Abbildungen dienen nur als Referenz
LTC1625IGN
+StücklisteSwitching Voltage Regulators LTC1625 - No RSENSE Current Mode Synchronous Step-Down Switching Regulator
-
HerstellerAnaloge Geräte
-
Herstellerteil #LTC1625IGN
-
Datenblatt LTC1625IGN DataSheet
-
Auf Lager26696
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
Übersicht
Description
Key features of the LTC1625IGN include a fixed 200kHz switching frequency, short-circuit protection, and programmable output voltage. Its design integrates a high-side P-channel MOSFET, requiring fewer external components and simplifying the overall circuit design. Additionally, the chip includes thermal shutdown and programmable soft-start to enhance reliability and ease of use.
The LTC1625IGN is typically utilized in systems that demand efficient power conversion, such as in distributed power systems, battery-powered devices, and industrial equipment. Its compact design and robust performance make it a popular choice for engineers looking to implement efficient power solutions in space-constrained environments.
Equivalent
1. LM2679 from Texas Instruments – A high-efficiency step-down voltage regulator.
2. MC34063 from ON Semiconductor – A versatile DC-DC converter.
3. L4970A from STMicroelectronics – A step-down monolithic power switching regulator.
4. TPS5430 from Texas Instruments – A 3A step-down converter with an integrated FET.
Always ensure functional compatibility and verify specific requirements for your application.
Features
1. High Efficiency: The controller is optimized for efficiency across a broad range of output currents, making it suitable for battery-powered applications.
2. Wide Input Voltage Range: It operates over a wide input voltage range, which provides flexibility for various power supply designs.
3. No RSENSE Architecture: It utilizes a proprietary architecture that eliminates the need for a current-sense resistor, reducing power loss and improving efficiency.
4. Frequency Synchronization: The LTC1625IGN supports frequency synchronization to an external clock, allowing for noise-sensitive applications and multi-phase operation.
5. Adjustable Output Voltage: It allows for adjustable output voltage via an external resistor divider, offering versatility in output requirements.
6. Current-Mode Operation: This feature provides excellent line and load transient response.
These features make the LTC1625IGN a versatile choice for power management in a variety of electronic applications.
Pinout
Here's a brief overview of its pin functions:
1. VIN: Input supply pin.
2. SW: Switch node connection to the inductor.
3. PGND: Power ground pin for the switch.
4. BG: Gate drive for the bottom (synchronous) N-channel MOSFET.
5. SGND: Signal ground pin.
6. VFB: Feedback voltage pin; it sets the output voltage with a resistor divider.
7. Ith/RUN: Combined pin for the error amplifier's compensation and the shutdown function.
8. SENSE–: Negative input to the current comparator.
9. SENSE+: Positive input to the current comparator.
10. VOSENSE: Output voltage sense pin.
11. SYNC: Synchronization pin for an external clock.
12. VCC: Internal supply voltage.
13. DRVAUX: Auxiliary bootstrapped gate drive for the top MOSFET.
14. BOOST: Supply to the top gate drive.
15. TG: Gate drive for the top (main) N-channel MOSFET.
16. NC: No connection.
This regulator is used in applications requiring efficient step-down conversion with precise current control.
Manufacturer
Application
1. Telecommunications: Powering communication devices and infrastructure.
2. Computing: Used in power supply for PCs, workstations, and servers.
3. Industrial Equipment: Powering control systems and other industrial electronics.
4. Consumer Electronics: Suitable for powering portable devices and gadgets.
5. Automotive Systems: Used in in-car electronics requiring stable power supplies.
Its high efficiency and ability to operate in a wide range of input voltages make it ideal for battery-powered devices and systems requiring reliable power management.