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AD4134 Datasheet(PDF) 68 Page - Analog Devices

Part # AD4134
Description  24-Bit, 4-Channel Simultaneous Sampling 1.5 MSPS Precision Alias Free ADC
PDF  92 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

AD4134 Datasheet(HTML) 68 Page - Analog Devices

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Data Sheet
AD4134
DIGITAL INTERFACE
analog.com
Rev. 0 | 68 of 92
Frame Length Examples
In Case 1, the following conditions apply:
►
16-bit output format
►
No status or CRC header
►
Parallel output on all four DOUTx pins
►
No daisy chain
►
Averaging disabled
The output data frame length is 16/8 = 2 bytes per ODR period on
each of the four DOUTx pins.
In Case 2, the following conditions apply:
►
24-bit data format
►
Status and CRC header enabled
►
Output on two DOUTx pins
►
Daisy chain three devices
►
Averaging disabled
The output data frame length is (24/8 + 1) × 2 × 3 = 24 bytes per
ODR period on each of the two DOUTx pins.
In Case 3, the following conditions apply:
►
24-bit output format
►
Status/CRC header enabled
►
Output on one DOUTx pins
►
Daisy-chain two devices
►
4:1 averaging
The output data frame length is (24/8 + 1) × 4 × 2/4 = 8 bytes per
ODR period.
DCLK Frequency Selection
The user must ensure an adequate DCLK frequency is used to
clock out the full length of the data frame in time.
The maximum supported DCLK frequency on the AD4134 is 48
MHz as an output and 50 MHz as an input.
Gated DCLK Output Cycles
When DCLK is configured as a gated output, the AD4134 uses an
internal counter to control the number of DCLK cycles to output
after each ODR pulse. The device automatically adjusts the number
of DCLK cycles to output according to its data frame and format
configuration.
However, in daisy-chain mode, the device has no inherent knowl-
edge of the number of devices connected on the chain.
In pin control mode, unless the device is configured to operate
in quad channel parallel output mode, it assumes a daisy-chain
configuration. If the DCLK pin is configured as a gated output,
the device assumes that four devices are on the daisy chain. The
number of DCLK cycles it generates after each ODR pulse is equal
to four times the data frame length of the devices.
In SPI control mode, the user has the flexibility to program
the number of devices on the daisy chain through the DAISY_
CHAIN_DEV_NUM bits. The value acts as a multiplier to the num-
ber of DCLK cycles the device outputs after each ODR pulse when
the DCLK is configured as a gated output.
Gated DCLK Output Cycles Examples
In Case 1, the following conditions apply:
►
16-bit output format
►
No status or CRC header
►
Single-channel daisy-chain mode
►
Pin control mode operation
►
DCLK configured as gated output
The device outputs 16 × 4 = 64 DCLK cycles after each ODR pulse.
In Case 2, the following conditions apply:
►
24-bit output format
►
Status and CRC header enabled
►
Dual-channel daisy-chain mode
►
Averaging disabled
►
SPI control mode operation
►
DAISY_CHAIN_DEV_NUM = 3 (decimal)
The device outputs (24 + 8) × 2 × 3 = 192 DCLK cycles after each
ODR pulse.
Channel Dependent ODR
In SPI control mode, the AD4134 supports the configuration of dif-
ferent ODR rates on each channel using the CHANNEL_ODR_SE-
LECT register. The rate must be a power of two fraction of the
signal frequency on the ODR pin and is limited to a minimum of 1/8
of the main ODR frequency.
Each channel updates its conversion output based on the ODR rate
of the channel. For example, if a channel is configured to have an
output data rate of ODR/4, its output data updates once every four
ODR cycles. Figure 121 shows an example of the data interface
timing of a device with different output data rate settings on each
channel.



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