TPS53515 Reference Design Circuit | Synchronous Buck Converter Application Circuit

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The TPS53515 is a small, synchronous buck converter with an adaptive on-time D-CAP3 control mode. This article mainly introduces the TPS53515 features, application range, reference design circuit and circuit analysis to help you shorten the design time.

TPS53515 features: 12A continuous output current; output voltage range: 0.6V to 5.5V; built-in output discharge circuit; open drain power supply normal output

Typical application range of TPS53515: server and cloud computing load point; broadband, network, optical communication infrastructure; I/O power supply

TPS53515 reference design application circuit:

Figure 1 TPS53515 internal structure diagram

The device suits low-output voltage point-of-load applications with 12-A or lower output current in computing and similar digital consumer applications. The device suits low-output voltage point-of-load applications with 12-A or lower output current in computing and similar digital consumer applications.

Figure 2 TPS53515 reference design

TheTPS53515 features proprietary D-CAP3 mode control combined with adaptive on-time architecture. This combination builds modern low-duty-ratio and ultra-fast load-step-response DC-DC converters in an ideal fashion. The output voltage ranges from 0.6 V To 5.5 V.

TPS53515 Chinese data sheet: Click to download

More schematics and source code popular application circuit: click now

Valve Cone And Valve Seat

This valve consists of a hollow, moveable floating piston pressed against a stationary solid seat, and can use the working fluid or an external pressure source to seal the valve. This open/closed valve has a novel balanced piston so it can be designed to always seat with the same amount of force, allowing the use of metal-to-metal seats as well as soft seats. Additionally, this valve design, even when used with large, high-pressure applications, does not require large conventional valve actuators, and the valve stem itself is eliminated. Actuation is achieved with the use of small, simple solenoid or hand valves. This design also eliminates the need for many seals used with existing ball valve and globe valve designs, which also commonly cause failure. Coupled with the elimination of the valve stem and conventional valve actuator, this valve design reduces downtime and maintenance costs, while increasing valve reliability and seat life.

Valve Seat Tool,Hardened Valve Seats,Valve Seat Cutting,Valve Cone And Valve Seat

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