AD627ARZ Analog Devices Inc, AD627ARZ Datasheet - Page 13

IC AMP INST R-R 25MA 8SOIC

AD627ARZ

Manufacturer Part Number
AD627ARZ
Description
IC AMP INST R-R 25MA 8SOIC
Manufacturer
Analog Devices Inc
Type
Rail-to-Railr
Datasheets

Specifications of AD627ARZ

Slew Rate
0.06 V/µs
Amplifier Type
Instrumentation
Number Of Circuits
1
Output Type
Rail-to-Rail
-3db Bandwidth
80kHz
Current - Input Bias
2nA
Voltage - Input Offset
25µV
Current - Supply
60µA
Current - Output / Channel
25mA
Voltage - Supply, Single/dual (±)
2.2 V ~ 36 V, ±1.1 V ~ 18 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
No. Of Amplifiers
1
Input Offset Voltage
200µV
Gain Db Min
5dB
Gain Db Max
1000dB
Bandwidth
40MHz
Amplifier Output
Rail To Rail
Cmrr
77dB
Supply Voltage Range
± 1.1V To ±
Common Mode Rejection Ratio
90
Current, Input Bias
3 nA (Single), 2 nA (Dual)
Current, Input Offset
0.3 nA
Current, Supply
60 μA
Impedance, Thermal
155 °C/W
Package Type
SOIC-8
Power Dissipation
0.8 W
Resistance, Input
20 Gigaohms (Differential), 20 Gigaohms (Common-Mode)
Temperature, Operating, Range
-40 to +85 °C
Voltage, Gain
1000 V/V
Voltage, Input
-35.9 to +35 V (Single), -17.9 to +17 V (Dual)
Voltage, Input Offset
50 μV (Single), 25 μV (Dual)
Voltage, Noise
38 nV/sqrt Hz
Voltage, Supply
2.2 to ±18 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Gain Bandwidth Product
-
Lead Free Status / Rohs Status
RoHS Compliant part Electrostatic Device

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Error Source
ABSOLUTE ACCURACY at T
DRIFT TO 85°C
had a mismatch of almost exactly 0.1% (R1 = 9999.5 Ω, R2 =
999.76 Ω, R3 = 1000.2 Ω, R4 = 9997.7 Ω). As expected the
CMRR at dc was measured at about 84 dB (calculated value
is 85 dB). However, as the frequency increases, the CMRR
quickly degrades. For example, a 200 mV peak-peak harmonic
of the mains frequency at 180 Hz would result in an output
voltage of about 800 µV. To put this in context, a 12-bit data
acquisition system with an input range of 0 V to 2.5 V, has an
LSB weighting of 610 µV.
By contrast, the AD627 uses precision laser trimming of internal
resistors along with patented CMR trimming to yield a higher
dc CMRR and a wider bandwidth over which the CMRR is flat
(see TPC 19).
Total RTI Offset Voltage, mV
Input Offset Current, nA
Internal Offset Current (Homebrew Only)
CMRR, dB
Gain
Gain Drift, ppm/°C
Total RTI Offset Voltage, mV/°C
Input Offset Current, pA/°C
VIN+
VIN–
9999.5
R1
350
350
OP296
999.76
1/2
5V
–5V
R2
A1
350
350
A
= 25°C
1000.2
100mV
R3
AD627A GAIN = 9.98
+10ppm/ C
AD627 Circuit Calculation
(250 µV + (1000 µV/10))/100 mV
1 nA × 350 Ω/100 mV
Not Applicable
77 dB¡141 ppm × 2.5 V/100 mV
0.35% + 0.1%
(–75 + 10) ppm/°C × 60°C
(3.0 µV/°C + (10 µV/°C/10))
× 60°C/100 mV
(16 pA/°C × 350 Ω × 60°C)/100 mV (33 pA/°C × 350 Ω × 60°C)/100 mV
40.2k
OP296
9997.7
1/2
+5V
1%
R
R4
G
A2
Table IV. Make vs. Buy Error Budget
AD627A
5V
(
5+(200k /R
V
OUT
G
)
)
V
2.5V
OUT
Ground Returns for Input Bias Currents
Input bias currents are those dc currents that must flow in
order to bias the input transistors of an amplifier. These are
usually transistor base currents. When amplifying “floating”
input sources such as transformers, or ac-coupled sources,
there must be a direct dc path into each input in order that the
bias current can flow. Figure 11 shows how a bias current
path can be provided for the case of transformer coupling,
capacitive ac-coupling and for a thermocouple application.
50 ppm/°C × 60°C
(2 × 3.5 µV/°C × 60°C)/100 mV
Total Drift Error
Grand Total Error
“Homebrew”
Circuit Calculation
(180 µV × 2)/100 mV
20 nA × 350 Ω/100 mV
0.7 nA × 350 Ω/100 mV
(1% Match × 2.5 V)/10/100 mV
1% Match
Total Absolute Error
2.5V
120
110
100
90
80
70
60
50
40
30
20
3.15k *
1
*1% REGISTER MATCH, 50ppm/ C TRACKING
"HOMEBREW" IN AMP, G = 10
1/2
350 *
10
LT1078IS8
FREQUENCY – Hz
350 *
100
3.15k *
1/2
5V
Total Error
AD627-ppm Homebrew–ppm
3500
3.5
3531
13500
20535
3900
2600
3.5
6504
27039
1k
LT1078IS8
10k
V
OUT
Total Error
3600
70
2.45
25000
10000
38672
3000
4200
7
7207
45879
AD627
100k

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