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LT6553IGN Datasheet(PDF) 6 Page - Linear Technology |
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LT6553IGN Datasheet(HTML) 6 Page - Linear Technology |
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6 / 8 page ![]() LT6553 6 6553i TYPICAL APPLICATIO RGB Buffer Demo Board The DC714 Demo Board illustrates optimal routing, by- passing and termination using the LT6553 as an RGB video buffer. The schematic is shown in Figure 1. All inputs and outputs are routed to have a characteristic impedance of 75 Ω and 75Ω shunt and series terminations are con- nected as close to the part as possible. For ideal operation, a 75 Ω shunt termination should be connected at the output. The LT6553’s gain of 2 will compensate for the resulting divider between the series and shunt termination resistors. A fourth signal trace is provided at the bottom of the board with dimensions identical to the combined input and output of the other channels. This trace can be used for calibrating out the effects of electrical delay and impedance mismatching and is not necessary in an end- user application. Several jumpers and additional connec- tors are also included to allow for testing of the enable feature and single supply operation. RGB Video Selector/Cable Driver A video multiplexer can be implemented using the EN pins of parallel LT6553s as shown in Figure 2. In this applica- tion, all outputs are connected together and one LT6553 is switched on while the other is switched off. A fast inverter is used to ensure that only one set of R, G and B channels is buffered at any time. As shown, the outputs are con- nected before the 75 Ω series termination resistors in order to reduce any DC attenuation that may result from the non-infinite output impedance of the disabled LT6553. Figure 1. DC714 Demo Board Schematic V– V– J4 BANANA JACK 10 11 12 13 14 15 16 R6 75 Ω R5 75 Ω R4 75 Ω R1 75 Ω R2 75 Ω R3 75 Ω Z = 75 Z = 75 Z = 75 Z = 75 C1 4700pF 9 INB AGND ING AGND INR DGND EN V– V+ V+ 8 7 6 5 4 3 2 1 V– OUTB V+ OUTG V– OUTR V+ V+ U1 LT6553CGN 6553 F01 C2 470pF C3 4700pF C4 10 µF, 16V 1210 J2 BANANA JACK J9 5 1 OUTR 4 3 2 C5 470pF DUAL SINGLE C6 1000pF C7 470pF C8 4700pF C9 10 µF, 16V 1210 J10 5 J12 BNC NOTE 5 BNC x3 5 1 CAL 4 3 2 1 OUTG 4 3 2 J11 5 1 OUTB 4 3 2 J8 BNC 5 1 J3 BANANA JACK E3 AGND E1 EN E2 DGND CAL AGND 4 3 2 13 2 JP3 SUPPLY ENABLE EXT 3 1 2 JP1 CONTROL J5 5 1 INR 4 3 2 J6 5 BNC × 3 1 ING 4 3 2 J7 5 1 Z = 75 Z = 75 Z = 75 INB 4 3 2 AGND FLOAT 3 1 2 JP2 DGND J1 50 Ω BNC EN 5432 1 |
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