LT1952IGN#TRPBF Allicdata Electronics
Allicdata Part #:

LT1952IGN#TRPBF-ND

Manufacturer Part#:

LT1952IGN#TRPBF

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Linear Technology/Analog Devices
Short Description: IC REG CTRLR FWRD CONV 16SSOP
More Detail: Forward Converter Regulator Positive, Isolation Ca...
DataSheet: LT1952IGN#TRPBF datasheetLT1952IGN#TRPBF Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Frequency - Switching: 100kHz ~ 500kHz
Base Part Number: LT1952
Supplier Device Package: 16-SSOP
Package / Case: 16-SSOP (0.154", 3.90mm Width)
Operating Temperature: -40°C ~ 125°C (TJ)
Control Features: Enable, Frequency Control
Serial Interfaces: --
Clock Sync: Yes
Synchronous Rectifier: Yes
Duty Cycle (Max): 90%
Series: --
Voltage - Supply (Vcc/Vdd): 9.25 V ~ 25 V
Output Phases: 1
Number of Outputs: 1
Topology: Forward Converter
Output Configuration: Positive, Isolation Capable
Function: Step-Up/Step-Down
Output Type: Transistor Driver
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Introduction

LT1952IGN#TRPBF is a DC-DC switching controller, a type of voltage regulator, designed to ensure a smooth, consistent voltage level across a wide range of applications and operating temperatures. The controller\'s main operating principles are based on a feedback system, switching operation, and a synchronous rectification method. This allows it to regulate and control a variety of parameters such as voltage, current, and power as needed. It can be used in applications including microcontroller circuits, consumer equipment, automotive systems, and data acquisition circuits.

Feedback System

The LT1952IGN#TRPBF features a feedback system that measures and compares the output voltage to the pre-set reference voltage. This enables it to make the necessary adjustments to the output voltage in order to maintain the desired voltage level over a range of applications. The system also helps to ensure that the output voltage remains stable, even when the input voltage varies, or when the load and temperature change. This helps it to maintain the desired power level and efficiency when faced with varying conditions.

Switching Operation

The LT1952IGN#TRPBF operates by using a switching operation. In this method, the controller turns on and off power switches depending on the voltage difference between the input and output. This ensures that the output voltage remains within the desired range. The frequency of the switching operation is variable and set depending on the load, desired output voltage, and other parameters.

Synchronous Rectification

The LT1952IGN#TRPBF uses a synchronous rectification method to reduce the EMI, minimize heat losses, and improve the controller\'s efficiency. In this method, the switching operation creates two pulses that are out of phase with each other. By allowing the two pulses to run in opposite directions, the resulting current is less than that of a single, non-rectified pulse. This reduces the amount of power lost to the load and EMI. Additionally, the controller can detect how well the output voltage is being regulated and adjust its duty cycle and frequency as needed.

Applications

The LT1952IGN#TRPBF can be used in a wide range of applications, including microcontroller circuits, consumer equipment, automotive systems, and data acquisition circuits. It is capable of regulating the output voltage to meet the needs of the application, while also providing high stability and efficiency. Additionally, its synchronous rectification method helps to reduce the amount of EMI and improve the efficiency of the system.

Conclusion

The LT1952IGN#TRPBF is a DC-DC switching controller designed to provide high stability and efficiency in a wide range of applications. Its main operating principles are based on a feedback system, switching operation, and a synchronous rectification method. This enables it to regulate and control a variety of parameters such as voltage, current, and power as needed. The LT1952IGN#TRPBF can be used in applications including microcontroller circuits, consumer equipment, automotive systems, and data acquisition circuits.

The specific data is subject to PDF, and the above content is for reference

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