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ADMV8809ACCZ-R7 数据表(PDF) 21 Page - Analog Devices |
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ADMV8809ACCZ-R7 数据表(HTML) 21 Page - Analog Devices |
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21 / 54 page ![]() Data Sheet ADMV8809 THEORY OF OPERATION analog.com Rev. 0 | 21 of 54 SPI CONFIGURATION The SPI of the ADMV8809 allows configuration of the device for specific functions or operations via the 5-pin SPI. This interface provides users with added flexibility and customization. The SPI consists of four control lines: SCLK, SDI, SDO, and CS . The SPI protocol consists of an R/W bit followed by 15 register address bits and 8 data bits. The address field and data field are organized MSB first and end with the LSB. Set the MSB to 0 for a write operation and set the MSB to 1 for a read operation. The write cycle must be sampled on the rising edge of SCLK. The 24 bits of the serial write address and data are shifted in on the SDI control line, MSB to LSB. The ADMV8809 input logic level for the write cycle supports a 3.3V interface. For a read cycle, the R/W bit and the 15 register address bits shift in on the rising edge of SCLK on the SDI control line. Then, 8 bits of serial read data shift out on the SDO control line, MSB first, on the falling edge of SCLK. The output logic level for a read cycle is 3.3V. The output drivers of the SDO are enabled after the last rising edge of SCLK of the instruction cycle and remain active until the end of the read cycle. In a read operation, when CS is deasserted, SDO returns to high impedance until the next read transaction. CS is active low and must be deasserted at the end of the write or read sequence. An active low input on CS starts and gates a communication cycle. The CS pin allows more than one device to be used on the same serial communications lines. The SDO pin goes to a high impe- dance state when the CS input is high. During the communication cycle, CS must stay low. The SPI communications protocol follows the Analog Devices Inc, SPI standard. For more information, see the ADI-SPI Serial Control Interface Standard (Rev 1.0). CHIP ADDRESS The four chip address pins enable the independent control of multiple chips using the same SPI bus. In the 24-bit SPI frame, Bit 20 to Bit 17 are defined by the ADD3 to ADD0 pins. A write instruction to Register 0x00 broadcasts to all chips in a system regardless of the chip address pins. Do not perform a read instruction of Register 0x00 in a multichip system. All references to register addresses in this section have the ADD3 to ADD0 pins set to zero, unless otherwise noted. RF CONNECTIONS The RF1 and RF2 pins of the ADMV8809 are DC-coupled to on-chip ESD protection diodes. If a DC voltage is present on the RF1 and RF2 pins from other components within the system, it is recommended to place DC blocking capacitors in series with these pins. The DC blocking capacitors must be selected based on the operating frequency of the filter. Generally, a value greater than 10nF is sufficient to minimize insertion loss at the lower operating frequencies. At higher operating frequencies, it may be necessary to consider the parasitic elements of the selected capacitor. Fig- ure 64 shows a general model of a capacitor with the parasitic elements. The parasitic series inductance (LESL) is typically of most concern given that its impedance can become dominant. The other parasitic elements, including the leakage resistance (RL), the dielectric absorption resistance (RDA), the dielectric absorption capacitance (CDA), and electrical series resistance (RESR) are less critical elements for consideration but are shown in Figure 64 for completeness. Figure 64. Model of a Capacitor MODE SELECTION The ADMV8809 has two modes of operation: SPI write and LUT control. SPI write mode is the normal operating mode, whereas the LUT control mode uses the 5-pin LUT control port to load the configuration from the on-chip LUT. To select SPI write mode, set the LUT_BYPASS bit (Bit 3) of Register 0x11 to 1. For operation in LUT control mode, set the LUT_BYPASS bit to 0. SPI WRITE MODE SPI write mode uses Register 0x13 (WR_SW) and Register 0x14 (WR_FILTER). The WR_SW register includes the SW_SELECT bits can be used to control which filter band the switches are toggled to. The WR_FILTER register includes the FILTER_SELECT, HPF, and LPF bits. Use the HPF and LPF bits (Bits[5:3] and Bits[2:0], respec- tively) to configure the high-pass filter state and low-pass filter state for each filter band. Use the FILTER_SELECT bits (Bits[7:6]) to select the filter band that requires adjustment. The HPF and LPF bit values dictate the new state for the HPF and LPF of the selected filter band. LUT CONTROL MODE The ADMV8809 has a LUT feature that can be used to store multiple filter conditions on LUT registers. See the Register Details section for further information on the LUT registers. There are two registers that control the functionality of the LUT control mode for the ADMV8809. Register 0x11 (LUT_CTL1) includes the LUT_BYPASS, LUT_LATCH, LUT_MODE, and LUT_ACTIVE_SELECT bits (Bit 3, Bit 2, Bit 1, and Bit 0, respec- tively). Use these bits to bypass the LUT, configure the output (latched or combinational) and mode (using LUT_INDEX_POINTER |
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