LM25116MH

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LM25116MH

IC REG CTRLR BUCK 20TSSOP

  • Nhà sản xuất
  • Ông. Phần #LM25116MH
  • Gói HTSSOP (PWP)-20
  • Bảng dữ liệu
  • Có sẵn5216

100% gốc & amp; Mới

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Bảo hành 365 ngày

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Thông số kỹ thuật

Package Tube
ProductStatus Not For New Designs
OutputType Transistor Driver
Function Step-Down
OutputConfiguration Positive
Topology Buck
NumberofOutputs 1
OutputPhases 1
Voltage-Supply(Vcc/Vdd) 6V ~ 42V
Frequency-Switching 50kHz ~ 1MHz
SynchronousRectifier Yes
ClockSync Yes
ControlFeatures Enable, Frequency Control, Ramp, Soft Start
OperatingTemperature -40°C ~ 125°C (TJ)
MountingType Surface Mount
Package/Case 20-PowerTSSOP (0.173, 4.40mm Width)

Tổng quan

Description

The LM25116MH is a synchronous buck controller designed by Texas Instruments, tailored for applications requiring efficient step-down voltage conversion from high input voltages. It supports input voltages ranging from 6V to 42V, making it suitable for a variety of industrial and automotive applications. The device employs a peak current mode control architecture, which enhances transient response and simplifies loop compensation.
One of the key features of the LM25116MH is its programmable switching frequency, which can be set up to 750 kHz, allowing designers to optimize efficiency and component size according to their specific requirements. It also includes an integrated high-side gate driver and a low-side gate driver, facilitating the design of high-efficiency synchronous buck converters.
Additional features include soft-start, adjustable output voltage, and various protection mechanisms such as cycle-by-cycle current limit and thermal shutdown, ensuring robust performance under different conditions. The LM25116MH is packaged in a thermally-enhanced HTSSOP package, providing efficient heat dissipation, which is crucial for high-power applications. Overall, the LM25116MH offers a flexible and reliable solution for designing efficient power converters in demanding environments.

Features

The LM25116MH is a synchronous buck controller designed for high efficiency and versatility in step-down voltage conversion applications. Key features include:
1. Wide Input Voltage Range: It supports a broad input range from 6V to 42V, making it suitable for various applications.

2. Synchronous Rectification: Incorporates synchronous rectification to improve efficiency by reducing power loss associated with diode conduction.
3. Programmable Switching Frequency: The switching frequency can be programmed from 50 kHz to 750 kHz, providing flexibility in design to optimize for size or efficiency.
4. Current Mode Control: Utilizes peak current mode control for fast transient response and ease of loop compensation.
5. Adjustable Output Voltage: Offers the ability to set the output voltage with an external resistor divider.
6. Protection Features: Includes overcurrent protection, thermal shutdown, and undervoltage lockout to enhance reliability and safe operation.
7. Integrated High-Side and Low-Side Drivers: Simplifies the design by eliminating the need for external drivers, supporting high-efficiency MOSFETs.
8. Soft-Start Capability: Provides a programmable soft-start feature to limit inrush current during startup.
These features make the LM25116MH suitable for automotive, industrial, and general power supply applications.

Package

The LM25116MH is a DC-DC synchronous buck controller from Texas Instruments. It is available in a HTSSOP-20 package, which stands for Heat-Sink Thin Shrink Small Outline Package with 20 pins. This package type provides a compact and efficient solution for thermal management in power conversion applications.

Pinout

The LM25116MH is a high-voltage synchronous buck controller from Texas Instruments, used for step-down DC-DC conversion. It typically comes in a 20-pin TSSOP (Thin Shrink Small Outline Package) with PowerPAD for enhanced thermal performance.
Here is a brief overview of its pin functions:
1. VIN: Input voltage pin.
2. VCC: Internal bias supply regulator output.
3. UVLO: Undervoltage lockout programming pin.
4. EN: Enable pin to turn the device on/off.
5. RT: Frequency setting resistor connection.
6. SYNC: Synchronization pin for external clock.
7. FB: Feedback pin for output voltage regulation.
8. COMP: Compensation network connection pin.
9. SS: Soft-start pin.
10. CS: Current sense pin.
11. CSG: Current sense ground.
12. RAMP: Ramp signal generation.
13. SW: Switch node connection.
14. LO: Low-side driver output.
15. HS: High-side driver output.
16. HB: High-side driver bootstrap.
17. HO: High-side gate driver.
18-20. GND, PGND: Ground connections (analog and power).
This configuration supports efficient power conversion with robust control features, enhancing reliability and performance in various applications.

Manufacturer

The LM25116MH is manufactured by Texas Instruments. Texas Instruments is a global semiconductor company that designs and manufactures a wide range of electronic components. They are known for their innovation in analog and embedded processing products, which are used in various applications across industries such as automotive, industrial, personal electronics, communications equipment, and more. Texas Instruments focuses on developing technologies that enable efficient power management, signal processing, and wireless connectivity, among other areas.

Application

The LM25116MH is a synchronous buck controller used primarily in power management applications. It is suitable for step-down voltage conversion and is often applied in automotive systems, telecommunications, industrial power supplies, and networking equipment. Its features, such as wide input voltage range and high efficiency, make it ideal for applications requiring reliable power regulation and conversion from high-input voltages to lower-output voltages.

Equivalent

The LM25116MH is a synchronous buck controller. Equivalent products may include the following:
1. Texas Instruments: LM2743, LM5116
2. Analog Devices: LTC3891, LTC3892
3. Maxim Integrated: MAX15026
4. Microchip Technology: MCP16301 (though less comparable in features)
5. ON Semiconductor: NCP1034
These alternatives vary in specifications, so it's important to compare features and performance criteria relevant to your application.

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