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ADL5205ACPZ-R7 数据表(PDF) 24 Page - Analog Devices |
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ADL5205ACPZ-R7 数据表(HTML) 24 Page - Analog Devices |
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24 / 32 page ![]() Data Sheet ADL5205 Rev. 0 | Page 23 of 31 The power supply jumper configurations (S1 to S3) required for selecting the evaluation board analog supply (VCC) and digital supply (VDD) from the external 3.3 V or 5 V power supply are shown in Table 11. When using a 5 V supply, enable the on-board 3.3 V voltage regulator and select it using the S3 and S2 jumpers, respectively, to provide digital supply (VDD) to the pull-up resistors for logic signals. Table 11. Power Supply Selection Jumpers Jumper Function Supply Selection VCC = 3.3 V VCC = 5 V S1 VCC selection 3P3V 5V S2 VDD selection 3P3V VREG S3 VDD LDO enable AGND 5V SIGNAL INPUTS AND OUTPUTS Signal inputs and outputs for each channel come through a pair of SMA connectors. In the default configuration, on-board baluns convert single-ended signals from VINA− and VINB− into differential signals to the device. Similarly, differential output signals from the device are converted through the on-board baluns into single-ended form to the VOUTA+ and VOUTB+ connectors. MANUAL CONTROLS Three sets of switches provide the manual control of the states of the device. Their functions are listed in Table 12. When the individual switch is in the up position, the signal controlled by the switch is set to logic high. Table 12. Switch Block Functions Switch Block Function Device Pin No. SW1 Channel B control (eight positions) Position 1 PWUPB 17 Position 2 LATCHB 14 Position 3 B0 13 Position 4 B1 12 Position 5 B2 11 Position 6 B3 10 Position 7 B4 9 Position 8 B5 8 SW2 Mode control (three positions) Position 1 Power mode (PM) 6 Position 2 MODE0 (M0) 5 Position 3 MODE1 (M1) 4 SW3 Channel A control (eight positions) Position 1 A5 3 Position 2 A4 2 Position 3 A3 1 Position 4 A2 40 Position 5 A1 39 Position 6 A0 38 Position 7 LATCHA 37 Position 8 PWUPA 34 Mode Switches When the power mode (PM) switch is up (logic high or Logic 1), the device is in low power mode. When the switch is down (logic low or Logic 0), the device is in high performance mode. MODE1 and MODE0 (labeled M1 and M0 on the PCB) select one of three interface modes for the device (parallel, serial/SPI, or up/down mode), as shown in Table 13. There is no functional difference between the mode switch settings of 10 and 11. Table 13. Mode Switch Settings MODE1, MODE0 Interface 00 Parallel 01 Serial (SPI) 10 Up/down 11 Up/down Channel Control Switches The channel control switches include PWUPA, LATCHA, and A5 to A0 for Channel A and PWUPB, LATCHB, and B5 to B0 for Channel B. PWUPA and PWUPB are the up positions (logic high) that turn on their respective channels. When PM is set to logic low (high performance mode), the total current consumption increases by approximately 81 mA (that is, one half of the difference between the enabled current of 175 mA and the disabled current of 14 mA) when each channel is enabled. When the PM is set to logic high (low power mode), the total current consumption increases by approximately 61 mA (that is, one half of the difference between the enabled current of 135 mA and the disabled current of 14 mA) when each channel is enabled. The LATCHA and LATCHB switches are used with the gain control input bits (A5 to A0 and B5 to B0) to control the corresponding channel voltage gain. When these switches are in the down (logic low) position, the gain changes with the position of the gain control switches. When these switches are in the up position, the last gain setting is latched into the corresponding channel of the ADL5205, and the gain stops changing. For Bits[A5:A0] and Bits[B5:B0], the following equation determines the voltage gain of each channel of the ADL5205: Gain = 26 − [A5:A0] dB where [A5:A0] is the value representing the binary string formed by Bits[A5:A0] from 0 to 35. When this value exceeds 35, the gain is set to minimum (−9 dB). The voltage gain for Channel B is changed by Bits[B5:B0] in the same manner. |
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