A printer makes pictures. 

A printer makes pictures. 

One way to work is with heat. A tiny heater makes a bubble. This bubble pushes ink out. 
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!
An inkjet printer makes images by spraying tiny drops of ink. 

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. 
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. 

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. 

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

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. 
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. 
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. 
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. 
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. 
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. 
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.
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