Allicdata Part #: | LTC7001MPMSE#PBF-ND |
Manufacturer Part#: |
LTC7001MPMSE#PBF |
Price: | $ 10.57 |
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: | LTC7001MPMSE#PBF Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 9.60750 |
25 +: | $ 6.38114 |
100 +: | $ 5.42354 |
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: | -55°C ~ 150°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 |
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PMIC or Power Management ICs are integrated circuits designed to control and manage the flow of power in a system or device. Gate drivers are one type of PMIC which are specially designed to drive MOSFET power switches in order to control the voltage, current and power distribution. The LTC7001MPMSE#PBF, is an example of a gate driver and it is designed to provide a cost effective and reliable option for applications where a standard MOSFET gate driver may not meet the required limits. In this article, the application field and working principle of the LTC7001MPMSE#PBF will be discussed.
The LTC7001MPMSE#PBF is primarily designed for applications where high frequency switching using MOSFETs is required. Examples of such applications include switched-mode power supplies and power converters. The main advantages of the device are its low on-resistance switch and high-impedance level shifter. The switch is very low on-resistance and has a minimum on-resistance of 5.5mOhm and a maximum on-resistance of 40mOhm. The level shifter is a high impedance output that is suitable for driving high-side and low-side MOSFETs with a maximum 6nA of total current in pulsed mode operation. The device is also designed with a Schmitt trigger input stage that provides both faster response and noise immunity.
In terms of the working principle of the LTC7001MPMSE#PBF, the device utilizes a N-Channel MOSFET to drive the outputs. The MOSFET is used to switch between the high and low states and the gate of the MOSFET is controlled by three inputs—VIN1, VIN2, and EN. When the inputs VIN1 and VIN2 are high, the MOSFET is off; when the inputs are low, the MOSFET is on. The EN input is used to enable/disable the MOSFET switch. The output of the device is isolated from the control signals and is either high or low depending on the inputs.
The LTC7001MPMSE#PBF is also designed with a high-performance level shifter which is capable of driving both high-side and low-side MOSFETs. The level shifter uses a patented adaptive biasing technology to provide a stable voltage regardless of the load conditions. This ensures that the device can drive both high and low-side MOSFETS reliably and efficiently.
The LTC7001MPMSE#PBF is also designed with a Schmitt trigger input stage which provides noise immunity and faster response. The Schmitt trigger is designed to respond to voltage swings of less than 0.2V and it has a low-noise output. This ensures that the device can operate reliably in high-noise environments.
The LTC7001MPMSE#PBF is an excellent choice for applications that require high frequency switching and reliable operation. The device has low on-resistance and high impedance level shifter, making it suitable for use in a variety of applications. The Schmitt trigger input stage also provides noise immunity and faster response. The device is also designed with a patented adaptive biasing technology which ensures that the device can drive both high-side and low-side MOSFETS reliably and efficiently. Overall, the LTC7001MPMSE#PBF is an excellent option for applications requiring reliable power switching.
The specific data is subject to PDF, and the above content is for reference
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