Purpose-built mass analysis
High-sensitivity triple-quadrupole lc-ms/ms platform targets the sensitivity, selectivity or resolution requirements of its analytical class.

$210,000
Waters Xevo TQ Absolute Mass Spectrometer is a Waters high-sensitivity triple-quadrupole LC-MS/MS platform built for targeted quantitative bioanalysis, pharmaceutical and analytical workflows. The system combines professional LC-MS hardware with Waters quantitative LC-MS software ecosystem; analytical range and performance are method- and configuration-dependent. A complete deployment should include the appropriate LC front end, ion source, software, gas/vacuum utilities, service and validated methods.
Related products, categories and research.
Waters Xevo TQ Absolute Mass Spectrometer is a Waters high-sensitivity triple-quadrupole LC-MS/MS platform built for targeted quantitative bioanalysis, pharmaceutical and analytical workflows. The system combines professional LC-MS hardware with Waters quantitative LC-MS software ecosystem; analytical range and performance are method- and configuration-dependent. A complete deployment should include the appropriate LC front end, ion source, software, gas/vacuum utilities, service and validated methods.
Professional laboratory equipment should be selected as a complete analytical workflow rather than as a standalone instrument. The final package must align instrument configuration, accessories, consumables, software, site utilities, data handling, service and application validation.
Waters Xevo TQ Absolute Mass Spectrometer is a Waters high-sensitivity triple-quadrupole LC-MS/MS platform built for targeted quantitative bioanalysis, pharmaceutical and analytical workflows. The system combines professional LC-MS hardware with Waters quantitative LC-MS software ecosystem; analytical range and performance are method- and configuration-dependent. A complete deployment should include the appropriate LC front end, ion source, software, gas/vacuum utilities, service and validated methods.
Core platform capabilities and practical deployment considerations for the named model.
High-sensitivity triple-quadrupole lc-ms/ms platform targets the sensitivity, selectivity or resolution requirements of its analytical class.
Pair with compatible LC/UPLC front ends to build controlled sample-separation and MS detection workflows.
Waters quantitative LC-MS software ecosystem supports acquisition, processing, review and reporting.
Optimize source, chromatography, transitions/acquisition, calibration and QC around the target analytes.
Routine calibration, system suitability, controls and preventive maintenance support reliable analytical results.
A production package should include installation, qualification where required, training, spare/consumable planning and service coverage.
Representative professional use cases. Final suitability depends on the exact configuration and application requirements.
Targeted quantitation in pharmaceutical, clinical-research and bioanalytical workflows.
Characterization and monitoring of biomolecules and product attributes.
Proteomic, metabolomic or related high-content analytical workflows where appropriate.
Sensitive targeted or high-resolution analysis of complex matrices.
Standardized multi-user LC-MS workflows with controlled data systems.
Flexible research and analytical method optimization.
Use these model-level specifications for evaluation, then confirm the exact SKU, revision and ordered configuration before deployment.
The final quotation should make the exact configuration explicit so procurement, installation and acceptance teams are working from the same bill of materials.
Named platform with the hardware, source/modules, software and standard accessories specified in the final quotation.
Consumables, columns/flow cells/reagents, standards, data system, installation, training, qualification and service are selected for the laboratory method.
Practical checks to complete before the final purchase order.
The final package should be defined by application, sample type, throughput, software, accessories, consumables, service coverage, data workflow and any qualification or regulatory requirements.
Consumables and starter kits vary by instrument and quotation. Confirm columns, reagents, flow cells, calibration materials, standards, vials, source parts or other workflow-specific items separately.
Only where the instrument, assay and laboratory workflow have the appropriate intended-use status, local approvals and validation. Research-use specifications should not be treated as clinical authorization.
Requirements may include power, network, bench/floor space, HVAC, gases, vacuum/exhaust, water, UPS, data storage and service clearances. Use the exact site-preparation guide for installation planning.
Plan installation, acceptance testing, calibration, user training, method transfer/validation, routine QC procedures, preventive maintenance and service escalation.
Waters develops liquid-chromatography, mass-spectrometry and informatics platforms for analytical laboratories. Confirm the exact instrument, LC front end, source, software, service and qualification package required for the intended workflow.
Use the quotation stage to lock the exact model, configuration, compatibility requirements and delivery package before shipment.
Confirm the named SKU/revision and required accessories before order release.
Match the equipment to workload, facility, software and integration requirements.
Align packing, insurance, destination requirements and receiving/site readiness.
Keep the quotation, BOM and available product documentation aligned for deployment.
Explore the Medical Equipment catalogue, browse related products, or contact AI Robot Supplier for model, configuration and delivery checks. Manufacturer-level product-family information is available from Waters.
Send the intended use, destination and required configuration so the quotation can be matched to the real deployment.
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