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MCP14E5-E/SN
+BOMIC GATE DRVR LOW-SIDE 8SOIC
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Nhà sản xuấtCông nghệ Microchip
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Ông. Phần #MCP14E5-E/SN
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Bảng dữ liệu MCP14E5-E/SN DataSheet
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Gói SOIC-8
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Có sẵn4317
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Thông số kỹ thuật
| thuộc tính | Giá trị |
| Package | Tube |
| ProductStatus | Active |
| DrivenConfiguration | Low-Side |
| ChannelType | Independent |
| NumberofDrivers | 2 |
| GateType | IGBT, N-Channel, P-Channel MOSFET |
| Voltage-Supply | 4.5V ~ 18V |
| LogicVoltage-VILVIH | 0.8V, 2.4V |
| Current-PeakOutput(SourceSink) | 4A, 4A |
| InputType | Inverting, Non-Inverting |
| Rise/FallTime(Typ) | 15ns, 18ns |
| OperatingTemperature | -40°C ~ 150°C (TJ) |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) |
Tổng quan
Description
Key characteristics of the MCP14E5-E/SN include its fast switching speeds, with typical rise and fall times in the nanosecond range, enabling efficient performance in power conversion, motor control, and other high-speed switching tasks. It is capable of sourcing and sinking peak currents to quickly charge and discharge the gate capacitance of MOSFETs.
The device is housed in an 8-pin SOIC package, providing ease of integration into PCB designs. It operates over a wide temperature range, making it suitable for both industrial and consumer applications. Overall, the MCP14E5-E/SN offers a robust solution for driving MOSFETs and IGBTs, enhancing power efficiency and reliability in electronic circuits.
Equivalent
1. Texas Instruments UCC27511 — Low-side MOSFET driver with similar output current capability.
2. ON Semiconductor NCP81074 — A single low-side MOSFET driver.
3. Maxim Integrated MAX4428 — Dual, high-speed MOSFET driver.
These alternatives have similar functions but check datasheets for specific compatibility in terms of voltage, current ratings, and package type.
Features
1. High-Speed Performance: Capable of delivering a peak output current of 1.5A, which allows for rapid switching and reduced transition times.
2. Low Propagation Delay: Typically around 55 ns, ensuring minimal delay between input signal and output response.
3. Wide Operating Voltage Range: Supports input voltages ranging from 4.5V to 18V, making it versatile for various applications.
4. Low Supply Current: Designed for low static power consumption, typically requiring only 1.1 mA.
5. Inverted Logic: This model provides an inverted output, which is essential for certain circuit designs.
6. Latch-Up Protection: Built to withstand up to 1.5A, enhancing reliability in demanding environments.
7. Wide Temperature Range: Suitable for operation in temperatures from -40°C to +125°C, ensuring robustness in harsh conditions.
These features make the MCP14E5-E/SN particularly useful in applications requiring efficient and reliable control of power MOSFETs and IGBTs, such as power supplies, motor control, and other high-speed switching applications.
Pinout
1. VDD (Pin 1): Supply Voltage - Provides power to the device.
2. IN (Pin 2): Input - Receives the input signal to control the output.
3. NC (Pin 3): No Connection - Typically not internally connected.
4. GND (Pin 4): Ground - Reference point for the circuit.
5. OUT (Pin 5): Output - Drives the gate of the MOSFET.
6. NC (Pin 6): No Connection - Typically not internally connected.
7. NC (Pin 7): No Connection - Typically not internally connected.
8. VDD (Pin 8): Supply Voltage - Provides power to the device.
The MCP14E5 is designed to quickly drive capacitive loads, such as power MOSFETs, and is commonly used in switching power supplies and motor control applications.
Manufacturer
Application
1. Switch-Mode Power Supplies (SMPS): Enhances power efficiency by driving MOSFETs at high frequencies.
2. Motor Control: Facilitates rapid switching in motor drivers for precise control.
3. DC-DC Converters: Boosts converter performance by efficiently driving power MOSFETs.
4. Class D Audio Amplifiers: Improves audio fidelity through efficient switching.
5. LED Lighting: Used in LED drivers to optimize power delivery and brightness control.
6. Renewable Energy Systems: Improves inverter efficiency in solar inverters and other renewable setups.
These applications benefit from the driver’s ability to offer fast switching speeds, reduced power losses, and protection features.