AD5231BRU10 Analog Devices Inc, AD5231BRU10 Datasheet - Page 25

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AD5231BRU10

Manufacturer Part Number
AD5231BRU10
Description
IC DGTL POT 1024POS 16-TSSOP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD5231BRU10

Rohs Status
RoHS non-compliant
Taps
1024
Resistance (ohms)
10K
Number Of Circuits
1
Temperature Coefficient
600 ppm/°C Typical
Memory Type
Non-Volatile
Interface
4-Wire SPI Serial
Voltage - Supply
2.7 V ~ 5.5 V, ±2.25 V ~ 2.75 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
16-TSSOP
Resistance In Ohms
10K
End To End Resistance
10kohm
Track Taper
Logarithmic
Resistance Tolerance
+20, -40%
No. Of Steps
1024
Supply Voltage Range
2.7V To 5.5V, ± 2.25V To ± 2.75V
Control Interface
Serial, SPI
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AD5231BRU10
Manufacturer:
ADI/亚德诺
Quantity:
20 000
Part Number:
AD5231BRU100
Manufacturer:
ADI/亚德诺
Quantity:
20 000
PROGRAMMABLE BIDIRECTIONAL CURRENT
SOURCE
For applications that require bidirectional current control or
higher voltage compliance, a Howland current pump can be a
solution. If the resistors are matched, the load current is
R2B, in theory, can be made as small as necessary to achieve the
current needed within the A2 output current-driving capability.
In this circuit,
the voltage compliance approaches 15 V. It can be shown that
the output impedance is
Z
and R2A + R2B, respectively. On the other hand, Z
negative if the resistors are not matched. As a result, C1, in the
range of 1 pF to 10 pF, is needed to prevent oscillation from the
negative impedance.
AD5231
O
can be infinite if resistors R1 and R2 match precisely with R1
I
Z
L
O
=
+2.5V
–2.5V
=
Figure 53. Programmable Bidirectional Current Source
A
B W
(
R2A
R1R2'
R1'
R2B
OP2177
R1
+
A1
R2B
+
R2B
OP2177
+15V
–15V
R1'
V+
V–
)
(
delivers ±5 mA in both directions, and
(
×
R1
R2A
V
W
+
R2A
+
150kΩ
R2B
150kΩ
R1
R1
)
)
+
OP2177
–15V
+15V
V+
V–
15kΩ
14.95kΩ
R2
R2A
A2
10pF
C1
O
can be
R2B
50Ω
R
500Ω
L
V
L
I
L
Rev. C | Page 25 of 28
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RESISTANCE SCALING
The AD5231 offers 10 kΩ, 50 kΩ, and 100 kΩ nominal
resistance. For users who need lower resistance but want to
maintain the number of adjustment steps, they can parallel
multiple devices. For example, Figure 54 shows a simple scheme
of paralleling two AD5231s. To adjust half the resistance
linearly per step, users need to program both devices coherently
with the same settings and tie the terminals as shown.
In voltage diver mode, by paralleling a discrete resistor as
shown in Figure 55, a proportionately lower voltage appears at
Terminals A–B. This translates into a finer degree of precision,
because the step size at Terminal W is smaller. The voltage can
be found as follows:
Figure 54 and Figure 55 show that the digital potentiometers
change steps linearly. On the other hand, pseudo log taper
adjustment is usually preferred in applications such as audio
control. Figure 56 shows another type of resistance scaling. In
this configuration, the smaller the R2 with respect to R1, the
more the pseudo log taper characteristic of the circuit behaves.
Figure 54. Reduce Resistance by Half with Linear Adjustment Characteristics
Figure 56. Resistor Scaling with Pseudo Log Adjustment Characteristics
V
W
(
D
)
=
Figure 55. Lowering the Nominal Resistance
R3
(
R
+
AB
LD
R
R1
A1
B1
//
AB
A
B
R2
R2
//
W1
W
)
R2
R3
R1
R2
A
B
×
A2
B2
1024
W
D
V
W2
O
×
V
DD
AD5231
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