Piranometer dari Kipp & Zonen

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About this item

ESS Earth Sciences menyediakan Australia dan Selandia Baru dengan seluruh rangkaian Piranometer Kipp & Zonen.

Seri yang Tersedia

  • SMP Series – 3, 6, 10, 11, 21, 22

  • CMP Series – 3, 6, 10, 11, 21, 22

Deskripsi Produk

Piranometer Kipp & Zonen

Rangkaian piranometer Kipp & Zonen sangat luas. Semua aplikasi, mulai dari pembangkit listrik tenaga surya skala besar hingga fasilitas penelitian radiasi surya, dapat ditangani. Kami menyarankan pelanggan untuk menghubungi ESS Earth Sciences untuk mendiskusikan aplikasi dan kebutuhan mereka sehingga sensor yang tepat dapat direkomendasikan.

Piranometer Kipp & Zonen secara garis besar dibagi menjadi SMP dan CMP.

  • SMP: Sensor cerdas dengan output serial RS485 Modbus

  • CMP: Memberikan output analog saja

Model Piranometer

CMP3 Pyranometer
Piranometer biaya rendah untuk pengukuran rutin yang akurat di banyak aplikasi.

SMP3 Pyranometer
Piranometer kelas ISO 9060 Second Class tercepat dan berkinerja terbaik. Ideal untuk pemantauan instalasi tenaga surya, pertanian, hortikultura, hidrologi, dan aplikasi industri.

CMP6 Pyranometer
Piranometer untuk pengukuran berkualitas baik, digunakan pada kontrol iklim rumah kaca, pengujian lapangan, dan instalasi PV.

CMP10 Pyranometer
Piranometer standar sekunder dengan perawatan minimal berkat desikannya internal, dirancang untuk jaringan meteorologi dan aplikasi energi surya.

SMP10 Pyranometer
Piranometer ISO Standar Sekunder dengan perawatan minimal dan kinerja maksimal untuk aplikasi meteorologi dan energi surya.

CMP11 Pyranometer
Piranometer untuk jaringan meteorologi, pengukuran referensi di iklim ekstrem, kutub, atau gurun, standar industri untuk pemantauan radiasi surya di pembangkit listrik PV dan termal.

SMP11 Pyranometer
Melebihi persyaratan piranometer ISO Standar Sekunder. Ideal untuk pemantauan radiasi surya berkualitas tinggi di meteorologi dan energi surya.

CMP21 Pyranometer
Piranometer untuk jaringan meteorologi, pengukuran referensi di iklim ekstrem, kutub, atau gurun.

CMP22 Pyranometer
Piranometer untuk penelitian ilmiah yang membutuhkan tingkat akurasi dan keandalan tertinggi.

Piranometer Kipp & Zonen dapat memiliki output analog untuk data logger, atau dalam kasus piranometer SMP, output digital untuk integrasi sistem SCADA atau analog (tidak dapat digunakan bersamaan).

Kami menawarkan berbagai sensor radiasi surya, mulai dari aplikasi pertanian hingga penelitian ilmiah.

Opsional Tambahan untuk Piranometer Kipp & Zonen

  • Ventilator – Mengoptimalkan kinerja piranometer dengan meminimalkan penumpukan debu dan mencegah embun serta es.

  • Shadow ring (Cincin bayangan) – Saat dipasang, piranometer terlindung dari sinar matahari langsung, memungkinkan pengukuran radiasi surya difus.

  • Tilt mount (Penyangga miring) – Memungkinkan piranometer dimiringkan sesuai bidang panel surya.

 

SPECIFICATION CMP3 CMP6 CMP10 CMP21 CMP22
Classification to ISO 9060:1990 Class C Class B Class A Class A Class A
Sensitivity 5 to 20µV/W/m² 5 to 20µV/W/m² 7 to 14µV/W/m² 7 to 14µV/W/m² 7 to 14µV/W/m²
Impedance 20 to 200Ω 20 to 200Ω 10 to 100Ω 10 to 100Ω 10 to 100Ω
Expected output range (0 to 1500 W/m) 0 to 30mV 0 to 30mV 0 to 20mV 0 to 20mV 0 to 20mV
Maximum operational irradiance 2000 W/m² 2000 W/m² 4000 W/m² 4000 W/m² 4000 W/m²
Response time (63 %) < 6 s < 6 s < 1.7 s < 1.7 s < 1.7 s
Response time (95 %) < 18 s < 18 s < 5 s < 5 s < 5 s
Spectral range (20 % points) 285 to 3000nm 270 to 3000nm 270 to 3000nm 270 to 3000nm 210 to 3600nm
                         (50 % points) 300 to 2800nm 285 to 2800nm 285 to 2800nm 285 to 2800nm 250 to 3500nm
Zero offsets (unventilated)
(a) thermal radiation (at 200 W/m²) < 15 W/m² < 10W/m² < 7W/m² < 7W/m² < 3W/m²
(b) temperature change  (5 K/h)  < 5 W/m² < 4 W/m² < 2W/m² < 2W/m² < 1W/m²
Nonstability (change/year)  < 1% < 1% < 0.5% < 0.5% < 0.5%
Non-linearity (100 to 1000 W/m²)  < 1.5% < 1% < 0.2% < 0.2% < 0.2%
Directional response (up to 80 ° with 1000 W/m beam) < 20 W/m² < 20 W/m² < 10 W/m² < 10 W/m² < 5W/m²
Spectral selectivity (350 to 1500 nm) < 3% < 3% < 3% < 3% < 3%
Tilt response (0 ° to 90 ° at 1000 W/m²) < 1% < 1% < 0.2% < 0.2% < 0.2%
Temperature response < 5% (-10 °C to +40 °C) < 4% (-10 °C to +40 °C) < 1% (-10 °C to +40 °C) < 1% (-20 °C to +50 °C) < 0.5% (-20 °C to +50 °C)
Field of view 180 ° 180 ° 180 ° 180 ° 180 °
Accuracy of bubble level < 0.2 ° < 0.1 ° < 0.1 ° < 0.1 ° < 0.1 °
Temperature sensor output NA NA NA 10 k Thermistor (optional Pt-100) 10 k Thermistor (optional Pt-100)
Detector type Thermopile Thermopile Thermopile Thermopile Thermopile
Operating and storage temperature range -40 °C to +80 °C -40 °C to +80 °C -40 °C to +80 °C -40 °C to +80 °C -40 °C to +80 °C
Humidity range 0 to 100% 0 to 100% 0 to 100% 0 to 100% 0 to 100%
MTBF (Mean Time Between Failures)  > 10 years > 10 years > 10 years > 10 years > 10 years
Ingress Protection (IP) rating 67 67 67 67 67
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Recommended applications Economical solution for routine measurements in weather stations, field testing. Good quality measurements for hydrology networks, greenhouse climate control. Meteorological networks, PV panel and thermal collector testing, materials testing. Meteorological networks, reference measurements in extreme climates, polar or arid. Scientific research requiring the highest level of measurement accuracy and reliability.
PYRANOMETER  SMP SERIES
SPECIFICATION SMP3 SMP6 SMP10 SMP21 SMP22
Classification to ISO 9060:1990 Class C Class B Class A Class A Class A
Analogue output • V-version 0 to 1V 0 to 1V 0 to 1V 0 to 1V 0 to 1V
Analogue output range  -200 to 2000W/m²  -200 to 2000W/m²  -200 to 2000W/m²  -200 to 2000W/m²  -200 to 2000W/m²
Analogue output • A-version 4 to 20mA 4 to 20mA 4 to 20mA 4 to 20mA 4 to 20mA
Analogue output range* 0 to 1600W/m² 0 to 1600W/m² 0 to 1600W/m² 0 to 1600W/m² 0 to 1600W/m²
Serial output RS-485 Modbus® RS-485 Modbus® RS-485 Modbus® RS-485 Modbus® RS-485 Modbus®
Serial output range  -400 to 2000W/m²  -400 to 2000W/m²  -400 to 4000W/m²  -400 to 4000W/m²  -400 to 4000W/m²
Response time (63 %) < 1.5 s < 1.5 s < 0.7 s < 0.7 s < 0.7 s
Response time (95 %) < 12 s < 12 s < 2 s < 2 s < 2 s
Spectral range (20 % points) 285 to 3000nm 270 to 3000nm 270 to 3000nm 270 to 3000nm 210 to 3600nm
                         (50 % points) 300 to 2800nm 285 to 2800nm 285 to 2800nm 285 to 2800nm 250 to 3500nm
Zero offsets (unventilated)
(a) thermal radiation (at 200 W/m²) < 15W/m² < 10W/m² < 7 W/m² < 7 W/m² < 3 W/m²
(b) temperature change  (5 K/h)  < 5W/m² < 4W/m² < 2 W/m² < 2 W/m² < 1 W/mm²
Nonstability (change/year)  < 1% < 1% < 0.5% < 0.5% < 0.5%
Non-linearity (100 to 1000 W/m²)  < 1.5% < 1% < 0.2% < 0.2% < 0.2%
Directional response (up to 80 ° with 1000 W/m beam) < 20W/m² < 15W/m² < 10 W/m² < 10W/m² < 5 W/m²
Temperature response < 2% (-20 °C to +50 °C) < 1.5% (-20 °C to +50 °C) < 1% (-20°C to +50 °C) < 0.3% (-20°C to +50 °C) < 0.3% (-20°C to +50 °C)
< 4% (-40 °C to +70 °C) < 3% (-40 °C to +70 °C) < 2% (-40 °C to +70 °C) < 0.3% (-40 °C to +70 °C) < 0.3% (-40 °C to +70 °C)
Spectral selectivity (350 to 1500 nm) < 1% < 1% < 1% < 1% < 2%
Tilt response (0 ° to 90 ° at 1000 W/m²) < 1% < 1% < 0.2% < 0.2% < 0.2%
Field of view 180 ° 180 ° 180 ° 180 ° 180 °
Accuracy of bubble level < 0.2 ° < 0.1° < 0.1 ° < 0.1 ° < 0.1 °
Power consumption (at 12 VDC) V-version: 55mW V-version: 55mW V-version: 55mW V-version: 55mW V-version: 55mW
A-version: 100mW A-version: 100mW A-version: 100mW A-version: 100mW A-version: 100mW
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Supply voltage 5 to 30VDC 5 to 30VDC 5 to 30VDC 5 to 30VDC 5 to 30VDC
Detector type Thermopile Thermopile Thermopile Thermopile Thermopile
Operating and storage temperature range -40 °C to +80 °C -40 °C to +80°C -40 °C to +80 °C -40 °C to +80 °C -40 °C to +80 °C
Humidity range 0 to 100% 0 to 100% 0 to 100% 0 to 100% 0 to 100%
MTBF (Mean Time Between Failures) > 10 years > 10 years > 10 years > 10 years > 10 years
Ingress Protection (IP) rating 67 67 67 67 67
Onsite pyranometer uncertainty Calculate with Suncertainty App Calculate with Suncertainty App Calculate with Suncertainty App Calculate with Suncertainty App Calculate with Suncertainty App
Recommended applications Economical solution for efficiency and maintenance monitoring of PV power installations, routine measurements in weather stations, agriculture, horticulture and hydrology. Good quality measurements for Solar Monitoring, hydrology networks, greenhouse climate control. High performance for PV panel and thermal collector testing, solar energy research, solar prospecting, materials testing, advanced meteorology and climate networks. Meteorological networks, reference measurements in PV monitoring, extreme climates, polar or arid. Scientific research requiring the highest level of measurement accuracy and reliability under all conditions.

 

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