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AR0134CSSC00SUEAH-GEVB Datenblatt(PDF) 30 Page - ON Semiconductor

Teilenummer AR0134CSSC00SUEAH-GEVB
Bauteilbeschribung  Inch 1.2 Mp CMOS Digital Image Sensor with Global Shutter
PDF  41 Pages
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Hersteller  ONSEMI [ON Semiconductor]
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AR0134CSSC00SUEAH-GEVB Datenblatt(HTML) 30 Page - ON Semiconductor

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AR0134_DS Rev. G Pub. 6/15 EN
30
©Semiconductor Components Industries, LLC,2015.
AR0134: 1/3-Inch 1.2 Mp CMOS Digital Image Sensor
Electrical Specifications
Figure 16:
Differential Output Voltage for Clock or Data Pairs
Notes:
1. One UI is defined as the normalized mean time between one edge and the following edge of the
clock.
2. Taken from 0V crossing point.
3. Also defined with a maximum loading capacitance of 10pF 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
0.3UI.
4. The absolute mean skew between the Clock lane and any Data Lane in the same PHY between any
edges.
5. The absolute mean skew between any Clock in one PHY and any Data lane in any other PHY
between any edges.
6. 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.
Table 17:
Rise and Fall Times
Measurement Conditions: HiSPi Power Supply 0.4V, Max Freq 700 MHz
Parameter
Symbol
Min
Typ
Max
Unit
Data Rate
1/UI
280
–
700
Mb/s
Max setup time from transmitter
TxPRE
0.3
–
–
UI1
Max hold time from transmitter
TxPost
0.3
–
–
UI
Rise time (20% - 80%)
RISE
–
0.25UI
–
Fall time (20% - 80%)
FALL
150ps
0.25 UI
–
Clock duty
PLL_DUTY
45
50
55
%
Bitrate Period
tpw
1.43
3.57
ns1
Eye Width
teye
0.3
UI1, 2
Data Total jitter (pk pk)@1e-9
ttotaljit
0.2
UI1, 2
Clock Period Jitter (RMS)
tckjit
50
ps2
Clock cycle to cycle jitter (RMS)
tcyjit
100
ps2
Clock to Data Skew
tchskew
-0.1
0.1
UI1, 2
PHY-to-PHY Skew
t|PHYskew|
2.1
UI1, 5
Mean differential skew
tDIFFSKEW
–100
100
ps6
0V Diff)
VDIFFmax
VDIFFmin
Output Signal is 'Cp - Cn' or 'Dp - Dn'



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