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AR0134CSSC00SUEAD 데이터시트(PDF) 20 Page - ON Semiconductor

부품명 AR0134CSSC00SUEAD
상세설명  1/3?릋nch 1.2 Mp CMOS Digital Image Sensor
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제조업체  ONSEMI [ON Semiconductor]
홈페이지  http://www.onsemi.com
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Figure 16. Differential Output Voltage for Clock and Data Pairs
VDIFFmin
VDIFFmax
0 V (Diff)
Output Signal
is ‘Cp − Cn’ or
‘Dp − Dn’
Table 17. RISE AND FALL TIMES
(Measurement Conditions: HiSPi Power Supply 0.4 V, Max Freq. 700 MHz)
Symbol
Parameter
Min
Typ
Max
Unit
1/UI
Data Rate
280
–
700
Mb/s
TxPRE
Max Setup Time from Transmitter (Note 17)
0.3
–
–
UI
TxPost
Max Hold Time from Transmitter
0.3
–
–
UI
RISE
Rise Time (20% − 80%)
–
0.25 UI
–
FALL
Fall Time (20% − 80%)
150 ps
0.25 UI
–
PLL_DUTY
Clock Duty
45
50
55
%
tpw
Bitrate Period (Note 17)
1.43
−
3.57
ns
teye
Eye Width (Notes 17, 18)
0.3
−
−
UI
ttotaljit
Data Total Jitter (pk pk)@1e−9 (Notes 17, 18)
−
−
0.2
UI
tckjit
Clock Period Jitter (RMS) (Note 18)
−
−
50
ps
tcyjit
Clock Cycle to Cycle Jitter (RMS) (Note 18)
−
−
100
ps
tchskew
Clock to Data Skew (Notes 17, 18)
−0.1
−
0.1
UI
t|PHYskew|
PHY-to-PHY Skew (Notes 17, 21)
−
−
2.1
UI
tDIFFSKEW
Mean Differential Skew (Note 22)
–100
−
100
ps
17. One UI is defined as the normalized mean time between one edge and the following edge of the clock.
18. Taken from 0 V crossing point.
19. Also defined with a maximum loading capacitance of 10 pF on any pin. The loading capacitance may also need to be less for higher bitrates
so the rise and fall times do not exceed the maximum 0.3 UI.
20. The absolute mean skew between the Clock lane and any Data Lane in the same PHY between any edges.
21. The absolute mean skew between any Clock in one PHY and any Data lane in any other PHY between any edges.
22. Differential skew is defined as the skew between complementary outputs. It is measured as the absolute time between the two
complementary edges at mean VCM point.



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