I. Design Positioning and Structural Differences
(1) Usage Scenarios and Mobility
Conventional Screens: Fixed installations in indoor and outdoor settings (e.g., shopping malls, conference rooms, outdoor billboards), emphasizing long-term stability and requiring minimal relocation.
LED Rental Screens: Designed for temporary events (concerts, exhibitions, weddings), requiring quick assembly, disassembly, transportation, and reuse, emphasizing portability and flexibility.
(2) Structure and Weight
Conventional Screens: Typically use iron or aluminum boxes, resulting in significant weight (e.g., a P2.5 conventional screen weighs approximately 60 kg/m²), requiring multiple people to handle.
LED Rental Screens: Utilize lightweight materials (e.g., carbon fiber, aerospace aluminum), reducing weight by over 50% (e.g., a Visee Technology roller shutter screen weighs only 12 kg/m²), supporting single-person handling.
II. Durability and Maintenance Efficiency
(1) Fatigue Resistance and Durability
Conventional Screens: Rigid PCB design, designed for long-term fixed use, but frequent disassembly and assembly can easily lead to circuit breakage or LED chip detachment. LED Rental Screen: Utilizes flexible substrates (such as FPC) and highly bend-resistant LED beads, passing 100,000 bending tests (industry standard 30,000), adapting to repeated bending.
(2) Maintenance Convenience
Conventional Screen: Requires complete disassembly and repair, resulting in high maintenance costs (replacing a single module requires returning it to the factory).
LED Rental Screen: Supports front and rear dual maintenance design, modular interfaces enabling "plug and play," improving maintenance efficiency by 80%.
III. Display Effect and Scene Adaptation
(1) Image Quality and Dynamic Optimization
Conventional Screen: Contrast ratio is typically 3000:1, brightness is fixed, making it difficult to adapt to strong light environments.
LED Rental Screen: Through dynamic dimming algorithms and high-brightness LED beads (such as Visee Technology products with a brightness of 5000 nits), the contrast ratio is increased to over 5000:1, ensuring clear images under strong outdoor light.
(2) Irregular Shape Display Capability
Conventional Screen: Primarily uses standardized rectangles, with errors typically greater than 1mm, making it difficult to adapt to curved, cylindrical, and other irregularly shaped spaces. LED Rental Screens: Support customized designs, such as the curved folding screen customized by Visee Technology for a theme park, achieving a perfect integration of dynamic images and architectural structure.
IV. Cost and Efficiency Balance
(1) Total Life Cycle Cost
Conventional Screens: Low initial purchase price, but high long-term disassembly, transportation, and maintenance costs (e.g., transportation costs for conventional screens at a certain exhibition accounted for 30% of the total project cost).
LED Rental Screens: Through "structure-saving, warehousing-saving, and transportation-saving" designs (e.g., Visee Technology products), overall costs are reduced by more than 30%, and there is no need for inventory backlog.
(2) Rental Service Model
Conventional Screens: Primarily sales-based, requiring customers to bear high initial investments; currently, there is a gradual shift towards long-term fixed-location scenarios.
LED Rental Screens: Support on-demand rentals, such as Visee Technology providing a one-stop service of "screen + technical team," reducing customer financial pressure by 60%.
V. Environmental Adaptability
(1) Temperature, Humidity, and Protection Level
Conventional Screens: Protection level is usually IP43, only suitable for dry indoor environments.
LED Rental Screens: With IP65 waterproof and dustproof design, they can withstand temperature variations from -30℃ to 60℃ (such as Visee Technology products), and can cope with extreme environments such as heavy rain and sandstorms.
(2) Power Supply and Heat Dissipation Efficiency
Conventional Screens: Use traditional power supply designs, resulting in low heat dissipation efficiency and a tendency to crash due to high temperatures.
LED Rental Screens: Integrate intelligent temperature control systems. For example, Visee Technology products use common cathode drive technology to reduce power consumption by 30% and improve heat dissipation efficiency by 40%, making them more suitable for green events.
In summary, these are the differences between LED rental screens and conventional screens. LED rental screens have become the preferred choice for temporary events, and their technological iterations are driving the display industry towards "high efficiency, flexibility, and low carbon emissions."