MIC2099-1YMT-TR Allicdata Electronics
Allicdata Part #:

576-3783-2-ND

Manufacturer Part#:

MIC2099-1YMT-TR

Price: $ 0.34
Product Category:

Integrated Circuits (ICs)

Manufacturer: Microchip Technology
Short Description: IC DISTRIBUTION SWITCH
More Detail: N/A
DataSheet: MIC2099-1YMT-TR datasheetMIC2099-1YMT-TR Datasheet/PDF
Quantity: 1000
5000 +: $ 0.30498
Stock 1000Can Ship Immediately
$ 0.34
Specifications
Voltage - Supply (Vcc/Vdd): Not Required
Base Part Number: MIC2099
Supplier Device Package: 6-MLF® (1.6x1.6)
Package / Case: 6-UFDFN Exposed Pad, 6-TMLF®
Operating Temperature: -40°C ~ 125°C (TJ)
Fault Protection: Current Limiting (Adjustable), Over Temperature, UVLO
Features: Slew Rate Controlled
Input Type: Non-Inverting
Rds On (Typ): 170 mOhm
Current - Output (Max): 1.1A
Series: --
Voltage - Load: 2.5 V ~ 5.5 V
Interface: On/Off
Output Type: P-Channel
Output Configuration: High Side
Ratio - Input:Output: 1:1
Number of Outputs: 1
Switch Type: General Purpose
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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The MIC2099-1YMT-TR is a power management integrated circuit (PMIC) from Micrel Semiconductor. It is a Power Distribution Switch, which is designed for use in high-power applications. The MIC2099-1YMT-TR provides a low-side load switch for high-current applications as well as low-side, self-resettable FET switches. The device is specifically designed to offer low on-resistance and off-state leakage currents while maintaining system reliability and efficiency.

Application Field and Working Principle

The MIC2099-1YMT-TR Power Distribution Switch is primarily used in high power applications such as server and telecom systems, data centers, and other industrial and commercial applications. The device is used to switch and regulate power to other subsystems, allowing efficient power management and cost savings on energy costs.

The MIC2099-1YMT-TR works by controlling the current flow in an electronic system. It contains a high side Power MOSFET and a low side FET, which it uses to enable and disable power to other systems. When turned ON, the high side MOSFET is activated, allowing current to flow through the switch. When the switch is turned OFF, the low side FET is activated, preventing current from flowing through the switch. This simple mechanism allows for efficient and reliable power management in high power applications.

In addition to its high-side and low-side FETs, the MIC2099-1YMT-TR also includes a wide range of features to improve system safety and reliability. These features include over-temperature, over-current, and over-voltage protection, as well as under-voltage shutdown, gate-charge control, fast-turn-on, and a soft-start current limit. This allows the MIC2099-1YMT-TR to provide advanced protection against system faults while ensuring reliable and efficient power management.

Key Advantages

The MIC2099-1YMT-TR Power Distribution Switch from Micrel Semiconductor provides a number of advantages over traditional power management solutions. Its low on-resistance, off-state leakage current, advanced protection features, and wide operating temperature range make it an ideal choice for high-power applications.

The device also offers a wide range of features and functions which make it a very flexible solution. The adjustable operating current and over-voltage and over-current protection features ensure a high level of system safety and reliability. The fast-turn-on capability and a soft-start current limit help to reduce system startup time and current surges, while the gate-charge control prevents major leakage current and power losses.

Conclusion

The MIC2099-1YMT-TR Power Distribution Switch from Micrel Semiconductor is a high power integrated circuit designed for use in high power applications. It provides advanced protection against system faults while using an efficient and reliable power management system. The wide range of features and functions makes it a very flexible solution, and the low on-resistance, off-state leakage current, advanced protection features, and wide operating temperature range make it an ideal choice for high-power applications.

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

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