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DSC1001DI1-024.0000T

MEMS Oscillator, 24 MHz, SMD, 2.5mm x 2mm, 50 ppm, 3.3 V, DSC1001

Manufacturer:Microchip
Avnet Manufacturer Part #: DSC1001DI1-024.0000T
Secondary Manufacturer Part#: DSC1001DI1-024.0000T
  • Legend Information Icon RoHS 10 Compliant
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DSC1001DI1-024.0000T is a silicon MEMS-based CMOS oscillator offering 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 the DSC1001 ideal for rugged, industrial, and portable applications where stress, shock, and vibration can damage quartz crystal based systems. It is used in mobile applications, consumer electronics, portable electronics, DVR, CCTV, surveillance cameras, low-profile applications, and industrial applications.

  • Pin for pin “drop in” replacement for industry standard oscillators
  • Semiconductor level reliability, significantly higher than quartz
  • Short mass production lead-times
  • Longer battery life/reduced power, MIL-STD 883 shock and vibration resistant
  • Compact plastic package, cost effective
  • 24MHz frequency, ±50ppm stability
  • Operating voltage range from 1.7V to 3.6V
  • Standby supply current is 15uA maximum at (T=25°C)
  • Output duty cycle is 55% maximum at (VDD = 1.8 to 3.3V, TA=85°C)
  • Operating temperature range from -40°C +85°C, plastic QFN package

Technical Attributes

Find Similar Parts

Description Value
24 MHz
50 ppm
85 °C
-40 °C
SMD, 2.5mm x 2mm
CMOS
DSC1001 Series
3.3 V

ECCN / UNSPSC / COO

Description Value
Country of Origin: RECOVERY FEE
ECCN: EAR99
HTSN: 8542330001
Schedule B: 8542330000
In Stock :  0
Additional inventory
Factory Lead Time: 28 Weeks
Price for: Each
Quantity:
Min:2000  Mult:1000  
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$0.68571
4000+
$0.64865
8000+
$0.63158
16000+
$0.61538
32000+
$0.6