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Microchip Technology DSC1124CE1-010.2400 — Crystals & Oscillators

DSC1124CE1-010.2400 – 10.24 MHz HCSL MEMS Oscillator

MPNDSC1124CE1-010.2400
Active

Microchip DSC1124CE1-010.2400, XO (Standard), 10.24 MHz, HCSL output, ±50 ppm stability, -20 to +70°C, 2.25-3.6V supply, 6-SMD no-lead package.

$2.2100Ref. price · indicative, final on quote
Sourced new & surplus through independent channelsAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

DSC1124CE1-010.2400 specifications
ParameterValue
TypeXO (Standard)
SeriesDSC1124
MountingSurface Mount
Voltage2.25V ~ 3.6V
Current - supply42mA
Current - supply (Disable)22mA
Frequency10.24 MHz
Frequency stability±50ppm
Operating temperature-20°C ~ 70°C
Size (Dimension)0.126\" L x 0.098\" W (3.20mm x 2.50mm)
Height - seated0.035\" (0.90mm)
OutputHCSL
PackageTube
FunctionEnable/Disable
Base resonatorMEMS
Case6-SMD, No Lead

Product details

10.24 MHz HCSL MEMS oscillator – supply and stability

The MEMS resonator gives it a faster start-up and better jitter immunity than a quartz crystal in the same footprint. Supply voltage spans 2.25V to 3.6V, so a single 2.5V or 3.3V rail works without an extra regulator.

Temperature grade and stability – indoor equipment fit

The stability figure is the total variation over the full temperature range, including initial tolerance, supply shift, and aging.

Package and board layout – 6-SMD no-lead

The 6-SMD, No Lead package measures 3.20 mm x 2.50 mm with a seated height of 0.90 mm – a compact footprint that fits tight clock-tree layouts. The no-lead construction means the terminations are flush with the package body; the PCB land pattern should follow the manufacturer's recommended pad geometry for reliable solder-joint inspection.

Sourcing and lifecycle – active production

Frequently asked questions

What is the frequency tolerance and operating temperature range of the DSC1124CE1-010.2400?

Frequency stability is ±50 ppm over the -20°C to +70°C operating temperature range. This covers the total variation from initial accuracy, supply voltage change, and aging.