search.noResults

search.searching

saml.title
dataCollection.invalidEmail
note.createNoteMessage

search.noResults

search.searching

orderForm.title

orderForm.productCode
orderForm.description
orderForm.quantity
orderForm.itemPrice
orderForm.price
orderForm.totalPrice
orderForm.deliveryDetails.billingAddress
orderForm.deliveryDetails.deliveryAddress
orderForm.noItems
Handheld instruments


USER-FRIENDLY TESTING TOOLS FOR SOLAR POWER TECHNICIANS


possible, technicians need access to the most user-friendly tools which will keep them safe and save them time and money.


A 52


The energy generation capacities of photovoltaic (PV) solar systems are predicted to quadruple between 2022 and 2026, which will increase the requirement for greater numbers of installation and maintenance technicians with various levels of experience and expertise. The only way these operators are going to work safely and efficiently – while complying with the IEC/EN 62446-1 standard – is by using tools in the field that simplify the process of carrying out tests while delivering data that is accurate, reliable and easy to transfer and analyse. In the coming years, there will need to be many new recruits to the solar power sector, including electricians, project managers, technicians and others, and the tools they use will need to offer them optimal usability and functionality.


USER EXPERIENCE AND MULTI- FUNCTIONALITY


The first requirement for testing tools is for them to be intuitive in their use in order to protect operators from the kind of issues that can arise when having to interface with


s nations around the world push ahead with protecting the planet and minimising the use of fossil fuels, installations of solar-powered energy systems are increasing. In order to be as productive and efficient as


complex instruments and processes. At the same time, solar power testing tools need to be capable of carrying out multiple tasks. Multi-functionality is essential if technicians are to avoid carrying several different pieces of equipment into the field and having to switch between them during the testing process. For example, technicians working on PV systems need to measure irradiance energy and take electrical readings, with checks including Watts per square metre of solar irradiation and temperature, as well as cardinal direction and inclination of solar panels.


INTEGRATED FOR ELECTRICAL TESTING The benefits are obvious of having a single solution that can measure IV curve tracing, protective resistance to earth, open circuit voltage (Voc), short circuit current (Isc), insulation resistance, polarity and inverter efficiency while also testing diode and surge protection devices. By using a solar multi- function tester in conjunction with an irradiance meter – with both instruments connected via Bluetooth – a technician can boost efficiency as data is collected and logged in real-time in the field. Another key requirement of any PV system testing tool, especially when working on large or complex projects, is to be able to import measurement data directly from the testing instrument to a PC, making it easier to manage all the certification and documentation involved in solar asset management. Consistent and


easily understandable reports are essential for those involved in commissioning, installing and maintaining solar-powered energy systems.


INNOVATING WITH TECHNICIAN’S SAFETY IN MIND Finally, tools such as solar clamp meters for current testing need to be as compact as possible since technicians often have to work in cramped environments and with small combiner boxes where space is limited. Safety and efficiency are improved by using measurement tools fitted with thin, durable jaws and a probe that can fit into extremely tight spaces. “We always have the technician’s safety in mind, as well as their productivity and time, when we develop our tools,” says Mark Bakker, field application engineer, Fluke. “That is why Fluke’s SMFT-1000 Multifunction PV Tester for solar installations operating up to 1000V DC has been designed to offer an all-in-one, easy- to-use solution. Likewise, efficiency and user-friendliness have driven the design of our IRR1-SOL Solar Irradiance Meter, 1587 FC Insulation Multimeter and 393 FC CAT III 1500 V True-rms Clamp Meter (the only 1500V CAT III, IP54 rated, thin jaw clamp meter). The world is changing as we move away from fossil fuel dependency, and it is vital that those working in the solar power sector are given the best opportunities possible to turn the dream of worldwide renewable energy into reality.”


Fluke www.fluke.com May 2023 Instrumentation Monthly


Page 1  |  Page 2  |  Page 3  |  Page 4  |  Page 5  |  Page 6  |  Page 7  |  Page 8  |  Page 9  |  Page 10  |  Page 11  |  Page 12  |  Page 13  |  Page 14  |  Page 15  |  Page 16  |  Page 17  |  Page 18  |  Page 19  |  Page 20  |  Page 21  |  Page 22  |  Page 23  |  Page 24  |  Page 25  |  Page 26  |  Page 27  |  Page 28  |  Page 29  |  Page 30  |  Page 31  |  Page 32  |  Page 33  |  Page 34  |  Page 35  |  Page 36  |  Page 37  |  Page 38  |  Page 39  |  Page 40  |  Page 41  |  Page 42  |  Page 43  |  Page 44  |  Page 45  |  Page 46  |  Page 47  |  Page 48  |  Page 49  |  Page 50  |  Page 51  |  Page 52  |  Page 53  |  Page 54  |  Page 55  |  Page 56  |  Page 57  |  Page 58  |  Page 59  |  Page 60  |  Page 61  |  Page 62  |  Page 63  |  Page 64  |  Page 65  |  Page 66  |  Page 67  |  Page 68  |  Page 69  |  Page 70  |  Page 71  |  Page 72  |  Page 73  |  Page 74  |  Page 75  |  Page 76  |  Page 77  |  Page 78  |  Page 79  |  Page 80  |  Page 81  |  Page 82