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BD9G401EFJ-ME2
AUTOMOTIVEINTEGRATED FETBUCKNONS
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- 製造商。 部分 #BD9G401EFJ-ME2
- 包 8-SOIC Exposed Pad
- 資料表 BD9G401EFJ-ME2 DataSheet
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規格
| Package | Tape & Reel (TR),Cut Tape (CT) |
| Series | Automotive, AEC-Q100 |
| ProductStatus | Active |
| Function | Step-Down |
| OutputConfiguration | Positive |
| Topology | Buck |
| OutputType | Adjustable |
| NumberofOutputs | 1 |
| Voltage-Input(Min) | 4.5V |
| Voltage-Input(Max) | 42V |
| Voltage-Output(Min/Fixed) | 0.8V |
| Voltage-Output(Max) | 42V |
| Current-Output | 3.5A |
| Frequency-Switching | 250kHz ~ 500kHz |
| SynchronousRectifier | No |
| OperatingTemperature | -40°C ~ 105°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) Exposed Pad |
概述
Description
The BD9G401EFJ-ME2 is a high-efficiency step-down switching regulator designed and manufactured by ROHM Semiconductor. This device is part of ROHM's DC/DC converter offerings and is tailored for applications that require a compact and efficient power supply solution. The BD9G401EFJ-ME2 supports wide input voltage ranges and delivers a stable output voltage, making it suitable for various electronic devices and systems.
Key features of the BD9G401EFJ-ME2 include high switching frequencies, which contribute to small inductor and capacitor sizes, thus reducing the overall footprint of the power supply circuit. It also integrates overcurrent protection, thermal shutdown, and under-voltage lockout, ensuring reliability and safety in operations. The device's efficiency is optimized across different load conditions, which is critical for battery-powered applications.
Its compact package, combined with its robust performance characteristics, makes the BD9G401EFJ-ME2 an ideal choice for automotive, industrial, and consumer electronics applications where space and efficiency are of utmost importance. The ME2 designation indicates that the component meets certain environmental and quality standards relevant to these industries.
Key features of the BD9G401EFJ-ME2 include high switching frequencies, which contribute to small inductor and capacitor sizes, thus reducing the overall footprint of the power supply circuit. It also integrates overcurrent protection, thermal shutdown, and under-voltage lockout, ensuring reliability and safety in operations. The device's efficiency is optimized across different load conditions, which is critical for battery-powered applications.
Its compact package, combined with its robust performance characteristics, makes the BD9G401EFJ-ME2 an ideal choice for automotive, industrial, and consumer electronics applications where space and efficiency are of utmost importance. The ME2 designation indicates that the component meets certain environmental and quality standards relevant to these industries.
Features
The BD9G401EFJ-ME2 is a high-efficiency DC-DC buck converter designed by Rohm Semiconductor. It operates with a wide input voltage range typically from 4.5V to 42V, making it suitable for various applications, including industrial and automotive systems. The converter delivers a maximum output current of around 1A, with a fixed output voltage or an adjustable version depending on the specific model.
Key features include:
1. High Efficiency: Achieves up to 90% efficiency, reducing power loss and improving thermal performance.
2. Compact Design: Comes in a compact, thermally-enhanced package, suitable for space-constrained applications.
3. Integrated Protection: Includes features like over-current protection (OCP), under-voltage lockout (UVLO), and thermal shutdown to enhance reliability and prevent damage due to faults.
4. Switching Frequency: Operates at a high switching frequency, typically around 750kHz, allowing the use of smaller external components.
5. Soft Start Function: Reduces inrush current during startup to protect the system.
The BD9G401EFJ-ME2 is ideal for power management in automotive electronics, industrial equipment, and other applications requiring efficient voltage conversion.
Key features include:
1. High Efficiency: Achieves up to 90% efficiency, reducing power loss and improving thermal performance.
2. Compact Design: Comes in a compact, thermally-enhanced package, suitable for space-constrained applications.
3. Integrated Protection: Includes features like over-current protection (OCP), under-voltage lockout (UVLO), and thermal shutdown to enhance reliability and prevent damage due to faults.
4. Switching Frequency: Operates at a high switching frequency, typically around 750kHz, allowing the use of smaller external components.
5. Soft Start Function: Reduces inrush current during startup to protect the system.
The BD9G401EFJ-ME2 is ideal for power management in automotive electronics, industrial equipment, and other applications requiring efficient voltage conversion.
Package
The BD9G401EFJ-ME2 is a DC-DC buck converter from ROHM Semiconductor. It is provided in a HTSOP-J8 package, which is a compact, surface-mount package suitable for applications requiring efficient power management and compact design.
Pinout
The BD9G401EFJ-ME2 is a step-down switching regulator IC from ROHM Semiconductor. It is designed for high-efficiency power conversion and is suitable for automotive applications due to its wide operating voltage range and high reliability. The IC comes in an HTSOP-J8 package, which means it has 8 pins.
Here is a brief description of the pin functions:
1. VIN: Input voltage pin. Connect your input power source here.
2. SW: Switch pin. Connect this to the inductor.
3. GND: Ground pin. Connect to the system ground.
4. FB: Feedback pin. Connect this to the output voltage divider to set the output voltage.
5. COMP: Compensation pin. Used for stabilizing the control loop.
6. EN: Enable pin. Used to turn the regulator on or off.
7. VCC: Internal power supply pin. Typically used for decoupling purposes.
8. BOOT: Bootstrap pin. Required for driving the high-side FET.
This IC provides an efficient solution for buck converter designs, featuring a wide input range, which is suitable for various automotive and industrial applications.
Here is a brief description of the pin functions:
1. VIN: Input voltage pin. Connect your input power source here.
2. SW: Switch pin. Connect this to the inductor.
3. GND: Ground pin. Connect to the system ground.
4. FB: Feedback pin. Connect this to the output voltage divider to set the output voltage.
5. COMP: Compensation pin. Used for stabilizing the control loop.
6. EN: Enable pin. Used to turn the regulator on or off.
7. VCC: Internal power supply pin. Typically used for decoupling purposes.
8. BOOT: Bootstrap pin. Required for driving the high-side FET.
This IC provides an efficient solution for buck converter designs, featuring a wide input range, which is suitable for various automotive and industrial applications.
Manufacturer
The BD9G401EFJ-ME2 is manufactured by ROHM Semiconductor. ROHM is a Japanese company that designs and manufactures electronic components. Founded in 1958, ROHM specializes in a wide range of semiconductor products including integrated circuits, diodes, transistors, and other electronic components. The company serves various industries such as automotive, consumer electronics, and industrial systems. ROHM is known for its focus on innovation, quality, and energy-efficient solutions.
Application
The BD9G401EFJ-ME2 is a DC-DC buck converter IC designed for automotive applications. Its key application areas include power supply systems for automotive infotainment modules, body control modules, and advanced driver assistance systems (ADAS). It is also used in battery management systems and other automotive electronic components requiring efficient voltage regulation and reduced power consumption. Its suitability for harsh automotive environments makes it ideal for these applications.
Equivalent
The BD9G401EFJ-ME2 is a buck DC-DC converter from ROHM Semiconductor, designed for high-efficiency power conversion. Equivalent products might include similar buck converters from other manufacturers such as the TPS54340 from Texas Instruments, the LM2675 from Texas Instruments, and the LTC3630A from Analog Devices. It’s crucial to compare specifications like input voltage range, output current capability, switching frequency, and package type to ensure compatibility in your specific application.
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