Vishay, 14 Outputs Synchronous Buck Regulator, 6 A Output Current

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TWD108,213.00

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TWD113,622.60

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  • 2027年2月05日 發貨
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RS庫存編號:
274-8652
製造零件編號:
SIC967ED-Y1-GE3
製造商:
Vishay
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品牌

Vishay

Product Type

Synchronous Buck Regulator

Output Current

6A

Number of Outputs

14

Efficiency

95%

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

125°C

Series

SiC967

Number of Pins

57

Package Type

PowerPAK MLP60-A6C

Length

10.6mm

Width

6.5mm

Standards/Approvals

RoHS

Maximum Input Voltage

60V

Minimum Input Voltage

4.5V

COO (Country of Origin):
TW

Vishay SiC967 Series Synchronous Buck Regulator, 95% Efficiency, 6A Output Current - SIC967ED-Y1-GE3


This synchronous buck regulator converts higher DC voltages down to stable lower voltages for power management in electronic systems. Designed for demanding environments, it supports broad input ranges and continuous current delivery while conforming to hazardous-substance restrictions. The device is suited to engineers specifying compact, high-performance DC‑DC conversion where thermal endurance and multiple outputs are required.

Features and Benefits:


• Operates from 4.5V to 60V input for wide-range supply compatibility
• Delivers 6A output current to support moderate load demands
• Achieves up to 95% efficiency to reduce thermal dissipation
• Rated to 125°C maximum operating temperature for harsh conditions
• Includes 57 pins enabling multi‑output or complex configurations
• RoHS compliance simplifies material-selection requirements

Applications


• Can be used for automotive power distribution modules
• Suitable for industrial control and automation supplies
• Ideal for point-of-load regulation in telecommunications
• Used with battery‑supplied systems requiring wide input range
• Suitable for power management in embedded computing platforms

What pin count allows for versatile circuit integration?


The component provides 57 connection pins to accommodate complex routing and multiple output arrangements on compact boards.

How does thermal rating affect board‑level layout?


A 125°C maximum operating temperature permits closer placement to heat‑generating components but requires appropriate copper area and thermal vias to manage junction temperatures.

What voltage span ensures compatibility with common power rails?


The input window extends from 4.5V up to 60V, covering standard low‑voltage rails and higher vehicular or industrial supplies.

How does efficiency influence cooling requirements?


With up to 95% efficiency, conductive and convective cooling demands are reduced, lowering the need for large heatsinks in many designs.

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