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Silicon MEMS Oscillator MICROCHIP DSC1001DI1-024.0000T Suitable for Rugged and Portable Applications

Price Negotiable
Price: Negotiable
MOQ: Negotiable
Delivery Time: Negotiable
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 enhanced reliability, making it suitable for rugged, industrial, and portable applications. Available in industry-standard packages, it serves as a pin-for-pin replacement for standard crystal oscillators.

Product Attributes

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

Technical Specifications

ParameterSymbolMin.Typ.Max.UnitsConditions
Frequency RangeF01150MHzSingle Frequency
Frequency Tolerancef10ppmIncludes variations due to initial tolerance, temperature, and power supply voltage
Frequency Tolerancef20ppm
Frequency Tolerancef25ppm
Frequency Tolerancef50ppm
Agingf5ppm1 year @ +25C
Supply Current, StandbyIDD15AT = +25C
Output Startup TimetSU1.01.3msT = +25C
Output Disable TimetDA20100ns
Output Duty CycleSYM4555%
Input Logic Level HighVIH0.75 x VDDV
Input Logic Level LowVIL0.25 x VDDVVDD = 1.8V
Supply Current, No Load (VDD=1.8V)IDD6.06.3mA1 MHz, CL = 0 pF, RL = , T = +25C
Supply Current, No Load (VDD=1.8V)IDD6.57.1mA27 MHz, CL = 0 pF, RL = , T = +25C
Supply Current, No Load (VDD=1.8V)IDD7.28.5mA70 MHz, CL = 0 pF, RL = , T = +25C
Supply Current, No Load (VDD=1.8V)IDD8.311.9mA150 MHz, CL = 0 pF, RL = , T = +25C
Output Logic Level High (VDD=1.8V)VOH0.8 x VDDV6 mA, DSC1004, CL = 40 pF
Output Logic Level High (VDD=1.8V)VOH0.8 x VDDV6 mA, DSC1003, CL = 25 pF
Output Logic Level High (VDD=1.8V)VOH0.8 x VDDV4 mA, DSC1001, CL = 15 pF
Output Logic Level Low (VDD=1.8V)VOL0.2 x VDDV6 mA, DSC1004, CL = 40 pF
Output Logic Level Low (VDD=1.8V)VOL0.2 x VDDV6 mA, DSC1003, CL = 25 pF
Output Logic Level Low (VDD=1.8V)VOL0.2 x VDDV4 mA, DSC1001, CL = 15 pF
Output Transition Rise Time (VDD=1.8V)tR1.43.0nsDSC1001, CL = 15 pF, T = +25C, 20% to 80%
Output Transition Rise Time (VDD=1.8V)tR1.53.0nsDSC1003, CL = 25 pF, T = +25C, 20% to 80%
Output Transition Rise Time (VDD=1.8V)tR1.83.0nsDSC1004, C2 = 40 pF, T = +25C, 20% to 80%
Output Transition Fall Time (VDD=1.8V)tF1.03.0nsDSC1001, CL = 15 pF, T = +25C, 20% to 80%
Output Transition Fall Time (VDD=1.8V)tF1.13.0nsDSC1003, CL = 25 pF, T = +25C, 20% to 80%
Output Transition Fall Time (VDD=1.8V)tF1.23.0nsDSC1004, C2 = 40 pF, T = +25C, 20% to 80%
Jitter, Max. Cycle-to-Cycle (VDD=1.8V)JCC60psf = 100 MHz
Period Jitter (VDD=1.8V)JP1015psRMSf = 100 MHz
Supply Current, No Load (VDD=2.5V)IDD6.06.4mA1 MHz, CL = 0 pF, RL = , T = +25C
Supply Current, No Load (VDD=2.5V)IDD6.77.5mA27 MHz, CL = 0 pF, RL = , T = +25C
Supply Current, No Load (VDD=2.5V)IDD7.79.4mA70 MHz, CL = 0 pF, RL = , T = +25C
Supply Current, No Load (VDD=2.5V)IDD9.613.9mA150 MHz, CL = 0 pF, RL = , T = +25C
Output Logic Level High (VDD=2.5V)VOH0.9 x VDDV6 mA, DSC1004, CL = 40 pF
Output Logic Level High (VDD=2.5V)VOH0.8 x VDDV6 mA, DSC1003, CL = 25 pF
Output Logic Level High (VDD=2.5V)VOH0.8 x VDDV4 mA, DSC1001, CL = 15 pF
Output Logic Level Low (VDD=2.5V)VOL0.1 x VDDV6 mA, DSC1004, CL = 40 pF
Output Logic Level Low (VDD=2.5V)VOL0.2 x VDDV6 mA, DSC1003, CL = 25 pF
Output Logic Level Low (VDD=2.5V)VOL0.2 x VDDV4 mA, DSC1001, CL = 15 pF
Output Transition Rise Time (VDD=2.5V)tR1.02.0nsDSC1001, CL = 15 pF, T = +25C, 20% to 80%
Output Transition Rise Time (VDD=2.5V)tR1.12.0nsDSC1003, CL = 25 pF, T = +25C, 20% to 80%
Output Transition Rise Time (VDD=2.5V)tR1.22.0nsDSC1004, C2 = 40 pF, T = +25C, 20% to 80%
Output Transition Fall Time (VDD=2.5V)tF0.92.0nsDSC1001, CL = 15 pF, T = +25C, 20% to 80%
Output Transition Fall Time (VDD=2.5V)tF1.02.0nsDSC1003, CL = 25 pF, T = +25C, 20% to 80%
Output Transition Fall Time (VDD=2.5V)tF1.12.0nsDSC1004, C2 = 40 pF, T = +25C, 20% to 80%
Jitter, Max. Cycle-to-Cycle (VDD=2.5V)JCC50psf = 100 MHz
Period Jitter (VDD=2.5V)JP510psRMSf = 100 MHz
Supply Current, No Load (VDD=3.3V)IDD6.06.5mA1 MHz, CL = 0 pF, RL = , T = +25C
Supply Current, No Load (VDD=3.3V)IDD6.88.0mA27 MHz, CL = 0 pF, RL = , T = +25C
Supply Current, No Load (VDD=3.3V)IDD8.210.5mA70 MHz, CL = 0 pF, RL = , T = +25C
Supply Current, No Load (VDD=3.3V)IDD10.816.6mA150 MHz, CL = 0 pF, RL = , T = +25C
Output Logic Level High (VDD=3.3V)VOH0.9 x VDDV8 mA, DSC1004, CL = 40 pF
Output Logic Level High (VDD=3.3V)VOH0.9 x VDDV6 mA, DSC1003, CL = 25 pF
Output Logic Level High (VDD=3.3V)VOH0.8 x VDDV4 mA, DSC1001, CL = 15 pF
Output Logic Level Low (VDD=3.3V)VOL0.1 x VDDV8 mA, DSC1004, CL = 40 pF
Output Logic Level Low (VDD=3.3V)VOL0.1 x VDDV6 mA, DSC1003, CL = 25 pF
Output Logic Level Low (VDD=3.3V)VOL0.2 x VDDV4 mA, DSC1001, CL = 15 pF
Output Transition Rise Time (VDD=3.3V)tR1.02.0nsDSC1001, CL = 15 pF, T = +25C, 20% to 80%
Output Transition Rise Time (VDD=3.3V)tR1.12.0nsDSC1003, CL = 25 pF, T = +25C, 20% to 80%
Output Transition Rise Time (VDD=3.3V)tR1.22.0nsDSC1004, C2 = 40 pF, T = +25C, 20% to 80%
Output Transition Fall Time (VDD=3.3V)tF0.92.0nsDSC1001, CL = 15 pF, T = +25C, 20% to 80%
Output Transition Fall Time (VDD=3.3V)tF1.02.0nsDSC1003, CL = 25 pF, T = +25C, 20% to 80%
Output Transition Fall Time (VDD=3.3V)tF1.12.0nsDSC1004, C2 = 40 pF, T = +25C, 20% to 80%
Jitter, Max. Cycle-to-Cycle (VDD=3.3V)JCC50psf = 100 MHz
Period Jitter (VDD=3.3V)JP510psRMSf = 100 MHz
Operating Temperature RangeTA40+105C
Operating Temperature RangeTA40+85COrdering Option L
Operating Temperature RangeTA20+70COrdering Option I
Operating Temperature RangeTA20+70COrdering Option E
Junction Operating TemperatureTJ+150C
Storage Temperature RangeTA55+150C
Soldering Temperature RangeTS+260C40 sec. max

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Company Beijing Silk Road Enterprise Management Services Co., Ltd.
Location 16 Floor, Unit B, Jiatai International Mansion, No 41, Dongsihuan Zhong Road, Chaoyang District, Beijing
Contact Person Sellina

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