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Microchip Technology DSC1001BI5-025.2000 — Crystals & Oscillators

DSC1001BI5-025.2000 MEMS XO 25.2 MHz CMOS AEC-Q100 -

MPNDSC1001BI5-025.2000
Active

Microchip DSC1001BI5-025.2000, XO (Standard) MEMS oscillator, 25.2 MHz CMOS output, ±10 ppm frequency stability, 1.8V–3.3V supply, -40°C to 85°C, AEC-Q100 automotive qualified.

Independent supplier — new & surplus stockAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

DSC1001BI5-025.2000 specifications
ParameterValue
TypeXO (Standard)
SeriesDSC1001
MountingSurface Mount
Supply voltage1.8V ~ 3.3V
Current - supply6.3mA
Current - supply (Disable)15µA
Frequency25.2 MHz
Frequency stability±10ppm
Operating temperature-40°C~85°C
Size (Dimension)0.197\" L x 0.126\" W (5.00mm x 3.20mm)
Height - seated0.035\" (0.90mm)
OutputCMOS
PackageTube
RatingsAEC-Q100
FunctionStandby (Power Down)
Base resonatorMEMS
Case4-SMD, No Lead

Product details

AEC-Q100 qualification places this oscillator in the automotive-grade bin — suitable for under-hood or cabin-domain ECUs where the clock must hold its timing through temperature swings and supply transients without the warm-up drift of a quartz crystal.

Operating from a 1.8V to 3.3V supply rail, the part fits into both 1.8V-core and 3.3V-I/O domains without an external level translator on the clock line.

Package and mounting for PCB layout

Housed in a 5.00 mm × 3.20 mm 4-SMD no-lead package with a seated height of 0.90 mm, the footprint is shared across many MEMS oscillators — layout reuse is straightforward if a frequency or stability variant is needed later.

Frequently asked questions

Is the DSC1001BI5-025.2000 RoHS compliant?

The evidence does not carry a RoHS compliance entry, but Microchip's standard MEMS oscillator products are typically RoHS-compliant. Confirm on the manufacturer's datasheet or request a certificate of compliance with your RFQ.

What is the output type and supply voltage range for the DSC1001BI5-025.2000?

The output is CMOS and the supply voltage range is 1.8V to 3.3V. The CMOS output swings rail-to-rail, so the logic-level threshold matches the supply voltage.