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MICROCHIP DSC1001DI1-033.3333T CMOS Oscillator, MEMS, Low-Power Precision, 33.3333 MHz, 3.3 V, -40 to 85 °C, SMD, 2.5mm x 2mm
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MICROCHIP DSC1001DI1-033.3333T CMOS Oscillator, MEMS, Low-Power Precision, 33.3333 MHz, 3.3 V, -40 to 85 °C, SMD, 2.5mm x 2mm

MICROCHIP DSC1001DI1-033.3333T CMOS Oscillator, MEMS, Low-Power Precision, 33.3333 MHz, 3.3 V, -40 to 85 °C, SMD, 2.5mm x 2mm

$0.49

Original: $1.64

-70%
MICROCHIP DSC1001DI1-033.3333T CMOS Oscillator, MEMS, Low-Power Precision, 33.3333 MHz, 3.3 V, -40 to 85 °C, SMD, 2.5mm x 2mm

$1.64

$0.49

The Story

DSC1001DI1-033.3333T is a 1.8V-3.3V low-power precision silicon MEMS based CMOS oscillator. It offers excellent jitter and stability performance over a wide range of supply voltages and temperatures. It incorporates an all silicon resonator that is extremely robust and nearly immune to stress related fractures, common to crystal based oscillators. Without sacrificing the performance and stability required of today�s systems, a crystal-less design allows for a higher level of reliability, making this ideal for rugged, industrial, and portable applications where stress, shock, and vibration can damage quartz crystal based systems. Typical applications are mobile, consumer electronics, portable electronics, DVR, CCTV, surveillance cameras, low profile applications, industrial applications.
  • AEC-Q100 reliability qualified
  • Pin for pin â��Drop-Inâ�� replacement for industry standard oscillators
  • Semiconductor level reliability, significantly higher than quartz
  • Short mass production lead times, compact plastic package, cost effective
  • Longer battery life/reduced power consumption
  • Output frequency is 33.33MHz
  • Supply standby current is 15µA maximum (T = +25°C, VDD = 1.8 to 3.3V)
  • ±50ppm stability
  • 4-lead 2.5mm x 2.0mm CDFN package
  • Industrial temperature rating range from -40°C to +85°C

Product details

Other details

Brand MICROCHIP
Part Number DSC1001DI1-033.3333T
Quantity Each (Supplied on Cut Tape)
Technical Data Sheet EN Download technical document - datasheet - Tanotis India

All product and company names are trademarks™ or registered® trademarks of their respective holders. Use of them does not imply any affiliation with or endorsement by them.
MICROCHIP DSC1001DI1-033.3333T CMOS Oscillator, MEMS, Low-Power Precision, 33.3333 MHz, 3.3 V, -40 to 85 °C, SMD, 2.5mm x 2mm - Image 2

Details & Craftsmanship

Every detail has been carefully considered to bring you the perfect product.

Description

DSC1001DI1-033.3333T is a 1.8V-3.3V low-power precision silicon MEMS based CMOS oscillator. It offers excellent jitter and stability performance over a wide range of supply voltages and temperatures. It incorporates an all silicon resonator that is extremely robust and nearly immune to stress related fractures, common to crystal based oscillators. Without sacrificing the performance and stability required of today�s systems, a crystal-less design allows for a higher level of reliability, making this ideal for rugged, industrial, and portable applications where stress, shock, and vibration can damage quartz crystal based systems. Typical applications are mobile, consumer electronics, portable electronics, DVR, CCTV, surveillance cameras, low profile applications, industrial applications.
  • AEC-Q100 reliability qualified
  • Pin for pin â��Drop-Inâ�� replacement for industry standard oscillators
  • Semiconductor level reliability, significantly higher than quartz
  • Short mass production lead times, compact plastic package, cost effective
  • Longer battery life/reduced power consumption
  • Output frequency is 33.33MHz
  • Supply standby current is 15µA maximum (T = +25°C, VDD = 1.8 to 3.3V)
  • ±50ppm stability
  • 4-lead 2.5mm x 2.0mm CDFN package
  • Industrial temperature rating range from -40°C to +85°C

Product details

Other details

Brand MICROCHIP
Part Number DSC1001DI1-033.3333T
Quantity Each (Supplied on Cut Tape)
Technical Data Sheet EN Download technical document - datasheet - Tanotis India

All product and company names are trademarks™ or registered® trademarks of their respective holders. Use of them does not imply any affiliation with or endorsement by them.

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