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AD6640ST/PCB 数据表(PDF) 15 Page - Analog Devices |
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AD6640ST/PCB 数据表(HTML) 15 Page - Analog Devices |
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15 / 25 page ![]() AD6640 –14– REV. A AD6640 output data is latched using 74LCX574 (U3, U4) latches following 348 Ω series resistors. The resistors limit the current that would otherwise flow due to the digital output slew rate. The resistor value was chosen to represent a time constant of ~25% of the data rate at 65 MHz. This reduces slew rate while not appreciably distorting the data waveform. Data is latched in a pipeline configuration; a rising edge generates the new AD6640 data sample, latches the previous data at the con- verter output, and strobes the external data register over J3. Note that power and ground must be applied to J3 to power the digital logic section of the evaluation board. Table I. AD6640ST/PCB Bill of Material Item Quantity Reference Description 12 +5 VA, GND Banana Jack 211C7–C9, C11–C17, C19 Ceramic Chip Capacitor 0805, 0.1 µF 32 C4, C6 Tantalum Chip Capacitor 10 µF 41 J3 40-Lead Double Row Male Header 53 J1, J2, J4 BNC Coaxial PCB Connector 61 R1 Surface Mount Resistor 1206, 348 Ω 725R2–R14, R20–R25, R30–R35 Surface Mount Resistor 1206, 348 Ω 81 R15 Surface Mount Resistor 1206, 100 Ω 91 R16 Surface Mount Resistor 1206, 270 Ω 10 2 T1, T2 Surface Mount Transformer Mini-Circuits T4–1T, 1:4 Ratio 11 1 U1 Clock Oscillator (Optional) 12 1 DUT AD6640AST 12-Bit–65 MSPS A/D Converter 13 2 U3, U4 74LCX574 Octal Latch 14 1 U5 74LVQ00 Quad Two Input NAND Gate 15 1 C1, C18 Ceramic Chip Capacitor 0508, 0.01 µF Low Inductance 16 2 C2, C3 Ceramic Chip Capacitor 0508, 0.1 µF Low Inductance 17 2 CR1, CR2 1N2810 Schottky Diode DIGITAL WIDEBAND RECEIVERS Introduction Several key technologies are now being introduced that may forever alter the vision of radio. Figure 25 shows the typical dual conversion superheterodyne receiver. The signal picked up by the antenna is mixed down to an intermediate frequency (IF) using a mixer with a variable local oscillator (LO); the variable LO is used to “tune-in” the desired signal. This first IF is mixed down to a second IF using another mixer stage and a fixed LO. Demodulation takes place at the second or third IF using either analog or digital techniques. |
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