XMTC-62-11-0
XMTC-62-11-0
XMTC-62-11-0
XMTC-62-11-0
XMTC-62-11-0
XMTC-62-11-0
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XMTC-62-11-0

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Panametrics XMTC explosion-proof thermal conductivity transmitter configured by order code 62-11-0.
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Technical specifications for XMTC-62-11-0

  • Manufacturer:
    General Electric
  • Part Number:
    XMTC-62-11-0
  • Product Family:
    General Electric
  • Product Type:
    Explosion-Proof Thermal Conductivity Transmitter
  • Stock:
    1
  • Configuration:
    Explosion-proof, two-port sealed reference
  • Output:
    4-20 mA, 800 ohm maximum load
  • Supply:
    24 V DC plus or minus 2 V, 1.2 A maximum
  • Sample flow:
    0.1 to 4 SCFH; 0.5 SCFH nominal
  • Accuracy:
    Plus or minus 2% of span
  • Response:
    20 seconds to 90%
  • Wetted material:
    316 stainless steel with Viton seals
  • Weight:
    4.3 kg
  • Estimated shipping dimensions:
    14.5x14.5x26.6cm
  • Tariff Code:
    9027100000
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen,Fujian,China
By purchasing this item, you agree to the Terms & Conditions, ApterPower is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All our products come with ApterPower's 1-year warranty.

More Information

Overview Manuals Order Code Gas Flow Output Circuit Product Applications

Features:

  • Gas-analysis role: The transmitter measures composition through differences in gas thermal conductivity.
  • Configuration-coded identity: The complete XMTC-62-11-0 order code defines the selected transmitter construction.
  • Hazardous-area format: This configuration uses the explosion-proof sealed-reference transmitter architecture.
XMTC-62-11-0 is intended for gas-measurement duties in which the target and background gases have a useful thermal-conductivity difference. The instrument converts that physical relationship into a signal for the process system.

The sealed-reference arrangement gives the transmitter a defined comparison basis while the sample passes through the measuring path. This makes gas composition, rather than pressure or flow alone, the measurement objective.

The order code is central to selection because enclosure, output, labeling, and wetted construction belong to one configuration. The analyzer duty and installation area must therefore be considered together when choosing the product.

For XMTC-62-11-0, Apter Power can coordinate official-document review, quotation, and sourcing for the identified configuration.
General Electric XMTC-62-11-0 Explosion-Proof Thermal Conductivity Transmitter Manuals,Datasheets,Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
  • Code 6 identifies the explosion-proof two-port sealed-reference form
  • Code 2 selects the standard 4-20 mA output
  • The remaining code positions define labeling and wetted materials
  • Operate within the documented 0.1 to 4 SCFH range
  • Nominal sample flow is 0.5 SCFH
  • Provide clean, conditioned sample gas and a safe vent path
  • Use a regulated 24 V DC supply
  • Keep the 4-20 mA load within 800 ohms
  • Verify loop isolation and scaling at the receiving system
  • Binary or quasi-binary gas concentration measurement
  • Hydrogen purity and other validated thermal-conductivity duties
  • Hazardous-area sample systems using the matching certified configuration
Description
XMTC-62-11-0 is a Panametrics XMTC thermal conductivity transmitter with the photographed 62-11-0 order code. The official ordering matrix maps this configuration to an explosion-proof, two-port sealed-reference cell, standard 4-20 mA output, T6 labeling, and 316 stainless-steel wetted material with Viton seals.

XMTC-62-11-0 requires regulated 24 V DC power and a controlled sample flow. Application engineering should verify gas pair, calibration range, hazardous-area approvals, sample conditioning, flow, venting, output load, wetted-material compatibility, and the exact order code before installation.
Alternative Names
XMTC 62 11 0 Panametrics XMTC Explosion-Proof Transmitter
Technical notes
XMTC-62-11-0 must be matched by the complete configuration code and calibration duty. Verify target and background gases, calibrated range, 24 V DC supply, 4-20 mA load, sample pressure and flow, venting, wetted materials, T6 marking, and hazardous-area installation. Do not infer gas calibration from the enclosure code.
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FAQS

The following is a list of questions commonly asked by our customers. Please contact us if you have a question about our process that is not answered below.
Can XMTC-62-11-0 be moved to a different gas pair without recalibration?
No. Thermal-conductivity response depends on the validated gas pair and calibration range, so a new duty requires an approved calibration and wetted-material review before use.
Why can unstable sample flow distort the reading from XMTC-62-11-0?
The transmitter is documented for 0.1 to 4 SCFH with 0.5 SCFH nominal flow. Condition the sample and maintain a safe vent path before adjusting the electrical output.
When should the 4-20 mA loop for XMTC-62-11-0 be rejected?
Reject the loop if the regulated 24 V DC supply or total load cannot meet the documented 800-ohm maximum. Correct wiring and burden before scaling the receiving system.
How should hazardous-area suitability be controlled for XMTC-62-11-0?
Use the approval marking and complete 62-11-0 order code for the installed location. Do not infer certification from another XMTC enclosure or label option.
Which material check is required before XMTC-62-11-0 receives process gas?
Compare the order-code wetted materials with the actual sample composition and contaminants. Stop flow if material compatibility has not been approved for the duty.
Before replacing XMTC-62-11-0, what configuration must transfer to the new transmitter?
Retain the gas pair, calibration range, label approval, sample-flow arrangement, wetted materials, and 4-20 mA scaling. Commission against a known sample before accepting control-system readings.

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