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SIT1618B Datasheet(PDF) 16 Page - SiTime Corp.

Part # SIT1618B
Description  Standard Frequency, High Temperature Oscillator
Download  18 Pages
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Manufacturer  SITIME [SiTime Corp.]
Direct Link  https://www.sitime.com
Logo SITIME - SiTime Corp.

SIT1618B Datasheet(HTML) 16 Page - SiTime Corp.

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The Smart Timing Choice
The Smart Timing Choice
Silicon MEMS Outperforms Quartz
Silicon MEMS Outperforms Quartz Rev. 1.1
www.sitime.com
Best Reliability
Silicon is inherently more reliable than quartz. Unlike quartz
suppliers, SiTime has in-house MEMS and analog CMOS
expertise, which allows SiTime to develop the most reliable
products. Figure 1 shows a comparison with quartz
technology.
Why is SiTime Best in Class:
• SiTime’s MEMS resonators are vacuum sealed using an
advanced EpiSeal™ process, which eliminates foreign par-
ticles and improves long term aging and reliability
• World-class MEMS and CMOS design expertise
Figure 1. Reliability Comparison[1]
Best Aging
Unlike quartz, MEMS oscillators have excellent long term
aging performance which is why every new SiTime product
specifies 10-year aging. A comparison is shown in Figure 2.
Why is SiTime Best in Class:
• SiTime’s MEMS resonators are vacuum sealed using an
advanced EpiSeal process, which eliminates foreign parti-
cles and improves long term aging and reliability
• Inherently better immunity of electrostatically driven
MEMS resonator
Figure 2. Aging Comparison[2]
Best Electro Magnetic Susceptibility (EMS)
SiTime’s oscillators in plastic packages are up to 54 times
more immune to external electromagnetic fields than quartz
oscillators as shown in Figure 3.
Why is SiTime Best in Class:
• Internal differential architecture for best common mode
noise rejection
• Electrostatically driven MEMS resonator is more immune
to EMS
Figure 3. Electro Magnetic Susceptibility (EMS)[3]
Best Power Supply Noise Rejection
SiTime’s MEMS oscillators are more resilient against noise on
the power supply. A comparison is shown in Figure 4.
Why is SiTime Best in Class:
• On-chip regulators and internal differential architecture for
common mode noise rejection
• Best analog CMOS design expertise
Figure 4. Power Supply Noise Rejection[4]
Mean Time Between Failure (Million Hours)
14
16
28
38
500
0
200
400
600
Pericom
TXC
Epson
IDT (Fox)
SiTime
SiTime
20X Better
1.5
3.5
3.0
8.0
0
2
4
6
8
10
1-Year
10-Year
SiTime MEMS vs. Quartz Aging
SiTime MEMS Oscillator
Quartz Oscillator
SiTime
2X Better
- 39
- 40
- 42
- 43
- 45
- 73
- 90
- 80
- 70
- 60
- 50
- 40
- 30
Kyocera
Epson
TXC
CW
SiLabs
SiTime
SiTime vs Quartz
Electro Magnetic Susceptibility (EMS)
SiTime
54X Better
0.0
1.0
2.0
3.0
4.0
5.0
10
100
1,000
10,000
Power Supply Noise Frequency (kHz)
Power Supply Noise Rejection
SiTIme
NDK
Epson
Kyocera
SiTime 
SiTime
3X Better


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