DSC1001DI2-025.0000T

Microchip Technology
998-1001DI2025.0000T
DSC1001DI2-025.0000T

Mfr.:

Description:
MEMS Oscillators MEMS OSC, LVCMOS, 25MHz, 25PPM, 1.8-3.3V, -40 to 85C, 2.5 x 2.0mm

Availability

Stock:
0

You can still purchase this product for backorder.

On Order:
1 587
Expected 23/03/2026
1 000
Expected 25/05/2026
Factory Lead Time:
15
Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1000   Multiples: 1000
Unit Price:
-,-- €
Ext. Price:
-,-- €
Est. Tariff:
This Product Ships FREE

Pricing (EUR)

Qty. Unit Price
Ext. Price
Full Reel (Order in multiples of 1000)
0,559 € 559,00 €

Alternative Packaging

Mfr. Part No.:
Packaging:
Cut Tape
Availability:
In Stock
Price:
0,67 €
Min:
1

Similar Products

Product Attribute Attribute Value Select Attribute
Microchip
Product Category: MEMS Oscillators
RoHS:  
CDFN-4
25 MHz
25 PPM
40 pF
1.8 V
3.3 V
CMOS
10.8 mA
- 40 C
+ 85 C
DSC1001
Brand: Microchip Technology
Duty Cycle - Max: 55 %
Height: 0.85 mm (0.033 in)
Length: 2.5 mm (0.098 in)
Moisture Sensitive: Yes
Packaging: Reel
Product Type: MEMS Oscillators
Factory Pack Quantity: 1000
Subcategory: Oscillators
Width: 2 mm (0.079 in)
Unit Weight: 12,300 mg
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Attributes selected: 0

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TARIC:
8541600000
CNHTS:
8542391090
CAHTS:
8541600020
USHTS:
8542390090
JPHTS:
8541600104
MXHTS:
8542399999
BRHTS:
85416010
ECCN:
EAR99

DSC1001 Low-Power Precision CMOS Oscillators

Microchip Technology DSC1001 Low-Power Precision CMOS Oscillators are silicon MEMS-based CMOS oscillators. These oscillators offer jitter and stability performance over a wide range of supply voltages and temperatures. Each device operates from 1MHz to 150MHz with supply voltages between 1.8V to 3.3V and temperature ranges up to -40ºC to +105ºC. The DSC1001 incorporates an all silicon resonator robust and nearly immune to stress related fractures, common to crystal-based oscillators. A crystal-less design allows for a higher level of reliability. This feature makes these oscillators ideal for rugged, industrial, and portable applications where stress, shock, and vibration damage quartz crystal-based systems.