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AD4086BBCZ Datasheet(PDF) 48 Page - Analog Devices |
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AD4086BBCZ Datasheet(HTML) 48 Page - Analog Devices |
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48 / 91 page ![]() Data Sheet AD4086 DIGITAL INTERFACE analog.com Rev. 0 | 48 of 91 Figure 76. LVDS Data Transfer Latency LVDS Output Differential Drive The AD4086 supports selection of the LVDS output differential voltage from one of three predetermined differential amplitudes of ±185mV p-p, ±240mV p-p, and ±325mV p-p assuming a termi- nation resistance of 100Ω across the differential pair. The output common-mode voltage of the LVDS drive is adjusted for each selection automatically to ensure that the peak output voltage remains within the IOVDD rail. The current default selection sets the differential amplitude at ±240mV p-p. The output differential voltage can be modified by writing to the LVDS_VOD bits of the ADC Data Interface Configuration C register (see the ADC Data Interface Configuration C Register section, Address 0x17). Data Interface Test Functions Regardless of the selected output configuration, the AD4086 is equipped with self test functions that enable verification of the integrity of the data interface physical layer, including device pads, PCB interconnect, and the host interface connections. An interface check function is available setting a fixed, 14-bit data pattern mode to output. Selection of this test function is made by writing to the INTF_CHK_EN bit in the Data Interface Configuration A register (see the ADC Data Interface Configuration A Register section, Address 0x15). By enabling the built-in test function, access to conversion results is suspended; therefore, only use this function at either power-up or during an idle period when conversion results are not required for normal system function. Refer to the ADC Result Latency and LVDS Interface Alignment section for further information. SPI DATA INTERFACE SPI Data Interface Configuration For applications that do not require the interface bandwidth of the LVDS interface, such as when using asynchronous capture into the result FIFO, the data interface can be reconfigured into a single or quad lane, SPI data interface. In this configuration, the AD4086 outputs data on either one or four CMOS data lanes simultaneously at serial clock rates up to 50MHz. The result data is shifted out serially on the falling edge of the interface clock (DCLK). In SPI configuration, the AD4086 results can be read at interface rates up to 200MHz when using four SPI lanes. To select the SPI configuration, program the DATA_INTF_MODE bit of the Data Interface Configuration A register (see the ADC Data Interface Configuration A Register section, Address 0x15) with Binary Sequence 1’b1. Once configured for SPI mode, the AD4086 LVDS drivers are automatically disabled, including the echo clock output (DCO+ and DCO−), preventing contention between LVDS and CMOS functions. As a result, the LVDS_SELF_CLK_MODE and LVDS_VOD settings no longer affect the operation of the data interface and can be left at their power-on defaults or another convenient value. Because the driver is disabled, the DCO+ and DCO− output pins can be left disconnected in the hardware design as these pins are unused. As detailed in Table 22, the following LVDS pins are reconfigured as CMOS input or outputs to realize the SPI data interface. Table 22. LVDS/SPI Data Interface Pins Crossreference LVDS Pin CMOS Pin Function CLK+ DCLK Data interface clock input CLK− DCS Data interface chip select input DA+ SDOA Serial Data Output A DA− SDOB Serial Data Output B DB+ SDOC Serial Data Output C DB− SDOD Serial Data Output D As with LVDS configuration mode, SPI configuration selection al- lows control of the number of active lanes. For SPI data interface configuration, the user has the option to configure single lane SPI or quad lane SPI. SPI Active Data Lane Count The SPI can be configured to output the result data on either one or four data lanes, which is controlled by the SPI_LVDS_LANES bit in the ADC Interface Configuration A register (see the ADC Data Interface Configuration A Register section, Address 0x15). By default, this bit is set to 0 (one lane active), and can be set to 1 to use four data lanes. Note that this bit also sets the number of active data lanes for the LVDS interface. The data order and pin assignment to the serial data output (SDOx) pins is detailed in Table 23, and shown in Figure 83. |
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