参数资料
型号: ADR06AUJ-R2
厂商: Analog Devices Inc
文件页数: 17/20页
文件大小: 0K
描述: IC VREF SERIES PREC 3V TSOT-23-5
标准包装: 1
基准类型: 串联,精度
输出电压: 3V
容差: ±0.2%
温度系数: 25ppm/°C
输入电压: 5 V ~ 36 V
通道数: 1
电流 - 静态: 1mA
电流 - 输出: 10mA
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: SOT-23-5 细型,TSOT-23-5
供应商设备封装: TSOT-23-5
包装: 剪切带 (CT)
其它名称: ADR06AUJ-R2CT
Data Sheet
ADR01/ADR02/ADR03/ADR06
? R1 ′ R2
? R1R2 ′
? 1 ?
PROGRAMMABLE 4 mA TO 20 mA CURRENT
TRANSMITTER
Because of their precision, adequate current handling, and small
Z O =
V t
I t
=
?
R1 ′
?
?
(3)
(R2 + R3) R1 V REF × D
I L = × (2)
footprint, the devices are suitable as the reference sources for
many high performance converter circuits. One of these
applications is the multichannel 16-bit, 4 mA to 20 mA current
transmitter in the industrial control market (see Figure 40).
This circuit employs a Howland current pump at the output to
yield better efficiency, a lower component count, and a higher
voltage compliance than the conventional design with op amps
and MOSFETs. In this circuit, if the resistors are matched such
that R1 = R1 ′ , R2 = R2 ′ , R3 = R3 ′ , the load current is
R3 ′ 2 N
where D is similarly the decimal equivalent of the DAC input
code and N is the number of bits of the DAC.
In this circuit, an ADR01 provides the stable 10.000 V reference
for the AD5544 quad 16-bit DAC. The resolution of the adjust-
able current is 0.3 μA/step; the total worst-case INL error is
merely 4 LSBs. Such error is equivalent to 1.2 μA or a 0.006%
system error, which is well below most systems’ requirements.
The result is shown in Figure 41 with measurement taken at 25°C
and 70°C; total system error of 4 LSBs at both 25°C and 70°C.
5
R L = 500?
I L = 0mA TO 20mA
4
3
2
According to Equation 2, R3 ′ can be used to set the sensitivity.
R3 ′ can be made as small as necessary to achieve the current
needed within U4 output current driving capability. Alter-
natively, other resistors can be kept high to conserve power.
1
0
70°C
25°C
In this circuit, the AD8512 is capable of delivering 20 mA of
current, and the voltage compliance approaches 15.0 V.
–1
0
8192
16384
24576
32768
40960
49152 57344 65536
0V TO –10V
CODE (Decimal)
U2
V DD
15V
10V V REF AD5544
V X
–15V
R1'
5V
U1 RF
IO
V IN V OUT
IO
GND
TEMP TRIM
GND
DIGITAL INPUT
CODE 20%–100% FULL SCALE
U1 = ADR01/ADR02/ADR03/ADR06, REF01
U2 = AD5543/AD5544/AD5554
U3, U4 = AD8512
+15V
U3
AD8512 U4
150k? LOAD
VP
VN
R1 R2
150k? 15k?
C1
10pF
R2'
15k?
500?
R3
50?
V O
R3'
50?
V L
Figure 41. Result of Programmable 4 mA to 20 mA Current Transmitter
PRECISION BOOSTED OUTPUT REGULATOR
A precision voltage output with boosted current capability can
be realized with the circuit shown in Figure 42. In this circuit,
U2 forces V O to be equal to V REF by regulating the turn-on of
N1, thereby making the load current furnished by V IN . In this
configuration, a 50 mA load is achievable at V IN of 15.0 V.
Moderate heat is generated on the MOSFET, and higher current
can be achieved with a replacement of a larger device. In
addition, for a heavy capacitive load with a fast edging input
signal, a buffer should be added at the output to enhance the
transient response.
4mA TO 20mA
N1
C 1
Figure 40. Programmable 4 mA to 20 mA Transmitter
The Howland current pump yields a potentially infinite output
impedance, that is highly desirable, but resistance matching is
critical in this application. The output impedance can be deter-
mined using Equation 3. As shown by this equation, if the
resistors are perfectly matched, Z O is infinite. Alternatively, if
they are not matched, Z O is either positive or negative. If the
V IN
U1
ADR01/
ADR02/
ADR03/
ADR06
V IN V OUT
TEMP TRIM
GND
2N7002
15V
R 1
100?
V+
OP1177
V–
U2
R L
200?
R 2
100?
C L
1μF
V O
latter is true, oscillation can occur. For this reason, connect
Capacitor C1 in the range of 1 pF to 10 pF between VP and the
output terminal of U4 to filter any oscillation.
Rev. R | Page 17 of 20
1000pF
Figure 42. Precision Boosted Output Regulator
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