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Microchip Technology DSC1001DI5-011.0592T — Crystals & Oscillators

DSC1001DI5-011.0592T MEMS XO – 11.0592 MHz, CMOS, AEC-Q100

MPNDSC1001DI5-011.0592T
Active

Microchip DSC1001DI5-011.0592T, XO (Standard) 11.0592 MHz, CMOS output, ±10 ppm, AEC-Q100, -40°C to +85°C, 4-SMD No Lead.

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

Specifications

DSC1001DI5-011.0592T specifications
ParameterValue
TypeXO (Standard)
SeriesDSC1001
MountingSurface Mount
Supply voltage1.8V ~ 3.3V
Current - supply6.3mA
Current - supply (Disable)15µA
Frequency11.0592 MHz
Frequency stability±10ppm
Operating temperature-40°C~85°C
Size (Dimension)0.098\" L x 0.079\" W (2.50mm x 2.00mm)
Height - seated0.035\" (0.90mm)
OutputCMOS
PackageTape & Reel (TR)
RatingsAEC-Q100
FunctionStandby (Power Down)
Base resonatorMEMS
Case4-SMD, No Lead

Product details

MEMS XO for automotive clocking: 11.0592 MHz, CMOS, AEC-Q100

The DSC1001DI5-011.0592T is a Microchip MEMS-based XO (standard oscillator) delivering a fixed 11.0592 MHz CMOS output from a 4-SMD, no-lead package measuring 2.50 mm x 2.00 mm.

AEC-Q100 qualification and PPAP documentation

This oscillator carries AEC-Q100 qualification — the automotive IC stress-test standard covering temperature grade, reliability, and PPAP documentation.

Package footprint and board-level integration

Housed in a 4-SMD, no-lead package (2.50 mm x 2.00 mm footprint, 0.90 mm seated height), this oscillator sits flush on the PCB — no through-hole leads, no exposed paddle.

Frequently asked questions

How can I order the DSC1001DI5-011.0592T or check availability?

This part is Active and available through independent distribution. Submit an RFQ with your target quantity and required delivery timeframe — we source against your BOM line and confirm current pricing and lead time at quote stage. No stock-holding claim is made; each order is quoted individually.

What is the frequency stability of the DSC1001DI5-011.0592T?

This stability is adequate for UART baud-rate generation, CAN bus clocking, and general-purpose MCU timing where the system budget allows a few ppm of drift from the oscillator alone.