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DCMC103T400FE5H

DCMC103T400FE5H

DCMC103T400FE5H

Cornell Dubilier Electronics (CDE)

Cap Aluminum Lytic 10000uF 400V -10% to 50% (88.9 X 130.8mm) Screw Terminal 2000h 85C

SOT-23

DCMC103T400FE5H Datasheet PDF

non-compliant

Technical Specifications

Parameter NameValue
TypeParameter
Factory Lead Time 15 Weeks
Mounting Type Chassis Mount
Package / Case Radial, Can - Screw Terminals
Operating Temperature-40°C~85°C
PackagingBulk
Published 2011
Series DCMC
Size / Dimension 3.500Dia 88.90mm
Tolerance -10% +50%
Part StatusActive
Moisture Sensitivity Level (MSL) Not Applicable
Max Operating Temperature85°C
Min Operating Temperature -40°C
Applications General Purpose
Voltage - Rated 400V
Capacitance 10000μF
Voltage - Rated DC 400V
Lead Pitch 31.75mm
Lead Spacing1.250 31.75mm
Voltage 400V
Lifetime @ Temp 2000 Hrs @ 85°C
Polarization Polar
Life (Hours) 2000 hours
Diameter 88.9mm
Height 130.18mm
Height Seated (Max) 5.187 131.75mm
Radiation HardeningNo
REACH SVHC No SVHC
RoHS StatusROHS3 Compliant
In-Stock:120 items

Pricing & Ordering

QuantityUnit PriceExt. Price
12$132.65167$1591.82004

About DCMC103T400FE5H

The DCMC103T400FE5H from Cornell Dubilier Electronics (CDE) is a high-performance microcontroller designed for a wide range of embedded applications. This component features Cap Aluminum Lytic 10000uF 400V -10% to 50% (88.9 X 130.8mm) Screw Terminal 2000h 85C.

Key Features

  • Advanced AVR architecture for efficient processing
  • Wide operating temperature range: -40°C to 85°C
  • Low power consumption for energy-efficient applications
  • Comprehensive peripheral set including SPI, UART, and USART interfaces

Applications

This microcontroller is ideal for various applications including:

  • Industrial control systems
  • Consumer electronics
  • Automotive systems
  • IoT devices
  • Medical equipment

Technical Support

Hotenda provides comprehensive technical support for the DCMC103T400FE5H, including datasheets, application notes, and design resources. Our team of engineers is available to assist with your design challenges.

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