Lake Shore Model 370 AC Resistance Bridge User’s Manual
Introduction
1-5
1.2 SENSOR
PERFORMANCE
Lake Shore Germanium GR-200A-30
Sensor Properties
Excitation and Instrumentation
Temperature
(K)
Resistance
dR/dT
Thermal
Resistance
Resistance
Range
Excitation
Voltage Limit
Excitation
Current
Power
0.05
0.1
0.3
1
25 k
Ω
2 k
Ω
172
Ω
42
Ω
–3.5 M
Ω
/K
–60 k
Ω
/K
–890
Ω
/K
–36
Ω
/K
200 mK/nW
20 mK/nW
4 mK/nW
0.1 mK/nW
63.2 k
Ω
6.32 k
Ω
632
Ω
200
Ω
63.2 µV
63.2 µV
200 µV
200 µV
1
nA
10 nA
316 nA
1 µA
25 fW
200 fW
17 pW
42 pW
Instrument Performance
Overall Performance
Temperature
(K)
Measurement
Resolution
Electronic
Accuracy
Calibration
Accuracy
Self-Heating
Errors
Interpolation
Error
Overall
Accuracy
0.05
0.1
0.3
1
6
Ω
(1.7 µK)
300 m
Ω
(5 µK)
10 m
Ω
(11 µK)
3 m
Ω
(83 µK)
±13.8
Ω
(3.9 µK)
±1.13
Ω
(19 µK)
±64.2 m
Ω
(72 µK)
±16.6 m
Ω
(461 µK)
±5 mK
±5 mK
±5 mK
±5 mK
5 µK
4 µK
68 µK
5 µK
±0.2 mK
±0.2 mK
±0.2 mK
±0.2 mK
±5.2 mK
±5.2 mK
±5.3 mK
±5.7 mK
Lake Shore 1000
Ω
Ruthenium Oxide
Sensor Properties
Excitation and Instrumentation
Temperature
(K)
Resistance
dR/dT
Thermal
Resistance
Resistance
Range
Excitation
Voltage Limit
Excitation
Current
Power
0.05
0.1
0.3
1
70 k
Ω
19.3 k
Ω
5.6 k
Ω
2.3 k
Ω
–5.0 M
Ω
/K
–266 k
Ω
/K
–16.6 k
Ω
/K
–1.2 k
Ω
/K
7000 mK/nW
800 mK/nW
50 mK/nW
8 mK/nW
200 k
Ω
20 k
Ω
6.32 k
Ω
6.32 k
Ω
63.2 µV
63.2 µV
200 µV
200 µV
316 pA
3.16 nA
31.6 nA
31.6 nA
7 fW
193 fW
5.6 fW
2.3 pW
Instrument Performance
Overall Performance
Temperature
(K)
Measurement
Resolution
Electronic
Accuracy
Calibration
Accuracy
Self-Heating
Errors
Interpolation
Error
Overall
Accuracy
0.05
0.1
0.3
1
40
Ω
(8 µK)
1
Ω
(3.8 µK)
0.1
Ω
(6 µK)
0.1
Ω
(83 µK)
35
Ω
(7 µK)
9.7
Ω
(36 µK)
2.8
Ω
(170 µK)
0.7
Ω
(580 µK)
±5 mK
±5 mK
±5 mK
±5 mK
49 µK
155 µK
280 µK
18 µK
±0.2 mK
±0.2 mK
±0.2 mK
±0.2 mK
±5.2 mK
±5.2 mK
±5.4 mK
±5.8 mK
NOTES:
1. Recommended operating range of GR-200A-30 is from 50 mK to 1 K, but it can be used beyond this range.
2. Excitation chosen to minimize sensor self-heating.
3. Typical thermal resistance with minimal heat sinking; can be improved with permanent installation.
4. Typical sensor characteristics; individual sensors vary in resistance and sensitivity.
Excitation Power = Actual Current
2
× Measured Resistance
Resolution (Temperature) = Resolution (Resistance)/dR/dT
Electronic Accuracy (Temperature) = Electronic Accuracy (Resistance)/dR/dT
Self-Heating = Excitation Power × Thermal Resistance
Table 1-1,2 and 3 Information
Accuracy: Percent reading (specified on facing page) + 0.005% of range.
Precision: Dominated by measurement temperature coefficient (±0.0015% of reading ±0.0002% of range)/°C.
Resistance: Full scale resistance range, nominal 20% over range.
Resolution: RMS noise with 18 s filter settling time (approximates 3 s analog time constant).
Power: Excitation power at one-half full scale resistance.
* Range not available.
** Range available, not specified.
resistance r
resoluti
ange
on
power
200 k
Ω
100
Ω
1.0 fw
Содержание 370
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