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SAA7154E Datasheet(PDF) 66 Page - NXP Semiconductors |
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SAA7154E Datasheet(HTML) 66 Page - NXP Semiconductors |
66 / 90 page SAA7154E_SAA7154H_2 © NXP B.V. 2007. All rights reserved. Product data sheet Rev. 02 — 6 December 2007 66 of 90 NXP Semiconductors SAA7154E; SAA7154H Multistandard video decoder with comb filter [1] The levels must be measured with load circuits: RL = 1.2 kΩ at 3 V (TTL load) and CL =50pF. |Z i| input impedance clamping current off 200 - - k Ω Ci input capacitance - - 10 pF αct(ch) channel crosstalk fi <10MHz - - −50 dB Vo(p-p) peak-to-peak output voltage on pin AOUT1 or AOUT2; for normal video levels 1 V (p-p), 75 Ω termination -1 -V B bandwidth on pin AOUT1 or AOUT2; 75 Ω/20 pF termination at −1dB - 10 - MHz 10-bit ADC (including analog clamp and gain stages) B bandwidth at −1 dB - 30 - MHz ϕdif differential phase - 2 - deg Gdif differential gain - 2 - % fclk clock frequency - - 58.6 MHz Vi(range) input voltage range 0.4 - 1.6 V DLEDC DC differential linearity error - - 3 LSB ILEDC DC integral linearity error - - 4 LSB MG(CTC) channel-to-channel gain matching - 36% 3-bit ADC (FSW, AV-detect and OSD; see Section 11.3) fclk clock frequency - - 58.6 MHz Vi(range) input voltage range 0 - 1.304 V Table 38. Analog part …continued Symbol Parameter Conditions Min Typ Max Unit Table 39. Digital inputs and outputs Attention: Digital inputs and I/O ports are not 5 V tolerant. Symbol Parameter Conditions Min Typ Max Unit Digital inputs (all pins with type I in Table 4) VIL LOW-level input voltage pin XTALI −0.5 - +0.2 × VDDA(XTAL) V other inputs −0.5 - +0.8 V VIH HIGH-level input voltage pin XTALI 0.8 × VDDA(XTAL) - 1.95 V other inputs 2.0 - 3.6 V ILI input leakage current - - 1 µA IL(I/O) leakage current (I/O) - - 10 µA Ci input capacitance I/O at high-impedance - - 8 pF Digital outputs (all pins with type O in Table 4)[1] VOL LOW-level output voltage pin SDA at 3 mA sink current - - 0.4 V for clocks - - 0.4 V other digital outputs - - 0.4 V VOH HIGH-level output voltage for clocks VDDD − 0.4 - - V other digital outputs VDDD − 0.4 - - V |
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