SiT8008BI-71-18S-50.000000G

SiTime
788-BI7118S50000000G
SiT8008BI-71-18S-50.000000G

Mfr.:

Description:
MEMS Oscillators

Availability

Stock:
Non-Stocked
Factory Lead Time:
Minimum: 1   Multiples: 1
Unit Price:
-,-- €
Ext. Price:
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Pricing (EUR)

Qty. Unit Price
Ext. Price
1,11 € 1,11 €
0,955 € 9,55 €
0,86 € 43,00 €
0,827 € 82,70 €
0,763 € 190,75 €
0,746 € 373,00 €
0,715 € 715,00 €
0,667 € 1.667,50 €
0,632 € 3.160,00 €

Product Attribute Attribute Value Select Attribute
SiTime
Product Category: MEMS Oscillators
RoHS:  
50 MHz
20 PPM
1.62 V
1.98 V
LVCMOS, HCMOS
4.1 mA
- 40 C
+ 85 C
AEC-Q100
SiT8008B
Brand: SiTime
Duty Cycle - Max: 55 %
Length: 2 mm (0.079 in)
Operating Supply Voltage: 1.8 V
Product Type: MEMS Oscillators
Subcategory: Oscillators
Width: 1.6 mm (0.063 in)
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Compliance Codes
CNHTS:
8542391000
USHTS:
8542390090
MXHTS:
8542399999
ECCN:
EAR99
Origin Classifications
Country of Origin:
Malaysia
Assembly Country of Origin:
Not available
Country of Diffusion:
Not available
The country is subject to change at the time of shipment.

SiT8008 Low Power Programmable Oscillators

SiTime SiT8008 and SiT8008B low-power programmable oscillators include a programmable drive strength feature to provide a simple, flexible tool to optimize the clock rise/fall time for specific applications. The programmable drive strength improves system radiated electromagnetic interference (EMI) by slowing down the clock rise/fall time. The programmable drive strength also improves the downstream clock receiver’s (RX) jitter by decreasing (speeding up) the clock rise/fall time. The components have the ability to drive large capacitive loads while maintaining full swing with sharp edge rates. The oscillators exhibit EMI reduction by slowing rise/fall time and jitter reduction with faster rise/fall time. Power supply noise can be a source of jitter for the downstream chipset. One way to reduce this jitter is to speed up the rise/fall time of the input clock. Some chipsets may also require faster rise/fall time in order to reduce their sensitivity to this type of jitter. The components have high output load capability. The rise/fall time of the input clock varies as a function of the actual capacitive load the clock drives. At any given drive strength, the rise/fall time becomes slower as the output load increases. The devices can support up to 60pF or higher in maximum capacitive loads with drive strength settings.