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Ashcroft AM2-TC1 Thermocouple Module
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Item Number: AM2-TC1
Manufacturer: Ashcroft
Part Number: AM2-TC1
Product Options
Thermocouple Connector Options
* Whole number only
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Ashcroft AM2-TC1 Thermocouple Module
The Ashcroft AM2-TC1 allows the ATE-2 to read types J, K, T, E, R, S, B and N thermocouple connectors. Then the ATE-2 shows the measurements of temperature or millivolts by using the thermocouple module.
Features
- Allows ATE-2 to measure temperature with a thermocouple
- Pre-programmed to accept 8 most common thermocouple types
- Selectable units of measure: Celsius, Fahrenheit, Kelvin, Rankine and millivolts
- Reference junctions: automatic internal or manual external
Technical SpecificationsUnit of Measure (selectable): °C, °F, °K,° R and millivoltsReference Junction (selectable):Automatic Mode: The AM2-TC1 module incorporatesan internal resistor/thermistor based referencejunction, which may be selected for use inthe temperature readout mode.Manual Mode: An external reference junction maybe used in place of the internal junction. Externalreference junctions may be applied in the temperatureor direct millivolt readout modes.Resolution Reading in Temperature Units(selectable):1, .1 or .01 degrees. “Auto” mode selection thatallows the ATE-2 to automatically configure thereadout to the highest significant resolution(resolution closest to the tolerance) for the thermocoupletype selected.Resolution Reading in Millivolts: .001 millivoltsThermocouple Connection(to interface module):Requires a “miniature thermocouple connector”(Omega type SMP), specifically matched to thethermocouple type to be used. These connectorsmay be purchased as an accessory under the followingpart numbers:THERMOCOUPLE SPECIFICATION TABLE
Thermocouple Type |
Measurement Range (°C) |
Accuracy @ 25°C (Not Including Internal Reference Junction) Expressed as ±°C
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Accuracy @ 25°C (Including Internal Reference Junction) Expressed as ±°C
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Max Additional Error Due to Ambient Temperature Deviation From 25°C. Expressed as Additional °C Deviation from 25°C |
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J
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-210 to -151 -150 to 1200 |
0.7 0.3 |
1.1 0.4 |
0.02 0.01 |
K |
-240 to -201 -200 to -101 -100 to 999 |
1.5 1.0 0.5 |
2.2 1.5 0.8 |
0.05 0.03 0.02 |
T |
-250 to -201 -200 to -101 -100 to 400 |
1.5 0.8 0.5 |
2.2 1.2 0.8 |
0.05 0.03 0.02 |
E |
-250 to -201 -200 to -101 -100 to 400 |
1.2 0.6 0.3 |
2.0 1.1 0.6 |
0.04 0.02 0.01 |
R & S
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-50 to 299 300 to 1768 |
3.4 1.2 |
3.6 1.3 |
0.10 0.04 |
B
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100 to 199 200 to 499 500 to 999 1000 to 1820 |
14.0 5.0 3.0 1.2 |
14.0 5.0 3.0 1.2 |
0.44 0.16 0.08 0.04 |
N |
-250 to -226 -225 to -101 -100 to 1300 |
4.3 2.1 1.0 |
5.7 2.8 1.4 |
0.14 0.07 0.02 |
AMBIENT TEMPERATURE EFFECT:To calculate, multiply degrees deviation from25°C times the value listed in the far right columnof the listed table. Only applied when using theinternal reference junction, within the ambientwindow of 0-50°C.TO CALCULATE TOTAL SYSTEM/MEASUREMENTACCURACY:Accuracy = System Accuracy @ 25°C + SystemAmbient Temperature Effect + Inaccuracy ofThermocouple DeviceSYSTEM ACCURACY (BASED ON DIRECT MILLIVOLTREADING FROM THERMOCOUPLE):Includes the base unit and AM2-TC1 interfacemodule. (Does not include inaccuracy due to thethermocouple device. Reference junction notapplicable to direct millivolt readings.)
Input Range of Module |
Accuracy @ 25°C |
Max. Additional Error Due to Ambient Temperature Deviation From 25°C. Expressed As Additional Millivolt Error Per Each °C Deviation From 25°C |
10 to 100mV |
±0.01 to 100mV |
.001
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