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NRJ Solaire | NRJ4SPSC10/50-D48/750

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Snapshot Details

  • Product Type: Submersible Pump
  • Model Number: NRJ4SPSC10/50-D48/750
  • Power Supply Type: DC
  • Simulated PV Array Size [W]: 876
  • Simulated Head Value [m]: 30
  • High Irradiance Day: Total Volume of Water Moved per Solar Day [m3/day]: 20
Product Information
  • Brand tooltip Product brand name as listed on consumer-facing materials, such as product package, nameplate, or product specification sheet NRJ Solaire
  • Product Type Submersible Pump
  • Model Number NRJ4SPSC10/50-D48/750
  • Power Supply Type DC
  • Manufacturer NRJ Solaire
  • Warranty [months] 24
  • Rated Controller Input Power [W] 1400
  • Rated Controller Input Voltage [V] 100
  • Battery Integrated [yes/no] No
Pump Information
  • Pump Type Centrifugal
  • Motor Type Brushless DC
  • Pump Dimensions [L*W*H in cm] 56.8*8.9*8.9
  • Rated Head Range [m] 50
  • Rated Maximum Flow Rate [m3/h] 10
  • Rated Pump Ingress Protection (IP) Rating 65
Test Setup
  • Simulated PV Array Size [W] 876
  • Simulated Head Value [m] 30
Operating Range
  • Minimum Irradiance Required to Start Pump [per 50W/m2] tooltip See test setup for simulated PV array size and head value used during testing 50
  • Maximum Head [m] tooltip See test setup for simulated PV array size and head value used during testing 58.9
Maximum Efficiency at 700W/m2
  • Maximum Wire-to-Water Efficiency [%] Simulated at 700W/m2 tooltip Simulating pump performance on a partly cloudy day (700W/m2 peak) 42%
  • Head Value at Maximum Efficiency [m] Simulated at 700W/m2 tooltip Simulating pump performance on a partly cloudy day (700W/m2 peak) 24.5
  • Flow Rate at Maximum Efficiency [L/min] Simulated at 700W/m2 tooltip Simulating pump performance on a partly cloudy day (700W/m2 peak) 21.9
Low Irradiance Day - Fully Cloudy (450W/m2 peak)
  • Low Irradiance Day: Hydraulic Energy per Day [Wh/day] tooltip Simulating pump performance on a fully cloudy day (450W/m2 peak) 232.4
  • Low Irradiance Day: Average Wire-to-Water Efficiency [%] tooltip Simulating pump performance on a fully cloudy day (450W/m2 peak) 18%
  • Low Irradiance Day: Total Volume of Water Moved per Solar Day [m3/day] tooltip Simulating pump performance on a fully cloudy day (450W/m2 peak) 2.8
  • Low Irradiance Day: Hours of Operation [h] tooltip Simulating pump performance on a fully cloudy day (450W/m2 peak) 3.3
Average Irradiance Day - Partly Cloudy (700W/m2 peak)
  • Average Irradiance Day: Hydraulic Energy per Day [Wh/day] tooltip Simulating pump performance on a partly cloudy day (700W/m2 peak) 901.7
  • Average Irradiance Day: Average Wire-to-Water Efficiency [%] tooltip Simulating pump performance on a partly cloudy day (700W/m2 peak) 26%
  • Average Irradiance Day: Total Volume of Water Moved per Solar Day [m3/day] tooltip Simulating pump performance on a partly cloudy day (700W/m2 peak) 10.9
  • Average Irradiance Day: Hours of Operation [h] tooltip Simulating pump performance on a partly cloudy day (700W/m2 peak) 6.7
High Irradiance Day - Full Sun (1000W/m2 peak)
  • High Irradiance Day: Hydraulic Energy per Day [Wh/day] tooltip Simulating pump performance on a fully sunny day (1000W/m2 peak) 1654.2
  • High Irradiance Day: Average Wire-to-Water Efficiency [%] tooltip Simulating pump performance on a fully sunny day (1000W/m2 peak) 27%
  • High Irradiance Day: Total Volume of Water Moved per Solar Day [m3/day] tooltip Simulating pump performance on a fully sunny day (1000W/m2 peak) 20
  • High Irradiance Day: Hours of Operation [h] tooltip Simulating pump performance on a fully sunny day (1000W/m2 peak) 9.2
Product Quality Inspection
  • Pump External Workmanship and Quality Evaluation [poor/satisfactory/good] Good
  • Pump Internal Workmanship and Quality Evaluation [poor/satisfactory/good] Satisfactory
  • Pump Safety Evaluation [poor/satisfactory/good] Good
  • Pump Operating Manual Evaluation [not included/poor/needs improvement/good] Satisfactory
Sampling and Testing Information
  • Sample Location Dakar (Senegal)
  • Retail Price [USD] 715.98
  • Test Laboratory Name Schatz Energy Research Center
  • Test Completion Date [MM/DD/YYYY] 7/12/2022
Awards
  • Global LEAP Awards No