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Thunderbolt (interface)

technology Maturity 7-9

A Thunderbolt cord helps your computer.

Thunderbolt-Connector.jpg
Thunderbolt-Connector.jpg
It connects things to your computer. It can send video to a screen. It can also send food for power.
Thunderbolt 3 interface USB-C ports.jpg
Thunderbolt 3 interface USB-C ports.jpg
This helps your computer work well. Do you have a cord like this?

45 words

Thunderbolt is a special cord for computers.

Thunderbolt-Connector.jpg
Thunderbolt-Connector.jpg
It helps your computer talk to other tools. It can send video to a screen. It can also send power to a tool.
Thunderbolt 3 interface USB-C ports.jpg
Thunderbolt 3 interface USB-C ports.jpg
You can plug many things into one port. You can link up to six tools together. This is called a chain.
Thunderbolt Technology model 1 E.png
Thunderbolt Technology model 1 E.png
It works by sending many signals at once. This makes it very fast. It is a smart way to connect your gear.

84 words

Thunderbolt is a fast way to connect tools to a computer.

Thunderbolt-Connector.jpg
Thunderbolt-Connector.jpg
Intel and Apple worked together to make it. It was first sold in February 2011. At first, it was called Light Peak.
Thunderbolt.svg
Thunderbolt.svg

Thunderbolt is very smart. It combines two different signals into one cable. It uses PCIe for data and DisplayPort for video. It also sends power through the same cord. This helps you connect many things at once. You can link up to six tools in a row. This set of steps is called a daisy chain.

Thunderbolt Technology model 1 E.png
Thunderbolt Technology model 1 E.png

Early versions used a small plug. Later versions use the USB-C plug.

Thunderbolt 3 interface USB-C ports.jpg
Thunderbolt 3 interface USB-C ports.jpg
Thunderbolt 1 and 2 were fast. Thunderbolt 3 became much faster. It can reach a speed of 40 Gbit/s. This is very quick for moving big files. It can even run two 4K screens at once. This makes it a great tool for many jobs.

158 words

Thunderbolt is a special hardware interface used to connect tools to a computer.

Thunderbolt.svg
Thunderbolt.svg
It was created by Intel and Apple working together. This technology helps computers talk to external devices like monitors or storage drives. It is very useful because it handles many tasks at once.
Thunderbolt-Connector.jpg
Thunderbolt-Connector.jpg
One big job it does is sending power through the cable too. This means you can power a device while you send it data. It makes connecting your computer to your workspace much simpler.

How does this connection work so well?

Thunderbolt Technology model 1 E.png
Thunderbolt Technology model 1 E.png
It works by combining two different signals into one single cable. It takes PCIe, which is used for data, and DisplayPort, which is used for video. A controller inside the computer takes these signals and puts them together. This is called multiplexing. On the other end, the controller takes them apart again. This is called de-multiplexing. You can also connect up to six devices in a row. This setup is known as a daisy chain.

Scientists and engineers spent a long time developing this idea.

Thunderbolt-interface-MacBook.png
Thunderbolt-interface-MacBook.png
It was first called Light Peak. At first, Intel wanted to use light and glass fibers to move data. This was part of a project at the Silicon Photonics lab. However, they later found that copper wires worked just as well. Using copper was much cheaper for everyone. The first products using this technology were sold on 24 February 2011. They were part of the new MacBook Pro computers.

There are many different versions of Thunderbolt with different speeds.

Thunderbolt 3 interface USB-C ports.jpg
Thunderbolt 3 interface USB-C ports.jpg
Thunderbolt 1 and 2 used a connector called Mini DisplayPort. Thunderbolt 1 had a speed of 10 Gbit/s. In 2013, Thunderbolt 2 arrived with a speed of 20 Gbit/s. This newer version could even run a 4K video monitor. Later, Thunderbolt 3, 4, and 5 switched to the USB-C connector. Thunderbolt 3 is very fast and can reach 40 Gbit/s. This speed lets it run two 4K displays at the same time.

You can think of Thunderbolt like a very wide highway.

Lenovo Thunderbolt 3 Dock 40AC block diagram.svg
Lenovo Thunderbolt 3 Dock 40AC block diagram.svg
A normal cable might only have one lane for cars. Thunderbolt adds many lanes so video and data can travel together. This prevents a traffic jam when you use big files. It is similar to how a single power cord can run a whole desk. You can plug a dock into your computer to add many ports. This makes your computer much more powerful for big jobs.

420 words

Thunderbolt is a high-speed hardware interface used to connect external peripherals to a computer.

Thunderbolt.svg
Thunderbolt.svg
It was developed through a collaboration between Intel and Apple. This technology is important because it allows a single cable to carry various types of information. It combines two major standards into one connection: PCI Express (PCIe) and DisplayPort (DP). By merging these, Thunderbolt can handle both high-speed data and high-quality video signals simultaneously. It also provides DC power through the same cable. This allows a single port to support up to six different devices through specific connection methods.
Thunderbolt Technology model 1 E.png
Thunderbolt Technology model 1 E.png

The mechanism of Thunderbolt relies on specialized hardware called Thunderbolt controllers. Both the computer and the connected device must have these controllers to work. The process begins with a technique called multiplexing. The controller takes individual data lanes from the PCIe and DisplayPort devices and combines them. These combined signals are then sent through two duplex Thunderbolt lanes. A duplex lane is a path that allows data to travel in two directions at once. On the receiving end, the controller performs de-multiplexing. This step separates the combined signals back into their original PCIe and DisplayPort forms. This allows the connected hardware to use the data exactly as it was intended.

Users can connect devices using different topologies, such as hubs or daisy chains. In a daisy chain, devices are connected one after another in a sequence. A single Thunderbolt port can support a chain of up to six devices. There are specific rules for how different types of hardware fit into this chain. For example, a device using the DisplayPort standard must be at the very end of the chain. However, native Thunderbolt devices can be placed anywhere along the line. If a device uses fewer than four PCIe lanes, it still qualifies as a Thunderbolt device. However, it will not be able to use the full speed and capabilities of the interface.

The history of Thunderbolt began with a concept called Light Peak.

Thunderbolt-Connector.jpg
Thunderbolt-Connector.jpg
Intel first introduced Light Peak at the 2009 Intel Developer Forum. At that time, the technology was intended to use an optical physical layer. This meant it would use light and flexible optical fiber cabling developed at Intel's Silicon Photonics lab. Engineers even demonstrated a prototype using a 30-meter optical cable to run video and storage. However, developers eventually discovered that conventional copper wiring could also reach high speeds. Using copper was a more cost-effective solution for the industry. After 2011, the technology moved away from the Light Peak name and became known as Thunderbolt. Apple registered the name as a trademark but later transferred it to Intel.

Thunderbolt has evolved through several distinct versions with increasing performance.

Thunderbolt-interface-MacBook.png
Thunderbolt-interface-MacBook.png
Thunderbolt 1 was commercially released on 24 February 2011. It used the Mini DisplayPort (MDP) connector and offered a speed of 10 Gbit/s. In June 2013, Intel announced Thunderbolt 2, which was based on the "Falcon Ridge" controller. This version doubled the speed to 20 Gbit/s by joining the two 10 Gbit/s channels together. This process is called channel aggregation. It allowed the interface to be more flexible with its bandwidth. Thunderbolt 2 was backward compatible, meaning it could still work with Thunderbolt 1 cables and connectors.

Later generations moved to a different physical design.

Thunderbolt 3 interface USB-C ports.jpg
Thunderbolt 3 interface USB-C ports.jpg
Thunderbolt 3, 4, and 5 all use the USB-C connector. This change also allows them to support standard USB devices. Thunderbolt 3 significantly increased the bandwidth to 40 Gbit/s. This massive speed allows the interface to drive multiple high-resolution displays. For example, it can power two external 4K displays at 60 Hz. It can also support a single 5K display at 60 Hz on Apple systems. This version uses four lanes of PCIe 3.0 and four lanes of DisplayPort 1.4. While the total rate is capped at 40 Gbit/s, video data is given priority in the connection.

Thunderbolt is deeply connected to other major computing standards. Because it incorporates PCIe, it can be implemented directly on graphics cards. This gives the cards access to both high-speed data and DisplayPort connectivity. It can also be built directly into a computer's motherboard. This is often seen in devices with onboard video, like the MacBook Air. The interface also maintains a relationship with the DisplayPort standard. It is interoperable with DP-1.1a compatible devices. When connected to such a device, the Thunderbolt port provides a native DisplayPort signal. This flexibility makes Thunderbolt a central system for modern high-performance computing environments.

Lenovo Thunderbolt 3 Dock 40AC block diagram.svg
Lenovo Thunderbolt 3 Dock 40AC block diagram.svg

756 words
🖼️ Images & Media (11)
File:Thunderbolt 5 wordmark.png
Thunderbolt 5 wordmark.png
File:Thunderbolt Symbol.svg
Thunderbolt Symbol.svg
File:Thunderbolt.svg
Thunderbolt.svg
File:Thunderbolt-Connector.jpg
Thunderbolt-Connector.jpg
File:Thunderbolt Technology model 1 E.png
Thunderbolt Technology model 1 E.png
File:Lenovo Thunderbolt 3 Dock 40AC block diagram.svg
Lenovo Thunderbolt 3 Dock 40AC block diagram.svg
File:Thunderbolt-interface-MacBook.png
Thunderbolt-interface-MacBook.png
File:Thunderbolt 3 interface USB-C ports.jpg
Thunderbolt 3 interface USB-C ports.jpg
File:USB Type-C Plug 03.jpg
USB Type-C Plug 03.jpg
File:Promise-Tech-Pegasus2-R6-DAS.jpg
Promise-Tech-Pegasus2-R6-DAS.jpg
File:Thunderbolt-Ethernet-Adapter by Apple-7286.jpg
Thunderbolt-Ethernet-Adapter by Apple-7286.jpg
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