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ICL7667 Datasheet PDF

Part Series:ICL7667 Series
Category:FET Drivers
Description:Intersil ICL7667CPAZ, Dual MOSFET Power Driver 1A, 4.5 15V, Inverting, 8Pin PDIP
Document:ICL7667CPAZ Datasheet PDF (12 Pages)

ICL7667 FET Drivers Datasheet PDF

ICL7667 Datasheet PDF FET Drivers

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INTERSIL ICL7667CPA MOSFET Driver, 2Outputs, 4.5V-15V supply, 1A and 8Ω output, DIP-8
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Renesas Electronics
Driver; MOSFET; 15V; 0.5W(1/2W); Channels:2; DIP8
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Maxim Integrated
Driver 2Out High Speed Inv 8Pin SOIC N
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Intersil
MOSFET DRVR 2Out High Speed Inv 8Pin SOIC N T/R
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Renesas Electronics
Driver; MOSFET; 15V; 0.5W(1/2W); Channels:2; SO8
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Driver 2Out High Speed Inv 8Pin SOIC N T/R
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Maxim Integrated
MOSFET DRVR 2Out High Speed Inv 8Pin SOIC N
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Maxim Integrated
MOSFET DRVR 2Out High Speed Inv 8Pin SOIC N T/R
5 Pages
Maxim Integrated
MOSFET DRVR 2Out High Speed Inv 8Pin PDIP N
4 Pages
Maxim Integrated
Driver 2Out High Speed Inv 8Pin PDIP N
4 Pages
Maxim Integrated
Driver 2Out High Speed Inv 8Pin SOIC N
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Maxim Integrated
MOSFET DRVR 2Out High Speed Inv 8Pin SOIC N T/R
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MOSFET DRVR 2Out High Speed Inv 8Pin CDIP N

ICL7667CPAZ - Intersil Specifications

TYPE
DESCRIPTION
Mounting Style
Through Hole
Frequency
10 MHz
Number of Pins
8 Pin
Supply Voltage (DC)
4.50V (min)
Case/Package
DIP-8
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ICL7667CPAZ - Intersil Function Overview

The ICL7667CPAZ is a dual monolithic high-speed power MOSFET Driver. It is designed to convert TTL level signals into high current outputs at voltages up to 15V. Its high speed and current output enable it to drive large capacitive loads with high slew rates and low propagation delays. It is well suited for driving power MOSFETs in high frequency switched-mode power converters. It has high current outputs minimize power losses in the power MOSFETs by rapidly charging and discharging the gate capacitance.
30ns with 1000pF Load fast rise and fall times
Low power consumption
TTL/CMOS Input compatible power driver
Direct interface with common PWM control
Pb-free available
Do not operate at or near the maximum ratings listed for extended periods of time. Exposure to such conditions may adversely impact product reliability and result in failures not covered by warranty.
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