Audiometer

Machine used to evaluate hearing sensitivity


title: "Audiometer" type: doc version: 1 created: 2026-02-28 author: "Wikipedia contributors" status: active scope: public tags: ["hearing", "audiology"] description: "Machine used to evaluate hearing sensitivity" topic_path: "general/hearing" source: "https://en.wikipedia.org/wiki/Audiometer" license: "CC BY-SA 4.0" wikipedia_page_id: 0 wikipedia_revision_id: 0

::summary Machine used to evaluate hearing sensitivity ::

::data[format=table title="Infobox diagnostic"]

FieldValue
nameAudiometer
imageFile:Vintage Eckstein Bros., Inc. Screening Audiometer, Tetra-Tone Model EB-46, Circa 1975 (16733399820).jpg
captionPortable audiometer Tetra-Tone Model EB-46
purposeevaluate hearing acuity
DiseasesDB
ICD10
MedlinePlus
eMedicine
OPS301
LOINC
::

| name = Audiometer | image = File:Vintage Eckstein Bros., Inc. Screening Audiometer, Tetra-Tone Model EB-46, Circa 1975 (16733399820).jpg | | alt = | caption = Portable audiometer Tetra-Tone Model EB-46 | pronounce = | purpose =evaluate hearing acuity | test of = | based on = | synonyms = | reference_range = | calculator = | DiseasesDB = | ICD10 = | ICD9 = | ICDO = | MedlinePlus = | eMedicine = | MeshID = | OPS301 = | LOINC = ::figure[src="https://upload.wikimedia.org/wikipedia/commons/5/59/Digital_Audiometer.png" caption="New age portable digital audiometer"] ::

An audiometer is a machine used for evaluating hearing acuity. They usually consist of an embedded hardware unit connected to a pair of headphones and a test subject feedback button, sometimes controlled by a standard PC. Such systems can also be used with bone vibrators to test conductive hearing mechanisms.

Audiometers are standard equipment at ear, nose and throat (ENT) clinics and in audiology centers. An alternative to hardware audiometers are software audiometers, which are available in many different configurations. Screening PC-based audiometers use a standard computer. Clinical PC-based audiometers are generally more expensive than software audiometers, but are much more accurate and efficient. They are most commonly used in hospitals, audiology centers and research communities. These audiometers are also used to conduct industrial audiometric testing. Some audiometers even provide a software developer's kit that provides researchers with the capability to create their own diagnostic tests.

Functionality

::figure[src="https://upload.wikimedia.org/wikipedia/commons/c/c4/Vintage_Maico_Model_F-1_Portable_Audiometer_Hearing_Tester,_Vacuum_Tube_Unit,Circa_1960s(16440624956).jpg" caption="Portable audiometer ''Maico'', circa 1960s"] ::

An audiometer typically transmits recorded sounds such as pure tones or speech to the headphones of the test subject at varying frequencies and intensities, and records the subject's responses to produce an audiogram of threshold sensitivity, or speech understanding profile.

Types

Medical grade audiometers are usually an embedded hardware unit controlled from a PC. Software audiometers which run on a PC are also commercially available, but their accuracy and utility for evaluating hearing loss is questionable due to lack of a calibration standard. ::figure[src="https://upload.wikimedia.org/wikipedia/commons/5/58/Audiomini_.png" caption="Wireless audiometer which works on mobile devices via wireless connectivity i.e. Bluetooth and Wifi" alt="Labat Wireless audiometer which works on mobile devices via wireless connectivity i.e. Bluetooth and Wifi, 2021"] ::

The most common type of audiometer generates pure tones, or transmits parts of speech. Another kind of audiometer is the Bekesy audiometer, in which the subject follows a tone of increasing and decreasing amplitude as the tone is swept through the frequency range by depressing a button when the tone is heard and releasing it when it cannot be heard, crossing back and forth over the threshold of hearing. Bekesy audiometry typically yields lower thresholds and standard deviations than pure tone audiometry.

Standards

Audiometer requirements and the test procedure are specified in IEC 60645, ISO 8253, and ANSI isoS3.6 standards.

References

  • IEC 60645-1. (November 19, 2001) "Audiometers. Pure-tone audiometers".
  • BS EN ISO 389 (1997) "Acoustics. Standard reference zero for the calibration of pure tone air conduction audiometers"
  • BS EN 60318-6 (2008) "Electroacoustics. Simulators of human head and ear. Mechanical coupler for the measurement of bone vibrators"

::callout[type=info title="Wikipedia Source"] This article was imported from Wikipedia and is available under the Creative Commons Attribution-ShareAlike 4.0 License. Content has been adapted to SurfDoc format. Original contributors can be found on the article history page. ::

hearingaudiology