1. Size and weight constraints: The structure must be able to accommodate the electronic system within its dimensions and weight limits.
2. Environmental constraints: The structure must protect the electronic system from the elements, such as temperature fluctuations, humidity, dust, and water.
3. Stability and vibration constraints: The structure should provide stability and minimize vibration to prevent any damage or malfunctioning of the electronic system.
4. Electromagnetic interference (EMI) constraints: The structure should provide shielding or isolation to prevent electromagnetic interference from affecting the electronic system's performance.
5. Accessibility constraints: The structure should provide appropriate access points or openings for maintenance, repairs, and upgrades of the electronic system.
6. Power supply constraints: The structure should have the capability to accommodate the power requirements of the electronic system, such as power outlets, wiring, and distribution.
7. Safety constraints: The structure should adhere to safety standards and regulations to ensure the protection of personnel and prevent any hazards related to the electronic system.
8. Durability constraints: The structure should be durable enough to withstand potential impacts, shocks, or accidental events without compromising the electronic system's integrity.
9. Compatibility and integration constraints: The structure should allow for proper integration of the electronic system with other components, interfaces, or peripherals.
10. Cost and budget constraints: The structure's construction and materials should be within a defined budget or cost limitations.
Identify and list the constraints for the structure that houses the electronic system
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