LTC1163CN8 Linear Technology, LTC1163CN8 Datasheet
LTC1163CN8
Specifications of LTC1163CN8
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LTC1163CN8 Summary of contents
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S FEATURE Operates from 1. 0.01 A Standby Current 95 A Operating Current per Channel at 3.3V Fully Enhances N-Channel Switches No External Charge Pump Components Built-In Gate Voltage Clamps Easily Protected Against Supply Transients Controlled Switching ON ...
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... S t Turn-ON Time Operating Temperature Range LTC1163C/LTC1165C ........................... Storage Temperature Range ................ – 150 C Lead Temperature (Soldering, 10 sec)................. 300 ORDER PART NUMBER IN1 1 IN2 2 LTC1163CN8 IN3 3 LTC1165CN8 GND 4 8-LEAD PLASTIC SOIC T = 100 C, JMAX V = 1. unless otherwise noted CONDITIONS V = 1.8V (Note 1,2) S IN1 ...
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ELECTRICAL C HARA TERISTICS C SYMBOL PARAMETER t Turn-OFF Time OFF The denotes specifications which apply over the full operating temperature range. Note 1: Quiescent current OFF is for all channels in OFF condition TYPICAL PERFOR A Standby ...
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LTC1163/LTC1165 W U TYPICAL PERFOR A Standby Supply Current – TEMPERATURE (°C) LTC1163/65 • TPC07 CTIO S Input Pins The LTC1163 is ...
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U OPERATIO Gate Charge Pump Gate drive for the power MOSFET is produced by an internal charge pump circuit which generates a gate volt- age substantially higher than the power supply voltage. The charge pump capacitors are included on chip ...
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LTC1163/LTC1165 U U APPLICATIO S I FOR ATIO 3.3V V LT1129-3 3 100k S OUT1 1/3 LTC1163 ON/OFF IN1 GND Figure 1. Powering a Large Capacitive Load managed by the system regulator required ...
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... F Information furnished by Linear Technology Corporation is believed to be accurate and reliable. However, no responsibility is assumed for its use. Linear Technology Corporation makes no represen- tation that the interconnection of its circuits as described herein will not infringe on existing patent rights. U 2-Cell to 3.3V, 5V and 12V High-Side Switch/Converter with 0 ...
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... LT/GP 1093 10K REV 0 • PRINTED IN USA LINEAR TECHNOLOGY CORPORATION 1993 0.250 ± 0.010 (6.350 ± 0.254) 0.150 – 0.157 (3.810 – 3.988) ...