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FLK-SMFT

Fluke SMFT-1000 Pro

sku Product SKU:  FLK-SMFT-1000-PRO

Product overview: SMFT-1000 Solar Tools Kit: Fluke Multifunction PV Tester and Performance Analyzer, I-V Curve Tracer

PTIA 2022 Awards Winner

All-in-one test solution to verify PV system performance, safety and expedite client reporting.

Test that PV systems are performing to their optimal power output and operating safely with the Fluke SMFT-1000 multifunction tester with I-V curve tracing.  Designed for PV professionals who provide installation, commissioning and maintenance services to systems that operate at 1000 V DC or under, the SMFT-1000 provides a complete PV testing solution that conforms to IEC 62446-1 standards. Through Fluke’s TruTest™ Software, measurement data from solar site installation and commissioning testing can be easily imported, organized and analyzed for effortless reporting without bringing a laptop on-site.

Critical testing features for periodic inspection of PV systems

Full sequence safety testing – IEC 62446-1 Category 1:

  • Protective resistance earth (Rpe) 
  • Voltage on open circuit (Voc) 
  • Short circuit current (Isc) 
  • Insulation resistance (Rins)
  • Polarity

ROI and system performance testing – IEC 62446-1 Category 2:

  • I-V Curve tracing and software analysis with TruTest
  • Irradiance, temperature, tilt, cardinal direction

What's in the box:

  • Fluke SMFT-1000-BP Professional Tool Backpack
  • SMFT-1000 Multifunction PV Analyzer
    1. Carry Strap
    2. Fuse Pack
    3. Adapter Cable IRDA Optical-to-USB
    4. Zero Adapter
  • IRR2-BT Wireless Solar Irradiance Meter Pro
    1. 80PR-IRR External Temperature Probe
    2. Mounting Bracket for solar panel
    3. Carry Case
  • i100 AC/DC Current Clamp 100 A
    1. TPAK Magnet Set
  • TP1000 Test Probe with Remote Test Button
  • TL1000 Test Lead Set
  • TL1000-MC4 Test Lead Set
  • TL1000/30M Test Lead on Reel
  • Coupler set

Wireless Irradiance Meter: No leads requiredSMFT-1000 Solar Tools Kit: Fluke Multifunction PV Tester and Performance Analyzer, I-V Curve Tracer

To perform precise I-V curve measurements, real time irradiance and temperature data is needed. The included IRR2-BT irradiance meter wirelessly connects to the SMFT-1000 to communicate data in real time, providing the most accurate I-V curve measurements possible. If the wireless connection is interrupted for any reason, the IRR2-BT will continue recording data for up to 17 hours that can later be matched to tests taken with the SMFT-1000.

It’s a hassle to change the configuration of test leads constantly while doing different tests. With Fluke’s “Keep the Leads” system, less time is wasted on set-up, and fewer user errors occur while testing PV systems. Now you can get more testing done in the field in less time

SMFT-1000 Solar Tools Kit: Fluke Multifunction PV Tester and Performance Analyzer, I-V Curve Tracer

Colour Screen with Integrated Interface: On-screen instructions provide an easy walkthrough of tests

Switch the SMFT-1000 to Auto Test Mode to perform an automatic sequence of tests in a variety of combinations:

  • With insulation test or without insulation test
  • IEC 62446-1 testing for Category 1 or Category 1 and 2
  • IEC 62446-1 testing for Protection Class I or Protection Class II

On-location I-V curve results: compare manufacturer I-V curve data to measured data instantlySMFT-1000 Solar Tools Kit: Fluke Multifunction PV Tester and Performance Analyzer, I-V Curve Tracer

While taking an I-V curve reading in the field, the SMFT-1000 will display the curve as it loads in the test data against the module specifications as defined by the manufacturer. This makes it easy to immediately confirm measurements without using a laptop or tablet. Run the I-V curve test on new installations to confirm they are working according to the site specifications or to test if existing modules or strings are working to their expected performance levels.

SMFT-1000 Solar Tools Kit: Fluke Multifunction PV Tester and Performance Analyzer, I-V Curve Tracer

Record visual inspections, then manage data with TruTest™ Solar Software

To meet PV system IEC regulations for visual inspections, the SMFT-1000 features a convenient setting in which to record observations directly to the memory. Later, the information can be downloaded to the TruTest™ software and incorporated into the project report.

TruTest™ allows for solar asset management, data storage and reporting on a single platform. Whether you analyse panel efficiency through I-V curves or safety testing the system through the Category 1 test regime in conformance with IEC 62446-1, proper data management is critical for producing easy-to-understand client reports. TruTest™ Software allows you to quickly and easily import measurement results directly from your solar multifunction tester to your computer, organize and analyze the data, compare individual asset data against previous measurements imported and provide a comprehensive and visual client report.

  • Easily manage measurement data from solar site installation and commissioning testing.
  • Quickly create inspections and reports compliant with IEC 62446-1 and other directives.
  • I-V curve analysis with easy pass/fail visuals; see changes in I-V curve over multiple site visits
  • Compare site data to previous site data to see changes over time
  • Download your free 60-day demo version of TruTest™. Purchase a software key to unlock the Lite or Advanced version.

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IMG-174x-2

Fluke 1742, 1746 and 1748

sku Product SKU:  FLK-174x

The Fluke 1742, 1746 and 1748 Three-Phase Power Quality Loggers give you fast, easy access to the data you need to make critical power quality and energy decisions in real-time. With the included Energy Analyse Plus software package you can easily create detailed reports.

Upgrade according to future needs

The Fluke 1748 logs over 500 different parameters for each averaging period. This allows you to analyze power quality in detail and to correlate intermittent events with detailed waveform data, helping to identify the root cause of disturbances. For basic power quality logging, the Fluke 1746 captures all relevant power parameters for performing energy saving studies and electrical network planning with a full upgrade option to 1748 available. For simple load and energy studies the Fluke 1742 offers optimal performance in a rugged package and can be upgraded to 1746, or complete 1748, functionality.

National and international standards

Compact and rugged, the Fluke 1740 Series Three-Phase Power Quality Loggers are designed specifically for technicians and engineers who need the flexibility to troubleshoot, quantify energy usage and analyze power distribution systems. Fully compliant with international power quality standards such as IEC 61000-4-30 Class A and capable of simultaneously logging up to 500 parameters while also capturing events, the Fluke 1740 Series helps uncover intermittent and hard-to-find power quality issues more easily than ever. Energy Analyze Plus software quickly assesses the quality of power at the service entrance, substation, or at the load, according to national and international standards including EN 50160 and IEEE 519.

An optimized user interface, flexible current probes, and an intelligent measurement verification function that allows you to digitally verify and correct connections makes setup easier than ever and reduces measurement uncertainty. Minimize your time in potentially hazardous environments and reduce the hassle of suiting up in PPE by using a wireless connection (Wi-Fi) to view data directly in the field.

Analysis and reporting

Capturing logged data is just one part of the task. Once you have the data, you need to create useful information and reports that can be easily shared and understood by your organization or customers. Fluke Energy Analyse Plus software makes that task as simple as possible. With powerful analysis tools and the ability to create customized reports in minutes you’ll be able to communicate your findings and quickly solve problems so you can optimize system reliability and savings. A range of built-in report templates for industry standards such as EN 50160, IEEE 519 and GOST enable one-click reporting so you can create high quality reports at the touch of a button. Reports can be modified as standards evolve, or new versions become available.

Which power logger is right for you?

Features 1742 1746 1748
Functions
Voltage, current, power, power factor, frequency
Energy forward/reverse
Peak Demand
THD
Flicker
Voltage and current harmonics (to 50th)1  
Unbalance1  
Rapid voltage change events1  
Interharmonics (to 50th)1  
Dips, swells, interruption and transient events tables1  
Inrush current1  
Transients (low frequency) / Waveform deviation events2    
Recording
Trend
Waveform snapshots2    
RMS profile2    
Communication
Ethernet
USB (mini B)
Wi-Fi download Instrument to device
Wi-Fi download via Wi-Fi hub (free with registration) Opt. Opt. Opt.
Included accessories
Flexible current probe not /B version not /B version not /B version
USB stick
USB cable
3PHVL-17XX cable assembly
FLUKE-17XX-TL 0.18M test lead set
FLUKE-17XX-TL 2M test lead set
Alligator clips 4 4 4
173x/174x Soft Case
Cable marker kit
MP1-3R/1B-Magnet Probe 1 set (3 red, 1 black) Opt. 1 1
174x-Hanger Kit Opt. Opt.

Software Features

  • "In-workshop" or "in-the-field" setup and download through PC application software: simple download using USB memory stick, Wi-Fi download, wired Ethernet connection or via USB cable.
  • Energy Analyse Plus application software: Download and analyze every measured detail of energy consumption and power quality state-of-health with automated reporting.
  • One-touch reporting: Create standardized reports according to commonly used standards like EN 50160, IEEE 519, GOST 33073 or export data in PQDIF or NeQual compatible format for use with third party software.
  • Advanced analysis: Choose any available logged parameter to create a highly customized view of logged measurements for advanced correlation of data.

Hardware Features

  • Measure all three voltage and current phases plus the neutral current: Three-phase and neutral voltage leads and four flexible current probes or optional current clamps for CT secondary current.
  • Comprehensive logging: More than 20 separate logging sessions can be stored in the instrument. A comprehensive range of power and power quality variables are automatically logged so you never lose measurement trends.
  • Measure with premium accuracy: Meets the rigorous IEC 61000-4-30 Class A Edition 3 standard for ‘Testing and measurement techniques–Power quality measurement methods.'
  • Capture dips, swells and interruptions: The 1748 includes event waveform capture and RMS event profile, along with date, timestamp and severity information to help pinpoint potential root causes of power quality issues.
  • Measure key power quality parameters: Measures harmonics and interharmonics for voltage and current, also includes unbalance, flicker and rapid voltage changes.
  • Optimized user interface: Capture the right data every time with quick, guided, graphical PC based application setup and reduce uncertainty about your connections with an intelligent verification feature and the only auto-correction function for a power quality logger. Connection errors are automatically indicated via an amber light on the unit’s power button, this light turns green once corrected.
  • Optimized user interface: Quick, guided, graphical setup ensures you’re capturing the right data every time, and the intelligent verification function indicates correct connections have been made, reducing user uncertainty.
  • Flexible power supply: Powers directly from the measured circuit with the widest available range for a power quality logger automatically going from 100 V to 500 V or from a wall line cord, so you can test anywhere.
  • Rugged and reliable: Designed to withstand harsh installation environments with IP65 rating when used with IP65 voltage input adapter.
  • Two external USB ports: One for PC connection and another for quick, simple data download to standard USB thumb drives, allowing you to leave the measurement device in place and download without disrupting logging.
  • Ethernet connectivity: Wired and wireless connections for instrument setup and high-speed data download.
  • Compact size: Designed to fit in tight spaces and panels with small 23 cm x 18 cm x 5.4 cm (9.1 in x 7.1 in x 2.1 in) footprint.
  • Highest safety rating in the industry: 600 V CAT IV/1000 V CAT III rated for use at the service entrance and downstream.
  • Optimized measurement accessories: Unique tangle-free flat voltage cable and thin flexible current probes ensure easy installation even in tight spaces.
  • Battery life: Four-hour operating time (backup time) per charge on lithium-ion battery to withstand temporary power disruptions.
  • Security: Safeguard your best asset from theft with a standard chain or other security device.
  • Magnetic hanger kit: Conveniently stow the instrument safely inside or outside of electrical panels; compatible with all models and included with 1748 model as standard.

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IMG-FLK726

Fluke 726 Precision Multifunction Calibrators

sku Product SKU:  FLK-726

Product overview: Fluke 726 Precision Multifunction Calibrators

Process calibration designed specifically for process industries

The Fluke 726 is a precise and powerful, yet easy-to-use, field calibrator. It features broad workload coverage, calibration power, and unsurpassed accuracy needed by process professionals. It measures and sources almost all process parameters to calibrate almost anything. Use it to test sensors and valves, and to test and calibrate transmitters. The 726 interprets results without the help of a calculator and stores measurement data for later analysis.

Measurement capabilities

This precision multifunction calibrator measures volts, mA, pressure, RTDs, thermocouples, frequency, and resistance to test sensors and transmitters. The 726 also sources and simulates volts, mA, thermocouples, RTDs, frequency to calibrate transmitters. Measures and/or sources pressure using when paired with any of the 50 Fluke 750P series Pressure Modules to test and calibrate pressure transmitters and other devices. The 726 can also:

  • Source mA with simultaneous pressure measurement to conduct valve and I/P test
  • Conduct enhanced flowmeter testing with frequency totalizer and frequency pulse train source mode

Designed for ease of use

The 726 has built-in features that make it easier to use in nearly any measurement situation. From its ability to store frequently used test setups, to programming custom RTD probe calibration constants for enhanced temperature measurement, or the integrated voltage input protection design that improves reliability, the 726 is built to perform. The use of two separate channels even allows you to measure, source, or view process signals simultaneously. The backlit display provides better visibility in low-light conditions, and the standard 3-year warranty provides extra confidence that the 726 will be there when you need it to be.

You can also use the 726 to:

  • Capture the set, reset, and deadband of a pressure switch with the integrated switch test
  • Calculate the transmitter error % to interpret calibration results without the use of a calculator
  • Perform fast linearity tests with the auto-step and auto-ramp features
  • Power a transmitter during test using 24 V loop supply and simultaneous mA measurement

If you want documenting and HART communication built into your calibrator, consider the Fluke 754 Documenting Process Calibrator with HART.

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IMG-Fluke Ti300+

Fluke Ti300+ Thermal Camera

sku Product SKU:  FLK-Ti300+

Leading an industrial maintenance team requires a unique combination of communication skills, industry knowledge and technical expertise. Implementing standard work and a preventive maintenance program is more than just good for business – it also aligns your team with a common goal of safely and efficiently keeping the plant up and running. Choosing the right tools can make a significant difference in the success of these types of programs.

The Fluke Ti300+ helps teams find issues before they are fully formed problems. It has the resolution and accuracy needed to clearly reveal temperature differentials or demonstrate progressive heat changes over time. With LaserSharp™ AutoFocus the Ti300+ ensures focused images – every single time. With the touch of a button, use the built-in laser distance meter to calculate and display the distance to your designated target on the camera screen and snap the image in focus. Most importantly, temperature readings from in focus images will be highly accurate. Enable your team to get clear images while maintaining a safer distance from operating equipment.

For thermal images to illustrate an issue, you need to know your equipment and understand the subtle difference between normal and abnormal operating temperatures. You also need confidence in your ability to capture accurate thermal images and having a Fluke Ti300+ thermal camera with LaserSharp AutoFocus makes taking everything much easier. Finally, you need a thermal camera that is rugged enough to capture quality infrared images even if it gets dropped (up to two meters).

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FLK-1736-1738

Fluke 1736 and 1738

sku Product SKU:  FLK-173x-EUS

The Fluke 1736 and 1738 Three-Phase Power Loggers built with Fluke Connect® mobile app and desktop software compatibility give you the data you need to make critical power quality and energy decisions in real-time. The ideal test tools for conducting energy studies and basic power quality logging, the 1736 and 1738 automatically capture and log over 500 power quality parameters so you have more visibility into the data you need to optimize system reliability and savings. With the Fluke 1738 Advanced Power Logger you can perform advanced analysis with an enhanced Power Quality Health Summary (EN50160) function that provides you with fast insight into overall electrical system health. The Power Quality Health Summary is an evaluation of the logged data based on detailed power quality measurements and includes viewable event waveform captures so you have even more visibility into the data you need to optimize system reliability and savings.

An optimized user interface, flexible current probes, and an intelligent measurement verification function that allows you to reduce measurement errors by digitally verifying and correcting common connection errors makes setup easier than ever and reduces measurement uncertainty. Access and share data remotely with your team via the Fluke Connect® app so you can maintain safer working distances and make critical decisions in real-time, reducing the need for protective equipment, site visits and check-ins. You can also quickly and easily chart and graph measurements to help identify issues and create detailed reports with the included Fluke Energy Analyze Plus software package. Optionally, you can create IEEE519 Reports giving you more insight into harmonic levels, voltage and current distortion, and load current (license required).

Log the most common parameters

Designed to measure the most critical three phase power parameters, the 1736 and 1738 can simultaneously log rms voltage, rms current, voltage and current events, voltage and current THD, voltage and current harmonics up to the 50th harmonic, active power, reactive power, power factor, active energy, reactive energy, and more. With enough memory for more than a year of data logging, the 1736 and 1738 can uncover intermittent or hard-to-find issues that might otherwise have been missed.

Analysis and Reporting

Capturing logged data is just one part of the task. Once you have the data, you need to create useful information and reports that can be easily shared and understood by your organization or customers. Fluke Energy Analyze Plus software makes that task as simple as possible. With powerful analysis tools and the ability to create customized reports in minutes you’ll be able to communicate your findings and quickly solve problems so you can optimize system reliability and savings.

 

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Fluke-1770-Unit-01

Fluke 1770 Series

sku Product SKU:  FLK-177x

Automatic measurements. More flexibility. Better power quality troubleshooting.

Fluke 1770 Series Three-Phase Power Quality Analyzers eliminate the complexities of power quality logging, troubleshooting, and analysis. Engineered to be the faster, easier way to perform power quality studies, the 1770 Series offers automatic measurements, a straightforward user interface and setup, best-in-class specifications, and a simplified reporting platform. The instrument can also be powered directly from the measurement circuit, eliminating the need to find a power outlet or use a lengthy extension cord

With the 1770 Series you’ll never miss a critical power quality event—from fast transients up to 8 kV, harmonics up to 30 kHz, dips and swells, as well as the voltage, current, and power measurements that enable you to characterize your electrical system.

Automatic measurement capture

Whether you’re performing a quick system check or a detailed power quality study, consistent data is key. The Fluke 1770 Series offers a unique automatic measurement capture system that helps ensure you’re collecting the right data every time, while still giving you the flexibility to select and adjust specific parameters as needed. More than 500 power quality parameters are captured by default and the guided setup makes it easy to select the right parameters for the system you’re working on. Logged data is instantly viewable, downloadable, and shareable with Fluke Energy Analyze Plus software so you never need to wait to finish a session before reviewing results or analyzing data.

Fluke 1770 Series Three-Phase Power Quality Analyzers Overview

Ultimate measurement confidence

The Fluke 1770 Series are 2-in-1 devices that combine the troubleshooting functionality of a power quality meter with the robust analysis and logging capabilities of a standalone power quality analyzer—in a single, easy-to-use, handheld device.

The ‘PQ Meter’ function gives you immediate access to live onscreen data in the field so you can quickly identify potential problems while troubleshooting. The detailed ‘PQ Logging and Analysis’ function eliminates the complexity of performing power quality studies by guiding you through the setup process ensuring you’re capturing the right data every time. Couple these measurement modes with a unique measurement connection autocorrect function and you can be confident that you never need to worry about going back for a second measurement—even if you were unsure about what to look for when you started.

Power Quality Logger

Powerful analysis software with easy-to-create reports

Fluke 1770 Series Power Quality Analyzers come standard with the powerful Fluke Energy Analyze Plus software, designed to eliminate the hassles found with other multi-purpose application software. Energy Analyze Plus helps you evaluate power quality data right out of the box and without extensive training.

Energy Analyze Plus makes downloading, analyzing, tracking, and reporting power quality and energy data easier than ever. Quickly compare results to historical values, benchmark against industry norms, compare measured data to local conditions, and create a more complete picture of what’s occurring across your facility, even as the data is still being collected. Energy Analyze Plus offers unified support for the Fluke 1730, 1740, and 1770 Series of Energy Loggers and Power Quality Analyzers.

  • “In-workshop” and “in-the-field” setup and download through PC application software
  • Simple data downloads using USB memory stick, WiFi, LTE, wired Ethernet, or USB cable
  • Analyze every measured detail of energy consumption and power quality state-of-health with automated reporting
  • One-touch reporting creates standardized reports conforming to standards like EN 50160, IEEE 519, GOST 33073 IEC 61000-2-2, or export data in PQDIF or NeQual compatible format or CSV for use with third-party software
  • Advanced analysis allows the user to choose any available logged parameter and create a highly customized view of measurements for advanced data correlation

Power Quality

High-speed voltage transient capture

Transients negatively impact otherwise healthy systems every day and their potential to damage your equipment can’t be underestimated. Whether your system is experiencing impulsive or oscillatory transients, the results can be devastating and cause problems ranging from insulation failures to total equipment failures. The Fluke 1775 and Fluke 1777 incorporate advanced transient capture technology to help you clearly identify high-speed voltage transients, so you have the data you need to stop them in their tracks. The Fluke 1775 Power Quality Analyzer has 1MHz sampling capability to capture fast transients, while the Fluke 1777 Power Quality Analyzer has 20MHz sampling capability to capture the fastest transients in high detail

Power Quality Logger Transient

From traditional industrial systems to renewable energy systems to electric vehicles, we’ve got you covered

The Fluke 1770 Series was designed to be safe and easy to use in any measurement environ¬ment. The 1770 Series allows you to capture a full range of power quality variables as well as high-speed waveforms, high-speed transients, and higher frequency harmonics, all of which are instantly viewable on the large, high-resolution screen. With a best-in-class CAT IV 600 V / CAT III 1000 V overvoltage rating, these analyzers can be used at the service entrance or downstream, measuring AC and DC inputs, and harmonics measuring up to 30 kHz. With the 1770 Series you can be confident that you’ll capture the data you need to make better maintenance decisions no matter the task.

Applications 1773 1775 1777
Energy surveys and load testing
Harmonic surveys
Nuisance circuit breaker tripping  
Power utility power quality surveys  
Discovery of equipment failures caused by transients  

Power Quality Logger

Compliant to international standards

The Fluke 1770 Series offers the best-in-class accuracy you’ve come to expect from a Fluke Power Quality Analyzer in a future IEC 61000-4-30 Class A edition 3 compliant package. On top of that, the 1770 Series has been engineered to meet the future requirements of Class A edition, for conformance to EN 50160 and IEEE 519, so you’ll be prepared to tackle tomorrow’s measurement requirements, today.

Fluke 1770 Series Three-Phase Power Quality Analyzers

Work where, when, and how you want

No two days in the field are the same. You need a power quality analyzer that can go where you go and do what you need it to when you get there. With a full range of accessories and built-in features the Fluke 1770 Series makes it easier to get your job done. The slim ergonomic design and integrated hand strap make it easy to hold and the included hanging kit makes it easy to secure your analyzer inside a cabinet. The integrated internal power supply allows the unit to be powered directly from the measured circuit, while a 90-minute battery helps ensure you can still access and review data even when you aren’t connected to a live system.

Quickly and easily transfer data to your PC using the USB C, USB A, Ethernet, Wi-Fi, cellular network support options, depending on your requirements. With an internal GPS module and an optional double insulated antenna extension cable, for amplifying GPS signals indoors, you can easily time sync your data for more accurate troubleshooting and analysis.

Calculate current harmonics limits

When downloading data from the Fluke 1770 Series Power Quality Analyzers the included Energy Analyze Plus software package can compare measured voltage and current harmonic statistical data to different standards, like EN 50160 or IEEE 519, to determine if they exceed compliance limits. This powerful predictive maintenance feature enables current harmonics to be observed before distortion appears in the voltage allowing you to prevent unexpected failures or non-compliance situations and increase system uptime. With the proliferation of inverter-based loads and power generation, keeping current harmonics in check is becoming increasingly critical to ensure reliable power quality and avoid system downtime.

Fluke 1770 Series Three-Phase Power Quality Analyzers

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FLK-753

Fluke 753

sku Product SKU:  FLK-753

Product overview: Fluke 753 Documenting Process Calibrator

Fluke 753 Documenting Process Calibrator helps you work smarter and faster

The Fluke 753 is a powerful multifunction documenting calibrator that lets you download procedures, lists, and instructions created with software, and upload data for printing, archiving, and analysis. You'll find it does the work of several tools, with simultaneous source and measurement capabilities for all common process parameters. It sources, simulates, and measures pressure, temperature, and electrical signals in one rugged, hand-held calibration tool. It also automates calibration procedures, captures data for documentation, and helps you meet rigorous standards like ISO 9000, FDA, EPA, and OSHA regulations.

The 753 includes a USB interface and a USB communication cable to enable two-way communication with DPCTrack 2 and other instrumentation management applications. To create a seamless/paperless calibration management system consider adding Fluke DPCTrack2 Calibration Management software for use with your Fluke 753 and 754 or even legacy Fluke 743 and 744 calibrators.

Other useful features:

  • Measures and sources pressure using any of 50 Fluke 700Pxx Pressure Modules
  • Allows you to creates and run automated as-found/as-left procedures to satisfy quality programs or regulations, and record and document results
  • Holds up to a full week of downloaded procedures and calibration results
  • Offers many flexible features like autostep, custom units, user-entered values during test, one-point and two-point switch testing, square root DP flow testing, programmable measurement delay and more.
  • Offers compatibility with DPCTrack2 and many other asset management software packages
  • Bright white dual display for reading both sourced and measured parameters simultaneously
  • Easy-to-use multi-lingual interface
  • Gas gauge and rechargeable Li-Ion battery for 10 hour uninterrupted use
  • Comes with three-year warranty and DPC/Track trial software

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Fluke-Ti401Pro

Fluke Ti401 Pro

sku Product SKU:  FLK-Ti401-Pro

Every day you work hard to get the job done. Fluke gets that. For over 70 years, we have worked with people in the industrial trades. We understand that you need thermal imagers that will get the job done; rugged general use, everyday thermal imagers that are easy to use, accurate and create high-quality images. The Fluke Ti401 PRO is exactly this type of camera. It is an ideal camera for certified or uncertified thermographers working in:

  • industrial maintenance
  • heavy commercial facility maintenance
  • commercial building diagnostics

The rugged tool you need to establish and maintain a preventive maintenance program.

  • Splash resistant
  • Dust resistant
  • 2-meter drop tested

Capture more than you’d expect, at a price you wouldn’t

Equipped with a unique combination of 640 x 480 resolution and field of view that offers the flexibility to capture measurements in tight spaces or from a distance, even the novice thermographer can capture images of critical issues before they become failures. This well-priced camera offers the highest resolution in its class along with the best-selling features from Fluke. With temperature measurements up to 650 °C, it is suitable for most industrial environments.

Get the most out of your Ti401 PRO with Fluke Connect™ desktop software. Create professional reports in minutes while efficiently capturing full radiometric data to support your maintenance program.

  • Edit and optimize images
  • Combine infrared and visible images for simpler analysis
  • Create detailed reports
  • Organize and search images by asset, severity, and title

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W-PIC-6000s-1

PicoScope 6000E Series 8-channel ultra-deep-memory oscilloscopes

sku Product SKU:  PIC-6000E-s

Performance and functionality for debugging next-generation embedded systems

The PicoScope 6000E Series fixed-resolution and FlexRes oscilloscopes provide 8 to 12 bits of vertical resolution, with 500 MHz bandwidth and 5 GS/s sampling rate. Eight analog channels have the timing and amplitude resolution you need to reveal signal integrity issues such as glitches, runts, dropouts, noise, distortion and ringing. 16 digital MSO channels enable the debug and verification of complex ECUs and FPGA-based designs.

  • 8-bit to 12-bit FlexRes® ADCs
  • 8 x 500 MHz analog channels
  • Up to 16 x 1 Gb/s digital channels
  • Dual 5 GS/s ADCs
  • 4 GS capture memory (up to 2 GS per trace)
  • 50 MHz 200 MS/s 14-bit AWG
  • 300 000 waveforms per second update rate
  • Free PicoScope 6 and PicoSDK software
  • Serial decoding and mask limit testing
  • High-resolution timestamping of waveforms
  • Over ten million DeepMeasure™ results per acquisition
  • Advanced triggers: pulse width, runt pulse, windowed, logic and dropout

Typical applications

These oscilloscopes, with PicoScope 6 application software, are ideal for design engineers working with high-performance embedded systems, signal processing, power electronics, mechatronics and automotive designs, and for researchers and scientists working on multichannel high-performance experiments in physics labs, particle accelerators and similar facilities.

The PicoScope 6000E Application Programming Interface (API) provides programming access to the full set of advanced hardware features and can be used to develop diverse custom and OEM applications. 

Best-in-class bandwidth, sampling rate and memory depth

With 500 MHz analog bandwidth complemented by a real-time sampling rate of 5 GS/s, the PicoScope 6000E Series scopes can display single-shot pulses with 200 ps time resolution.

The PicoScope 6000E Series gives you the deepest capture memory—up to 4 GS in total—available as standard on any oscilloscope at any price. This ultra-deep memory allows the oscilloscope to capture 200 ms waveforms at its maximum sampling rate of 5 GS/s.

The SuperSpeed USB 3.0 interface and hardware acceleration ensure that the display is smooth and responsive even with long captures.

The PicoScope 6000E Series gives you the waveform memory, resolution and analysis tools that you need to perform stringent testing of high-performance electronics devices and next-generation embedded system designs.

Power, portability and performance

Conventional eight-channel benchtop mixed-signal oscilloscopes occupy too much space on the bench and are too costly for most engineers working on next-generation designs. PicoScope 6000E Series oscilloscopes are small and portable, while offering the high-performance specifications required by engineers in the lab or on the move.

These oscilloscopes offer 8 analog channels, plus an optional 8 or 16 digital channels with the plug-in 8-channel TA369 MSO pods. The flexible high‑resolution display options enable you to view and analyze each signal in detail.

Supported by the PicoScope 6 software, these devices offer an ideal, cost-effective package for many applications, including design, research, test, education, service, and repair. PicoScope 6 is included in the cost of your scope, available for free download, with free updates, and can be installed on as many PCs as you want, including to view/analyze data off-line without the scope

High-end features as standard

Buying a PicoScope is not like making a purchase from other oscilloscope companies, where optional extras considerably increase the price. With our scopes, high-end features such as serial decoding, mask limit testing, advanced math channels, segmented memory, hardware-based timestamping and a signal generator are all included in the price.

To protect your investment, both the PC software and firmware inside the scope can be updated. Pico Technology has a long history of providing new features for free through software downloads. We deliver on our promises of future enhancements year after year. Users of our products reward us by becoming lifelong customers and frequently recommending us to their colleagues.

Powerful tools provide endless options

Your PicoScope is provided with many powerful tools to help you acquire and analyze waveforms. While these tools can be used on their own, the real power of PicoScope lies in the way they have been designed to work together.

As an example, the rapid trigger mode allows you to collect 10 000 waveforms in a few milliseconds with minimal dead time between them. Manually searching through these waveforms would be time-consuming, so just pick a waveform you are happy with and let the mask tools scan through for you. When done, the measurements will tell you how many have failed and the buffer navigator allows you to hide the good waveforms and just display the problem ones.

The screenshot here shows changing frequency versus time as a graph. Perhaps instead you want to plot changing duty cycle as a graph? How about outputting a waveform from the AWG and also automatically saving the waveform to disk when a trigger condition is met? With the power of PicoScope the possibilities are endless. To find out more about the capabilities of PicoScope software, visit our A to Z of PC Oscilloscopes.

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Fluke MDA 550 Promotion

Fluke MDA-550

sku Product SKU:  FLK-MDA-550

Simplify complex motor-drive troubleshooting with guided test setups and automated drive measurements that provide reliable, repeatable test results.

The Fluke  MDA 550 Motor-Drive Analysers save time and eliminate the hassle of setting up complex measurements, while simplifying the troubleshooting process for variable frequency drives. Simply select a test and the step-by-step guided measurements show you where to make voltage and current connections, while the preset measurement profiles ensure you will capture all the data you need for each critical motor-drive section—from the input to the output, the DC bus, and the motor itself. From basic to advanced measurements, the MDA-500 Series has you covered, and with a built-in report generator you can quickly and easily generate as-found, and as-left reports with confidence.

The  MDA-550 are the ideal portable motor-drive analysis test tools and can help safely locate and troubleshoot typical problems on inverter type motor-drive systems.

  • Measure key motor-drive parameters including voltage, current, DC Bus voltage level and AC ripple, voltage and current unbalance and harmonics (MDA-550), voltage modulation, and motor shaft voltage discharges (MDA-550).
  • Perform extended harmonics measurements to identify the effects of low and high order harmonics on your electrical power system.
  • Conduct guided measurements for motor-drive input, DC bus, drive output, motor input and shaft measurements (MDA-550) with graphical step-by-step voltage and current connection diagrams.
  • Use simplified measurement setup with preset measurement profiles to automatically trigger data collection based on the chosen test procedure.
  • Create reports quickly and easily that are perfect for documenting troubleshooting and collaborative work with others.
  • Measure additional electrical parameters with full 500 MHz oscilloscope, meter and recording capability for complete range of electrical and electronic measurement on industrial systems.

 

The Fluke MDA-510 and MDA-550 Motor Drive Analyzers use guided test measurements to make analysis easier than ever.

Drive input

Measure input voltage and current to quickly see whether values are within acceptable limits by comparing the variable frequency drive’s (VFD), also known as a variable speed drive (VSD) or adjustable speed drive (ASD), nominal rated voltage to the actual supplied voltage. Then, check the input current to determine if the current is within the maximum rating and the conductors are suitably sized. You can also check whether the harmonic distortion is within an acceptable level by visually inspecting the waveform shape or by viewing the harmonics spectrum screen (MDA-550) with total harmonic distortion and individual harmonics.

Voltage and current unbalance

Check the voltage unbalance at the input terminals of the frequency speed drive so you can ensure the phase unbalance is not too high (> 6-8 %), and that the phase rotation is correct. You can also check the current unbalance, as excessive unbalance may indicate a drive rectifier problem.

Extended harmonic measurements

Excessive harmonics are not just a threat to your rotating machines but also to other equipment connected to the electrical power system. The MDA-550 provides the ability to discover the harmonics of the motor-drive but can also discover the possible effects of inverter switching electronics. The MDA-550 has three harmonic ranges, 1st to 51st Harmonics, 1 to 9 kHz and 9 kHz to 150 kHz giving the ability to detect any harmonic pollution problems.

DC bus

In a motor-drive the conversion of AC to DC inside the drive is critical, having the correct voltage and adequate smoothing with low ripple is required for the best drive performance. High ripple voltage may be an indicator of failed capacitors or incorrect sizing of the connected motor. The record function of the MDA-500 Series can be used to check DC bus performance dynamically in the operating mode while a load is applied.

Drive output

Check the output of the inverter drive focusing both on voltage to frequency ratio (V/F), and voltage modulation. When high V/F ratio measurements are experienced, the motor may overheat. With low V/F ratios, the connected motor may not be able to provide the required torque at the load to sufficiently run the intended process.

Voltage modulation

Measurements of the Pulse Width Modulated signal are used to check for high voltage peaks which can damage motor winding insulation. The rise time or steepness of impulses is indicated by the dV/dt reading (rate of voltage change over time), this should be compared to the motor’s specified insulation. The measurements can also be used to measure switching frequency to identify whether there is a potential issue with electronic switching, or with grounding, where the signal floats up and down.

Motor input

Ensuring that voltage is being supplied at the motor input terminals is key, and the selection of cabling from drive to the motor is critical. Incorrect cabling selection can result in both drive and motor damage due to excessive reflected voltage peaks. Checking that the current present at the terminals is within the motor rating is important as over current condition could cause the motor to run hot, decreasing the life of the stator insulation which can result in the early failure of the motor.

Motor shaft voltage

Voltage pulses from a variable frequency drive can couple from a motor’s stator to its rotor, causing a voltage to appear on the rotor shaft. When this rotor shaft voltage exceeds the insulating capacity of the bearing grease, flashover currents (sparking) can occur, causing pitting and fluting of the motor bearing race, damage that can cause a motor to fail prematurely. The MDA-550 Series analyzers are supplied with carbon fiber brush probe tips that can easily detect the presence of destructive flashover currents, while the impulse amplitude and count of events will enable you to take action before failure occurs. The addition of this accessory and capability of the MDA-550 allows you to discover potential damage without investing in expensive permanently installed solutions.

Step-by-step guided measurements ensure you have the data you need, when you need it

The MDA-500 Series is designed to help you quickly and easily test and troubleshoot typical problems on three-phase and single-phase inverter type motor-drive systems. The on-screen information, and step-by-step setup guidance make it easy to configure the analyzer and get the drive measurements you need to make better maintenance decisions, fast. From power input to the installed motor, the MDA-500 provides the measurement capability for the fastest motor-drive troubleshooting.

 
  • Connection Diagram Drive Input

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PicoScope 9300 Series

sku Product SKU:  PIC-9300-S

With up to 25 GHz bandwidth, the PicoScope 9300 sampling oscilloscopes address digital and telecommunications applications of 10 Gb/s and higher, microwave applications up to 25 GHz and timing applications with a resolution down to 64 fs. Optional 11.3 Gb/s clock recovery, optical to electrical converter or differential, deskewable time domain reflectometry sources (60 ps/7 V) complete a powerful, small-footprint and cost-effective measurement package.
 

Sampling Oscilloscopes to 25 GHz with TDR/TDT and Optical models

15 to 25 GHz electrical, 9.5 GHz optical, TDR/TDT, 2-channel and 4-channel, compact, portable, USB instruments.

These units occupy very little space on your workbench and are small enough to carry with your laptop for on-site testing, but that’s not all. Instead of using remote probe heads attached to a large bench-top unit, you can position the scope right next to the device under test. Now all that lies between your scope and the DUT is a short, low-loss coaxial cable. Everything you need is built into the oscilloscope, with no expensive hardware or software add-ons to worry about.

Key specifications

  • 15 TS/s (64 fs) sequential sampling
  • Up to 15 GHz prescaled, 2.5 GHz direct trigger and 11.3 Gb/s clock recovery
  • Industry-leading 16-bit 1 MS/s ADC and 60 dB dynamic range
  • Eye and mask testing to 16 Gb/s with up to 223–1 pattern lock
  • Intuitive, touch-compatible Windows user interface
  • Comprehensive built-in measurements, histogramming and editable data mask library
  • Integrated, differential, deskewable TDR/TDT step generator

Typical applications

  • Telecom and radar test, service and manufacturing
  • Optical fiber, transceiver and laser testing
  • RF, microwave and gigabit digital system measurements
  • Radar bands I, G, P, L, S, C, X, Ku
  • Precision timing and phase analysis
  • Digital system design and characterization
  • Eye diagram, mask and limits test to 10 Gb/s
  • Ethernet, HDMI 1, HDMI 2, PCI, SATA, USB 2.0, USB 3.0
  • TDR/TDT analysis of cables, connectors, backplanes, PCBs and networks
  • Optical fiber, transceiver and laser test
  • Semiconductor characterization

Remember: the price you pay for your PicoScope Sampling Oscilloscope is the price you pay for everything – we don’t charge you for software features or updates.

Migrating from the legacy PicoScope 9200 to the PicoScope 9300? 
Help me compare

The now broader range of 9300 models and bandwidths is designed to offer high compatibility and upgraded functionality to replace the successful but now obsolete 9200 series of 12 GHz sampling oscilloscopes. A detailed intercomparison and assistance to migration is provided here:

Migrating from the legacy PicoScope 9200 to the PicoScope 9300? Help me compare

 

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IMG-FLK754

Fluke 754 Documenting Process Calibrator-HART

sku Product SKU:  FLK-754

Product overview: Fluke 754 Documenting Process Calibrator-HART

Fluke 754 Documenting Process Calibrator with HART communication does the work of many tools

Whether you're calibrating instruments, troubleshooting a problem, or running routine maintenance, the Fluke 754 with HART® communication can help you get the job done faster. It does so many different tasks, so quickly and so well, it's the only process calibrator you need to carry. This rugged, reliable integrated communicating calibrator is ideal for calibrating, maintaining, and troubleshooting HART and other instrumentation.

The 754 is a power multifunction documenting calibrator that you can use to download procedures, lists, and instructions created with software; or upload data for printing, archiving, and analysis. The powerful built-in HART interface is capable of performing nearly all the day-to-day tasks you now perform with a separate communicator.

In fact, the 754 does the work of several tools. It sources simulates and measures pressure, temperature, and electrical signals with one rugged, hand-held device. For documentation, the 754 automates calibration procedures and captures your data. And, of course, it helps you meet rigorous standards like ISO 9000, FDA, EPA and OSHA regulations. Plus, the new improved graphical screen, Li-Ion battery for longer life, USB port, and accessories help you work smarter and faster.

To create a seamless/paperless calibration management system consider adding Fluke DPCTrack2 Calibration Management software for use with your Fluke 753 and 754 or even legacy Fluke 743 and 744 calibrators.

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IMG-PicoScope9404_SDK

PicoScope 9404 Series

sku Product SKU:  PIC-9404s

5 & 16 GHz Sampler Extended Real-Time Oscilloscopes

The PicoScope 9400 Series is a new class of SXRTO oscilloscopes that combine the benefits of real-time sampling, equivalent-time sampling, and high analog bandwidth.

  • SXRTO (sampler-extended real-time oscilloscope)
  • 9404-16: 16 GHz bandwidth, 22 ps transition time and 2.5 TS/s (0.4 ps resolution) equivalent-time sampling
  • 9404-05: 5 GHz bandwidth, 70 ps transition time and 1 TS/s (1 ps resolution) equivalent-time sampling
  • Pulse, eye and mask testing down to 100 ps and up to 8 Gb/s
  • Four 12-bit 500 MS/s ADCs
  • Intuitive and configurable touch-compatible Windows user interface
  • Comprehensive built-in measurements, zooms, data masks, and histograms
  • ±800 mV full-scale input range into 50 Ω
  • 10 mV/div to 0.25 V/div ranges provided by digital gain
  • Up to 250 kS trace length, shared between channels
  • Optional clock and data recovery (8 Gb/s on 9404-16, 5 Gb/s on 9404-05)

The PicoScope 9400 Series SXRTOs has four input channels up to 16 GHz with market-leading ADC, timing, and display resolutions for accurately measuring and visualizing high-speed analog and data signals. They are ideal for capturing pulse and step transitions down to 22 ps, impulses down to 45 ps, and clocks and data eyes to 8 Gb/s. Most high-bandwidth applications involve repetitive signals or clock-related data streams that can be readily analyzed by equivalent-time sampling (ETS). The SXRTO quickly builds ETS, persistence displays, and statistics. It has a built-in full-bandwidth trigger on every channel, with pretrigger ETS capture too well above the Nyquist sampling rate. There are three acquisition modes—real-time, ETS, and roll—all capturing at 12-bit resolution into a shared memory of 250 kS.

The PicoSample 4 software is derived from our existing PicoSample 3 and PicoScope 9000 products, which together represent over ten years of development, customer feedback, and optimization.

The high-resolution display can be resized to fit any window, filling 4k and even larger monitors or arrays of monitors. Four independent zoom channels can show you different views of your data down to a resolution of 0.4 ps. Most of the controls and status panels can be shown or hidden according to your application, allowing you to make optimal use of the display area.

The oscilloscope has a 2.5 GHz direct trigger that can be driven from any input channel, and a built-in prescaler can extend the trigger bandwidth to 5 GHz. The external prescaler on 9404-16 extends this further to 16 GHz.

These compact units are small enough to place on your workbench close to the device under test. Now, instead of using remote probe heads attached to a large benchtop unit, all you need is a short, low-loss coaxial cable. Everything else you need is built into the oscilloscope, with no expensive hardware or software add-ons to worry about, and we don’t charge you for new software features and updates.

Typical applications

  • Telecom and radar test, service and manufacturing
  • Optical fiber, transceiver, and laser testing (optical to electrical conversion not included)
  • RF, microwave, and gigabit digital system measurements
  • Signal, eye, pulse, and impulse characterization
  • Precision timing and phase analysis
  • Digital system design and characterization
  • Eye diagram, mask, and limits test up to 8 Gb/s
  • Clock and data recovery at up to 8 Gb/s
  • Ethernet, HDMI 1, PCI, SATA, USB 2.0
  • Semiconductor characterization
  • Signal, data, and pulse/impulse integrity and pre-compliance testing

High-bandwidth probes

The PicoConnect 900 Series low-impedance, high-bandwidth probes are ideal companions for the PicoScope 9400 Series, allowing cost-effective fingertip browsing of fast signals. Two series are available:

  • RF, microwave, and pulse probes for broadband signals up to 5 GHz (10 Gb/s)
  • Gigabit probes for data streams such as USB 2, HDMI 1, Ethernet, PCIe, and SATA

Other features

Bandwidth limit filters

A selectable analog bandwidth limiter (100 or 450 MHz) on each input channel can be used to reject high frequencies and associated noise. The narrow setting can be used as an anti-alias filter.

Frequency counter

A dedicated frequency counter shows signal frequency (or period) at all times, regardless of measurement and timebase settings, with a resolution of 1 ppm.

Optional clock and data recovery

Clock and data recovery (CDR) is now available as a factory-fitted optional trigger feature for the PicoScope 9404-16 and 9404-05 SXRTOs.

Associated with high-speed serial data applications, clock, and data recovery will already be familiar to PicoScope 9300 users. While low-speed serial data can often be accompanied by a separate clock signal, at high speed this approach would create timing skew and jitter between the clock and the data that could prevent accurate data decoding. Thus high-speed data receivers will generate a new clock, and using a phase-locked loop technique they will lock and align that new clock to the incoming data stream. This is the recovered clock, which can then be used to decode and thus recover data accurately. They have also saved the cost of an entire clock signal path by now needing only the serial data signal.

In many applications requiring our oscilloscopes to view the data, the data generator and its clock will be close at hand and we can trigger off that clock. However, if only the data is available (at the far end of an optical fiber, for instance), we will need the CDR option to recover the clock and then trigger off that instead. We may also need to use the CDR option in demanding eye and jitter measurements. This is because we want our instrument to measure as exactly as possible the signal quality that a recovered clock and data receiver will "see".

When fitted, the PicoScope 9400 CDR option can be selected as the trigger source from any input channel. Additionally, for use by other instruments or by downstream system elements, two SMA(f) outputs present recovered clock and recovered data from the rear panel.

Contact Comtest to order this option.

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Fluke PVA-1500 series Front view

Fluke PVA-1500 Series

sku Product SKU:  FLK-PVA-1500s

Measure your solar PV system performance

The PVA-1500 is a cutting-edge I-V curve tracer kit designed to measure PV system performance. With this high precision testing equipment, you can reliably assess the health and performance of solar modules and arrays, making informed decisions to enhance their output and longevity.

The PVA-1500 kit offers an array of advanced features, including high throughput I-V curve tracing, providing quick and detailed performance data. Its intuitive user interface enables easy navigation and real-time analysis, allowing for immediate identification of potential issues. By pinpointing problems early, you can maximize your solar energy production and minimize downtime.

Comprehensive measurements and efficient analysis

For 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 tracing

The 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 interface

With 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.

Advanced High Efficiency PV Testing Capabilities

Accurate measurement of high efficiency modules up to 30A: Highly efficient modules (>19% module efficiency) possess high capacitance, posing a challenge for some I-V curve tracers that may not be able to measure them. The PVA-1500HE2 is uniquely designed to measure all string types, even those with high efficiency modules, up to 30A. Rapid performance in high temperature environments: The PVA-1500HE2 operates with a swift sweep-to-sweep delay of 9 seconds (at Voc < 1350V). This results in the ability to measure 3.5 MW within an hour, even in high-temperature settings where standard curve tracers often fail due to overheating.

SolSensor™ Wireless PV Reference Sensor

The SolSensor™ provides irradiance, module temperature, and array tilt data to the PV model. The model uses this information to predict the I-V curve shape at these operating conditions and to translate the measured curve to standard test conditions. The SolSensor™ clamps to the module frame, automatically orienting the irradiance sensor to the plane-of-array.

The spectral response of the silicon photodiode sensor in the SolSensor™ is corrected for the PV technology under test. Special factors are provided for multi- and mono-crystalline cells as well as cadmium telluride (CdTe) and other thin film technologies. The sensor is temperature compensated and the angular response of each unit is calibrated for rotation and elevation. As a result, the SolSensor™ is accurate over a broad range of technologies, sky conditions, and sun angles, allowing I-V curve measurements earlier and later in the day.

The SolSensor™ provides two external thermocouple inputs for measuring module backside temperatures. Effective cell temperature can also be calculated directly from the measured I-V curve per IEC 60904-5. The PVA’s SmartTemp™ feature, optionally, blends these two methods for best accuracy.

The PVA and SolSensor™ communicate wirelessly with your PC via WiFi with a line-of-sight wireless range of 100m. That means no wires underfoot, quick setup, the ability to move around while troubleshooting strings, and flexibility to measure multiple combiner boxes with a single SolSensor™ setup.

Turn PVA data into key insights, visualizations, and customizable reports

Capture data in the field with the PVA Application and validate the results with the Data Analysis Tool (DAT), a Microsoft Excel™-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.

Download the PVA Application and Data Analysis Tool

Training

Fluke 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).

 

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Fluke Ti480 Pro Promotion

Fluke Ti480 PRO Infrared Camera 9Hz

sku Product SKU:  FLK-Ti480PRO

Product overview: Fluke Ti480 PRO Infrared Camera

Increased sensitivity to visualize differences

  • Capture smaller temperature differences with increased thermal sensitivity

Easier to visualize and diagnose issues

  • Sharper onscreen images with better visual colour differentiation
  • Display deviations from standard temperatures and communicate issues with your team using multiple Delta-T markers - choose one as a reference point and the others to display a value as a difference
  • Multiple rectangle markers in-camera - identify min/max temperatures for an area of the equipment or an equipment array
  • Distinguish heat differences more easily with a new palette and a wider array of yellows and greens in the display

New intuitive user interface
New intuitive user interface

Old user interfaceOld user interface

More intuitive visual interface

  • Improved, user-tested, touchscreen interface leverages current styles and is more intuitive than ever

More flexibility to visualize targets -  tiny to large

  • Now compatible with all Fluke infrared smart lenses
  • Macro, telephoto and wide-angle – from tiny to large, capture your target
  • Fluke smart lenses are interchangeable between compatible cameras without calibration

With the Ti480 PRO MultiSharp™ focus captures images that are focused throughout the field of view, even if you start from a completely blurry target. The camera takes multiple images and combines them to give a clear, accurate focus on targets near and far. See more detail with SuperResolution, offering 4x the pixel data. Using the software and SuperResolution you can view images with up to 1280 x 960 resolution.

Save time with the Fluke Connect® system 
You can wirelessly sync images directly from your camera to the 
Fluke Connect® system, and attach it to an asset record or work order. Having access to maintenance records simultaneously at the inspection site and from the office or an off-site location enables faster decision making and real-time collaboration between team members. You can also live stream the camera display to your smartphone or PC and remotely control the camera.

Technician reviewing measurements from Fluke Connect® tools on smartphone
Capture and save measurements from your wireless-enabled test tools to the Fluke Connect® app on your smartphone.
Comparing two IR images on Fluke Connect™ Assets software
Asset analysis dashboard: Easily compare complex data.

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FFLK-729

Fluke 729

sku Product SKU:  FLK-729

Portable automatic pressure calibrator simplifies pressure calibration

The Fluke 729 Automatic Pressure Calibrator has been designed specifically with process technicians in mind to simplify the pres­sure calibration process and provide faster, more accurate test results. Technicians know that calibrating pressure can be a time-consuming task, but the 729 makes it easier than ever with an internal electric pump that provides automatic pressure generation and regulation in an in an easy-to-use, rugged, portable package.

The ideal portable pressure calibrator, the 729 allows you to simply type in a target pressure, and the calibrator will automatically pump to the desired set-point. Then, internal fine adjustment con­trol automatically stabilizes the pressure at the requested value.

The Fluke 729 can also automatically test multiple pressure test points and automatically document the results. Calibration is as easy as typing in the starting and ending pressure and the number of test points and tolerance level. The 729 does the rest.

Built-in HART communication capabilities enable HART transmitter mA adjustments, light HART configuration and the ability to adjust to applied 0% and 100% values.

Upload and manage documented calibration results with DPCTrack2™ Calibration Management Software, making it easy to manage your instrumentation, create scheduled tests and reports, and manage calibration data.

With three ranges to choose from, 30 psi (2 bar, 200 kPa), 150 psi (10 bar, 1 MPa) and 300 psi (20 bar, 2 MPa), Fluke 729 Automatic Pressure Calibrators are designed to perform when and where you need them.

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