Log in Sign up
Back to Discover
💻

Smoke detector

technology Maturity 7-9

A smoke detector is a small tool.

Smoke detector.JPG
Smoke detector.JPG
It looks for smoke. It makes a loud sound. This helps keep you safe. It tells us if there is a fire. Can you find one in your home?

38 words

A smoke detector is a small tool.

Smoke detector.JPG
Smoke detector.JPG
It looks for smoke. It makes a loud sound. This helps keep you safe.

Some tools use light to find smoke.

OpticalSD.jpg
OpticalSD.jpg
The smoke gets in the way of the light. This makes the tool make a sound.

Other tools use a tiny bit of special stuff.

Americium-241.jpg
Americium-241.jpg
This stuff helps the tool feel the smoke. It can tell when a fire is growing.

Most tools in a home use a battery. They can work even if the power goes out. This is very helpful.

These tools help people stay safe from fires. They can hear a fire very fast. It is good to have them.

115 words

A smoke detector is a tool that senses smoke.

Smoke detector.JPG
Smoke detector.JPG
It helps keep people safe from fire. In homes, these tools often use a battery. This lets them work even if the power goes out.
Smoke detector alarm battery beep.webm
Smoke detector alarm battery beep.webm

There are two main ways these tools work. The first way is called photoelectric.

OpticalSD.jpg
OpticalSD.jpg
This type uses a light source and a sensor. When smoke enters the device, it scatters the light. This light hits the sensor and triggers the alarm. These are great at finding smoldering fires.

The second way is called ionization.

Americium-241.jpg
Americium-241.jpg
This type uses a tiny bit of radioactive material. This material makes the air carry a small electric current. If smoke enters, it stops the current from flowing. This change tells the device to make a loud sound. These are good at finding fast, flaming fires.

Many experts suggest using combination alarms. These use both methods to find all types of fires. They can even check for carbon monoxide. Using a working detector can cut the risk of dying in a fire in half.

181 words

A smoke detector is a clever device that senses smoke.

Smoke detector.JPG
Smoke detector.JPG
It acts as a warning to let people know a fire might be starting. Most detectors are small and shaped like a disk. They are often kept in plastic covers. In big buildings, these detectors connect to a central alarm system. In homes, they are called smoke alarms. These alarms can make a loud noise or show a light. Some homes have many units that are linked together. If one unit finds smoke, all of them will sound an alarm. This is very helpful if the house power goes out. Many home units use a 9-volt battery for power.
Smoke detector alarm battery beep.webm
Smoke detector alarm battery beep.webm

There are two main ways these devices work. The first way is called photoelectric sensing.

OpticalSD.jpg
OpticalSD.jpg
This method uses a light source like an LED. It also uses a lens and a sensor called a photodiode. Inside a small chamber, air flows past these parts. When smoke enters, the light hits the smoke particles. This causes the light to scatter or reflect. The sensor catches this scattered light and triggers the alarm.
OpticalSmokeDetector.png
OpticalSmokeDetector.png
This type is very good at finding smoldering fires. The second way is called ionization.
Smoke-engineerguy.ogv
Smoke-engineerguy.ogv
This uses a tiny amount of a material called americium-241. This material makes the air carry a small electric current. If smoke enters the chamber, it disrupts that current. The device senses this change and sounds the alarm.

People have been working on fire alarms for a long time. Francis Robbins Upton patented the first electric alarm in 1890. Later, George Andrew Darby patented a heat detector in 1902. In the 1930s, a Swiss physicist named Walter Jaeger had a lucky discovery. He was trying to make a sensor for poison gas. He noticed that smoke from his cigarette changed the electric current. This helped lead to the modern smoke detector. In 1939, Ernst Meili also helped by making an ionization chamber.

Americium-241.jpg
Americium-241.jpg
He even made a tube to make the signal stronger. These many steps helped make the tools we use today.

Many important things happened as the technology grew. Ionization detectors were first sold in the United States in 1951. In 1965, Duane D. Pearsall and Stanley Bennett Peterson made the first low-cost home version. This unit was called the "SmokeGard 700." It was shaped like a beehive and made of steel. Later, in 1972, Donald Steele and Robert Emmark patented the photoelectric detector.

OpticalSD.jpg
OpticalSD.jpg
Technology changed a lot between 1971 and 1976. New electronics made detectors smaller and cheaper. They also allowed the devices to monitor their own battery life. In 1995, a new type of alarm with a 10-year lithium battery was introduced.

Using these tools can save many lives. The National Fire Protection Association found that working detectors are very important. In homes with working detectors, the risk of dying in a fire is cut in half. Between 2009 and 2013, there were only 0.53 deaths per 100 fires in homes with working alarms. Without them, that number was 1.18 deaths per 100 fires. Experts often suggest using combination alarms. These use both sensing methods to stay safe. They can even detect things like carbon monoxide. This gives people more time to get to safety during different types of fires.

552 words

A smoke detector is a specialized device designed to sense smoke.

Smoke detector.JPG
Smoke detector.JPG
This sensing usually serves as an early indicator of a fire. Most detectors are housed in plastic enclosures. They are often shaped like a disk. These devices are vital for safety in both homes and large buildings. In residential settings, they are commonly called smoke alarms. In large commercial or industrial buildings, they usually connect to a central fire alarm system.
Truealarmdetector.JPG
Truealarmdetector.JPG

There are two primary mechanisms used to detect smoke: photoelectric sensing and ionization. Photoelectric detectors use a light source, such as an LED or an incandescent bulb. They also include a lens and a photoelectric receiver, which is often a photodiode.

OpticalSmokeDetector.png
OpticalSmokeDetector.png
In a chamber-type detector, air flows into a space containing these components. The light source is directed away from the sensor so it normally detects no light. However, when smoke particles enter the chamber, they scatter the light. Some of this light reflects back to the sensor. This change in light intensity triggers the alarm.
OpticalSD.jpg
OpticalSD.jpg

Ionization detectors use a different physical process involving a radioisotope. Most commonly, these devices use americium-241 to ionize the air.

Americium-241.jpg
Americium-241.jpg
The detector contains two ionization chambers. One chamber is open to the air, while the other is a reference chamber that stays sealed. The radioactive source emits alpha particles into both chambers. These particles ionize air molecules, which allows an electric current to flow between electrodes. If smoke enters the open chamber, the ions attach to the smoke particles. This reduces the current in that chamber. An electronic circuit detects the difference between the two chambers and sounds the alarm.
Smoke-engineerguy.ogv
Smoke-engineerguy.ogv

These two technologies have different strengths. Photoelectric alarms are generally more responsive to smoldering fires. Smoldering fires are those that burn slowly without a large flame. In contrast, ionization detectors are more sensitive to the flaming stage of a fire. Because of these differences, fire safety experts often recommend combination alarms. These devices use both ionization and photoelectric methods. Some combination alarms may also include the ability to detect carbon monoxide.

SmokeAlarmPlacement.svg
SmokeAlarmPlacement.svg

The history of fire detection began with early electric alarms. Francis Robbins Upton patented the first automatic electric fire alarm in 1890. In 1902, George Andrew Darby patented a European electrical heat detector. A major breakthrough occurred in the late 1930s with Swiss physicist Walter Jaeger. He was attempting to create a sensor for poison gas. He noticed that smoke from a cigarette caused a drop in the electrical current of his instrument. This accidental discovery paved the way for modern sensors. In 1939, Ernst Meili developed an ionization chamber for detecting gases in mines. He also invented a cold cathode tube to amplify the detection signal.

Commercial use of ionization detectors began in the United States in 1951. However, they were originally very large and expensive. In 1965, Duane D. Pearsall and Stanley Bennett Peterson developed the first low-cost domestic detector. This unit was called the "SmokeGard 700." It was made of steel and shaped like a beehive. By 1970, the first single-station ionization detector was invented. It was powered by a single 9-volt battery. Between 1971 and 1976, technology improved significantly. Engineers replaced cold-cathode tubes with solid-state electronics. This change made detectors smaller, cheaper, and able to monitor battery life.

Americium button hd.jpg
Americium button hd.jpg

The impact of these devices on public safety is measurable. The risk of dying in a residential fire is cut in half when working smoke detectors are present. Data from the US National Fire Protection Association provides specific evidence. Between 2009 and 2013, there were 0.53 deaths per 100 fires in homes with working detectors. In homes without working detectors, the rate was 1.18 deaths per 100 fires. While smoke detectors are essential, they are not suitable for every room. For example, a heat detector is more appropriate for a kitchen. This ensures that cooking does not trigger a false alarm while still providing safety.

657 words
🖼️ Images & Media (11)
File:Smoke detector.JPG
Smoke detector.JPG
File:OpticalSD.jpg
OpticalSD.jpg
File:OpticalSmokeDetector.png
OpticalSmokeDetector.png
Smoke-engineerguy.ogv
File:smokealarm.JPG
smokealarm.JPG
File:Americium-241.jpg
Americium-241.jpg
File:Americium button hd.jpg
Americium button hd.jpg
Smoke detector alarm battery beep.webm
File:SmokeAlarmPlacement.svg
SmokeAlarmPlacement.svg
File:Integrierte-feststellanlage.JPG
Integrierte-feststellanlage.JPG
File:Truealarmdetector.JPG
Truealarmdetector.JPG
Up Next
💻
Fire alarm system
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.