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AD8488KBCZ датащи(PDF) 13 Page - Analog Devices |
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AD8488KBCZ датащи(HTML) 13 Page - Analog Devices |
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13 / 20 page ![]() Data Sheet AD8488 Rev. A | Page 13 of 20 THEORY OF OPERATION OVERVIEW The AD8488 is a 128-channel AFE intended for interfacing thin film transistor (TFT) detector panel arrays in various digital X-ray applications (see Figure 1). The device includes a 128 dual stage, charge conversion amplifiers, internal timing, and control circuitry, a 128:1 differential output multiplexer, and an analog output buffer. Only the detector panel and a minimal amount of analog circuitry are required to complete a 128-channel analog X-ray interface. The AD8488 AFE is packaged in a compact, 17 mm × 17 mm, 255-lead BGA. Analog Amplifier The AD8488 analog inputs are suitable for ac or dc connection to 128 X-ray detector panel outputs. The analog amplifier consists of two stages: an integrator followed by a correlated double sampling gain amplifier. Figure 16 is a simplified block diagram showing the basic elements of an analog channel. The characteristic CMOS high gate impedance of the integrator minimizes source loading. Prior to sampling a gate line, all 128 mux analog channels are initialized with RST, as shown in Figure 17. During the 6.1 µs GRST period, the gain amplifier acquires the reference level (2.048 V) and any low frequency ambient noise. Just prior to gate sampling, both op amps are unlocked and the feedback capacitors, CF1 and CF2, are connected. When a TFT gate line is activated (reference the bottom signal, TFT_GATE, in Figure 17), the charge of each detector cell is applied simultaneously to all 128 MOSFET integrator circuits, which begin to ramp over a 12 µs interval. As seen in Figure 16, the op amps are biased at the reference voltage, plus offset and low frequency noise error voltages. Together, the resultant differential output voltage comprises the CDS or correlated double sampled composite. Following the sampling period, the pixel charges are stored, and the charge is held for the next 133 clock cycles while the 128 channels are muxed and sampled sequentially. As the channels are selected in sequence, their outputs are applied to a dual channel, high precision, current feedback, high frequency op amp. The AD8488 was designed to drive an ADC such as the AD9244 differential input high speed converter. The mux channels are enabled and selected by the timing inputs, CK_ENa and CK_ENb. These two signals gate the clock and internal counter that actually selects the mux channel. The multiplexers must be read sequentially as one interprets from the CK_ENa and CK_ENb lines in Figure 17. The read time for each channel is 1 clock cycle. The timing signals, GATED CLKa and GATED CLKb, are developed internally and are shown in Figure 17 for reference only. Troubleshooting Channels Using the TST_MODE enable pin, individual channels are accessible for troubleshooting. Referring to Table 8, the channel address follows two initialization words, 0x01 and 0x02, while the enable pin, TST_MODE, is asserted high. IN0 TO IN127 SWIRST SWHOLD TO MUX VREF INTEGRATOR GAIN AMPLIFIER CM SWHOLD SWGRST SWGRST CFx: FEEDBACK CAPACITOR CH: HOLD CAPACITOR GNSEL0 TO GNSEL3 GNSEL0 TO GNSEL3 R1 (×4) R1 (×4) CF1 (×4) CF2 = 0.5pF CF2 = 0.5pF CH (×4) CH (×4) Figure 16. Block Diagram of an Integrator Channel |
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