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Benning PC software Solar Manager, 050423 + single user licence
Benning SUN 2, 050420, Irradiation and temperature measuring device
Benning shoulder bag for PV 2, 050426
PV installation tester and characteristic curve measuring device for commissioning, repeat testing and performance assessment of photovoltaic systems
Testing in accordance with DIN EN 62446 (VDE 0126-23) and DIN EN 61829 (VDE 0126-24)
Simple - operation via buttons with AUTO test sequence
Fast - testing in a few seconds
Safe - contacting via PV plug connector
A photovoltaic system must be safety tested and documented in accordance with DIN EN 62446 (VDE 0126-23) before commissioning and during repeat tests. Furthermore, electrical measurements are also useful after cleaning and maintenance work in order to guarantee that the photovoltaic system continues to function optimally and with as little loss as possible.
The test includes the continuity test of the protective and equipotential bonding conductors between the PV generator and the main earthing terminal, measurement of the open-circuit voltage and the short-circuit current in the PV string as well as the insulation resistance between the active DC conductors (+ / -) of the PV generator and earth. The BENNING PV 2 uses touch-protected test leads with standardised plug connectors for direct connection to PV modules or strings. The automatic test sequence warns of incorrect DC polarity and carries out all the necessary wiring for safe measurement.
Measuring the current-voltage characteristic curve on site in accordance with DIN EN 62446 (VDE 0126-23) is a practical method for assessing the performance of photovoltaic systems. The measured I-V characteristics are converted to STC conditions (Standard Test Conditions) using evaluation tools such as the BENNING SOLAR Manager PC software and the BENNING PV Link Android app, and can be compared with the manufacturer's nominal PV module data using an integrated PV module database. Deviations and reductions in performance are clearly recognised and can be documented accordingly. Furthermore, the course of an I-V characteristic curve provides helpful information about the condition of a PV system and indicates possible faults.
All these tests can be carried out easily and quickly as well as reliably and safely with the BENNING PV 2 photovoltaic installation tester and characteristic curve measuring device. This device is recommended for solar installers, photovoltaic experts and service, cleaning and maintenance teams.
Performance features
Comprehensible and clear display of all measurement results
Safe measuring connection even when the PV system is supplying energy
Automatic test sequences for characteristic curve measurement with or without RISO test
Display of Uo/c, Umpp, Is/c, Impp, fill factor (FF) and RISO with good/bad display
Insulation measurement with 250 V, 500 V and 1000 V test voltage
Separate insulation resistance measurement via 4 mm test leads for testing PV cables, etc.
Automatic display of voltage polarity with acoustic/visual warning in the event of incorrect polarity
Zero adjustment of the measuring leads so that they do not influence the measuring resistance
Measured value memory for 999 displays (PV strings)
USB interface and BENNING SOLAR Datalogger download software for downloading measured values in CSV format
Integrated real-time clock for storing the measured values with date and time stamp
Wireless connection "WirelessSunLink" to irradiation and temperature measuring device BENNING SUN 2
Direct connection to all PV modules with MC4 or "Sunclix" connectors
Easy handling for mains-independent and mobile testing
LC display with backlight
Automatic switch-off (individually adjustable from 1 to 10 minutes)
The test can relate to PV modules, PV strings or the complete PV system
Optional BENNING SOLAR Manager PC software (item no. 050423) for test report generation and characteristic curve documentation
Free BENNING PV Link app (Android device with NFC required)
Measuring functions
Protective conductor resistance measurement with 200 mA test current
Open-circuit voltage measurement (Uoc) of solar modules / PV strings up to 1000 V DC
Safe and user-friendly short-circuit current measurement (Isc) up to 15 A DC via internal circuitry
Insulation resistance measurement between the short-circuited active DC conductors (+/-) and earth with adjustable test voltage (250 V, 500 V, 1000 V)
Separate two-pole insulation resistance measurement via 4 mm measuring cable up to 300 MOhm
Measurement of the current-voltage characteristic (I-V) and power characteristic (P-V)
Display of voltage (Umpp), current (Impp) at the maximum power point (mpp) and fill factor (FF)
Function test by current measurement up to 40 A AC / DC (optional current clamp adapter BENNING CC 3, art. no. 044038)
Display and storage of the solar irradiation (W / m2) and the PV module / ambient temperature (optional BENNING SUN 2, art. no. 050420)
Current situation in the market
The technology of photovoltaic modules and the structure of PV strings has changed significantly in recent years. In addition to the higher performance and efficiency of the panels, cell technology and module architecture have also changed. High-performance PV modules of the latest module technology are largely based on the N-type topology. These have the desired high efficiencies (>20 %), but have high intrinsic capacities. These intrinsic capacitances are not specified by module manufacturers. The transient short-circuit currents (Isc_cap) occurring in the short-circuit test can exceed the short-circuit current specified in the PV module data sheet many times over and cannot be measured with normal ammeters / current clamps due to the short discharge time.
Due to the circuit design, the BENNING PV 2 limits the peak current. However, the connected power / energy (due to the module capacitance, the transient short-circuit current and the string voltage) significantly exceeds the characteristic values of the tester.
Measuring channels: C1 = String voltage (500V) C2 = Short-circuit current reference (max. 135A) C3 = Short-circuit current (max. 139.7A) F1 = Function C1*C3 for power calculation (max. 61kW)
The BENNING PV 2 from model year 2024 are equipped with a pre-test to determine the capacitive energy of the string for self-protection against excessive current peaks. If the BENNING PV 2 detects a string with excessive intrinsic capacitance, the measurement is aborted with the error message HiSc or HiCu (>15.00 A).
BENNING SOLAR Manager (optional PC software)
PC software BENNING SOLAR Manager, enables the BENNING PV 2 to generate test reports and documentation in accordance with the standards DIN EN 62446 (VDE 0126-23) and DIN EN 61829 (VDE 0126-24). The determined I-V characteristics and power characteristics of the BENNING PV 2 can be converted to STC conditions and compared with the nominal manufacturer specifications via an integrated PV module database (050423).
BENNING SOLAR Manager (optional PC software)
PC software BENNING SOLAR Manager, enables the BENNING PV 2 to generate test reports and documentation in accordance with the standards DIN EN 62446 (VDE 0126-23) and DIN EN 61829 (VDE 0126-24). The determined I-V characteristics and power characteristics of the BENNING PV 2 can be converted to STC conditions and compared with the nominal manufacturer specifications via an integrated PV module database (050423).
BENNING SOLAR Datalogger (download software)
Download the measured values from BENNING PV 2 in csv format
Further processing of measured values in MS Excel® possible
Included free of charge (CD-Rom) and available for download
BENNING PV Link app
Android device with NFC interface required
Display of the measured I-V characteristic curve (current-voltage) and the P-V characteristic curve (power-voltage) in a characteristic curve diagram
Conversion to STC conditions (Standard Test Conditions) and comparison with the nominal characteristic curve of the PV module manufacturer via an integrated PV module database
Documentation of the PV array's performance data with details of Pmpp, Uoc, Umpp, Isc, Impp, fill factor, temperature and solar irradiation
Photo function for documenting material defects or identifying the measuring point
Characteristic data can be saved on a project-specific basis and exported by e-mail as a PDF test report
Available free of charge in the Android Playstore for BENNING PV 2
BENNING PV 2
Display
Graphic display (illuminated)
Protective conductor resistance
0.05 Ω - 199 Ω
Test current
± 200 mADC
Open circuit voltage (Uoc)
5 V - 1000 VDC
Short-circuit current (Isc)
0.5 A - 15 ADC *
Insulation resistance (Riso)
0,2 MΩ - 199 MΩ
Test voltage
250 V, 500 V, 100 VDC
Insulation resistance (2-pole)
0.05 MΩ - 300 MΩ
Automatic measurement 1
+/-, Uos, Isc, Riso+/-, Uos, Isc, Riso
Automatic measurement 2
Characteristic curve (I-U, P-U)
Automatic measurement 3
Measurement 1 + 2
DC string current/AC current
0.1 A – 40 AAC/DC (with BENNING CC 3)
Solar irradiation
100 W/m² - 1250 W/m² (with BENNING SUN 2)
PV module / ambient temperature
- 30 °C - + 125 °C (with BENNING SUN 2)
Voltage (2-pole)
30 V - 440 V AC/DC
Measured value memory
999 Data records
Interfaces
USB/wireless/NFC
Scope of delivery
Carrying case, measuring leads, crocodile clips, MC4 and Sunclix PV measuring leads, batteries, USB cable, CD-ROM with download software + SET articles: Benning SUN 2, Benning PC software Solarmanager, shoulder bag for PV 2
Item no.
050427
Subject to technical changes, model and colour deviations, errors and delivery options. We accept no liability for printing/typographical errors.
* Modern PV modules can have high capacities due to their technology. These generate a high discharge current when the short-circuit measuring circuit is connected, which can exceed the maximum rated current of the PV panel many times over. Before carrying out the short-circuit measurement, the PV 2 checks whether the measurement can be carried out safely. If the capacitance is too high, the PV 2 cancels the measurement with the message HiSc or HiCu.
PV2
Benning
2023-07-06 - Gerrit Beutner
Lange nach gesucht. Endlich gefunden. Netter Service.
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