参数资料
型号: AD7709BRU
厂商: Analog Devices Inc
文件页数: 15/32页
文件大小: 0K
描述: IC ADC 16BIT SIGMA-DELTA 24TSSOP
标准包装: 62
位数: 16
采样率(每秒): 105
数据接口: DSP,MICROWIRE?,QSPI?,串行,SPI?
转换器数目: 1
功率耗散(最大): 3.75mW
电压电源: 单电源
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 24-TSSOP(0.173",4.40mm 宽)
供应商设备封装: 24-TSSOP
包装: 管件
输入数目和类型: 2 个差分,单极;2 个差分,双极;4 个伪差分,单极;4 个伪差分,双极
REV. A
AD7709
–22–
RDY output is connected to the IRQ2 input of the ADSP-2103/
ADSP-2105. The serial interface of the ADSP-2103/ADSP-2105
is set up for alternate framing mode. The RFS and TFS pins of
the ADSP-2103/ADSP-2105 are configured as active low
outputs and the ADSP-2103/ADSP-2105 serial clock line, SCLK,
is also configured as an output. The
CS for the AD7709 is
active when either the RFS or TFS outputs from the ADSP-2103/
ADSP-2105 are active. The serial clock rate on the ADSP-2103/
ADSP-2105 should be limited to 3 MHz to ensure correct opera-
tion with the AD7709.
CIRCUIT DESCRIPTION
The AD7709 is a - A/D converter with on-chip digital filtering,
intended for the measurement of wide dynamic range, low
frequency signals such as those in weigh scale, pressure, tempera-
ture, industrial control, or process control applications. It employs
a - conversion technique to realize up to 16 bits of no-missing-
codes performance. The -
modulator converts the sampled
input signal into a digital pulse train whose duty cycle contains
the digital information. A Sinc
3 programmable low-pass filter is
then employed to decimate the modulator output data stream to
give a valid data conversion result at programmable output rates
from 5.35 Hz (186.77 ms) to 105.03 Hz (9.52 ms). A chopping
scheme is also employed to minimize ADC offset and offset and
gain drift errors. The channel is buffered and can be programmed
for one of eight input ranges from
±20 mV to ±2.56 V. The input
channels can be configured for either fully differential inputs or
pseudo-differential input channels via the CH2, CH1, and CH0
bits in the Configuration Register. Buffering the input channel
allows the part to handle significant source impedances on the
analog input, allowing R/C filtering (for noise rejection or RFI
reduction) to be placed on the analog inputs if required. These
input channels are intended for converting signals directly from
sensors without the need for external signal conditioning. Other
functions contained on-chip that augment the operation of the
ADC include software configurable current sources, switchable
reference inputs, and low-side power switches.
The basic connection diagram for the AD7709 is shown in
Figure 14. An AD780/REF195, precision 2.5 V reference, provides
the reference source for the part. A quartz crystal or ceramic
resonator provides the 32.768 kHz master clock source for the
part. In some cases, it will be necessary to connect capacitors on
the crystal or resonator to ensure that it does not oscillate at over-
tones of its fundamental operating frequency. The values of
capacitors will vary depending on manufacturer specifications.
Analog Input Channels
The main ADC has five associated analog input pins (labeled
AIN1 to AIN4 and AINCOM) that can be configured as two
fully differential input channels (AIN1–AIN2 and AIN3–AIN4)
or four pseudo-differential input channels (AIN1–AINCOM,
AIN2–AINCOM, AIN3–AINCOM, and AIN4–AINCOM).
Channel selection bits CH2, CHI, and CH0 in the Configuration
Register detail the different configurations. When the analog input
channel is switched, the settling time of the part must elapse
before a new valid word is available from the ADC.
IOUT1
AIN3/P3
AINCOM
AIN1
IOUT2
AIN4/P4
REFIN1(–)
AIN2
REFIN1(+)
REFIN2(–)
REFIN2(+)
RESET
CS
DOUT
DIN
SCLK
P2/SW2
P1/SW1
XTAL1
XTAL2
5V
CHIP
SELECT
RECEIVE
(READ)
SERIAL
CLOCK
32.768kHz
CRYSTAL
PWRGND GND
AD780/
REF195
VIN
VOUT
GND
VDD
ANALOG 5V
SUPPLY
0.1 F
10 F
0.1 F
10 F
ANALOG 5V
SUPPLY
AD7709
SERIAL DATA
(WRITE)
Figure 14. Basic Connection Diagram
The output of the ADC multiplexer feeds into a high impedance
input stage of the buffer amplifier. As a result, the ADC inputs can
handle significant source impedances and are tailored for direct
connection to external resistive-type sensors like strain gauges or
Resistance Temperature Detectors (RTDs).
The absolute input voltage range on the ADC inputs when buff-
ered (AIN1 to AIN4) is restricted to a range between GND +
100 mV and VDD – 100 mV. Care must be taken in setting up
the common-mode voltage and input voltage range so that these
limits are not exceeded; otherwise, there will be a degradation in
linearity and noise performance.
The absolute input voltage range on the ADC inputs when
unbuffered (AINCOM) includes the range between GND – 30 mV to
VDD + 30 mV as a result of being unbuffered. The negative abso-
lute input voltage limit does allow the possibility of monitoring
small true bipolar signals with respect to GND.
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