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Hot Spot Endurance Testing Chamber BBA Steady Sun Simulator Natural Light Photovoltaic Module PV Aging Tester Machine Equipment

Hot Spot Endurance Testing Chamber BBA Steady Sun Simulator Natural Light Photovoltaic Module PV Aging Tester Machine Equipment

Brand Name: HAIDA
MOQ: 1 set
Price: $45,960-58,999 / set
Detail Information
Place of Origin:
Guangdong, China
Type:
Testing Machine
Accuracy Class:
High Accuracy
Accuracy:
±2%(-20℃~+40℃)
Application:
Aging Testing, Photovoltaic Module Testing, Hot Spot Endurance Testing, BBA Steady, Natural Light Testing, Sun Simulator
Customized Support:
OEM, ODM
Power:
35KW
Protection Class:
/
Voltage:
380 V
Warranty:
1 Year
Wave Band:
400~1200nm
Radiation Area:
2.4m*1.4m For 4pcs Light Source To Placed 1 Pv Module
Light Method:
Upper Light, This Is Easy To Place PV Module
Sensitivity:
7~14μV/W/M2
Response Time:
≤30s(99%)
Inner Resistance:
Approx. 350Ω
Stability:
±2%
Cosine Response:
≤±5%(When The Sun's Altitude Angle Is 10 Degrees)
Temperature Characteristic:
±2%(-20℃~+40℃)
Nonlinear:
±2%
Highlight:

Hot Spot PV Aging Tester

,

Natural Light PV Aging Tester

,

BBA Steady Sun PV Aging Tester

Product Description
Hot Spot Endurance Testing Chamber / BBA Steady Sun Simulator
HD-E905
This machine provides a near-natural light source within a specified area, featuring BBA-class light sources. It is primarily used for large-area PV module aging testing.
Hot Spot Endurance Testing Chamber Overview
Specifications
Light Source 4 pieces, lamps imported from Germany
(The light source is a core component and also a consumable)
Radiation Intensity 800–1200 W/m² (adjustable)
(Single light source system can provide real-time signal output to the collector)
Wave Band 400–1200 nm
Spectral Matching Degree Class B
Irradiation Inhomogeneity Class B
Instabilities Class A
Radiation Area 2.4 m × 1.4 m for 4 light sources to place 1 PV module
Light Source Hang System Upper hang method: main frame uses high-strength, easily movable aluminum profile structure. Space between lamps is adjustable. After debugging, light source distance from PV module is approximately 1.5 m.
Light Method Upper light, facilitating easy placement of PV modules
Irradiation Introduction
The sensor operates on the thermoelectric effect principle. Sensing components use winding plated multi-contact thermopiles with surfaces coated in a high-absorptivity black coating. Hot junctions are on the sensing surface, while cold nodes are located in the inner chamber. Temperature difference potential between cold and hot junctions produces an output signal proportional to solar irradiance within the linear range. A temperature compensation circuit minimizes temperature effects. Two-layer quartz glass covers, produced via precision optical cold process grinding, protect against environmental influences.
Sensitivity 7–14 μV/W/m²
Response Time ≤30 s (99%)
Inner Resistance Approximately 350 Ω
Stability ±2%
Cosine Response ≤±5% (at 10° sun altitude angle)
Temperature Characteristic ±2% (-20℃ to +40℃)
Nonlinear ±2%
Testing Range 0–2000 W/m²
Signal Output 0–20 mV
Cooling & Control Systems
Fan cooling system maintains temperature at 50±10℃ with PID automatic temperature compensation control. Controller: Mitsubishi.
Data Acquisition & Processing
Data collector captures irradiation sensor and temperature sensor data at ≤5 s intervals via analog signal transfer. Data is processed, analyzed, and calculated before being presented to users as data and curves, then stored in the database.
System Special Functions
  • System protection functions: current overload protection, temperature overload protection, leakage electric protection
  • Cut-off power memory function: testing continues after power recovery
  • System supports Chinese and English language interface switching
  • Data storage, history information query, data export/print capabilities
  • Reports can be saved in Word, Excel, PDF, JPG formats
Environmental Installation Requirements
Running environment: standard lab conditions, temperature 25±2℃, humidity: 60%
Power: Three-phase, 380V, 50Hz, approximately 35KW
Light Source Array Distribution
Light source array distribution diagram
Single Group Light Source
Single group light source configuration Single group light source detailed view
System Structure
This system is structured on the PV module BBA steady-state sun simulator testing platform, serving the PV module BBA steady-state sun simulator data acquisition and result processing software.
System structure diagram
Spectral Curve
Spectral curve analysis
Our Partners
Our trusted partners and clients
Our Service Advantages
Technical Support
  • 48-hour response time for technical problems with solutions within 3 working days
  • Operation videos and English operation manuals provided
  • Video conference support available
Onsite Services
  • Device installation
  • Equipment operation test technology training
  • Equipment calibration
  • Daily maintenance and equipment upkeep
  • Free technical training for factory visits
  • 24-hour online contact
  • Free software upgrades
Documentation & Resources
  • Product instructions
  • Product operation instructions/videos
  • Experiment test applications and reports
Device Problem Handling
  • 24-hour social media communication
  • Seamless email support
  • Video conferencing solutions
  • Free door-to-door technical service