DSC1124CI2-100.0000

Microchip Technology
998-1124CI2-100.0000
DSC1124CI2-100.0000

Mfr.:

Description:
MEMS Oscillators -40C - 85C 25 ppm 100.0000MHz

In Stock: 182

Stock:
182 Can Dispatch Immediately
Factory Lead Time:
12 Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1
Unit Price:
-,-- €
Ext. Price:
-,-- €
Est. Tariff:

Pricing (EUR)

Qty. Unit Price
Ext. Price
1,20 € 1,20 €
1,01 € 25,25 €

Product Attribute Attribute Value Select Attribute
Microchip
Product Category: MEMS Oscillators
RoHS:  
CDFN-6
100 MHz
25 PPM
2 pF
2.25 V
3.6 V
HCSL
20 mA
- 40 C
+ 85 C
DSC1124
Brand: Microchip Technology
Duty Cycle - Max: 52 %
Height: 0.85 mm (0.033 in)
Length: 3.2 mm (0.126 in)
Moisture Sensitive: Yes
Packaging: Cut Tape
Product Type: MEMS Oscillators
Factory Pack Quantity: 110
Subcategory: Oscillators
Width: 2.5 mm (0.098 in)
Unit Weight: 754,032 mg
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TARIC:
8541600000
CNHTS:
8542391090
CAHTS:
8541600020
USHTS:
8542390090
JPHTS:
8541600104
MXHTS:
8542399999
BRHTS:
85416010
ECCN:
EAR99

Clock and Timing Solutions

Microchip Clock and Timing Solutions are an extensive clock and timing product portfolio for complex timing requirements in designs. Microchip's oscillator products offer low jitter and low power with quartz- or MEMS-based resonators. The clock generation line offers online configurability, single-chip and multiple-frequency clock tree solutions. The clock and data distribution product line includes buffers, logic translators and multiplexers.

PCI Express (PCIe) Timing Solutions

Microchip PCI Express (PCIe) Timing Solutions have evolved to accommodate higher speeds and impose stringent requirements for a reliable clock source. Microchip offers a comprehensive line of PCIe Gen 4-compliant oscillators, clock generators, and buffers. Microchip's timing parts meet PCIe jitter requirements and allow allocation of up to 70% of the total jitter margin to the rest of the system. These highly integrated single-chip solutions can reduce component count and board area without sacrificing performance.