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ADL5202ACPZ-R7 数据表(PDF) 16 Page - Analog Devices |
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ADL5202ACPZ-R7 数据表(HTML) 16 Page - Analog Devices |
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16 / 29 page ![]() ADL5202 Data Sheet Rev. D | Page 16 of 29 THEORY OF OPERATION DIGITAL INTERFACE OVERVIEW The ADL5202 VGA has three digital gain control options: the parallel control interface, serial peripheral interface, and gain up/down interface. The desired gain control option is selected via two control pins, MODE0 and MODE1 (see Table 4 for the truth table for the mode control pins). The gain code is in a 6-bit binary format. A voltage of between 1.4 V and 3.3 V is required for a logic high. Three pins are common to all gain control options: PM, PWUPA, and PWUPB. PM allows the user to choose operation in nominal mode or high performance mode. PWUPA and PWUPB are power-up pins for Channel A and Channel B, respectively. Physical pins are shared among the three interfaces, resulting in as many as three different functions per digital pin (see Table 3). Table 4. Digital Control Interface Selection Truth Table MODE1 MODE0 Interface 0 0 Parallel control 0 1 Serial peripheral (SPI) 1 0 Up/down 1 1 Up/down PARALLEL DIGITAL INTERFACE The parallel digital interface uses six binary bits (Bits[A5:A0] or Bits[B5:B0]) and a latch pin (LATCHA or LATCHB) per amplifier. The latch pin controls whether the input data latch is transparent or latched. In transparent mode, gain changes as input gain control bits change. In latched mode, gain is determined by the latched gain setting and does not change with changing input gain control bits. SERIAL PERIPHERAL INTERFACE (SPI) The SPI uses three pins (SDIO, SCLK, and CSA or CSB). The SPI data register consists of two bytes: six gain control bits, two attenuation step size address bits, one read/write bit, and seven don’t care bits. SDIO is the serial data input and output pin. The SCLK pin is the serial clock, and CSA or CSB is the channel select pin. DATA READ/WRITE DO NOT CARE (7 BITS) FAST ATTACK ATTENUATION STEP SIZE ADDRESS GAIN CONTROL D0 D1 D2 D3 D4 D5 FA0 FA1 R/W DNC DNC DNC DNC DNC DNC DNC LSB LSB MSB MSB Figure 50. 16-Bit SPI Register To write to the SPI register, CSA or CSB must be pulled low and 16 clock pulses must be applied to SCLK. Individual channel SPI registers can be selected by pulling CSA or CSB low. By pulling the CSA and CSB pins low simultaneously, the same data can be written to both SPI registers. To read the SPI register value, the R/W bit must be set high, CSA or CSB must be pulled low, and the part must be clocked. After the register has been read out during the next 16 clock cycles, the SPI is automatically put into write mode. Note that there is only one SDIO pin. Readback from the registers should be per- formed individually. Fast Attack The fast attack feature, accessible via the SPI, allows the gain to be reduced from its present gain setting by a predetermined step size. Four different attenuation step sizes are available. The truth table for fast attack is shown in Table 5. Table 5. SPI 2-Bit Attenuation Step Size Truth Table FA1 FA0 Step Size (dB) 0 0 2 0 1 4 1 0 8 1 1 16 SPI fast attack mode is controlled by the FA_A or FA_B pin. A logic high on the FA_A or FA_B pin results in an attenuation that is selected by Bits[FA1:FA0] in the SPI register. GAIN UP/DOWN INTERFACE The GS1 and GS0 pins control the up/down gain step function. Gain is increased by a clock pulse on the UPDN_CLK_A pin or the UPDN_CLK_B pin (rising and falling edges) when the UPDN_DAT_A or UPDN_DAT_B pin is high. Gain is decreased by a clock pulse on the UPDN_CLK_A or UPDN_CLK B pin when the UPDN_DAT_A or UPDN_CLKB pin is low. The truth table for the gain step function is shown in Table 6. Reset is detected by a rising edge latching data having one polarity, with the falling edge latching the opposite polarity. Reset results in a minimum binary gain code of 111111. Table 6. Step Size Control Truth Table GS1 GS0 Step Size (dB) 0 0 0.5 0 1 1 1 0 2 1 1 4 The step size is selectable using the GS1 and GS0 pins. The gain is limited by the top and bottom of the control range. DN UP RESET UPDN_DAT UPDN_CLK Figure 51. Up/Down Timing |
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