Skip to main content
Microchip Technology DSC2311KL2-R0009T — Crystals & Oscillators

DSC2311KL2-R0009T MEMS XO – 25 MHz Dual Output, CMOS

MPNDSC2311KL2-R0009T
Active

Microchip DSC2311KL2-R0009T, MEMS-based standard XO, dual 25 MHz CMOS outputs, ±25 ppm stability, 2.25V–3.6V supply, -40°C to +105°C, 6-VDFN package

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

Specifications

DSC2311KL2-R0009T specifications
ParameterValue
TypeXO (Standard)
SeriesDSC2311
Supply voltage2.25V ~ 3.6V
Current - supply (Disable)23 mA
Frequency stability±25ppm
Frequency - output 125MHz
Frequency - output 225MHz
Operating temperature-40°C~105°C
Height0.035\" (0.90mm)
Size (Dimension)0.098\" L x 0.079\" W (2.50mm x 2.00mm)
OutputCMOS
PackageTape & Reel (TR)
FunctionEnable/Disable
Base resonatorMEMS
Case6-VDFN

Product details

The DSC2311KL2-R0009T is a MEMS-based standard XO from Microchip's DSC2311 series, delivering two independent 25 MHz CMOS outputs from a single resonator.

Operating from 2.25V to 3.6V, this oscillator runs directly off a 2.5V or 3.3V rail without an intermediate LDO.

Compact 6-VDFN footprint for space-constrained boards

Housed in a 6-VDFN package measuring 2.50mm x 2.00mm with a 0.90mm seated height, the DSC2311KL2-R0009T fits into tight layouts such as PCIe mini cards, IoT modules, or portable instrumentation.

Sourced through independent distribution; quantities are confirmed and quoted per RFQ.

Frequently asked questions

Is DSC2311KL2-R0009T compatible with 3.3V logic?

Yes. The supply voltage range is 2.25V to 3.6V, and the output is CMOS. At 3.3V supply, the output swings rail-to-rail, directly driving 3.3V CMOS inputs without level translation.

Does DSC2311KL2-R0009T have an enable/disable function?

Yes. The Enable/Disable function is pin-controlled. When disabled, the outputs are tri-stated and the maximum supply current is 23 mA.

What is the frequency of DSC2311KL2-R0009T?

Both outputs are 25 MHz. The part provides two identical 25 MHz CMOS clock signals from a single MEMS resonator.