
Allicdata Part #: | MCP14E6-E/MF-ND |
Manufacturer Part#: |
MCP14E6-E/MF |
Price: | $ 1.34 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Microchip Technology |
Short Description: | IC MOSFET DRIVER 2A 8DFN-S |
More Detail: | Low-Side Gate Driver IC Inverting 8-DFN-S (6x5) |
DataSheet: | ![]() |
Quantity: | 110 |
1 +: | $ 1.34000 |
10 +: | $ 1.29980 |
100 +: | $ 1.27300 |
1000 +: | $ 1.24620 |
10000 +: | $ 1.20600 |
Logic Voltage - VIL, VIH: | 0.8V, 2.4V |
Base Part Number: | MCP14E6 |
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): | 12ns, 15ns |
Input Type: | Inverting |
Current - Peak Output (Source, Sink): | 2A, 2A |
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: | Tube |
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The MCP14E6-E/MF is a popular gate driver for Power Management Integrated Circuits (PMICs). It provides a wide range of benefits for power management IC applications, including high reliability and low cost.
Relying on the unique Control Automation System (CAS) architecture, gate-level designs can be easily implemented for extremely fast switching and complex control. Additionally, the MCP14E6-E/MF gate driver supports a range of operational modes and an overall package size that minimizes the required number of components with multiple levels of protection.
The MCP14E6-E/MF gate driver is designed to provide high-speed, low- noise, and low-harmonic operation in a wide range of power management systems. It features a low-voltage control input (VC), high-side and low-side gates (VT), active-high and active-low output drivers (VOH and VOL, respectively), and an integrated bootstrap circuit.
The MCP14E6-E/MF gate driver’s wide variety of features make it the perfect choice for many applications. It is used in high-voltage applications such as power management applications, integrated regulators, and dc-to-dc converters. It also provides an integrated bootstrap circuit, which allows for power supply isolation among auxiliary devices and main power supplies.
The MCP14E6-E/MF gate driver features a low voltage control input (VC) and high-side and low-side gates (VT). The VC input can operate up to 12V and can be used to control the open and close of high and low-side switch gates. The VT pins can be used to provide feedback from the device to the application, allowing for precision control. The MCP14E6-E/MF also includes internal voltage protection and a temperature monitor to ensure safe operation.
The MCP14E6-E/MF gate driver’s advanced architecture allows for higher-speed switching with low-power loss than conventional gate drivers, supporting the use of large gate capacitors. The internal voltage protection allows for the inrush of current from large capacitor charging, minimizing the noise. It is also designed with overvoltage protection, meaning it can handle overvoltage conditions such as load dump, as well as events such as negative voltage spikes.
The MCP14E6-E/MF gate driver also features an advanced control system, which automatically adjusts the operating frequency in order to reduce switching losses and improve system efficiency. The integrated advanced pulse-width modulation (PWM) control system further enhances system performance, offering improved dynamic performance, reduced response time, and improved dynamic load transient performance.
In summary, the MCP14E6-E/MF gate driver is the perfect choice for applications that require high reliability, low cost, and high-speed, low-noise operation. Its advanced control system ensures optimal power management, and its integrated bootstrap circuit provides power supply isolation for auxiliary devices. It is also designed with a wide range of operational modes and an overall package size that minimizes the number of components required with multiple levels of protection.
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