REF192GPZ Analog Devices Inc, REF192GPZ Datasheet - Page 25

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REF192GPZ

Manufacturer Part Number
REF192GPZ
Description
IC VOLT REF MICROPOWER 2.5V 8DIP
Manufacturer
Analog Devices Inc
Series
REF19r
Datasheet

Specifications of REF192GPZ

Temperature Coefficient
25ppm/°C
Design Resources
Software Configurable 16-Bit Quad-Channel Unipolar/Bipolar Voltage Output Using AD5754 (CN0086) Software Configurable 14-Bit Quad-Channel Unipolar/Bipolar Voltage Output Using AD5734 (CN0087) Software Configurable 12-Bit Quad Channel Unipolar/Bipolar Voltage Output Using AD5724 (CN0088) Software Configurable 16-Bit Dual-Channel Unipolar/Bipolar Voltage Output Using AD5752 (CN0092) Software Configurable 14-Bit Dual-Channel Unipolar/Bipolar Voltage Output Using AD5732 (CN0093) Software Configurable 12-Bit Dual-Channel Unipolar/Bipolar Voltage Output Using AD5722 (CN0094)
Reference Type
Series
Voltage - Output
2.5V
Tolerance
±10mV
Voltage - Input
3 ~ 15 V
Number Of Channels
1
Current - Quiescent
45µA
Current - Output
30mA
Operating Temperature
-40°C ~ 85°C
Mounting Type
Through Hole
Package / Case
8-DIP (0.300", 7.62mm)
Topology
Series
Input Voltage
3V To 15V
Reference Voltage
2.5V
Reference Voltage Tolerance
2mV
Voltage Reference Case Style
DIP
No. Of Pins
8
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Cathode
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
REF192GPZ
Manufacturer:
MAXIM
Quantity:
101
For V
low, thus U2 and Q1 are off and U1 is on. For V
than the upper threshold, the situation reverses, with U1 off and
both U2 and Q1 on. In the interest of battery power conserva-
tion, all of the comparison switching circuitry is powered from
V
comes from U1.
For the R1 to R3 values, as shown in Figure 32, lower/upper V
switching thresholds are approximately 5.5 V and 6 V, respec-
tively. These can be changed to suit other V
REF19x devices used for U1 and U2, over a range of 2.5 V to
5 V of output. U3 can operate down to a V
generally compatible with all REF19x family devices.
LOW POWER, STRAIN GAGE CIRCUIT
As shown in Figure 33, the REF19x family of references can be
used in conjunction with low supply voltage operational ampli-
fiers, such as the OP492 or the OP747, in a self-contained strain
gage circuit in which the REF195 is used as the core. Other
references can be easily accommodated by changing circuit
element values. The references play a dual role, first as the
voltage regulator to provide the supply voltage requirements of
the strain gage and the operational amplifiers, and second as a
precision voltage reference for the current source used to
stimulate the bridge. A distinct feature of the circuit is that it
can be remotely controlled on or off by digital means via
the SLEEP pin.
S
and is arranged so that when V
S
levels lower than the lower threshold, the output of U3 is
COMMON
V
S
+V
, V
+V
BAT
BAT
S
S
fails, the default output
R1
1.1MΩ
R2
100kΩ
C4
0.1µF
10MΩ
S
S
R3
of 3.3 V, which is
supplies, as can the
R5
100kΩ
3
2
S
+
levels higher
7
4
AD820
U3
6
Figure 32. Fail-Safe 5 V Reference
900kΩ
100Ω
R6
R4
S
Rev. K | Page 25 of 28
Q1
2N3904
0.1µF
C2
10μF
2.21kΩ
C1
0.1µF
+
3
3
0.1μF
(SEE TABLE)
(SEE TABLE)
2
REF195
REF195
REF195
U1
U2
2
4
2
4
13
12
10
4
9
10kΩ
1%
Figure 33. Low Power, Strain Gage Circuit
OP492
OP492
+
+
1/4
1/4
6
6
10kΩ
10kΩ
6
57kΩ
1%
1%
1%
3
2
+
1μF
+
OP492
14
1/4
8
11
4
+
C3
1µF
0.1μF
100Ω
20kΩ
20kΩ
1%
1%
5.000V
V
COMMON
OUT
1
20kΩ
1%
2N2222
0.01μF
6
5
500Ω
0.1%
OP492
+
1/4
REF19x Series
10μF
20kΩ
1%
7
OUTPUT

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