LTC7004HMSE#PBF

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Mfr.Part #
LTC7004HMSE#PBF
Manufacturer
Analog Devices, Inc.
Package / Case
10-TFSOP, 10-MSOP (0.118, 3.00mm Width) Exposed Pad
Datasheet
Download
Description
IC GATE DRVR HIGH-SIDE 10MSOP
Stock
41,690
In Stock :
41,690

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Manufacturer :
Analog Devices, Inc.
Product Category :
Gate Drivers
Input Type :
Non-Inverting
Lifecycle Status :
Production (Last Updated: 2 weeks ago)
Moisture Sensitivity Level (MSL) :
1 (Unlimited)
Number of Pins :
10
Package / Case :
10-TFSOP, 10-MSOP (0.118, 3.00mm Width) Exposed Pad
Number of Drivers :
1
RoHS Status :
ROHS3 Compliant
Rise / Fall Time (Typ) :
90ns 40ns
Packaging :
Tube
Factory Lead Time :
8 Weeks
High Side Voltage - Max (Bootstrap) :
60V
Operating Temperature :
-40°C~150°C TJ
Published :
2017
Driven Configuration :
High-Side
Base Part Number :
LTC7004
Pin Count :
10
Voltage - Supply :
3.5V~15V
Gate Type :
N-Channel MOSFET
Channel Type :
Single
Mounting Type :
Surface Mount
Datasheets
LTC7004HMSE#PBF
Introducing Gate Drivers Analog Devices, Inc. LTC7004HMSE#PBF from Chip IC,where excellence meets affordability. This product stands out with its Number of Pins:10, Package / Case:10-TFSOP, 10-MSOP (0.118, 3.00mm Width) Exposed Pad, Operating Temperature:-40°C~150°C TJ, Base Part Number:LTC7004, Mounting Type:Surface Mount, LTC7004HMSE#PBF pinout, LTC7004HMSE#PBF datasheet PDF, LTC7004HMSE#PBF amp .Beyond Gate Drivers Analog Devices, Inc. LTC7004HMSE#PBF ,we also offer FAN3180TSX, DGD2104MS8-13, IRS2005STRPBF, Our vast inventory has you covered. Contact us now for immediate solutions.

Analog Devices, Inc. LTC7004HMSE#PBF


Gate Drivers Analog Devices, Inc. LTC7004HMSE#PBF Overview

The LTC7004HMSE#PBF by Analog Devices, Inc. is a high-performance gate driver specifically designed to control N-channel MOSFETs in a high-side configuration. This IC is housed in a compact 10-MSOP package, making it an ideal choice for applications requiring efficient space utilization and reliable high-voltage switching. The LTC7004HMSE#PBF excels in fast switching environments, offering robust protection features and operational stability. This gate driver is optimized for high-speed and high-frequency applications, ensuring minimal delay and reduced power loss, which is crucial for achieving high efficiency in power management systems. The integration of this Gate Drivers Analog Devices, Inc. LTC7004HMSE#PBF ensures superior performance in managing power distribution and conversion, making it an essential component for advanced electronic systems.

LTC7004HMSE#PBF Features

The LTC7004HMSE#PBF gate driver includes several key features that make it highly effective for demanding applications. It provides a strong gate drive capable of delivering up to 2.5A of current, ensuring rapid charging and discharging of gate capacitances. The device features an adjustable turn-on slew rate, which allows for precise control over switching characteristics to minimize EMI emissions. Additionally, it includes under-voltage lockout, over-temperature protection, and a robust floating driver design capable of operating up to 135V. These features collectively enhance system reliability and protect the MOSFETs from potential damage under variable operational conditions.

LTC7004HMSE#PBF Applications

  • Motor Control Systems: In motor drive applications, the LTC7004HMSE#PBF manages the high-side gate driving, enabling efficient and safe switching of MOSFETs in H-bridge configurations for precise motor speed and torque control.
  • Solar Power Inverters: This driver is crucial in solar inverters where it controls the power switches that convert DC from solar panels into AC, optimizing the power conversion efficiency and reliability.
  • Power Supply Units: In PSU designs, the LTC7004HMSE#PBF is used to drive the MOSFETs that handle high input voltages, ensuring stable operation and improved power efficiency under fluctuating load conditions.
  • Electric Vehicles: It is used in the power management systems of electric vehicles to handle high-side driving of MOSFETs, crucial for energy distribution and management across the vehicle's electrical systems.
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