参数资料
型号: AD5241BRZ100-RL7
厂商: Analog Devices Inc
文件页数: 15/20页
文件大小: 0K
描述: IC DGTL POT 256POS 14-SOIC T/R
产品变化通告: Product Discontinuance 27/Oct/2011
标准包装: 1,000
接片: 256
电阻(欧姆): 100k
电路数: 1
温度系数: 标准值 30 ppm/°C
存储器类型: 易失
接口: I²C(设备位址)
电源电压: 2.7 V ~ 5.5 V,±2.3 V ~ 2.7 V
工作温度: -40°C ~ 105°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: 带卷 (TR)
AD5241/AD5242
Rev. C | Page 4 of 20
Parameter
Symbol
Conditions
Min
Typ1
Max
Unit
DYNAMIC CHARACTERISTICS5, 7, 8
3 dB Bandwidth
BW_10 kΩ
RAB = 10 kΩ, code = 0x80
650
kHz
BW_100 kΩ
RAB = 100 kΩ, code = 0x80
69
kHz
BW_1 MΩ
RAB = 1 MΩ, code = 0x80
6
kHz
Total Harmonic Distortion
THDW
VA = 1 V rms + 2 V dc,
VB = 2 V dc, f = 1 kHz
0.005
%
VW Settling Time
tS
VA = VDD, VB = 0 V, ± 1 LSB
error band, RAB = 10 kΩ
2
μs
Resistor Noise Voltage
eN_WB
RWB = 5 kΩ, f = 1 kHz
14
nV√Hz
INTERFACE TIMING CHARACTERISTICS
(APPLIES TO ALL PARTS5, 9)
SCL Clock Frequency
fSCL
0
400
kHz
Bus Free Time Between Stop and Start, tBUF
t1
1.3
μs
Hold Time (Repeated Start), tHD; STA
t2
After this period, the first
clock pulse is generated
600
ns
Low Period of SCL Clock, tLOW
t3
1.3
μs
High Period of SCL Clock, tHIGH
t4
0.6
50
μs
Setup Time for Repeated Start Condition, tSU;STA
t5
600
ns
Data Hold Time, tHD; DAT
t6
900
ns
Data Setup Time, tSU; DAT
t7
100
ns
Rise Time of Both SDA and SCL Signals, tR
t8
300
ns
Fall Time of Both SDA and SCL Signals, tF
t9
300
ns
Setup Time for Stop Condition, tSU; STO
t10
1 Typicals represent average readings at 25°C, VDD = 5 V.
2 Resistor position nonlinearity error R-INL is the deviation from an ideal value measured between the maximum resistance and the minimum resistance wiper
positions. R-DNL measures the relative step change from ideal between successive tap positions. Parts are guaranteed monotonic. See Test Circuits.
3 INL and DNL are measured at VW with the RDAC configured as a potentiometer divider similar to a voltage output D/A converter. VA = VDD and VB = 0 V. DNL
specification limits of ±1 LSB maximum are guaranteed monotonic operating conditions. See Figure 37.
4 Resistor Terminal A, Resistor Terminal B, and Resistor Terminal W have no limitations on polarity with respect to each other.
5 Guaranteed by design, not subject to production test.
6 PDISS is calculated from (IDD × VDD). CMOS logic level inputs result in minimum power dissipation.
7 Bandwidth, noise, and settling time are dependent on the terminal resistance value chosen. The lowest R value results in the fastest settling time and highest
bandwidth. The highest R value results in the minimum overall power consumption.
8 All dynamic characteristics use VDD = 5 V.
9 See timing diagram in Figure 3 for location of measured values.
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