Altitude Testing

Altitude testing simulates low-pressure environments to evaluate product performance at high elevations. This test is essential for aerospace applications and certain defense systems, ensuring functionality despite reduced atmospheric pressure.

Specifications

Altitude Chamber / CATH Chamber
Total no. of chambers 3 nos
Chamber dimension 1000 x 1000 x 1000 mm
Low air pressure range 1mBar to 2000mBar
Ramp rate range Upto 2mBar/min
Temperature range -70°C to 180°C
Humidity range Upto 98%RH
Standard covered MIL-STD-810, JSS 55555, IEC 60068 series,
ISO 20653, EIA 364 series, EN 2591 series

Capability Highlights

Why SKC for Altitude testing

Case Studies

Introduction

The Altitude Test is conducted to evaluate the ability of a product to operate reliably under low atmospheric pressure conditions that are typically encountered at high altitudes. For aerospace and unmanned aerial vehicle (UAV) applications, altitude testing is critical to verify the structural integrity, operational performance, and environmental durability of the equipment when exposed to reduced air pressure and extreme temperature conditions. The test helps identify potential issues related to material behaviour, electronic performance, and overall functionality before deployment in real-world operating environments.

Drone_Collage

Altitude Testing

Objective

The Altitude Test was performed on the Drone (Unmanned Aerial Vehicle) as per customer requirements with reference to JSS 55555:2020, Revision 4, Test No. 3. The objective of the test was to assess the UAV’s capability to withstand simulated high-altitude environmental conditions at an altitude of 6,100 meters with an air pressure of 46.5 kPa (465 mbar). The evaluation included exposure to both low-temperature conditions (-55°C ±3°C) and high-temperature conditions (+55°C ±3°C) while monitoring the functional performance of the equipment. The test was intended to verify that the UAV remains operational and free from any physical degradation when subjected to extreme altitude-related environmental stresses.

Key Result

The Drone (UAV) successfully completed both altitude test cycles conducted under low-temperature and high-temperature high-altitude conditions. Following completion of the tests, the sample was visually inspected and found to have no external damage, deformation, or physical abnormalities. Performance verification checks carried out by the customer before, during, and after the test confirmed that the UAV maintained its intended functionality throughout the exposure period. The successful completion of the altitude testing demonstrates the UAV’s capability to operate reliably under simulated high-altitude environments without any adverse impact on its structural or functional performance.