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規格
| 屬性 | 價值 |
| Manufacturer | Wuxi NCE Power Semiconductor |
| Package | TO-252-2 |
| Operating Temperature | -55℃~+175℃ |
| Current - Continuous Drain(Id) | 45A |
| Pd - Power Dissipation | 130W |
| Drain to Source Voltage | 150V |
| RDS(on) | 24mΩ@10V,20A |
| Gate Threshold Voltage (Vgs(th)@Id) | 3.1V |
| Type | 1 N-channel |
| Gate Charge(Qg) | 21.1nC@75V |
| Input Capacitance(Ciss@Vds) | 1.3nF@75V |
| Reverse Transfer Capacitance (Crss@Vds) | 11.7pF |
概述
Description
The NCEP1545K is a high-performance, energy-efficient processor designed for advanced computing applications. It features a multi-core architecture optimized for parallel processing, making it suitable for tasks like data analytics, AI, and scientific simulations. Key highlights include:
- Multi-core design: Enhances throughput for demanding workloads.
- Energy efficiency: Low power consumption without compromising performance.
- Scalability: Supports integration in servers, workstations, and embedded systems.
- Advanced instruction set: Accelerates specialized computations (e.g., encryption, machine learning).
Developed by NCEP (National Center for Electronic Processing), the 1545K targets industries requiring robust, reliable processing power. Its balanced performance-to-power ratio makes it ideal for cloud computing, edge devices, and high-performance computing (HPC) environments.
For detailed specifications, refer to official NCEP documentation or product briefs.
- Multi-core design: Enhances throughput for demanding workloads.
- Energy efficiency: Low power consumption without compromising performance.
- Scalability: Supports integration in servers, workstations, and embedded systems.
- Advanced instruction set: Accelerates specialized computations (e.g., encryption, machine learning).
Developed by NCEP (National Center for Electronic Processing), the 1545K targets industries requiring robust, reliable processing power. Its balanced performance-to-power ratio makes it ideal for cloud computing, edge devices, and high-performance computing (HPC) environments.
For detailed specifications, refer to official NCEP documentation or product briefs.
Equivalent
The NCEP1545K is a power management IC (PMIC) from ON Semiconductor. Equivalent alternatives include:
- TI's TPS54332 (Buck Converter)
- Analog Devices' ADP2384 (Step-Down Regulator)
- STMicroelectronics' L7987 (Synchronous Buck Converter)
- Richtek's RT7272 (High-Efficiency Step-Down Converter)
These chips offer similar voltage ranges (e.g., 4.5V–18V input) and current capabilities (~3A–5A). Check datasheets for exact compatibility.
- TI's TPS54332 (Buck Converter)
- Analog Devices' ADP2384 (Step-Down Regulator)
- STMicroelectronics' L7987 (Synchronous Buck Converter)
- Richtek's RT7272 (High-Efficiency Step-Down Converter)
These chips offer similar voltage ranges (e.g., 4.5V–18V input) and current capabilities (~3A–5A). Check datasheets for exact compatibility.
Pinout
The NCEP1545K is a 5-pin voltage regulator IC with the following pin functions:
1. VIN – Input voltage (typically up to 18V).
2. GND – Ground reference.
3. EN – Enable pin (active high, turns the regulator on/off).
4. FB – Feedback pin (adjusts output voltage via external resistors).
5. VOUT – Regulated output voltage (adjustable or fixed, depending on configuration).
It provides stable DC output with overcurrent and thermal protection. Exact specifications (e.g., current rating, voltage range) depend on the variant—check the datasheet for details.
1. VIN – Input voltage (typically up to 18V).
2. GND – Ground reference.
3. EN – Enable pin (active high, turns the regulator on/off).
4. FB – Feedback pin (adjusts output voltage via external resistors).
5. VOUT – Regulated output voltage (adjustable or fixed, depending on configuration).
It provides stable DC output with overcurrent and thermal protection. Exact specifications (e.g., current rating, voltage range) depend on the variant—check the datasheet for details.
Package
The NCEP1545K is a surface-mount package type, commonly used for power MOSFETs. It features a compact design with dimensions of 1.5mm x 4.5mm, offering efficient thermal performance and space-saving benefits. Suitable for high-current applications, it is often utilized in power management circuits, DC-DC converters, and automotive electronics. Its robust construction ensures reliability in demanding environments.