Log in Sign up
Back to Discover
💻

Inkjet printing

technology Maturity 9-11

A printer makes pictures.

Canon PIXMA TS207 Printer picture.jpg
Canon PIXMA TS207 Printer picture.jpg
It sprays tiny drops of ink. The ink lands on paper. It can make colorful art. It helps us print things. Do you like to draw?
Ink-jet cartridges.jpg
Ink-jet cartridges.jpg

37 words

A printer makes pictures.

Canon PIXMA TS207 Printer picture.jpg
Canon PIXMA TS207 Printer picture.jpg
It sprays tiny drops of ink. The ink lands on paper.
Ink-jet cartridges.jpg
Ink-jet cartridges.jpg
It can even print on wood or metal.

One way to work is with heat. A tiny heater makes a bubble. This bubble pushes ink out.

Micro Piezo Comparison.gif
Micro Piezo Comparison.gif
This is how some home printers work.

Another way uses a special part. This part changes shape. It pushes the ink out of a tiny hole.

Printers can work very fast. Some print many drops every second. They can print dates on food boxes.

It is neat to see how they work!

103 words

An inkjet printer makes images by spraying tiny drops of ink.

Canon PIXMA TS207 Printer picture.jpg
Canon PIXMA TS207 Printer picture.jpg
These drops land on paper, plastic, wood, or metal.
Ink-jet cartridges.jpg
Ink-jet cartridges.jpg
There are two main ways these printers work.

One way is called continuous inkjet. This method uses a pump to push ink through a tiny hole. This creates a steady stream of drops.

INKJET-PRINTER-INDUSTRI.gif
INKJET-PRINTER-INDUSTRI.gif
A special field of electricity can pull certain drops out of the stream. These drops are then moved to the right spot to print.

Another way is called drop-on-demand. This method only sprays a drop when it is needed. Some printers use heat to do this. A tiny heater makes a bubble in the ink. The bubble grows and pushes a drop out of the nozzle.

Other printers use a part called a piezoelectric crystal. When electricity hits this part, it changes shape. This movement pushes the ink out.

Micro Piezo Comparison.gif
Micro Piezo Comparison.gif
This method can use many kinds of ink. It can even be used to print living cells for science!
EPSON Piezoelectric InkJet Print Nozzle.jpg
EPSON Piezoelectric InkJet Print Nozzle.jpg

177 words

An inkjet printer is a smart tool for making images. It works by spraying very tiny drops of ink. These drops land on many things like paper, plastic, wood, or metal.

Canon PIXMA TS207 Printer picture.jpg
Canon PIXMA TS207 Printer picture.jpg
Some printers are small and cheap for homes. Others are large and expensive for professionals. In 2008, they were the most common type of printer. By 2019, laser printers actually outsold them.
Ink-jet cartridges.jpg
Ink-jet cartridges.jpg

There are two main ways these machines work. One way is called continuous inkjet, or CIJ. In CIJ, a pump pushes ink through a tiny nozzle. This creates a steady stream of droplets.

INKJET-PRINTER-INDUSTRI.gif
INKJET-PRINTER-INDUSTRI.gif
A special electric field can pull specific drops out of the stream. These drops are moved to the right spot to print. Most of the ink is actually recycled and used again. This method is very fast and good for marking packages with dates.

The second way is called drop-on-demand, or DOD. This method only sprays a drop when it is needed.

Micro Piezo Comparison.gif
Micro Piezo Comparison.gif
Some printers use heat to make the drops. This is called thermal inkjet printing. A tiny heater makes a bubble in the ink. The bubble grows and pushes a drop out of the nozzle. This is how many Canon printers work. This method is often cheaper to build.

Other printers use a different part for drop-on-demand. They use a piezoelectric crystal, which is a special material. When electricity hits this crystal, it changes shape.

EPSON Piezoelectric InkJet Print Nozzle.jpg
EPSON Piezoelectric InkJet Print Nozzle.jpg
This movement creates pressure that pushes the ink out. This is called piezoelectric DOD. It can use many kinds of ink. It can even use things like solder paste or living cells. This makes it very useful for science and building tiny parts.

People have been working on this for a long time. The idea started in the 20th century. In the 1950s, engineers at Canon and HP worked on it. Ichiro Endo at Canon suggested a "bubble jet" idea. Jon Vaught at HP was working on something similar. In 1982, Robert Howard found a way to use crystals to spit ink.

JetFluid.jpg
JetFluid.jpg
He started a company called Howtek. His work helped lead to printers that use solid ink. This technology has changed how we make everything from art to medical tools.

380 words

Inkjet printing is a digital technology used to recreate images. It works by propelling tiny droplets of ink onto various substrates. These substrates can include paper, plastic, wood, or even metal.

Canon PIXMA TS207 Printer picture.jpg
Canon PIXMA TS207 Printer picture.jpg
While inkjet printers were the most common type of printer in 2008, their market share has changed. By 2019, laser printers outsold them by nearly a 2:1 ratio. Specifically, laser printers made up 9.6% of all computer peripherals, while inkjet printers made up 5.1%.
Ink-jet cartridges.jpg
Ink-jet cartridges.jpg

There are two primary technologies used in contemporary inkjet printing. The first is continuous inkjet, also known as CIJ. In CIJ, a high-pressure pump directs liquid ink through a microscopic nozzle. This nozzle usually has a diameter of about 0.003 inches. The stream of ink breaks into droplets due to a process called Plateau-Rayleigh instability. A piezoelectric crystal may vibrate within the gunbody to create an acoustic wave. This wave causes the liquid to break into regular intervals of droplets.

INKJET-PRINTER-INDUSTRI.gif
INKJET-PRINTER-INDUSTRI.gif

In the CIJ process, droplets are managed by electrical or magnetic fields. As the droplets form, they are subjected to an electrostatic field. This field varies depending on how much deflection is needed for the print. Charged droplets can be separated by uncharged "guard droplets" to prevent them from pushing each other away. The droplets then pass through another field to be directed toward the substrate. Many droplets are not used for printing and are instead sent to a collection gutter for reuse. This method is very fast, with droplet velocities reaching approximately 20 meters per second.

INKJET-PRINTER-INDUSTRI.gif
INKJET-PRINTER-INDUSTRI.gif

The second major technology is drop-on-demand, or DOD. Unlike the continuous stream of CIJ, DOD expels fluid from the nozzle one drop at a time. This can be achieved through mechanical means or electrical methods. DOD is a very popular method for consumer and industrial use. It can use a single nozzle or thousands of nozzles working together.

Micro Piezo Comparison.gif
Micro Piezo Comparison.gif
Software can even direct the printheads to apply between zero and eight droplets per dot. This ensures ink is only applied exactly where it is needed.

Thermal DOD is a common type of drop-on-demand printing. Many consumer printers from brands like Canon, HP, and Lexmark use this thermal process. In a thermal printhead, tiny chambers contain heating elements created by photolithography. To eject a drop, a pulse of current passes through the heater. This causes the ink to vaporize rapidly, forming a bubble. This bubble creates a large pressure increase that propels the droplet out.

Canon S520 ink jet printer - opened.jpg
Canon S520 ink jet printer - opened.jpg
This is why Canon uses the trade name "Bubble Jet." These printers often use water-based inks containing pigments or dyes.

Another version of DOD is piezoelectric printing. This method uses a piezoelectric crystal, which is an electrically polarized ceramic device. When a voltage is applied, the crystal changes shape. This shape change generates a pressure pulse in the ink chamber. This pulse pushes the droplet out of the nozzle.

EPSON Piezoelectric InkJet Print Nozzle.jpg
EPSON Piezoelectric InkJet Print Nozzle.jpg
Companies like Epson and Brother use this method. Piezoelectric printing is versatile because it does not require the ink to have a volatile component. It can also handle a wider variety of materials, such as solder paste or even living cells for tissue engineering.

The history of inkjet technology spans many decades of discovery. The concept originated in the 20th century, with extensive development in the early 1950s. Ichiro Endo at Canon suggested the "bubble jet" idea. Around the same time, Jon Vaught at HP was developing a similar concept. In 1982, Robert Howard developed a system using piezos to eject ink. He formed the company Howtek, Inc., which led to the Pixelmaster color printer.

JetFluid.jpg
JetFluid.jpg
This printer used "Thermojet" technology and solid ink. Earlier, in 1972, Steven Zoltan invented a tubular single nozzle acoustical wave drop generator. These various innovations eventually allowed printers to reproduce complex digital images by the late 1970s.

Today, inkjet technology is used in many different fields. Beyond printing photos, it is used in the emerging material deposition market. This includes printing electronic components or creating biosensors. High-quality fine art reproductions are often sold under trade names like giclée or Digigraph. These names help distinguish high-quality inkjet prints from everyday office printing. The technology continues to expand from simple paper printing to complex scientific applications.

718 words
🖼️ Images & Media (12)
File:Canon PIXMA TS207 Printer picture.jpg
Canon PIXMA TS207 Printer picture.jpg
File:INKJET-PRINTER-INDUSTRI.gif
INKJET-PRINTER-INDUSTRI.gif
File:Micro Piezo Comparison.gif
Micro Piezo Comparison.gif
File:Canon S520 ink jet printer - opened.jpg
Canon S520 ink jet printer - opened.jpg
File:EPSON Piezoelectric InkJet Print Nozzle.jpg
EPSON Piezoelectric InkJet Print Nozzle.jpg
File:JetFluid.jpg
JetFluid.jpg
File:Druckkopf.jpg
Druckkopf.jpg
Epson Stylus S22 - covering the printhead...
File:Epson_Ink_maintainance_Box_.jpg
Epson_Ink_maintainance_Box_.jpg
File:Labyrinth Air Channels on Epson Ink Tank.JPG
Labyrinth Air Channels on Epson Ink Tank.JPG
File:Ink-jet cartridges.jpg
Ink-jet cartridges.jpg
File:Inkjet Cartridge Microchips.jpg
Inkjet Cartridge Microchips.jpg
Up Next
💻
Laser printing
Technology
More to explore

🔬 Go deeper

More advanced topics to explore

🪜 Step back

Simpler topics to build understanding

What is Nepedia?

A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.