LTC7001EMSE#PBF Allicdata Electronics
Allicdata Part #:

LTC7001EMSE#PBF-ND

Manufacturer Part#:

LTC7001EMSE#PBF

Price: $ 3.56
Product Category:

Integrated Circuits (ICs)

Manufacturer: Linear Technology/Analog Devices
Short Description: IC GATE DRVR N-CH MOSFET 10MSOP
More Detail: High-Side Gate Driver IC Non-Inverting 10-MSOP-EP
DataSheet: LTC7001EMSE#PBF datasheetLTC7001EMSE#PBF Datasheet/PDF
Quantity: 1000
1 +: $ 3.23190
25 +: $ 2.20424
100 +: $ 1.86997
Stock 1000Can Ship Immediately
$ 3.56
Specifications
Logic Voltage - VIL, VIH: --
Base Part Number: LTC7001
Supplier Device Package: 10-MSOP-EP
Package / Case: 10-TFSOP, 10-MSOP (0.118", 3.00mm Width) Exposed Pad
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 125°C (TJ)
Rise / Fall Time (Typ): 90ns, 40ns
Input Type: Non-Inverting
Current - Peak Output (Source, Sink): --
Series: --
Voltage - Supply: 3.5 V ~ 15 V
Gate Type: N-Channel MOSFET
Number of Drivers: 1
Channel Type: Single
Driven Configuration: High-Side
Part Status: Active
Packaging: Tube 
Description

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Introduction

The LTC7001EMSE#PBF (LTC) is a high-performance logic output gate driver, a high-density, low-cost, programmable, and integrated PMIC (Power Management IC) Gate Driver. It is designed to take signals from various digital logic devices and drive gates or relays to control loads and devices. Its compact and robust design makes it suitable for a wide range of applications, from consumer to industrial devices. This paper aims to provide an overview of the LTC7001EMSE#PBF application field and working principle.

Application Field

The LTC7001EMSE#PBF gate driver is designed to drive various loads, from consumer and industrial equipment. It can be used to drive loads from motors, solenoids, and fans to lighting, consumer electronics, and power control systems. The LTC7001EMSE#PBF gate driver can also be used to control wireless communication modules and computer peripherals. The low-voltage operation of this gate driver makes it suitable for a wide range of consumer, automotive, and industrial applications.The LTC7001EMSE#PBF is built with an industry-standard footprint, making it easy to integrate with existing systems. It is optimized for use with high-current gate drive circuits, and its Pb-free package ensures compliance with a variety of RoHS regulations. This makes it an ideal choice for industrial, medical, and military applications.

Working Principle

The LTC7001EMSE#PBF gate driver employs various technologies to ensure efficient operation. The driver utilizes an advanced logic-output circuit to ensure accurate logic levels and reliable operation. High-speed edge conditioners provide quick rise and fall time, eliminating delays between logic and load signals.The driver also features adjustable current source and sink capability. This allows it to power loads up to 2.5A (maximum) through a single transistor connection with no separate current-sinking transistor. The adjustable current levels allow the designer to customize the system’s performance to achieve optimal power saving and efficiency.The LTC7001EMSE#PBF also utilizes a Failure-Signaling Lockout feature to protect the load from unexpected failures or incorrect commands. This feature monitors the logic levels of the input logic signals and sounds an audible alert if the voltage exceeds the device’s maximum voltage or falls below the device’s minimum voltage.

Conclusion

The LTC7001EMSE#PBF gate driver is a high-performance, low-voltage, programmable gate driver that is well-suited for a wide range of applications, from consumer electronics to industrial equipment. It features an industry-standard footprint and Pb-free package that make it compliant with many RoHS regulations. The driver also utilizes advanced logic-output circuits and high-speed edge conditioners to provide accurate logic levels and fast switching operation. Finally, the adjustable current source and sink capability and failure-signaling lockout feature make the LTC7001EMSE#PBF an excellent choice for designers looking for reliable and efficient gate drivers.

The specific data is subject to PDF, and the above content is for reference

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