ANSI CTA 2051-2017 Personal Sound Amplification Performance Criteria.pdf
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1、 ANSI/CTA Standard Personal Sound Amplification Performance Criteria ANSI/CTA-2051 January 2017 NOTICE Consumer Technology Association (CTA) Standards, Bulletins and other technical publications are designed to serve the public interest through eliminating misunderstandings between manufacturers and
2、 purchasers, facilitating interchangeability and improvement of products, and assisting the purchaser in selecting and obtaining with minimum delay the proper product for his particular need. Existence of such Standards, Bulletins and other technical publications shall not in any respect preclude an
3、y member or nonmember of the Consumer Technology Association from manufacturing or selling products not conforming to such Standards, Bulletins or other technical publications, nor shall the existence of such Standards, Bulletins and other technical publications preclude their voluntary use by those
4、 other than Consumer Technology Association members, whether the standard is to be used either domestically or internationally. Standards, Bulletins and other technical publications are adopted by the Consumer Technology Association in accordance with the American National Standards Institute (ANSI)
5、 patent policy. By such action, the Consumer Technology Association does not assume any liability to any patent owner, nor does it assume any obligation whatever to parties adopting the Standard, Bulletin or other technical publication. This document does not purport to address all safety problems a
6、ssociated with its use or all applicable regulatory requirements. It is the responsibility of the user of this document to establish appropriate safety and health practices and to determine the applicability of regulatory limitations before its use. This document is copyrighted by the Consumer Techn
7、ology Association (CTA) and may not be reproduced, in whole or part, without written permission. Federal copyright law prohibits unauthorized reproduction of this document by any means. Organizations may obtain permission to reproduce a limited number of copies by entering into a license agreement.
8、Requests to reproduce text, data, charts, figures or other material should be made to the Consumer Technology Association (CTA). (Formulated under the cognizance of the CTA R6 Portable, Handheld and In-Vehicle Electronics Committee.) Published by CONSUMER TECHNOLOGY ASSOCIATION 2017 Technology in pa
9、rticular there is no change in gain with change in input level. Limiting Signal processing to keep the output level from exceeding a threshold (i.e., limit), typically achieved by quickly reducing the gain applied to high-level input signals. Manikin (head and torso simulator) A head and torso simul
10、ator extending downward from the top of the head to the waist and designed to simulate the sound pick-up characteristics and acoustic diffraction produced by a median adult human head and torso. Multiband Equalization Frequency shaping achieved by separate adjustment of the gain in more than one ban
11、d. The resulting frequency response may be independent of level (simple equalization) or may change with level (level dependent frequency response). The latter is typically used for those desiring increased gain for soft high frequency sounds but do not wish loud low frequency sounds to be amplified
12、. Multiband Signal Processing The frequency bandwidth of the device is divided into more than one band, enabling individual control of the processing in each band. Example use cases are compression, equalization, noise rejection, and feedback rejection. 4 CTA-2051 Occluded Ear Simulator A device use
13、d for testing which approximates the acoustic transfer impedance of the inner part of the human ear canal, from the tip acoustic output of an ear mold insert device to the eardrum. In the case of hearing devices that do not insert into the ear canal, e.g. earphones that are designed to lay in the co
14、ncha or be laced over the ear, a Head and Torso Simulator, as defined in ANSI S3.36 is appropriate for testing. Real Ear Coupler Difference Denotes the difference between (a) the response of an in-situ device measured at the eardrum and (b) the same device measured in a coupler. Average values of th
15、ese differences are shown in Table 4.1C. Single Band Signal Processing Signal processing (e.g., compression) applied by treating the entire frequency bandwidth of the device as a single channel. THD+N Denotes Total Harmonic Distortion plus Noise. It represents (a) the sum of the powers of all harmon
16、ic distortion components plus noise divided by (b) the power of the fundamental (test) signal frequency. The square root of this ratio is expressed in percent. Wide Dynamic Range Compression Non-linear processing that is differentially applied to sounds as a function of their level. It is typically
17、done so as to amplify soft sounds more so than loud sounds, thereby reducing the dynamic range. NOTE: Wide Dynamic Range Compression and Limiting are similar in process but different in degree and perceived effect. 3.1 Symbols and Abbreviations AGC Automatic Gain Control CORFIG Coupler Response for
18、Flat Insertion Gain dB Decibel dBA A-weighted Decibels OSPL Output Sound Pressure Level RECD Real Ear Coupler Difference SNR Signal to Noise Ratio SPL Sound Pressure Level THD Total Harmonic Distortion 4 Criteria for Standardization Three categories of standardization level are defined and described
19、 below. These categories identify three levels of technical performance specification differentiated by a decrease in the degree of standardized specification required for fulfilment of the feature requirements. The level of performance specification recommended by this document for each feature is
20、independently identified for each feature within the associated sub-section. Measurement methods for evaluation of all relevant metrics characterized in the feature specific sub-sections are identified and described when appropriate. Category 1: The description of a hearing device performance parame
21、ter which must include the value measured per the specified testing method. Category 1 requirements include a threshold or acceptable 5 CTA-2051 range for the parameter measured. Category 2: The description of a hearing device performance parameter which must include the value measured per the speci
22、fied testing method. Category 2 requirements do not include a threshold or acceptable range for the parameter measured. Category 3: Presence of the technological capability or feature shall be reported in the device description. The specific value/metric for measurement of this value is not within t
23、he scope of the standard. Measurements in this standard specify the use of tones (sine waves) as a stimulus signal. It is recognized that many devices will include non-linear audio processing (DSP) (for example, noise suppression, band equalization) that may cause unexpected test results when tones
24、are used as test stimulus signals. Therefore, when performing measurements using tones as specified in Section 4.1, 4.2, 4.3, 4.4, 4.5, 4.6, and 4.7, any non-linear signal processing should be disabled. Alternatively, if using tones is not appropriate for testing a specific device, for example, due
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