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Microchip Technology DSC1001DL5-128.0000 — Crystals & Oscillators

DSC1001DL5-128.0000 MEMS Oscillator

MPNDSC1001DL5-128.0000
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Microchip Technology DSC1001DL5-128.0000, XO (Standard) MEMS oscillator, 128 MHz CMOS output, ±10ppm stability, AEC-Q100 qualified, 4-SMD no-lead package

$2.5900Ref. price · indicative, final on quote
Independent supplier — new & surplus stockAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

DSC1001DL5-128.0000 specifications
ParameterValue
TypeXO (Standard)
SeriesDSC1001
MountingSurface Mount
Supply voltage1.8V ~ 3.3V
Current - supply16.6mA
Current - supply (Disable)15µA
Frequency128 MHz
Frequency stability±10ppm
Operating temperature-40°C~105°C
Size (Dimension)0.098\" L x 0.079\" W (2.50mm x 2.00mm)
Height - seated0.035\" (0.90mm)
OutputCMOS
PackageTube
RatingsAEC-Q100
FunctionStandby (Power Down)
Base resonatorMEMS
Case4-SMD, No Lead
Absolute pull range±10ppm

Product details

Why this oscillator fits an automotive clock tree

The DSC1001DL5-128.0000 is a MEMS-based XO (Standard) oscillator delivering a 128 MHz CMOS clock with ±10ppm frequency stability — tight enough for 100BASE-T1 Ethernet or CAN-FD timing without external PLL tuning.

Standby power-down and package footprint

The 4-SMD, no-lead package measures 2.50mm x 2.00mm with a seated height of 0.90mm, a standard 4-pin MEMS oscillator footprint that matches many existing PCB layouts without a board spin.

Frequently asked questions

How can I order DSC1001DL5-128.0000 or check availability?

Submit an RFQ with your target quantity and required delivery window; we confirm pricing and lead time against the BOM line at quote time.

Does DSC1001DL5-128.0000 have a standby or power-down feature?

Yes, the function is Standby (Power Down). When disabled, the supply current drops to 15µA max, suitable for battery-backed or sleep-mode applications.

What is the output type and frequency stability?

Output is CMOS at 128 MHz with ±10ppm frequency stability. The tight stability eliminates the need for external trimming in precision clock applications.