Small dry wells for big field applications

 

The new 914X Series Field Metrology Wells extend high performance to the industrial process environment by maximizing portability, speed, and functionality with little compromise to metrology performance.

Field Metrology Wells are packed with functionality and are remarkably easy to use. They are lightweight, small, and quick to reach temperature set points, yet they are stable, uniform, and accurate. These industrial temperature loop calibrators are perfect for performing transmitter loop calibrations, comparison calibrations, or simple checks of thermocouple sensors. With the “process” option, there is no need to carry additional tools into the field. This optional built-in two-channel readout reads resistance, voltage, and 4–20 mA current with 24 volt loop power. It also has on-board automation and documentation. Combined, the three models (9142, 9143, and 9144—each with a “process” option) cover the wide range of –25 °C to 660 °C.

High performance for the industrial environment

 

Features:

Built-in features to address large workloads and common applications

 

Metrology performance for high-accuracy measurements

 

Automation and documentation make each unit a turnkey solution

So you now have a precision calibration instrument that has field-ready characteristics, accredited metrology performance, built-in two-channel thermometry, and automation— what else could you ask for? How about all this and a turnkey solution that will automate and document the results?

 

Operation is as easy as 1-2-3

You’ll find Field Metrology Wells intuitive and easy to use.

 

Base Unit Specifications

Temperature Range at 23 °C

9142

 –25 °C to 150 °C(–13 °F to 302 °F)

9143

 33 °C to 350 °C(91 °F to 662 °F)

9144

 50 °C to 660 °C(122 °F to 1220 °F)

Display Accuracy

9142

 ± 0.2 °C Full Range

9143

 ± 0.2 °C Full Range

9144

 ± 0.35 °C at 50 °C

 

 ± 0.35 °C at 420 °C

 

 ± 0.5 °C at 660 °C

Stability

9142

 ± 0.01 °C Full Range

9143

 ± 0.02 °C at 33 °C

 

 ± 0.02 °C at 200 °C

 

 ± 0.03 °C at 350 °C

9144

 ± 0.03 °C at 50 °C

 

 ± 0.04 °C at 420 °C

 

 ± 0.05 °C at 660 °C

Axial Uniformity at 40 mm (1.6 in)

9142

 ± 0.05 °C Full Range

9143

 ± 0.04 °C at 33 °C

 

 ± 0.1 °C at 200 °C

 

 ± 0.2 °C at 350 °C

9144

 ± 0.05 °C at 50 °C

 

 ± 0.35 °C at 420 °C

 

 ± 0.5 °C at 660 °C

Radial Uniformity

9142

 ± 0.01 °C Full Range

9143

 ± 0.01 °C at 33 °C

 

 ± 0.015 °C at 200 °C

 

 ± 0.02 °C at 350 °C

9144

 ± 0.02 °C at 50 °C

 

 ± 0.05 °C at 420 °C

 

 ± 0.10 °C at 660 °C

Loading Effect (with a 6.35 mm reference probe and three 6.35 mm probes)

9142

 ± 0.006 °C Full Range

9143

 ± 0.015 °C Full Range

9144

 ± 0.015 °C at 50 °C

 

 ± 0.025 °C at 420 °C

 

 ± 0.035 °C at 660 °C

Hysteresis

9142

 0.025

9143

 0.03

9144

 0.1

Operating Conditions

 

 0 °C to 50 °C, 0 % to 90 % RH (non-condensing)

Environmental Conditions (for all specifications except temperature range)

 

 13 °C to 33 °C

Immersion (Well) Depth

 

 150 mm (5.9 in)

Insert OD

9142

 30 mm (1.18 in)

9143

 25.3 mm (1.00 in)

9144

 24.4 mm (0.96 in)

Heating Time

9142

 16 min: 23 °C to 140 °C

 

 23 min: 23 °C to 150 °C

 

 25 min: –25 °C to 150 °C

9143

 5 min: 33 °C to 350 °C

9144

 15 min: 50 °C to 660 °C

Cooling Time

9142

 15 min: 23 °C to –25 °C

 

 25 min: 150 °C to –23 °C

9143

 32 min: 350 °C to 33 °C

 

 14 min: 350 °C to 100 °C

9144

 35 min: 660 °C to 50 °C

 

 25 min: 660 °C to 100 °C

Resolution

 

 0.01 °

Display

 

 LCD, °C or °F user-selectable

Size (H x W x D)

 

 290 mm x 185 mm x 295 mm (11.4 x 7.3 x 11.6 in)

Weight

9142

 8.16 kg (18 lb)

9143

 7.3 kg (16 lb)

9144

 7.7 kg (17 lb)

Power Requirements

9142

 100 V to 115 V (± 10 %) 50/60 Hz, 635 W 230 V (± 10 %) 50/60 Hz, 575 W

9143 9144

 100 V to 115 V (± 10 %), 50/60 Hz, 1400 W 230 V (± 10 %), 50/60 Hz, 1800 W

Computer Interface

 

 RS-232 and 9930 Interface-it control software included

 

-P Specifications

Built-in Reference Thermometer Readout Accuracy (4-Wire Reference Probe)†

 

 ± 0.010 °C at -25 °C
± 0.015 °C at 0 °C
± 0.020 °C at 50 °C
± 0.025 °C at 150 °C
± 0.030 °C at 200 °C
± 0.040 °C at 350 °C
± 0.050 °C at 420 °C
± 0.070 °C at 660 °C

Reference Resistance Range

 

 0 ohms to 400 ohms

Reference Resistance Accuracy‡

 

 0 ohms to 42 ohms: ±0.0025 ohms 42 ohms to 400 ohms: ±60 ppm of reading

Reference Characterizations

 

 ITS-90, CVD, IEC-751, Resistance

Reference Measurement Capability

 

 4-wire

Reference Probe Connection

 

 6-pin Din with Infocon Technology

Built-in RTD Thermometer Readout Accuracy

 

 NI-120: ± 0.015 °C at 0 °C

 

 PT-100 (385): ± 0.02 °C at 0 °C

 

 PT-100 (3926): ± 0.02 °C at 0 °C

 

 PT-100 (JIS): ± 0.02 °C at 0 °C

RTD Resistance Range

 

 0 ohms to 400 ohms

RTD Resistance Accuracy‡

 

 0 ohms to 25 ohms: ±0.002 ohms

 

 25 ohms to 400 ohms: ±80 ppm of reading

RTD Characterizations

 

 PT-100 (385),(JIS),(3926), NI-120, Resistance

RTD Measurement Capability

 

 4-wire RTD (2-,3-wire RTD w\ Jumpers only)

RTD Connection

 

 4 terminal input

Built-in TC Thermometer Readout Accuracy

 

 Type J: ± 0.7 °C at 660 °C
Type K: ± 0.8 °C at 660 °C
Type T: ± 0.8 °C at 400 °C
Type E: ± 0.7 °C at 660 °C
Type R: ± 1.4 °C at 660 °C
Type S: ± 1.5 °C at 660 °C
Type M: ± 1.4 °C at 660 °C
Type L: ± 0.7 °C at 660 °C
Type U: ± 0.75 °C at 600 °C
Type N: ± 0.9 °C at 660 °C
Type C: ± 1.1 °C at 660 °C

TC Millivolt Range

 

 –10 mV to 75 mV

Voltage Accuracy

 

 0.025% of reading + 0.01 mV

Internal Cold Junction Compensation Accuracy

 

 ± 0.35 °C (ambient of 13 °C to 33 °C)

TC Connection

 

 Small connectors

Built-in mA Readout Accuracy

 

 0.02 % of reading + 2 mV

mA Range

 

 Cal 4-22 mA, Spec 4-24 mA

mA Connection

 

 2 terminal input

Loop Power Function

 

 24 V DC loop power

Built-in Electronics Temperature Coefficient (0 °C to 13 °C, 33 °C to 50 °C)

 

 ± 0.005 % of range per °C


† The temperature range may be limited by the reference probe connected to the readout. The Built-In Reference Thermometer Readout Accuracy does not include the sensor probe accuracy. It does not include the probe uncertainty or probe characterization errors.

‡ Measurement accuracy specifications apply within the operating range and assume 4-wires for PRTs. With 3-wire RTDs add 0.05 ohms to the measurement accuracy plus the maximum possible difference between the resistances of the lead wires.