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ADV7128 Datasheet(PDF) 7 Page - Analog Devices |
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ADV7128 Datasheet(HTML) 7 Page - Analog Devices |
7 / 8 page ADV7128 REV. 0 –7– DAC Z O = 75 Ω (CABLE) Z S = 75 Ω (SOURCE TERMINATION) AD848 +V S 0.1 µF 0.1 µF I OUT 75 Ω 2 7 6 4 3 Z 2 Z L = 75 Ω (MONITOR) GAIN (G) = 1+ –V S Z 1 Z 1 Z 2 Figure 6. AD848 As an Output Buffer PC Board Layout Considerations The ADV7128 is optimally designed for lowest noise perfor- mance, both radiated and conducted noise. To complement the excellent noise performance of the ADV7128 it is imperative that great care be given to the PC board layout. Figure 7 shows a recommended connection diagram for the ADV7128. The layout should be optimized for lowest noise on the ADV7128 power and ground lines. This can be achieved by shielding the digital inputs and providing good decoupling. The lead length between groups of VAA and GND pins should be minimized so as to minimize inductive ringing. Ground Planes The ADV7128 and associated analog circuitry, should have a separate ground plane referred to as the analog ground plane. This ground plane should connect to the regular PCB ground plane at a single point through a ferrite bead, as illustrated in Figure 7. This bead should be located as close as possible (within 3 inches) to the ADV7128. The analog ground plane should encompass all ADV7128 ground pins, voltage reference circuitry, power supply bypass circuitry, the analog output traces and any output amplifiers. The regular PCB ground plane area should encompass all the digital signal traces, excluding the ground pins, leading up to the ADV7128. Power Planes The PC board layout should have two distinct power planes, one for analog circuitry and one for digital circuitry. The analog power plane should encompass the ADV7128 (VAA) and all as- sociated analog circuitry. This power plane should be connected to the regular PCB power plane (VCC) at a single point through a ferrite bead, as illustrated in Figure 7. This bead should be lo- cated within three inches of the ADV7128. The PCB power plane should provide power to all digital logic on the PC board, and the analog power plane should provide power to all ADV7128 power pins, voltage reference circuitry and any output amplifiers. The PCB power and ground planes should not overlay portions of the analog power plane. Keeping the PCB power and ground planes from overlaying the analog power plane will contribute to a reduction in plane-to-plane noise coupling. Supply Decoupling Noise on the analog power plane can be further reduced by the use of multiple decoupling capacitors. (See Figure 7.) Optimum performance is achieved by the use of 0.1 µF ceramic capacitors. Each of the two groups of VAA should be individually decoupled to ground. This should be done by placing the ca- pacitors as close as possible to the device with the capacitor leads as short as possible, thus minimizing lead inductance. GND RSET I OUT GROUND ADV7128 C3 0.1 µF C5 0.1 µF Z1 (AD589) R1 75 Ω C1 33 µF C2 10 µF COMP C6 0.1 µF ANALOG POWER PLANE V AA V REF L2 (FERRITE BEAD) D0 D9 CLOCK VIDEO OUTPUT VIDEO DATA INPUTS ANALOG GROUND PLANE C4 0.1 µF RSET 560 Ω L1 (FERRITE BEAD) CC +5V (V ) VENDOR PART NUMBER FAIR-RITE 274300111 OR MURATA BL01/02/03 DALE CMF-55C DALE CMF-55C ANALOG DEVICES AD589JH COMPONENT C1 C2 C3, C4, C5,C6 L1, L2 R1 R SET Z1 DESCRIPTION 33 µF TANTALUM CAPACITOR 10 µF TANTALUM 0.1 µF CERAMIC CAPACITOR FERRITE BEAD 75 Ω 1% METAL FILM RESISTOR 560 Ω 1% METAL FILM RESISTOR 1.235V VOLTAGE REFERENCE Figure 7. ADV7128 Typical Connection Diagram and Component List |
Similar Part No. - ADV7128_15 |
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Similar Description - ADV7128_15 |
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