EN 61846-1998 en Ultrasonics - Pressure Pulse Lithotripters - Characteristics of Fields《超声波 压力脉冲碎石器 电磁场特性 IEC 61846 1998》.pdf
《EN 61846-1998 en Ultrasonics - Pressure Pulse Lithotripters - Characteristics of Fields《超声波 压力脉冲碎石器 电磁场特性 IEC 61846 1998》.pdf》由会员分享,可在线阅读,更多相关《EN 61846-1998 en Ultrasonics - Pressure Pulse Lithotripters - Characteristics of Fields《超声波 压力脉冲碎石器 电磁场特性 IEC 61846 1998》.pdf(30页珍藏版)》请在麦多课文档分享上搜索。
1、STD-BSI BS EN bL84b-ENGL 1991 Rs LL24bb7 074b478 547 M BRITISH STANDARD Ultrasonics - Pressure pulse lithotripters - Characteristics of fields The European Standard EN 618461998 has the status of a British Standard ICs 11.040.60 BS EN 61846:1999 IEC 61846:1998 NO COPYING WITHOUT BSI PERMISSION EXCEP
2、T AS PERMITTED BY COPYRIGHT LAW STD-BSI BS EN bL84b-ENGL direction of the Elecrotechnical Sector Committee, was published under the authority of the Standards Committee and comes into effect on 15 January 1999 Amd. No. O BSI 01-1999 BS EN 61846:1999 Date Text affected National foreword This British
3、Standard is the English language version of EN 61846:1998. It is identical with IEC 618461998. The UK participation in its preparation was entrusted to Technical Committee EPU87, Ultrasonics, which has the responsibility to: - aid enquirers to understand the text; - present to the responsible intern
4、ationalhropean committee any enquiries on the interpretation, or proposals for change, and keep the UK interests informed; - monitor related international and European developments and promulgate them in the UK. A list of organizations represented on this committee can be obtained on request to its
5、secI - lithotripsy equipment producing focused mechanical energy. This International Standard does not apply to percutaneous and laser lithotripsy equipment. This International Standard specifies - measurable parameters which could be used in the declaration of the acoustic output of extracorporeal
6、lithotripsy equipment, - methods of measurement and characterization of the pressure field generated by lithotripsy equipment. NOTE - The parameters defined in this International Standard do not - at the present time - allow quantitative statements to be made about effectiveness and possible hazard.
7、 In particular, it is not possible to make a statement about the limits for these effects. While this particular standard has been developed for equipment intended for use in lithotripsy, it has been developed such that, as long as no other specific standards are available to be used for other medic
8、al applications of therapeutic extracorporeal pressure pulse equipment, this standard may be used as a guideline. 2 Normative references The following normative documents contain provisions which, through reference in this text, constitute provisions of this International Standard. At the time of pu
9、blication, the editions indicated were valid. All normative documents are subject to revision, and parties to agreements based on this International Standard are encouraged to investigate the possibility of applying the most recent editions of the normative documents indicated below. Members of IEC
10、and IS0 maintain registers of currently valid International Standards. IEC 60050(801):1994, International Electrotechnical Vocabulary (IEV) - Chapter 801: Acoustics and electroacoustics IEC 60866: 1987, Characteristics and calibration of hydrophones for operation in the frequency range 0,s MHz to 15
11、 MHz IEC 61 102:1991, Measurement and characterisation of ultrasonic fields using hydrophones in the frequency range 0,s MHz to 15 MHz STD-BSI BS EN 6184b-ENGL 1379 !W Lb24667 074b505 507 Page 6 EN 61846:1998 3 Definitions For the purpose of this International Standard, the following definitions app
12、ly. 3.1 acoustic pulse energy 3.1.1 derived acoustic pulse energy spatial integral of the derived pulse-intensity integral over a circular cross-sectional area of radius R in the x-y plane which contains the focus Symbol: ER Unit: joule, J 3.1.2 derived focal acoustic pulse energy spatial integral o
13、f the derived pulse-intensity integral over the focal cross-sectional area Symbol: Ef Unit: joule, J NOTE - This definition may overestimate E if the aperture of the pressure pulse generator is large. 3.2 beam axis line passing through the geometric centre of the aperture of the pressure pulse gener
14、ator and the focur NOTE - This line is taken as the zaxis. See 6.1 and clause 7. 3.3 compressional pulse duration time interval beginning at the first time the instantaneous acoustic pressure exceeds 50 Oh of the peak-positive acoustic pressure and ending at the next time the instantaneous acoustic
15、pressure has that value (see figure C.l) Symbol: FWHM+ Unit: second, s NOTE - The subscript FWHM stands for full width, half maximum. 3.4 derived pulse-intensity integral time integral of the instantaneous intensity at a particular point in a pressure pulse field over the pressure pulse waveform (se
16、e 3.31 of IEC 61 102) Symbol: PI/ Unit: joule per metre squared, J/m2 3.5 end-of-cable loaded sensitivity of a hydrophone ratio of the voltage at the end of any integral cable or connector of a hydrophone, when connected to a specified electrical input impedance, to the instantaneous acoustic pressu
17、re in the undisturbed free field of a plane wave in the position of the acoustic centre of the hydrophone if the hydrophone were removed (see 3.14 of IEC 61 102) Symbol: ML Unit: voit per pascal, V Pa- STD-BSI BS EN bL89b-ENGL. 1777 I Lb29bbS 079b50b 443 I Page 7 EN 61846:1998 3.6 focal cross-sectio
18、nal area area of the peak-compressional acoustic pressure contour which is -6 dB relative to the value at the focus and is in the plane, perpendicular to the beam axis, which contains the focus Symbol: Af Unit: metre squared, m2 3.7 focal extent shortest distance along the z axis that connects point
19、s on the -6 dB contour of peak-positive acoustic pressure in the x-z plane on either side of the focus Symbol: f Unit: metre, m 3.8 focal volume volume in space contained within the surface defined by the -6 dB (relative to the value at the focus) peak-compressional acoustic pressure contours measur
20、ed around the focus Symbol: V, Unit: metre cubed, m3 NOTE - It is difficult to measure -6 dB points throughout the volume around the focus. It is reasonable in practice to approximate the focal volume from measurements taken in three orthogonal directions: the beam axis (2 axis); the direction of ma
21、ximum beam diameter (x axis); the axis perpendicular to the x axis (y axis). 3.9 focal width, maximum maximum width of the -6 dB contour of p+ around the focus in the x-y plane which contains the focus Symbol: fx Unit: metre, m 3.10 focal width, orthogonal width of the -6 dB contour of p+ around the
22、 focus, in the x-y plane which contains the focus, in the direction perpendicular to fx Symbol: fy Unit: metre, m 3.1 1 focus location in the pressure pulse field of the maximum peak-positive acoustic pressure 3.12 hydrophone transducer that produces electrical signals in response to waterborne acou
23、stic signals IEV 801 -32-261 (see also IEC 60866) 3.13 instantaneous acoustic pressure pressure minus the ambient pressure at a particular instant in time and at a particular point in an acoustic field (see also 801-21-19 of IEC 60050(801) Symbol: p Unit: pascal, Pa 3.14 instantaneous intensity acou
24、stic energy transmitted per unit time in the direction of acoustic wave propagation per unit area normal to this direction at a particular instant in time and at a particular point in an acoustic field For measurement purposes referred to in this standard, where far-field conditions may be assumed,
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