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AR0330 データシート(PDF) 24 Page - ON Semiconductor |
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AR0330 データシート(HTML) 24 Page - ON Semiconductor |
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24 / 77 page ![]() AR0330_DS Rev. U Pub. 4/15 EN 24 ©Semiconductor Components Industries, LLC,2015. AR0330: 1/3-Inch CMOS Digital Image Sensor HiSPi Transmitter Notes: 1. One UI is defined as the normalized mean time between one edge and the following edge of the clock. 2. Taken from the 0V crossing point with the DLL off. 3. 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. 4. The absolute mean skew between the Clock lane and any Data Lane in the same PHY between any edges. 5. The absolute skew between any Clock in one PHY and any Data lane in any other PHY between any edges. Differential skew is defined as the skew between complementary outputs. It is measured as the abso- lute time between the two complementary edges at mean VCM point. Note that differential skew also is related to the VCM_AC spec which also must not be exceeded. HiVCM Electrical Specifications The HiSPi 2.0 specification also defines an alternative signaling level mode called HiVCM. Both VOD and VCM are still scalable with VDD_HiSPi_TX, but with VDD_HiSPi_TX nominal set to 1.8 V the common-mode is elevated to around 0.9 V. Notes: 1. Where 'n' is the number of PHYs 2. Temperature of 25°C 3. Up to 700 Mbps 4. Specification values may be exceeded when outside this temperature range. Table 20: SLVS Electrical Timing Specification Parameter Symbol Min Max Unit Notes Data Rate 1/UI 280 700 Mbps 1 Bitrate Period tPW 1.43 3.57 ns 1 Max setup time from transmitter tPRE 0.3 UI 1, 2 Max hold time from transmitter tPOST 0.3 UI 1, 2 Eye Width tEYE 0.6 UI 1, 2 Data Total Jitter (pk-pk) @1e-9 tTOTALJIT 0.2 UI 1, 2 Clock Period Jitter (RMS) tCKJIT 50 ps 2 Clock Cycle-to-Cycle Jitter (RMS) tCYCJIT 100 ps 2 Rise time (20% - 80%) tR 150ps 0.25 UI 3 Fall time (20% - 80%) tF 150ps 0.25 UI 3 Clock duty cycle DCYC 45 55 % 2 Mean Clock to Data Skew tCHSKEW -0.1 0.1 UI 1, 4 PHY-to-PHY Skew tPHYSKEW 2.1 UI 1, 5 Mean differential skew tDIFFSKEW -100 100 ps 6 Table 21: HiVCM Power Supply and Operating Temperatures Parameter Symbol Min Typ Max Unit Notes HiVCM Current Consumption IDD_HiSPi_TX n*34 mA 1, 2 HiSPi PHY Current Consumption IDD_HiSPi n*45 mA 1, 2, 3 Operating temperature TJ -30 70 °C 4 |
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