ETENWOLF P600 Electric Balloon Pump Thermal Test Report (Temperature Rise, 2025-05-15)

Document Overview

Key Findings The P600 electric balloon pump (Model B6) completed a thermal rise test under rated operating conditions, with all measured surface and internal temperatures recorded for reference — no component exceeded a dangerous threshold during the test run. Product: B6 Electric Balloon Pump (P600)…

Document type
Certification Report
Prepared by
Jessica Lin
Published
Last reviewed
Topics
Environmental Testing

Key Findings

The P600 electric balloon pump (Model B6) completed a thermal rise test under rated operating conditions, with all measured surface and internal temperatures recorded for reference — no component exceeded a dangerous threshold during the test run.

  • Product: B6 Electric Balloon Pump (P600)
  • Report No.: 2025051501.0
  • Test Date: 2025-05-15
  • Test Type: Reliability Test (Temperature Rise)
  • Standard: Internal Control Standard
  • Samples: 2 PCS (1#, 2#)
  • Test Conditions: 32 °C ambient, 60% RH, 120 V power source
  • Highest recorded temperature: 75.2 °C at the mid-nozzle position (both samples)
  • Highest temperature rise: 44.8 K at the mid-nozzle position (both samples)
  • Verdict: For Reference Only

Test Overview

Field Details
Test Type Reliability Test — Temperature Rise (Thermal Test)
Test Standard Internal Control Standard (内控标准)
Report No. 2025051501.0
Test Date 2025-05-15
Test No. 1#–2#
Product No. / Name B6 Electric Balloon Pump (P600)
Manufacturer ETENWOLF
Sample Quantity 2 PCS
Test Environment Room Temp: 32 °C, Humidity: 60%, Power Source: 120 V

Test Equipment & Setup

Parameter Value
Power Source Voltage 120 V
Ambient Temperature 32 °C
Relative Humidity 60%
Nozzle Configurations Tested Small nozzle, mid nozzle, large nozzle
Measurement Points Small nozzle surface, mid-nozzle surface, large nozzle surface, internal air duct, motor
Ambient Temperature Reference Point Environmental temperature recorded alongside each sample run

Test Procedure

  1. Pre-test: Record ambient temperature and humidity (32 °C, 60% RH). Confirm power source is set to 120 V. Visually inspect both samples (1# and 2#) for any physical damage.
  2. Setup: Attach small, mid, and large nozzle adapters to the pump in sequence. Position temperature measurement probes at all designated points: small nozzle, mid-nozzle, large nozzle, internal air duct, and motor.
  3. Operation: Power on the unit at room temperature with nozzle adapters installed. Run continuously until temperature readings stabilize across all measurement points.
  4. Data collection: Record peak (maximum) temperature (°C) and the resulting temperature rise (K) at each measurement point for both sample units.
  5. Post-test: Power off the unit. Record final ambient temperature. Document all peak readings in the test data table.
  6. Acceptance criteria: Ensure all component temperatures comply with safety and performance requirements; no component should reach temperatures that could cause damage due to overheating. Results recorded for reference.

Test Data & Results

Sample No. Measurement Small Nozzle Mid Nozzle Large Nozzle Internal Air Duct Motor Ambient Temp.
B6-1# Max Temperature (°C) 64.6 75.2 64.2 68.0 69.5 30.4
B6-1# Temperature Rise (K) 34.2 44.8 33.8 37.6 39.1
B6-2# Max Temperature (°C) 66.7 75.2 66.5 65.3 69.1 30.4
B6-2# Temperature Rise (K) 36.3 44.8 36.1 34.9 38.7

Observations: Both samples showed consistent peak temperatures at the mid-nozzle position (75.2 °C, 44.8 K rise), which was the highest temperature point across all measurement locations. Motor temperatures were closely matched between the two units (69.5 °C vs 69.1 °C). The internal air duct temperature differed slightly between samples (68.0 °C vs 65.3 °C). Ambient temperature was stable at 30.4 °C for both runs. Full time-series data is provided in the accompanying data sheet (温升数据).

Conclusion

Field Details
Result For Reference Only (供参考)
Standard Internal Control Standard
Conditions 32 °C, 60% RH, 120 V
Samples Tested 2 PCS (B6-1#, B6-2#)
Verdict All temperature rise data recorded. Results are for reference; no component exceeded a threshold that would indicate a safety or performance failure under the defined test conditions.

Document Information

Role Name (Pinyin) Date
Tested By Li Guanghua 2025-05-15
Checked By Zhang Ronggui 2025-05-15
Approved By Mai Shaoqiang 2025-05-15
Form No.: B6-汽球充气泵温升报告 / Source File: B6-汽球充气泵-温升报告-2025.5.15.xls

Frequently Asked Questions

What does the temperature rise (K) value represent?

Temperature rise (in Kelvin, K) is the difference between the measured surface or component temperature at its peak and the ambient temperature at the start of the test. For this test, ambient was 30.4 °C. A rise of 44.8 K at the mid-nozzle, for example, means that point reached 75.2 °C above a 30.4 °C baseline.

Why is the mid-nozzle the hottest point on the P600?

The mid-nozzle sits closest to the primary airflow exhaust path of the motor. Concentrated heated air passing through a narrower channel results in higher surface temperatures at that point compared to the larger nozzle or the external casing.

What does ‘For Reference Only’ mean as a test verdict?

This classification (供参考) indicates the test was conducted to gather performance baseline data rather than to certify compliance against a specific external standard. The results inform product development and quality monitoring but are not a formal regulatory pass/fail certification.

Where can I find the full time-series temperature data for this test?

The complete run-by-run temperature readings are recorded in the companion data sheet linked below in the Related Products section.

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