LTC7000IMSE#PBF Allicdata Electronics
Allicdata Part #:

LTC7000IMSE#PBF-ND

Manufacturer Part#:

LTC7000IMSE#PBF

Price: $ 4.45
Product Category:

Integrated Circuits (ICs)

Manufacturer: Linear Technology/Analog Devices
Short Description: IC GATE DRVR N-CH MOSFET 16MSOP
More Detail: High-Side Gate Driver IC Non-Inverting 16-MSOP
DataSheet: LTC7000IMSE#PBF datasheetLTC7000IMSE#PBF Datasheet/PDF
Quantity: 1000
1 +: $ 4.03830
25 +: $ 2.71177
100 +: $ 2.30051
Stock 1000Can Ship Immediately
$ 4.45
Specifications
Logic Voltage - VIL, VIH: --
Base Part Number: LTC7000
Supplier Device Package: 16-MSOP
Package / Case: 16-TFSOP (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 ~ 135 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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The LTC7000IMSE#PBF PMIC - Gate Driver is a high accuracy digital-to-analog converter IC suitable for single-channel RF applications. Its integrated circuit is a linear-CDMA (code-division multiple access) Baseband digital-to-analog converter that supports up to four channels for transmitting high speed data. It is designed to drive multiple gate drivers in a single package making it an ideal solution for a wide range of applications.

The LTC7000IMSE#PBF PMIC - Gate Driver features an integrated DC/DC converter, sequential switching, low-noise regulation of the output voltage and fast settling times. Its precision errors are less than 1ppm and features temperature drifting resistance temperature stability with the temperature coefficient less than 0.2ppm / °C. The device also has a low quiescent current output which allows for high power efficiency and requires minimal external components.

The LTC7000IMSE#PBF PMIC - Gate Driver provides a digital output of up to 12 bit resolution and allows for a wide range of digital control functions such as programmable slew-rate control, dead-time control and fault recovery. It also has multiple options for regulating the output voltage, including voltage-down regulation, voltage foldback protection and separated power regulation. The device can be used to drive single or multiple devices from a single digital signal, making it suitable for driving multiple gate driver systems.

The LTC7000IMSE#PBF PMIC - Gate Driver can be used in a wide range of applications such as LED lighting, robotics, motion control, aircraft controllers, and more. Its ability to handle multiple channels and its low power output make it suitable for a range of high-performance power control systems.

The LTC7000IMSE#PBF PMIC - Gate Driver works by taking a digital signal and converting it into a corresponding analog voltage. The analog output is produced by driving a gate driver current to switch a MOSFET (metal oxide semiconductor field-effect transistor) digitally, which switches the output voltage at desired levels. This allows for precise regulation of the output voltage, and a wide range of programmable control options.

In summary, the LTC7000IMSE#PBF PMIC - Gate Driver is a high accuracy digital-to-analog converter IC suitable for single-channel RF applications. Its integrated circuit is a linear-CDMA (code-division multiple access) Baseband digital-to-analog converter that supports up to four channels for transmitting high speed data. It is designed to drive multiple gate drivers in a single package and features an integrated DC/DC converter, sequential switching, and low-noise regulation of the output voltage and fast settling times. It can be used in a wide range of applications such as LED lighting, robotics, motion control, aircraft controllers, and more. The LTC7000IMSE#PBF PMIC - Gate Driver is an ideal solution for a wide range of applications due to its ability to handle multiple channels and its low power output.

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

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