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AS1545 数据表(PDF) 4 Page - ams AG |
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AS1545 数据表(HTML) 4 Page - ams AG |
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4 / 34 page ![]() www.austriamicrosystems.com Revision 1.00 4 - 34 AS1545 Data Sheet - P i n o u t 13 to 18 BIN0 to BIN5 Analog Inputs of ADC B. These may be programmed as six single-ended channels, three pseudo-differential or three true-differential analog input channel pairs. (see Table 5 on page 20). 21 RANGE Analog Input Range Selection. Logic input. The polarity on this pin determines the input range of the analog input channels. If this pin is tied to a logic low, the analog input range is 0V to VREF. If this pin is tied to a logic high when CSN goes low, the analog input range is 2 × VREF. 22 SGL/DIFF Logic Input. This pin selects whether the analog inputs are configured as differential pairs or single ended. A logic low selects differential operation while a logic high selects single-ended operation. 23 to 25 A2 to A0 Multiplexer Select. Logic inputs. These inputs are used to select the pair of channels to be simultaneously converted, such as Channel 1 of both ADC A and ADC B, Channel 2 of both ADC A and ADC B, and so on. 26 CSN Chip Select. Active low logic input. This input provides the dual function of initiating conversions on the AS1545 and framing the serial data transfer. 27 SCLK Serial Clock Input. A serial clock input provides the SCLK for accessing the data from the AS1545. This clock is also used as the clock source for the conversion process. 28, 30 DOUTB, DOUTA Serial Data Outputs. The data output is supplied to each pin as a serial data stream. The bits are clocked out on the falling edge of the SCLK input and 15 SCLKs are required to access the data. The data simultaneously appears on both pins from the simultaneous conversions of both ADCs. The data stream consists of three leading zeros followed by the 12 bits of conversion data. The data is provided MSB first. If CSN is held low for 16 SCLK cycles rather than 15, then single trailing zero appears after the 12bits of data. If CSN is held low for a further 16 SCLK cycles on either DOUTA or DOUTB, futher data is clocked out according to the timing diagram. 31 VDRIVE Logic Power Supply Input. The voltage supplied at this pin determines at what voltage the interface operates. This pin should be decoupled to DGND. The voltage at this pin may be different than that at AVDD and DVDD but should never exceed either by more than 0.3V. 32 DVDD Digital Supply Voltage. 2.7V to 5.25V. This is the supply voltage for all digital circuitry on the AS1545. The DVDD and AVDD voltages should ideally be at the same potential and must not be more than 0.3V apart even on a transient basis. This supply should be decoupled to DGND. 33 Exp. Pad Exposed Pad. This pin can be not connected or connected AGND. The exposed pad must not be connected to VDD. Table 1. Pin Description Pin Number Pin Name Description |
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