参数资料
型号: AD5222BRZ10
厂商: Analog Devices Inc
文件页数: 10/10页
文件大小: 0K
描述: IC POT DGTL DUAL 128POS 14-SOIC
标准包装: 56
接片: 128
电阻(欧姆): 10k
电路数: 2
温度系数: 标准值 -35 ppm/°C
存储器类型: 易失
接口: 4 线串行(芯片选择,递增,增/减)
电源电压: 2.7 V ~ 5.5 V,±2.3 V ~ 2.7 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 14-SOIC(0.154",3.90mm 宽)
供应商设备封装: 14-SOICN
包装: 管件
AD5222
–9–
REV. 0
PROGRAMMING THE VARIABLE RESISTOR
Rheostat Operation
The nominal resistance of the RDAC between Terminals A and
B are available with values of 10 k
, 50 k, 100 k, and 1 M
The final three characters of the part number determine the
nominal resistance value, e.g., 10 k
= 10; 50 k = 50; 100 k
= 100; 1 M
= 1M. The nominal resistance (R
AB) of the VR
has 128 contact points accessed by the wiper terminal, plus the
B terminal contact. At power ON, the resistance from the wiper
to either end Terminal A or B is approximately equal. Pulsing
the CLK pin will increase the resistance from the wiper W to
Terminal B by one unit of RS resistance, see Figure 33. The
resistance RWB is determined by the number of pulses applied to
the clock pin. Each segment of the internal resistor string has a
nominal resistance value of RS = RAB/128, which becomes 78
in the case of the 10 k
AD5222BR10 product. Care should be
taken to limit the current flow between W and B in the direct
contact state (RWB code = 0) to a maximum value of 20 mA to
avoid degradation or possible destruction of the internal switch
contact.
Like the mechanical potentiometer the RDAC replaces, it is
totally symmetrical (see Figure 3). The resistance between the
wiper W and Terminal A also produces a digitally controlled
resistance RWA. When these terminals are used the B-terminal
should be tied to the wiper.
The typical part-to-part distribution of RBA is process-lot-
dependent having a
± 30% variation. The change in R
BA with
temperature has a –35 ppm/
°C temperature coefficient.
The RBA temperature coefficient increases as the wiper is pro-
grammed near the B-terminal due to the larger percentage
contribution of the wiper contact switch resistance, which has a
0.5%/
°C temperature coefficient. Figures 9 and 10 show the
effect of the wiper contact resistance as a function of code setting.
PROGRAMMING THE POTENTIOMETER DIVIDER
Voltage Output Operation
The digital potentiometer easily generates an output voltage
proportional to the input voltage applied to a given terminal.
For example connecting A-terminal to 5 V and B-terminal to
ground produces an output voltage at the wiper which can be
any value starting at zero volts up to 1 LSB less than 5 V. Each
LSB of voltage is equal to the voltage applied across Terminals
AB divided by the 128-position resolution of the potentiometer
divider. The general equation defining the output voltage with
respect to ground for any given input voltage applied to Termi-
nals AB is:
VW(D) = D/128
× V
AB + VB
(1)
D represents the current contents of the internal up/down counter.
Operation of the digital potentiometer in the divider mode
results in more accurate operation over temperature. Here the
output voltage is dependent on the ratio of the internal resistors
not the absolute value, therefore, the drift improves to 20 ppm/
°C.
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