ICL7667EPA+

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Mfr.Part #
ICL7667EPA+
Manufacturer
Analog Devices, Inc.
Package / Case
8-DIP (0.300, 7.62mm)
Datasheet
Download
Description
IC GATE DRVR HALF-BRIDGE 8DIP
Stock
107
In Stock :
107

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Manufacturer :
Analog Devices, Inc.
Product Category :
Gate Drivers
JESD-609 Code :
e3
ECCN Code :
EAR99
Number of Pins :
8
Peak Reflow Temperature (Cel) :
260
Mounting Type :
Through Hole
Supply Voltage :
15V
Factory Lead Time :
6 Weeks
Lead Free :
Lead Free
Voltage - Supply :
4.5V~17V
Operating Temperature :
0°C~150°C TJ
Turn On Time :
0.04 µs
REACH SVHC :
Unknown
Time@Peak Reflow Temperature-Max (s) :
30
Package / Case :
8-DIP (0.300, 7.62mm)
Terminal Position :
Dual
Number of Functions :
2
Rise / Fall Time (Typ) :
20ns 20ns
Pin Count :
8
Packaging :
Tube
Number of Terminations :
8
Published :
1996
Radiation Hardening :
No
Nominal Supply Current :
7mA
Power Supplies :
4.5/15V
Pbfree Code :
yes
Max Power Dissipation :
300mW
Base Part Number :
ICL7667
Length :
9.375mm
Number of Drivers :
2
Input Type :
Inverting
High Side Driver :
yes
Rise Time :
20ns
Gate Type :
N-Channel MOSFET
Terminal Finish :
Matte Tin (Sn)
Moisture Sensitivity Level (MSL) :
1 (Unlimited)
Turn Off Time :
0.06 µs
Interface IC Type :
BUFFER OR INVERTER BASED MOSFET DRIVER
Driven Configuration :
Half-Bridge
RoHS Status :
ROHS3 Compliant
Max Supply Current :
7mA
Fall Time (Typ) :
20 ns
Logic Voltage - VIL, VIH :
0.8V 2V
Mount :
Through Hole
Channel Type :
Independent
Datasheets
ICL7667EPA+
Introducing Gate Drivers Analog Devices, Inc. ICL7667EPA+ from Chip IC,where excellence meets affordability. This product stands out with its Number of Pins:8, Mounting Type:Through Hole, Operating Temperature:0°C~150°C TJ, Package / Case:8-DIP (0.300, 7.62mm), Number of Terminations:8, Base Part Number:ICL7667, ICL7667EPA+ pinout, ICL7667EPA+ datasheet PDF, ICL7667EPA+ amp .Beyond Gate Drivers Analog Devices, Inc. ICL7667EPA+ ,we also offer FAN3180TSX, DGD2104MS8-13, IRS2005STRPBF, Our vast inventory has you covered. Contact us now for immediate solutions.

Analog Devices, Inc. ICL7667EPA+


Gate Drivers Analog Devices, Inc. ICL7667EPA+ Overview

The ICL7667EPA+ by Analog Devices, Inc. is a robust Gate Driver designed for high-efficiency, high-speed driving of MOSFETs and IGBTs. As part of the Gate Drivers category, this integrated circuit ensures reliable operation in half-bridge configurations. With a compact 8-pin DIP package, the ICL7667EPA+ is ideally suited for applications requiring space-saving solutions without compromising on power and performance. The device's ability to efficiently switch at high frequencies aids in reducing system power losses, making it a crucial component for power management solutions.

ICL7667EPA+ Features

  • Dual high-speed drivers capable of delivering peak currents up to 1.5A.
  • Wide operating voltage range from 4.5V to 15V, providing flexibility across different power systems.
  • Designed for robust operation with built-in protection features against under-voltage and over-current conditions.
  • Low propagation delay and high-noise immunity ensure reliable performance under critical system conditions.
  • Simple interfacing with logic signals, compatible with standard TTL and CMOS levels.

ICL7667EPA+ Applications

  • Motion Control Systems: Utilized in driving motors within robotic arms and automated machinery, where precise control of speed and position is critical.
  • Renewable Energy Systems: Essential for managing power in solar inverters and wind turbine converters to efficiently convert and control the flow of electrical energy.
  • Power Supplies: Helps in the design of switched-mode power supplies by driving the switching transistors, which regulate voltage and current for optimal performance.
  • Automotive Applications: Used in electric vehicle (EV) controllers to enhance the efficiency and reliability of power conversion and motor driving systems.
  • Consumer Electronics: Implements in driving components in high-definition televisions and audio systems, ensuring low power consumption while maintaining high performance.
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