LVDS (Low-voltage Differential Signaling) Low Voltage differential signal, is a low power consumption, low bit error rate, low crosstalk and low radiation differential signal technology, this transmission technology can reach more than 155Mbps, The core of LVDS technology is the high-speed differential transmission of data with very low voltage swing, which can realize point-to-point or point-to-multipoint connection.
LVDS cable: We use high quality copper or tinned copper as conductor, wire using twisted-pair method to increase anti-interference ability, will also use very thin coaxial line. In the selection of connectors, connectors from international manufacturers are usually used, and of course, we have also developed specially adapted connectors for special models.
All of our LVDS cables can be customized to meet the needs of different customers.
Packaging & Shipp | |
Packaging | PE bag per pcs Customized packaging is available |
Carton size | 40cm*30cm*25 cm. Customized carton is available |
Shipping by air | 2-7days |
Shipping by vessel | 10-25days depend on the port of destination |
Logistics and transportation | sea transportation/air transportation/land transportation |
Payment method | TT |
Minimum order quantity | 200pcs |
Delivery time | 15~25D |
Supply capacity/month | 50000PCS |
LVDS (Low Voltage Differential Signaling) harnesses offer several advantages, making them a preferred choice for high-speed data transmission in various electronic applications. Here are some of the key advantages:
High Data Rates: LVDS supports high data rates, making it suitable for applications requiring fast and efficient data transmission. It is commonly used in applications like high-resolution displays and cameras.
Low Power Consumption: LVDS is known for its low power consumption. The differential signaling method used in LVDS reduces power dissipation compared to other signaling methods, making it energy-efficient.
Noise Immunity: LVDS uses a differential signaling scheme, where data is transmitted as a voltage difference between two conductors. This helps in reducing the susceptibility to common-mode noise, providing better noise immunity in noisy environments.
Long Cable Lengths: LVDS is capable of supporting long cable lengths without significant signal degradation. This makes it suitable for applications where devices need to be connected over relatively long distances.
Reduced Electromagnetic Interference (EMI): LVDS helps in minimizing electromagnetic interference due to its differential signaling nature. This makes it suitable for applications where EMI is a concern.
Compatibility with Low Voltage Systems: LVDS operates at low voltage levels, which makes it compatible with low voltage systems. This is advantageous in applications where low power supply voltages are used.
Common Industry Standard: LVDS is a common industry standard, ensuring compatibility and interoperability between devices from different manufacturers that adhere to the LVDS specification.
Widespread Adoption: LVDS technology is widely adopted in various industries, including consumer electronics, automotive, medical devices, and more. This widespread usage contributes to the availability of LVDS components and expertise.