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STR720 Datasheet(PDF) 333 Page - STMicroelectronics

No. de pieza STR720
Descripción Electrónicos  ARM720T 16/32-BIT MCU WITH 16K RAM, USB, CAN, 3 TIMERS, ADC, 6 COMMUNICATIONS INTERFACES
PDF  401 Pages
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Fabricante Electrónico  STMICROELECTRONICS [STMicroelectronics]
Página de inicio  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STR720 Datasheet(HTML) 333 Page - STMicroelectronics

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STR720 - S-D ANALOG/DIGITAL CONVERTER (ADC)
333/401
22.3.1
Normal (Round-Robin) Operation of ADC
In its normal mode of operation, the converter samples each input channel for 512 cycles of
the over-sampling clock. In the first clock cycle, the
Σ−∆ modulator is reset and the digital filter
cleared. The remaining 1-bit samples from the modulator are filtered by the Sinc3 filter and a
16 bit output sample supplied to the relevant data register after 512 clock cycles, the period
over which the Sinc3 filter has filled up and settled down. The channel select will then switch to
the next input channel, the reset will again be asserted on the first clock cycle, and the filter
will again fill up over 512 cycles to produce a sample. This process will be repeated for each
of the channels continually in a round-robin fashion.
22.3.2
Single-Channel Operation
When sampling a single channel, that channel alone will be selected as input to the analog
signal to the sigma-delta modulator. The functionality of the converter will remain the same as
above in that the converter will be reset every 512 cycles, once a valid sample is produced.
However, to maintain the same output frequency of the converter, only one of these samples
will be taken out of every four, thus a valid sample for the channel will be produced every 2048
oversampling clock cycles, as in normal operations.
22.3.3
Low-rate operating mode
In case the required sample rate is particularly low, a special decimation mode can be used to
overcome the limitation of prescaler configurations. This mode is selected by setting DEC bit
of ADCSR register. In this way the oversampling factor becomes 5120 instead of 512 and a
valid sample for a given channel will be produced each 20480 oversampling clock cycles,
instead of 2048.
22.3.4
Interrupt and DMA Requests
An active-high interrupt/DMA request flag will be set depending on the mode of operation.
In round-robin channel selection mode, the interrupt flag will be set when all data available
(DA) flags in the control register are set, and all the interrupt enables (IE) are also set. In this
way the interrupt/DMA request (depending on which function is currently enabled) will be
activated when all channels have been converted and their values are stored in the
corresponding data registers. The interrupt/DMA request is deasserted when all data
registers are read, this being the typical response of a DMA controller, or when “0” is written in
all DA bits of ADCCSR register, this last case being typical of an interrupt response routine. It
must be noticed that in order to work properly in this configuration all interrupt enable bits
need to be set.
In single channel mode, the interrupt flag will be set when the data available flag and the
interrupt flag for the selected channel are set. The interrupt request is deasserted by reading
the data register associated to the selected channel (DMA response) or writing “0” in the
corresponding DA bit of ADCCSR register (interrupt response). In order to have a proper
single-channel interrupt/DMA request, besides selecting the single-channel mode and
configuring which channel is to be converted using AXT and A[1:0] bits in ADCCSR register,
the corresponding interrupt enable bit needs to be set as well.
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