
Allicdata Part #: | MCP14E9T-E/MF-ND |
Manufacturer Part#: |
MCP14E9T-E/MF |
Price: | $ 0.99 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Microchip Technology |
Short Description: | IC MOSFET DRIVER 3A 8DFN-S |
More Detail: | Low-Side Gate Driver IC Inverting 8-DFN-S (6x5) |
DataSheet: | ![]() |
Quantity: | 1000 |
3300 +: | $ 0.90198 |
Logic Voltage - VIL, VIH: | 0.8V, 2.4V |
Base Part Number: | MCP14E9 |
Supplier Device Package: | 8-DFN-S (6x5) |
Package / Case: | 8-VDFN Exposed Pad |
Mounting Type: | Surface Mount |
Operating Temperature: | -40°C ~ 150°C (TJ) |
Rise / Fall Time (Typ): | 14ns, 17ns |
Input Type: | Inverting |
Current - Peak Output (Source, Sink): | 3A, 3A |
Series: | -- |
Voltage - Supply: | 4.5 V ~ 18 V |
Gate Type: | IGBT, N-Channel, P-Channel MOSFET |
Number of Drivers: | 2 |
Channel Type: | Independent |
Driven Configuration: | Low-Side |
Part Status: | Active |
Packaging: | Tape & Reel (TR) |
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Power management integrated circuits (PMIC) are widely used in many modern electronics. Commonly used to regulate power in electronic applications, they allow a computer or device to use as much power as it needs, when it needs it. In modern electronics, this power regulation is essential in order to maximize the efficiency of the electronic. PMICs are divided into two major categories: Gate Drivers and Regulators.
A Gate Driver is a device specifically designed to switch power to a higher voltage system or to control the flow of energy between components. MCP14E9T-E/MF Gate Drivers are specially designed devices from Microchip Technology, Inc. (MCP). With a core power range of 1.8V to 5.5V and a drive voltage range of 6V to 40V, these drivers can be used in a wide range of applications.
MCP14E9T-E/MF Gate Drivers are typically used in automotive, industrial, and medical applications. They are ideal for such applications since they can drive a wide range of voltage systems and yet operate from a low power supply. The output of the device can be programmed to either open or closed, giving it control over the power supplied to a given system at any given time. The MCP14E9T-E/MF can also be used to drive electrical motors which require very high voltages.
The MCP14E9T-E/MF utilizes a number of different technologies and processes to create MOSFET driver applications. The device contains two state-of-the-art gate drivers, each featuring integrated circuits (ICs) and gate resistors that are designed to reduce switching losses. These gate drivers also feature a number of protection measures such as an integrated overvoltage protection, transient protection, and ESD protection.
The main components used in an MCP14E9T-E/MF include a low voltage high power MOSFET driver and a differential input voltage regulator. The MOSFET driver is configured to operate from a very low power supply, allowing it to drive a wide range of voltages. The differential input voltage regulator is used to stabilize the input voltage for consistent operation of the circuit. This ensures that the output voltage does not vary drastically under different conditions.
The working of an MCP14E9T-E/MF Gate Driver is relatively straightforward. Upon receiving an input voltage, the low voltage high power MOSFET driver will regulate it. Output of this device is then further regulated with the differential input voltage regulator to provide a consistent output voltage. The resistance of the gate drivers is then used to reduce the switching losses. This ensures that the necessary amount of power supplied to the target circuit is adequate and reliable.
In summary, MCP14E9T-E/MF Gate Drivers are versatile devices from Microchip Technology, Inc. (MCP). They can be used to drive a wide range of voltage systems and can be operated from a low power supply. The device contains two gate drivers and a differential input voltage regulator for reliable and consistent operation. The low voltage high power MOSFET driver can regulate input voltages, while the gate resistors reduce the switching losses. This makes the MCP14E9T-E/MF perfect for automotive, industrial, and medical applications, as well as applications that require the driving of electrical motors and components.
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