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Fluke PVA-1500T2/TR Solmetric PV Analyzer I-V Curve Tracer Kit with training

Original price was: $43,519.98.Current price is: $26,111.99.

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SKU: PVA-1500T2/TR

Fluke PVA-1500T2/TR OffersOffering comprehensive data analysis and reporting features with an intuitive interface and portable design that makes it easy to use in both the field and the lab, this tracer gives technicians the ability to make informed decisions, maximizing the efficiency and reliability of solar installations.Built with durability and reliability in mind and boasting several advanced features - including enhanced precision measurement capabilities - this curve tracer is an essential tool for solar professionals seeking to optimize the performance and longevity of individual PV systems.FeaturesBuilt-in PV performance modeling and advanced wireless irradiance, temperature and tilt sensingUnprecedented measurement throughput with sweep-to-sweep delays as low as nine secondsSaves time through automated data analysis and reporting, streamlining the process of obtaining and interpreting measurement resultsUninterrupted measurements even in hot environmentsMeasures and displays I-V curves up to 1500 V and 10 AAdvanced built-in PV model provides immediate PV performance checkingSweep-to-sweep delay of nine seconds to measure 3.5 MW in under an hourDatabase of more than 70,000 modules with automatic updatesWireless interfaces for faster setup, safer work environment, and freedom of movement during PV troubleshootingIn-the-field firmware update readyPC connection during testing allows you to analyze and manage data in the fieldPV module and string testingThis kit is specifically designed for testing and analyzing individual solar photovoltaic (PV) modules. It allows users to assess the performance of PV modules accurately, enabling detailed analysis of factors such as shading, mismatch, degradation, and other performance anomalies.Real-time troubleshootingWith its advanced features and precision measurement capabilities, this high-efficiency Solmetric PV analyzer facilitates real-time troubleshooting of PV modules. This includes detecting issues such as shading or mismatch, allowing for swift identification and resolution of problems to ensure optimal performance of solar installations.Comprehensive data analysisEquipped with comprehensive data analysis and reporting features, this analyzer empowers technicians to make informed decisions. Users can analyze data collected by the tracer to gain insights into the efficiency and reliability of solar installations, aiding in performance optimization and maintenance planning.Portable field testingThe portable design of this kit makes it suitable for field testing applications. Solar professionals can easily transport the tracer to different locations for on-site testing and analysis of PV modules, enabling quick assessment and diagnosis of issues in real-world settings.Comprehensive measurement and efficient analysisFor commissioning, operations, maintenance, and troubleshooting of PV arrays, I-V curve testing is the most complete solar module performance measurement. Quick analysis of curve datasets aids in detecting outliers, and the stored data functions as a baseline for future performance inquiries.Accurate I-V curve tracingThe PVA measures the I-V (current versus voltage) curve of a PV string or module using a capacitive load. The measurement is typically performed at the string level by connecting directly to the string or at a combiner box using the fuses to select the string under test. The number of I-V curve points can be selected at 100 or 500. Additionally, the PVA generates the P-V (power versus voltage) curve, Isc, Voc, Imp, Vmp, Pmax, fill factor, and performance factor (the ratio of measured to expected maximum power).Time-saving interfaceWith a tablet or laptop (Windows only) as the user interface, perform more tests per hour and display the data in multiple, easy-to-read formats.Save your measurements by touching your customized array tree at the branch you are measuring. The software automatically calculates the expected I-V curve and displays the performance factor.Turn PVA data into key insights, visualizations, and customizable reportsCapture data in the field with the PVA Application and validate the results with the Data Analysis Tool (DAT), a Microsoft Excelâ„¢-based solution streamlining the analysis of PVA I-V curve data. It presents analysis results in multiple formats. It compiles key PV parameters in a string table, flags non-conforming strings, and delivers a statistical overview of the entire array. Additionally, it visually combines string I-V curves at the combiner box level, offering a clear depiction of consistency and identifying atypical strings. The tool also generates histograms for PV parameters across the string population, and this data can be added to a customizable report exported as a PDF. The Data Analysis Tool (DAT) can be downloaded for free use with any PVA.Supported languages: English, French, Spanish, German, Italian, Traditional Chinese, Simplified Chinese, and Brazilian Portuguese.Note: The PVA application and the Data Analysis Tool work best with Microsoft Windows 10 or Windows 11.TrainingFluke offers a variety of training related to PV test and measurement. Training can either be delivered as a virtual on-demand course or as a live online presentation/discussion format with a product expert (may differ regionally).PVA operator trainingTake this training if: You will be conducting I-V curve measurements in the field using the PVA.Introduction to I-V curve tracing and the PVAPreparing for I-V curve measurementsMeasuring I-V curves in the fieldMeasuring irradiance and temperatureSigns of abnormal PV string performanceExporting your measurement dataPVA specialist trainingTake this training if: You will be analyzing PVA dataIntroduction to I-V curve tracing and the PVAHow the pVA predicts the expected I-V curveSetting up the PVA softwareManaging measurement results in the data analysis toolReviewing measurement results in the data analysis toolIdentifying I-V curve deviations and determining likely causesGenerating and managing a punch listAcceptance testing following repairsGenerating a final reportPV troubleshooting trainingTake this training if: You will be troubleshooting PV array operation and performance.Special electrical behaviors of PV cells, modules, and bypass diodesTroubleshooting the six classes of deviation from ideal I-V curve shapeTroubleshooting strategies for PV strings and harnessed stringsUsing infrared imaging and combination with I-V curve tracingAcceptance testing following repairsApplicationsCommissioningAuditingOperations and maintenancePerformance verificationSystem commissioningTroubleshooting and fault identificationDegradation analysisOptimization of PV system performanceSafety compliance checksQuality assurance for PV panelsPreventative maintenanceFluke PVA-1500T2/TR OffersOffering comprehensive data analysis and reporting features with an intuitive interface and portable design that makes it easy to use in both the field and the lab, this tracer gives technicians the ability to make informed decisions, maximizing the efficiency and reliability of solar installations.Built with durability and reliability in mind and boasting several advanced features - including enhanced precision measurement capabilities - this curve tracer is an essential tool for solar professionals seeking to optimize the performance and longevity of individual PV systems.FeaturesBuilt-in PV performance modeling and advanced wireless irradiance, temperature and tilt sensingUnprecedented measurement throughput with sweep-to-sweep delays as low as nine secondsSaves time through automated data analysis and reporting, streamlining the process of obtaining and interpreting measurement resultsUninterrupted measurements even in hot environmentsMeasures and displays I-V curves up to 1500 V and 10 AAdvanced built-in PV model provides immediate PV performance checkingSweep-to-sweep delay of nine seconds to measure 3.5 MW in under an hourDatabase of more than 70,000 modules with automatic updatesWireless interfaces for faster setup, safer work environment, and freedom of movement during PV troubleshootingIn-the-field firmware update readyPC connection during testing allows you to analyze and manage data in the fieldPV module and string testingThis kit is specifically designed for testing and analyzing individual solar photovoltaic (PV) modules. It allows users to assess the performance of PV modules accurately, enabling detailed analysis of factors such as shading, mismatch, degradation, and other performance anomalies.Real-time troubleshootingWith its advanced features and precision measurement capabilities, this high-efficiency Solmetric PV analyzer facilitates real-time troubleshooting of PV modules. This includes detecting issues such as shading or mismatch, allowing for swift identification and resolution of problems to ensure optimal performance of solar installations.Comprehensive data analysisEquipped with comprehensive data analysis and reporting features, this analyzer empowers technicians to make informed decisions. Users can analyze data collected by the tracer to gain insights into the efficiency and reliability of solar installations, aiding in performance optimization and maintenance planning.Portable field testingThe portable design of this kit makes it suitable for field testing applications. Solar professionals can easily transport the tracer to different locations for on-site testing and analysis of PV modules, enabling quick assessment and diagnosis of issues in real-world settings.Comprehensive measurement and efficient analysisFor commissioning, operations, maintenance, and troubleshooting of PV arrays, I-V curve testing is the most complete solar module performance measurement. Quick analysis of curve datasets aids in detecting outliers, and the stored data functions as a baseline for future performance inquiries.Accurate I-V curve tracingThe PVA measures the I-V (current versus voltage) curve of a PV string or module using a capacitive load. The measurement is typically performed at the string level by connecting directly to the string or at a combiner box using the fuses to select the string under test. The number of I-V curve points can be selected at 100 or 500. Additionally, the PVA generates the P-V (power versus voltage) curve, Isc, Voc, Imp, Vmp, Pmax, fill factor, and performance factor (the ratio of measured to expected maximum power).Time-saving interfaceWith a tablet or laptop (Windows only) as the user interface, perform more tests per hour and display the data in multiple, easy-to-read formats.Save your measurements by touching your customized array tree at the branch you are measuring. The software automatically calculates the expected I-V curve and displays the performance factor.Turn PVA data into key insights, visualizations, and customizable reportsCapture data in the field with the PVA Application and validate the results with the Data Analysis Tool (DAT), a Microsoft Excelâ„¢-based solution streamlining the analysis of PVA I-V curve data. It presents analysis results in multiple formats. It compiles key PV parameters in a string table, flags non-conforming strings, and delivers a statistical overview of the entire array. Additionally, it visually combines string I-V curves at the combiner box level, offering a clear depiction of consistency and identifying atypical strings. The tool also generates histograms for PV parameters across the string population, and this data can be added to a customizable report exported as a PDF. The Data Analysis Tool (DAT) can be downloaded for free use with any PVA.Supported languages: English, French, Spanish, German, Italian, Traditional Chinese, Simplified Chinese, and Brazilian Portuguese.Note: The PVA application and the Data Analysis Tool work best with Microsoft Windows 10 or Windows 11.TrainingFluke offers a variety of training related to PV test and measurement. Training can either be delivered as a virtual on-demand course or as a live online presentation/discussion format with a product expert (may differ regionally).PVA operator trainingTake this training if: You will be conducting I-V curve measurements in the field using the PVA.Introduction to I-V curve tracing and the PVAPreparing for I-V curve measurementsMeasuring I-V curves in the fieldMeasuring irradiance and temperatureSigns of abnormal PV string performanceExporting your measurement dataPVA specialist trainingTake this training if: You will be analyzing PVA dataIntroduction to I-V curve tracing and the PVAHow the pVA predicts the expected I-V curveSetting up the PVA softwareManaging measurement results in the data analysis toolReviewing measurement results in the data analysis toolIdentifying I-V curve deviations and determining likely causesGenerating and managing a punch listAcceptance testing following repairsGenerating a final reportPV troubleshooting trainingTake this training if: You will be troubleshooting PV array operation and performance.Special electrical behaviors of PV cells, modules, and bypass diodesTroubleshooting the six classes of deviation from ideal I-V curve shapeTroubleshooting strategies for PV strings and harnessed stringsUsing infrared imaging and combination with I-V curve tracingAcceptance testing following repairsApplicationsCommissioningAuditingOperations and maintenancePerformance verificationSystem commissioningTroubleshooting and fault identificationDegradation analysisOptimization of PV system performanceSafety compliance checksQuality assurance for PV panelsPreventative maintenance

Fluke PVA-1500T2/TR Specifications

Maximum Current (Isc) Module Efficiency
<19%: 30 A DC ≥19%: 10 A DC Sweep-to-Sweep Delay (at VOC ≥ 1350 V) <9 seconds Maximum Number of I-V Sweeps per Hour (at VOC ≥ 1350 V) 400 sweeps/hr Maximum Megawatts Measured per Hour 3.5 MW/hr Thermal Capacity - Number of I-V Sweeps Before the PVA Must Cool Down Unlimited: 77°F (25°C) ambient, 9 or 18 second sweep-to-sweep delay 550: 113°F (45°C) ambient, 18 second sweep-to-sweep delay 330: 113°F (45°C) ambient, 9 second sweep-to-sweep delay SolSensor™ Irradiance accuracy: ±2% when used to predict the performance of well-characterized poly and monocrystalline PV modules with direct irradiance >600 W/m2
Cell temperature accuracy: ±2°C (not including limits of error or thermocouple)
Tilt accuracy: ±2° typical (0 to 45°)
Update interval: Typically 3.5 seconds
Wireless range: 330' (100 m), open line of sight

Voltage Range (VOC)
20 to 1500 V DC

Current
30 A DC (module efficiency <19%) Accuracy Voltage: ±(0.5% + 0.25 V) Current: ±(0.5% + 0.04 A) Power: ±(1.7% + 1 W), current ≥3 A, module efficiency <19% I-V Trace Points 100 or 500 (selectable) I-V Sweep Duration 0.05 to 2 seconds (typically 0.2 seconds for PV strings) Interface to PC/Tablet WiFi FW Field Updatable Yes Operating Temperature (Ambient) 32 to 113°F (0 to 45°C) Safety and Regulatory CAT III 1500 V, CE, UKCA, TUV, IEC 62446-1 Battery Lithium-ion Dimensions 24 x 17 x 12" (61 x 43 x 30.5 cm) Weight 14 lbs (6.35 kg) Click here for complete specifications on the Fluke PVA-1500T2/TR What's included with the Fluke PVA-1500T2/TR1500 V PV AnalyzerSolsensor 300 Measurement UnitOpen End Spanner Set (MC4 wrenches)Test Lead Set (MC4 to dolphin clip)Module Frame ClampPack of 2 K-Type Thermocouple Temperature SensorPack of 50 Adhesive Discs (for thermocouple attachment)Spray Bottle of Distilled WaterMicro-Fibre Cleaning ClothI-V Unit Measurement HeadSolsensor Lanyard ToolI-V Unit Soft Carrying Case (for the PV analyzer)Hard Carrying CaseDual-Port PVA Charger Plug2 x PVA USB Charging CableTraining CourseQuick Reference CardOne-Year Warranty

Weight 14.00175 lbs
Dimensions 24.015748 × 16.929134 × 12.007874 in
model

PVA-1500T2/TR

Product Type

Radiation Safety

Brand

Warranty

12months warranty against manufacturers defects

Country of Origin

USA

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Description

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Standard

Within 3-4 working days
(07:00 - 19:30hrs)

Weekdays Only (only applies to orders placed before 6pm)

Express Delivery

Next Working Day (08:00 - 18:00hrs)

Weekdays Only, applies to orders placed before 4pm Mon-Thurs, before 3pm on Fri & before 2pm on Sat (no Sunday deliveries)

Premium Delivery - DPD

Next Working Day (07:00 - 19:30hrs)

Weekdays Only, applies to orders placed before 4pm Monday-Thursday. (Orders placed after 4pm Thur - Sunday before 1pm, will be delivered Monday)

Large Parcel Delivery

Within 3-5 working days (07:00 - 19:30hrs)

Weekdays Only (only applies to orders placed before 6pm)

Premium Saturday Delivery

Saturday Delivery (07:00 - 19:30hrs)

Delivered Saturday with a 1 Hour delivery slot and Tracking. (only applies to orders placed on Friday before 2pm)

Premium Sunday Delivery

Sunday Delivery (07:00 - 19:30hrs)

Delivered Sunday with a 1 Hour delivery slot and Tracking. (only applies to orders placed on Friday before 2pm)

 

 

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