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SINK Datasheet, PDF

Searched Keyword : 'SINK' - Total: 45 (1/3) Pages
ManufacturerPart #DatasheetDescription
Company Logo Img
Texas Instruments
TPS51200 Datasheet pdf image
1Mb/35P
SINK/SOURCE DDR TERMINATION REGULATOR
TLC59211 Datasheet pdf image
324Kb/12P
8-BIT DMOS SINK DRIVER
UC560 Datasheet pdf image
113Kb/5P
27-Line SCSI Source/Sink Regulator
TLC5916 Datasheet pdf image
765Kb/30P
8-BIT CONSTANT-CURRENT LED SINK DRIVERS
TLC5926 Datasheet pdf image
921Kb/29P
16-CHANNEL CONSTANT-CURRENT LED SINK DRIVERS
TLC5926 Datasheet pdf image
887Kb/31P
16-CHANNEL CONSTANT-CURRENT LED SINK DRIVERS
TLC59210 Datasheet pdf image
347Kb/13P
8-BIT DMOS SINK DRIVER WITH LATCH
REF200 Datasheet pdf image
1Mb/34P
REF200 Dual Current Source and Current Sink
TLC5916 Datasheet pdf image
801Kb/30P
8-BIT CONSTANT-CURRENT LED SINK DRIVERS
TPS51100 Datasheet pdf image
704Kb/20P
3-A SINK/SOURCE DDR TERMINATION REGULATOR
TLC5916 Datasheet pdf image
855Kb/30P
8-BIT CONSTANT-CURRENT LED SINK DRIVERS
TPS5110 Datasheet pdf image
552Kb/18P
3-A SINK/ SOURCE DDR TERMINATION REGULATOR
TPS28226 Datasheet pdf image
1Mb/35P
High-Frequency 4-A Sink Synchronous MOSFET Drivers
LP2996MRX-NOPB Datasheet pdf image
1Mb/26P
Source and Sink Current, Low Output Voltage Offset
TPS28225 Datasheet pdf image
987Kb/30P
High-Frequency 4-A Sink Synchronous MOSFET Driver
TLC59212 Datasheet pdf image
291Kb/9P
8-BIT OPEN-COLLECTOR SINK DRIVER WITH LATCH
TLC5925 Datasheet pdf image
705Kb/23P
LOW-POWER 16-CHANNEL CONSTANT-CURRENT LED SINK DRIVER
TLC59025 Datasheet pdf image
696Kb/21P
LOW-POWER 16-CHANNEL CONSTANT-CURRENT LED SINK DRIVER
TLC5925 Datasheet pdf image
666Kb/22P
LOW-POWER 16-CHANNEL CONSTANT-CURRENT LED SINK DRIVER
TLC59116 Datasheet pdf image
551Kb/30P
16-CHANNEL Fm+ I2C-BUS CONSTANT-CURRENT LED SINK DRIVER

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What is SINK


Sink is generally made of metal, and heat is transferred by being connected to the heating part of electronic parts.

The size and structure of the sink must be designed to fit the calorific value and size of the part, and the heat transfer efficiency increases when the contact area between the part and the sink is large.

There are various types of sinks, and metals such as aluminum, copper, and bronze are generally used for efficient heat dissipation.

The structure of the sink differs depending on the design and performance requirements of the part, and the shape, height, width, and thickness of the sink must be considered along with the connection method with the part.

Therefore, the sink plays an important role in the thermal management of electronic components, and the selection and design of an appropriate sink is one of the factors that can determine the performance and lifespan of a component.

*This information is for general informational purposes only, we will not be liable for any loss or damage caused by the above information.


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