Vibration Test System for Consumer Electronics - IEC 60068-2-6 Random Vibration
| Item | DR-B216 |
| Max. Test Load | 100kg |
| Frequency Range | 60-300rpm |
| Amplitude Range | 25.4mm (1 inch) |
| Simulation Speed | 25~40km/h |
| Vibration Mode | Roundtrip |
| Work Table Size | 1000*1200 mm ( L*W, can be customized ) |
| Outside dimension ( L*W*H ) | 1255*1070*660mm |
| Speed Mode | DC converter or AC Frequency Control |
| Power Capacity | 1 HP |
| Weight | 150kg |
| Power | 220V, 50 Hz |
| Speed Mode | DC converter or AC Frequency Control |
| Environmental Conditions | Temperature: 5~40°C; Related Humidity |
Simulated Transportation Shakers help test the shock resistance of electronic products by simulating the vibration and bumpy environments that products may encounter during transportation. The following are the specific methods and benefits:
1. Simulates the actual shipping environment
The simulated transportation shaker can simulate the various vibrations and bumps that electronic products may encounter during transportation, such as the vibration of a moving car, bumps caused by uneven road surfaces, etc. By simulating these actual transportation environments, the shaker can help test the shock resistance of electronic products. By simulating these actual transportation environments, the seismic performance of electronic products can be evaluated under real transportation conditions.
2. Discover potential problems
Testing on a simulated transportation vibration table can identify potential problems that may exist in the design and manufacturing process of electronic products, such as loose internal parts, connectors falling off, circuit board deformation, etc. These problems may occur during actual transportation. These problems may lead to product damage or functional failure in the actual transportation process. By discovering and solving these problems in advance, the reliability and stability of electronic products can be improved.
3. Optimize product design
According to the test results of the simulated transportation shaker, the design of electronic products can be optimized. For example, the solidity of the internal structure can be strengthened, the fixing method of the connecting parts can be improved, and the layout of the circuit board can be adjusted in order to improve the anti-vibration performance of the product. In addition, the packaging design can be optimized by testing the protection effect of different packaging materials and structures to reduce the risk of product damage during transportation.
4. Improve product reliability
The durability and reliability of electronic products in complex transportation environments can be verified through simulated transportation shaker tests. Only after rigorous testing of products can maintain good performance during actual transportation and use, reduce failures and damage caused by transportation vibration, and improve customer satisfaction and market competitiveness.
5. Compliance with industry standards and certification requirements
Many industry standards and certification bodies require electronic products to undergo transportation vibration testing to ensure product safety and reliability during transportation. Simulation of transportation vibration table can help companies to meet these standards and certification requirements, to ensure that the product meets the market access conditions.
6. Reduce after-sales costs
Through simulated transportation vibration testing in the production stage, potential quality problems can be found and solved in advance, reducing the return rate of products in the process of use, reducing the cost of after-sales maintenance and replacement, and improving the economic efficiency of enterprises.
Specific application scenarios
Cell phones: Test the anti-vibration performance of cell phones during transportation to ensure that their internal parts such as chips, batteries, cameras, etc. will not be damaged by vibration.
Tablet PCs and laptops: Evaluate their stability and reliability during transportation to prevent the screen from loosening, the keyboard from falling off, and the hard disk from being damaged due to vibration.
Electronic accessories: such as headphones, chargers, routers, etc., to test their durability during transportation and ensure that the products remain intact when they reach consumers.
Case Study
A cell phone manufacturer uses a simulated transportation shaker to test the shock resistance of its cell phones before the launch of new products. The tests revealed that certain connectors inside the phone were prone to loosening under the vibration environment, resulting in unstable signals. Based on the test results, the manufacturer optimized the internal structure of the phone and strengthened the fixing method of the connectors. The improved product has a stable signal and lower failure rate during actual transportation and use, and customer satisfaction has increased significantly.
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