Specifications
| Attribute | Value |
| Package / Case | Tape & Reel (TR),Cut Tape (CT) |
| Series | NexFET™ |
| Part Status | Active |
| FET Type | N-Channel |
| Technology | MOSFET (Metal Oxide) |
| Drain to Source Voltage (Vdss) | 30 V |
| Current - Continuous Drain(Id) @ 25°C | 20A (Ta) |
| Drive Voltage(Max Rds On Min Rds On) | 4.5V, 10V |
| Rds On(Max) @ Id Vgs | 7.3mOhm @ 10A, 10V |
| Vgs(th)(Max) @ Id | 1.9V @ 250µA |
| Gate Charge(Qg)(Max) @ Vgs | 22.2 nC @ 10 V |
| Vgs(Max) | ±20V |
| Input Capacitance(Ciss)(Max) @ Vds | 1590 pF @ 15 V |
| Power Dissipation (Max) | 3.2W (Ta), 37W (Tc) |
| Operating Temperature | -55°C ~ 150°C (TJ) |
| Mounting Type | Surface Mount |
| Supplier Device Package | 8-VSONP (3x3.3) |
Overview
Description
CSD17578Q3A appears to be a code or identifier that doesn't directly correspond to widely recognized subjects, products, or entities. Without additional context, it's challenging to provide a specific introduction. However, it could refer to a course code, a product ID, or a research project, among other possibilities.
If it's a course, it might be part of a curriculum in a specific field such as computer science, data science, or a related area. In this context, an introduction would typically cover the course objectives, prerequisites, main topics, and evaluation methods.
If it's a product ID or a research project, the introduction would generally describe the purpose, key features, or goals of the project. It would also highlight its significance or potential impact in its respective field.
For a more precise introduction, providing additional details or context about CSD17578Q3A would be necessary.
If it's a course, it might be part of a curriculum in a specific field such as computer science, data science, or a related area. In this context, an introduction would typically cover the course objectives, prerequisites, main topics, and evaluation methods.
If it's a product ID or a research project, the introduction would generally describe the purpose, key features, or goals of the project. It would also highlight its significance or potential impact in its respective field.
For a more precise introduction, providing additional details or context about CSD17578Q3A would be necessary.
Equivalent
The CSD17578Q3A is a N-channel MOSFET by Texas Instruments. Equivalent products include:
1. NXP's BUK9Y10-40E
2. Vishay's SiR422DP
3. Infineon's BSC123N08NS3
4. ON Semiconductor's NTMFS5C604NL
Ensure to compare the specifications such as voltage, current ratings, Rds(on), and package type to verify compatibility for your specific application.
1. NXP's BUK9Y10-40E
2. Vishay's SiR422DP
3. Infineon's BSC123N08NS3
4. ON Semiconductor's NTMFS5C604NL
Ensure to compare the specifications such as voltage, current ratings, Rds(on), and package type to verify compatibility for your specific application.
Features
The CSD17578Q3A is a power MOSFET from Texas Instruments, specifically designed for enhancing power efficiency in various applications. Key features include:
1. N-Channel MOSFET: It is an N-channel device, which is often preferred for its faster switching capabilities compared to P-channel MOSFETs.
2. Low On-Resistance: The MOSFET features a low on-resistance, which helps in reducing power loss during operation, making it ideal for power-sensitive applications.
3. High Current Capability: It is designed to handle high current loads efficiently, suitable for applications requiring significant power management.
4. Compact Package: The device comes in a small SON 3.3 x 3.3 mm package, saving space on the PCB and making it suitable for compact designs.
5. Thermal Performance: It offers excellent thermal performance, which helps in maintaining stability and efficiency under high power conditions.
6. Applications: Commonly used in DC-DC converters, power management systems, and other circuits requiring efficient power handling.
These features make the CSD17578Q3A a versatile component in the realm of efficient power management solutions.
1. N-Channel MOSFET: It is an N-channel device, which is often preferred for its faster switching capabilities compared to P-channel MOSFETs.
2. Low On-Resistance: The MOSFET features a low on-resistance, which helps in reducing power loss during operation, making it ideal for power-sensitive applications.
3. High Current Capability: It is designed to handle high current loads efficiently, suitable for applications requiring significant power management.
4. Compact Package: The device comes in a small SON 3.3 x 3.3 mm package, saving space on the PCB and making it suitable for compact designs.
5. Thermal Performance: It offers excellent thermal performance, which helps in maintaining stability and efficiency under high power conditions.
6. Applications: Commonly used in DC-DC converters, power management systems, and other circuits requiring efficient power handling.
These features make the CSD17578Q3A a versatile component in the realm of efficient power management solutions.
Pinout
The CSD17578Q3A is a NexFET™ Power MOSFET from Texas Instruments. It is housed in an 8-pin SON (Small Outline No-lead) package. However, in this particular MOSFET, only 6 of the 8 pins are used for electrical connections; the remaining are for mechanical support.
The pin configuration is as follows:
1. Gate (G): The gate terminal is used to control the MOSFET's conduction state.
2. Source (S): The source terminal is one of the terminals through which current enters the device when it is on.
3. Drain (D): The drain terminal is where the current exits the device when it is on.
4. Backside/Pad: The exposed pad on the underside of the package is internally connected to the drain terminal and is typically used for heat dissipation.
The CSD17578Q3A is designed for high-efficiency power conversion applications, offering features such as low on-resistance and fast switching capability. This makes it suitable for applications like synchronous rectification and DC-DC converters.
The pin configuration is as follows:
1. Gate (G): The gate terminal is used to control the MOSFET's conduction state.
2. Source (S): The source terminal is one of the terminals through which current enters the device when it is on.
3. Drain (D): The drain terminal is where the current exits the device when it is on.
4. Backside/Pad: The exposed pad on the underside of the package is internally connected to the drain terminal and is typically used for heat dissipation.
The CSD17578Q3A is designed for high-efficiency power conversion applications, offering features such as low on-resistance and fast switching capability. This makes it suitable for applications like synchronous rectification and DC-DC converters.
Manufacturer
The CSD17578Q3A is manufactured by Texas Instruments (TI). Texas Instruments is a technology company that designs and manufactures semiconductors and various integrated circuits. These products are used in a wide range of electronics applications, including industrial, automotive, personal electronics, and communications equipment. TI is particularly known for its analog chips and embedded processors, which are critical components in numerous electronic devices. The company is a leader in the semiconductor industry, with a focus on innovation and quality in the development of electronic solutions.
Application
CSD17578Q3A is a specific designation for a semiconductor component, likely a transistor or MOSFET, used in electronic circuits. Its application areas typically include power management and conversion, motor control, load switching, and amplification in consumer electronics, automotive systems, industrial equipment, and telecommunications. These components are critical for enhancing efficiency, reliability, and performance in devices by enabling efficient energy use, controlling electrical signals, and managing power distribution. The specific applications depend on its electrical characteristics, such as voltage, current ratings, and switching speeds. For precise uses, one would need to consult the datasheet provided by the manufacturer.
Package
The CSD17578Q3A is a power MOSFET from Texas Instruments, and it comes in a SON (Small Outline No-lead) package, specifically a SON 3.3 x 3.3 mm footprint. This package type is designed to offer a compact size with efficient thermal performance, making it suitable for applications with space constraints and requiring effective heat dissipation.