ VSHDN TA Maximum 24 15 0 to 70 Units V V C
PIN CONFIGURATION
SHDN Voltage Operating Temperature Range Storage Temperature Range
TSTG
-65 to 125
C
(c) 1997 SEMTECH CORP.
652 MITCHELL ROAD NEWBURY PARK CA 91320
HIGH-VOLTAGE INVERTING DC-DC CONVERTER
January 29, 1998
SC1650
ELECTRICAL CHARACTERISTICS
Unless otherwise specified, TA = 25C, V+ = 13V Test Conditions Parameter Input Voltage Switch Off Current Shutdown Mode Current VREF Voltage VREF Source Current DLOW "ON Resistance" DHI "ON Resisance" CL Threshold Shutdown Threshold 45 0.8 ISOURCE=250A 1.16 250 15 10 60 1.5 75 2.4 VFB = -50mV Min 4 100 8 1.22 Test Limits Typ Max 24 200 20 1.28 Units V A A V A mV V
TYPICAL PERFORMANCE CHARACTERISTICS
TYPICAL APPLICATION CIRCUIT
(c) 1997 SEMTECH CORP.
652 MITCHELL ROAD NEWBURY PARK CA 91320
HIGH-VOLTAGE INVERTING DC-DC CONVERTER
January 29, 1998
SC1650
TYPICAL APPLICATION INFORMATION
The typical application circuit generates an adjustable negative voltage for contrast bias of LCD displays. Efficiency and output power can be optimized by using the appropriate inductor and switch. The following formulas provide a guideline for determing the optimal component val-
L = 11 .1- 0 .15 x V + x
+
(
)
IOUT
V+ x VOUT
PNP : VCEO > V + VOUT IC ( MAX ) 200 x IOUT V+
IOUT and = 10 V+ R B 3 x L x V + - 0 .8 , where units : V + in Volt , VOUT in Volt , VCE ( SAT ) < 0 .4 V at IC = 200 x
(
)
IOUT in Ampere , L in H, R B in Ohm .
(c) 1997 SEMTECH CORP.
652 MITCHELL ROAD NEWBURY PARK CA 91320
HIGH-VOLTAGE INVERTING DC-DC CONVERTER
January 29, 1998
SC1650
OUTLINE DRAWING - SO-8
PIN CONFIGURATION
PIN DESCRIPTIONS
PIN 1: V
+
4V to 24V input supply voltage. 1.22V reference output. Bypass with a 0.047F capacitor to GND. Sourcing capability is guaranteed to be greater than 250A.
PIN 2: VREF
PIN 3: SHDN Logic input to shutdown the chip. >1.5V = normal operation, GND = shutdown In shutdown mode DLOW and DHI pins are high. PIN 4: FB Feedback signal input to comparator. Connecting a resistance R1 to VOUT and a resistance R2 to VREF yields the output voltage:
V OUT = R1 * V REF R2
PIN 6: DLOW Driver sinking output. Connected to DHI when using an external P-channel MOSFET. When using an external PNP bipolar transistor, connect a resistor RB from this pin to DHI. RB value depends upon V+, inductor value and the PNP bipolar transistor. By adjusting the RB value, efficiency can be optimized. PIN 7: DHI Driver sourcing output. Connect to the gate of the external P-channel MOSFET or base of the PNP bipolar transistor. Current-limit input. This pin clamps the switch peak current under abnormal conditions.
PIN 8: CL
PIN 5: GND
Power ground.
(c) 1997 SEMTECH CORP.
652 MITCHELL ROAD NEWBURY PARK CA 91320


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