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ADV7129 Datasheet(PDF) 9 Page - Analog Devices |
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ADV7129 Datasheet(HTML) 9 Page - Analog Devices |
9 / 20 page ADV7129 –9– REV. 0 Mnemonic Function IOR, IOG, IOB Red, Green & Blue Current Outputs (High Impedance Current Sources). These RGB video outputs are specified to directly drive RS-343A and RS-170 video levels into doubly terminated 50 Ω or 75 Ω loads. IOR , IOG, IOB Differential Red, Green & Blue Current Outputs (High Impedance Current Sources). These RGB video outputs are specified to directly drive RS-343A and RS-170 video levels into doubly terminated 50 Ω or 75 Ω loads. If the complementary outputs are not required, then these outputs should be tied to GND. RCOMP Red Compensation pin. This pin should be bypassed to VAA with 0.01 µF capacitor. GCOMP Green Compensation pin. This pin should be bypassed to VAA with 0.01 µF capacitor. BCOMP Blue Compensation pin. This pin should be bypassed to VAA with 0.01 µF capacitor. RRSET, RGSET, RBSET DAC Output Full-Scale Adjust Control (Analog Input): A resistor from this pin to ground sets the current in the DACs. The current in the DACs is set according to the equations: IOUT = 12,950 × V REF/RSET (SYNC not encoded on the DAC Output) IOUT = 18,137 × VREF/RSET (SYNC encoded on the DAC Output) To generate RS 343-A video levels on the DAC outputs, a resistor value of 280 Ω is recommended for doubly terminated 50 Ω lines. Any combination of R SET value, DAC termination resistor and programming of SYNC and pedestal are possible provided that the maximum DAC current and the DAC output compli- ance specifications are adhered to. For example, in a doubly terminated 50 Ω system with no SYNC or pedestal encoded on the DAC outputs, an RSET value of 280 Ω gives a DAC full-scale output of 52.8 mA, i.e., a white-to-black value of 1.4 V. This example would give a 6 dB reduction in noise and feedthrough on the DAC outputs (compared to a 0.7 V full-scale value), but may require a 0.5X splitter at the monitor. RBIAS Red Bias node. This node should be decoupled to VAA with a 0.01 µF capacitor. GBIAS Green Bias node. This node should be decoupled to VAA with a 0.01 µF capacitor. BBIAS Blue Bias node. This node should be decoupled to VAA with a 0.01 µF capacitor. SENSE/SYNCOUT Comparator Sense Output (TTL Compatible Output). This output will be logic “1” if one or more of the analog outputs exceeds the internal voltage of the SENSE comparator circuit. It can be used to determine the absence of a CRT monitor. The value of the SENSE Output corresponds to the current pixel at the out- puts. The output can drive one CMOS load. This pin can alternately be programmed to be a TTL sync output which is a delayed version of CSYNC. VREF Voltage Reference (Analog Input/Output): This should always have a 0.1 µF decoupling capacitor attached between VREF and VAA. If nothing else is connected then the DACs are driven by the internal voltage refer- ence. If it is required to use a more accurate reference, then this pin acts as an overdrive input. An external 1.235 V voltage reference such as the AD1580 or equivalent is recommended to drive this input. (Note: It is not recommended to use a resistor network to generate the voltage reference.) VAA Power Supply (+5 V ± 5%). The part contains multiple power supply pins, all should be connected together to one common +5 V filtered analog power supply. GND Analog Ground. The part contains multiple ground pins, all should be connected together to the system’s ground plane. |
Similar Part No. - ADV7129_15 |
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Similar Description - ADV7129_15 |
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