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quality Silicon MEMS oscillator MICROCHIP DSC1001DL2-074.2500 offering low jitter and stable frequency output factory
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quality Silicon MEMS oscillator MICROCHIP DSC1001DL2-074.2500 offering low jitter and stable frequency output factory
>
Specifications
Operating Temperature:
-40℃~+105℃
Current - Supply:
8.7mA
Output Type:
CMOS
Voltage - Supply:
1.8V~3.3V
Frequency Stability:
±25ppm
Frequency:
74.25MHz
Mfr. Part #:
DSC1001DL2-074.2500
Package:
SMD2520-4P
Key Attributes
Model Number: DSC1001DL2-074.2500
Product Description

Product Overview

The DSC1001/3/4 is a silicon MEMS-based CMOS oscillator family offering excellent jitter and stability over a wide range of supply voltages and temperatures. Its crystal-less design provides high reliability, making it suitable for rugged, industrial, and portable applications. Available in industry-standard packages, it offers a pin-for-pin "drop-in" replacement for standard crystal oscillators, ensuring longer battery life and reduced power consumption.

Product Attributes

  • Brand: Microchip Technology Inc.
  • Material: Silicon MEMS
  • Certifications: Pb Free, RoHS, Reach SVHC Compliant, AEC-Q100 Reliability Qualified

Technical Specifications

ParameterSymbolMinTypMaxUnitsConditions
Frequency RangeF01-150MHzSingle Frequency
Frequency ToleranceΔf--±10ppmIncludes frequency variations due to initial tolerance, temperature and power supply voltage
--±20ppm
--±25ppm
--±50ppm
AgingΔf--±5ppm1 year @ +25°C
Supply Current, StandbyIDD--15µAT = +25°C
Output Startup TimetSU-1.01.3msT = +25°C (Note 1)
Output Disable TimetDA-20100ns-
Output Duty CycleSYM45-55%-
Input Logic Level HighVIH0.75 x VDD--V-
Input Logic Level LowVIL--0.25 x VDDV-
Supply Current, No LoadIDD-6.06.3mA1 MHz, CL = 0 pF, RL = ∞, T = +25°C, VDD = 1.8V
6.57.127 MHz, VDD = 1.8V
7.28.570 MHz, VDD = 1.8V
8.311.9150 MHz, VDD = 1.8V
Output Logic Level HighVOH0.8 x VDD--V6 mA, DSC1004, CL = 40 pF, VDD = 1.8V
6 mA, DSC1003, CL = 25 pF, VDD = 1.8V
4 mA, DSC1001, CL = 15 pF, VDD = 1.8V
Output Logic Level LowVOL--0.2 x VDDV6 mA, DSC1004, CL = 40 pF, VDD = 1.8V
6 mA, DSC1003, CL = 25 pF, VDD = 1.8V
4 mA, DSC1001, CL = 15 pF, VDD = 1.8V
Output Transition Rise TimetR-1.43.0nsDSC1001, CL = 15 pF, T = +25°C, 20% to 80%, VDD = 1.8V
1.53.0DSC1003, CL = 25 pF, VDD = 1.8V
1.83.0DSC1004, C2 = 40 pF, VDD = 1.8V
Output Transition Fall TimetF-1.03.0nsDSC1001, CL = 15 pF, T = +25°C, 20% to 80%, VDD = 1.8V
1.13.0DSC1003, CL = 25 pF, VDD = 1.8V
1.23.0DSC1004, C2 = 40 pF, VDD = 1.8V
Jitter, Max. Cycle-to-CycleJCC-60-psf = 100 MHz (Note 2), VDD = 1.8V
Period JitterJP-1015psRMSf = 100 MHz (Note 2), VDD = 1.8V
Supply Current, No LoadIDD-6.06.4mA1 MHz, CL = 0 pF, RL = ∞, T = +25°C, VDD = 2.5V
6.77.527 MHz, VDD = 2.5V
7.79.470 MHz, VDD = 2.5V
9.613.9150 MHz, VDD = 2.5V
Output Logic Level HighVOH0.8 x VDD--V6 mA, DSC1004, CL = 40 pF, VDD = 2.5V
6 mA, DSC1003, CL = 25 pF, VDD = 2.5V
4 mA, DSC1001, CL = 15 pF, VDD = 2.5V
Output Logic Level LowVOL--0.2 x VDDV6 mA, DSC1004, CL = 40 pF, VDD = 2.5V
6 mA, DSC1003, CL = 25 pF, VDD = 2.5V
4 mA, DSC1001, CL = 15 pF, VDD = 2.5V
Output Transition Rise TimetR-1.02.0nsDSC1001, CL = 15 pF, T = +25°C, 20% to 80%, VDD = 2.5V
1.12.0DSC1003, CL = 25 pF, VDD = 2.5V
1.22.0DSC1004, C2 = 40 pF, VDD = 2.5V
Output Transition Fall TimetF-0.92.0nsDSC1001, CL = 15 pF, T = +25°C, 20% to 80%, VDD = 2.5V
1.02.0DSC1003, CL = 25 pF, VDD = 2.5V
1.12.0DSC1004, C2 = 40 pF, VDD = 2.5V
Jitter, Max. Cycle-to-CycleJCC-50-psf = 100 MHz (Note 2), VDD = 2.5V
Period JitterJP-510psRMSf = 100 MHz (Note 2), VDD = 2.5V
Supply Current, No LoadIDD-6.06.5mA1 MHz, CL = 0 pF, RL = ∞, T = +25°C, VDD = 3.3V
6.88.027 MHz, VDD = 3.3V
8.210.570 MHz, VDD = 3.3V
10.816.6150 MHz, VDD = 3.3V
Output Logic Level HighVOH0.8 x VDD--V8 mA, DSC1004, CL = 40 pF, VDD = 3.3V
6 mA, DSC1003, CL = 25 pF, VDD = 3.3V
4 mA, DSC1001, CL = 15 pF, VDD = 3.3V
Output Logic Level LowVOL--0.1 x VDDV8 mA, DSC1004, CL = 40 pF, VDD = 3.3V
6 mA, DSC1003, CL = 25 pF, VDD = 3.3V
4 mA, DSC1001, CL = 15 pF, VDD = 3.3V
Output Transition Rise TimetR-1.02.0nsDSC1001, CL = 15 pF, T = +25°C, 20% to 80%, VDD = 3.3V
1.12.0DSC1003, CL = 25 pF, VDD = 3.3V
1.22.0DSC1004, C2 = 40 pF, VDD = 3.3V
Output Transition Fall TimetF-0.92.0nsDSC1001, CL = 15 pF, T = +25°C, 20% to 80%, VDD = 3.3V
1.02.0DSC1003, CL = 25 pF, VDD = 3.3V
1.12.0DSC1004, C2 = 40 pF, VDD = 3.3V
Jitter, Max. Cycle-to-CycleJCC-50-psf = 100 MHz (Note 2), VDD = 3.3V
Period JitterJP-510psRMSf = 100 MHz (Note 2), VDD = 3.3V
Operating Temperature RangeTA-40-+105°C-
Ordering Option L Temp RangeTA-40-+85°C-
Ordering Option I Temp RangeTA-40-+85°C-
Ordering Option E Temp RangeTA-20-+70°C-
Junction Operating TemperatureTJ--+150°C-
Storage Temperature RangeTA-55-+150°C-
Soldering Temperature RangeTS--+260°C40 sec. max

2411041601_MICROCHIP-DSC1001DL2-074-2500_C611572.pdf

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