Explore our foundational range of premium cables, custom adapters, and industrial hubs designed for absolute signal integrity.
Uncompromising signal integrity built on multi-layered shielding, high-purity copper, and strict protocol adherence.
In high-end imaging and command-control systems, the physical layer connection is the most critical link. The Mini DisplayPort (Mini DP) to DisplayPort (DP) protocol provides a high-bandwidth pipe capable of handling packetized data transfers. Unlike legacy display interfaces, DisplayPort functions similarly to PCIe, wrapping video and audio data into discrete micro-packets. This architecture guarantees pixel-perfect rendering, low latency, and advanced multi-display configuration capabilities through Multi-Stream Transport (MST).
To eliminate Electromagnetic Interference (EMI) and Radio Frequency Interference (RFI) in crowded industrial environments, our cables incorporate triple-layer shielding: an inner layer of aluminum-mylar foil for individual differential pairs, an overall Al-Mylar shield, and a high-density tinned copper braided mesh. The conductors are extruded from 99.99% Oxygen-Free Copper (OFC) to maintain signal strength across extended distances, minimizing attenuation and jitter.
| Parameter / Specification | DisplayPort 1.2 Protocol | DisplayPort 1.4 Protocol | DisplayPort 2.1 (UHBR) Protocol |
|---|---|---|---|
| Maximum Raw Bandwidth | 21.6 Gbps | 32.4 Gbps | Up to 80 Gbps | Maximum Resolution & Refresh | 4K @ 60Hz / 2K @ 144Hz | 8K @ 60Hz / 4K @ 144Hz | 16K @ 60Hz / 8K @ 120Hz |
| Conductor Core Metallurgy | 99.99% OFC (Oxygen-Free Copper) | 99.99% OFC / Silver-Plated Copper | High-Purity Single Crystal Copper |
| Shielding Configuration | Al-Mylar Wrap + Braid (85% coverage) | Triple Shielding + Tinned Copper (90%) | Enhanced Quad-Shielding + Foil Isolator |
| Supported Color Spaces | RGB, YCbCr 4:4:4, YCbCr 4:2:2 | BT.2020, HDR10, Deep Color | BT.2020, HDR10+, Dynamic HDR |
| Connector Retention | Passive Friction / Mechanical Latches | Mechanical Latches / Reinforced Casts | Heavy-Duty Lockable Shell Assembly |
Expert Engineering Insight: When routing Mini DP to standard DP in industrial rackmount setups, ensuring VESA compliance on Pin 20 (Power Pin Isolation) is crucial. Non-isolated Pin 20 cables can backfeed current to the graphics processor, leading to system failure, display flickering, or permanent hardware damage. Our design completely isolates Pin 20 to protect your connected components.
Tailored interconnect solutions built for critical infrastructure, medical computing, and continuous production environments.
Lossless data routing is essential for PACS (Picture Archiving and Communication Systems) and high-resolution diagnostic displays. Our Mini DP to DP cables support high grayscale depth and high refresh rates, ensuring radiologists can view medical images with complete detail and accuracy.
Modern assembly lines rely on cameras capturing high-speed image data. Taitron's robust shielding prevents signal dropouts from electromagnetic noise generated by nearby high-voltage motors, keeping machine vision cameras connected without interruptions.
For live production, command centers, and video walls, our cables support Multi-Stream Transport (MST) daisy-chaining. This allows multiple monitors to run off a single Mini DP output, simplifying installation and reducing cable clutter.
38 years of professional audio-video engineering and automated high-frequency production.
In 1984, Dongguan Taitron Electronics Limited., formerly known as Tonetron, was founded in Keelung, Taiwan. In 1993, it moved to the self-built independent production industrial park in Dalingshan Town, Dongguan City, China, and changed its name to Dongguan Taitron Electronics Limited.
38 years to pass professional video and audio peripheral eguipment connection line manufacturing as the foungation, Gradually develop to the high-end audio and video cable data cable such as HDMI2.1 cable, DP2.0 cable, USB4 data cable, USB-C 3.1Gen2 data cable, high-power USB charging cable, 8K HD conversion cable, multi-functional Type-C expansion dock and other products research and development and manufacturing.
Today, Taitron operates modern cleanroom workshops equipped with advanced extrusion lines, automatic soldering machines, and high-frequency testing equipment (including network analyzers and Time Domain Reflectometers). Our facility combines Taiwan-engineered quality control with high-capacity manufacturing in mainland China, delivering reliable cables to industrial distributors, OEMs, and system integrators worldwide.
Years Engineering Experience
High-Frequency Tested
Daily Production Capacity
Compliant Standards
Meeting international environmental, electrical, and commercial regulatory standards.
Our complete manufacturing process is compliant with EU RoHS and REACH regulations. We use lead-free solder and halogen-free compounds, ensuring our cables meet the strict environmental requirements of municipal bidding and large enterprise procurement.
We hold certifications for CE, FCC, and UL. Our signal cables undergo comprehensive testing for flammability (VW-1 rating) and electrostatic discharge (ESD) protection, guaranteeing safe operation in critical systems.
With established export channels from Shenzhen, Guangzhou, and Hong Kong, we manage shipping logistics worldwide. We offer flexible incoterms (FOB, CIF, DDP) and prepare all customs documentation to keep your deliveries on time.
Developing high-speed, multi-protocol systems to meet the demands of tomorrow's display architectures.
As video resolutions shift towards 8K and 16K, display transport technologies must adapt. Standard copper cables face physical limits at ultra-high frequencies. To address this, Taitron's R&D department is focused on two main areas:
First, we are scaling production of Ultra High Bandwidth Rate (UHBR) DisplayPort 2.1 cables. These cables feature refined internal shielding and termination structures that support up to 80 Gbps of bandwidth, enabling uncompressed 8K video at 120Hz with HDR. Second, we are expanding our range of active hybrid optical-copper cables. By using optical fibers for the high-speed data lanes and copper for auxiliary signals, we can deliver lossless DisplayPort connections over distances up to 100 meters without external power supply units.
Answers to common technical questions about DisplayPort cabling and manufacturing.
For DisplayPort 1.4 (HBR3) signals, passive copper cables are best kept under 3 meters (9.8 ft) to avoid signal attenuation and maintain the full 32.4 Gbps bandwidth. For longer distances, active copper cables or fiber optic hybrid designs are required.
We test every batch of high-speed cables using Time Domain Reflectometers (TDR) and Network Analyzers. This allows us to measure characteristic impedance (which should be 100 ohms ± 5 ohms), insertion loss, return loss, and intra-pair skew, ensuring each cable meets strict VESA performance limits.
Yes, our passive Mini DisplayPort to DisplayPort cables are fully bi-directional. They can connect a Mini DP source to a DP display, or a DP source to a Mini DP display (such as an Apple Cinema Display), provided the host graphics hardware supports the configuration.
We use high-purity oxygen-free copper (OFC) wire with tinned coatings to prevent corrosion. For the outer jacket, we use flexible PVC or TPE compounds, combined with reinforced strain reliefs, protecting the cable against repeated bending and mechanical stress in robotic arms or mounting brackets.
High-speed adapters, certified digital audio links, and high-performance hubs to complete your infrastructure build.