Description
SPECIAL FEATURES:
I-V curve test for solar system
- Max. solar system power (Pmax) search by Auto-scan: 1000V, 12A (12000W capability)
- The analyzer and the Remote Solar Detector is connected by Bluetooth wireless communication (Bluetooth 2.1 + EDR Class 1)
- The Remote Solar Detector is moisture-proof
- Intelligent test logic with no personnel attendance required in the field
- Solar system analyzer waits and tests the system until appropriate sunlight irradiance is detected
- Max. voltage (Vpm) at Pmax, Max. current (Ipm) at Pmax
- Voltage at open circuit (Voc), Current at short circuit (Isc)
- Efficiency (%) calculation of solar system
- Temperature measurement of solar panels
- Irradiance measurement of sun light
- Series resistance (Rs) calculation of solar panels
- With data logging/open function, the I-V curves of solar system can be analysed / recorded for a period of time (e.g. 60 min.)
- Conversion of I-V curve under OPC to data under standard test condition (STC) based upon IEC standard
- Provide Operating Condition (OPC) and Standard Test Condition (STC) test reports for verification of solar panel performance (OK or NO OK)
- Users can set up the parameters of solar panels
- Users can set up the series number of solar panels. Parameters of many solar panels can be measured in one measurement
- The Irradiances and Temperatures of solar panels can be continuously measured, monitored and recorded
- Continuously measure/monitor/record the DC power output of solar system and the AC power output of inverter (1 phase or balanced 3 phases)
- Calculate the efficiency of DC to AC power conversion and the efficiency of the max.output power
- Built - in Calender Clock
- Rechargable Lithium Battery, Low Battery Warning, AC Power Adaptor
- Optical USB Cable for PC Communication
- Solar Connector (optional)
- With Power Clamps (SOLAR 15 DC Current Probe and SOLAR 21 AC Power Clamp), continuously measure / monitor / record the DC AC Power output of Solar System and the AC Power Output of Inverter (1 phase or balanced 3 phases); calculate the Efficiency of DC to AC Power Conversion and the Efficiency of the max.output power.
Standard Accessories:
- Solar Irradiance Meter (Remote Solar Detector) x 1
- Thermometer x 1
- USB power cord x 1
- User manual x 1
- AC adaptor x 1
- Optical USB cable x 1
- Rechargeable lithium battery (3400mAh) x 1 (installed)
- Software CD x 1
- Software manual x 1
- Carrying bag x 1
- Thermal conductive gel x 1
- Testing clips (1 black & 1 red) x 1
- 4-wire to 2-wire connecting cable x 1
- 4-wire testing cable x 1
- Solar 15: DC current probe x 1
- Solar 21: AC power clamp x 1
- Testing clips (1 black & 1 red) x 1
Additional Information
| Brand | MECO | ||
| Model | 9018BT | ||
| Range | Resolution | Accuracy | |
| DC Voltage | 0 ~ 1000V | 0.001 V / 0.1 V / 1 V | ±1% ±(1% of Vopen ± 0.1 V) |
| DC Current | 0.1 ~ 12A | 1mA / 10mA | ± 1% ±(1% of Ishort ±9mA) |
| Irradiance | 2 20 ~ 2000W/m² | 2 1W/m² | ±3% ±20dgts |
| Temperature | -20 ~ 105 C | 0.1 C | ±1% ±1 C |
| Battery Type | Rechargeable Lithium Battery (3400mAh) |
| Memory Size | 512K Bytes |
| AC Adaptor | AC 100 ~ 240V input, DC 15V / 1~3A output |
| Operation Environment | 5 ~ 50 , <85% RH |
| Storage Environment | -20 ~ 60 , <75% RH |
| Dimension | 260 x 158 x 64mm |
| Weight | 1580gms |
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