User`s manual
Table Of Contents
- CONTENTS
- 1 INTRODUCTION
- 2 THE CLIO SYSTEM
- 3 CLIO INSTALLATION
- 3.1 MINIMUM PC CONFIGURATION
- 3.2 FW-01 DRIVERS INSTALLATION UNDER WINDOWS XP
- 3.3 FW-01 DRIVERS INSTALLATION UNDER WINDOWS VISTA AND 7
- 3.4 SOFTWARE INSTALLATION
- 3.5 THE 'CLIO BOX'
- 3.6 RUNNING CLIO FOR THE FIRST TIME
- 3.7 SYSTEM CALIBRATION
- 3.8 CLIO SERIAL NUMBER AND DEMO MODE
- 3.9 TROUBLESHOOTING CLIO INSTALLATION
- 4 CLIO BASICS
- 5 SYSTEM OPERATIONS AND SETTINGS
- 6 COMMON MEASUREMENT INTERFACE
- 7 SIGNAL GENERATOR
- 8 MULTI-METER
- 9 FFT, RTA AND “LIVE” TRANSFER FUNCTION
- 10 MLS & LOG CHIRP
- 11 SINUSOIDAL
- 12 WATERFALL , DIRECTIVITY & 3D
- 12.1 INTRODUCTION
- 12.2 WATERFALL, DIRECTIVITY & 3D CONTROL PANEL
- 12.3 WATERFALL SPECIFIC CONTROLS
- 12.4 MAKING A CUMULATIVE SPECTRAL DECAY
- 12.5 DIRECTIVITY SPECIFIC CONTROLS
- 12.6 MEASURING LOUDSPEAKER SINGLE POLAR DATA (1D MODE)
- 12.7 REPRESENTING SINGLE POLAR DATA
- 12.8 3D SPECIFIC CONTROLS
- 12.9 MEASURING LOUDSPEAKER SINGLE POLAR DATA (3D MODE)
- 12.10 MEASURING FULL SPHERE LOUDSPEAKER POLAR DATA (3D MODE)
- 12.11 REPRESENTING 3D BALLOON DATA
- 12.12 EXPORT 3D BALLOON DATA
- 13 MEASURING IMPEDANCE AND T&S PARAMETERS
- 14 LINEARITY & DISTORTION
- 15 ACOUSTICAL PARAMETERS
- 16 Leq LEVEL ANALYSIS
- 17 WOW AND FLUTTER
- 18 WAVELET ANALYSIS
- BIBLIOGRAPHY
- NORMS
BIBLIOGRAPHY
[1] Joseph D'Appolito, “Testing Loudspeakers”, Audio Amateur Press, 1998.
[2] J.M. Berman and L.R. Fincham, “The Application of Digital Techniques to the
Measurement of Loudspeakers”, J. Audio Eng. Soc., Vol. 25, 1977 June.
[3] L.R. Fincham, “Refinements in the Impulse Testing of Loudspeakers”, J. Audio
Eng. Soc., Vol. 33, 1985 March.
[4] S.P. Lipshitz, T.C. Scott and J. Vanderkooy, “Increasing the Audio Measurement
Capability of FFT Analyzers by Microcomputer Postprocessing”, J. Audio Eng.
Soc., Vol. 33, 1985 September.
[5] D.D. Rife and J. Vanderkooy, “Transfer Function Measurement with Maximum-
Length Sequences”, J. Audio Eng. Soc., Vol. 37, 1989 June.
[6] A. Duncan, “The Analytic Impulse”, J. Audio Eng. Soc., Vol. 36, 1988 May.
[7] J. Vanderkooy and S.P. Lipshitz, “Uses and Abuses of the Energy-Time Curve”,
J. Audio Eng. Soc., Vol. 38, 1990 November.
[8] G. Ballou, “Handbook for Sound Engineers – The New Audio Cyclopedia”,
Howard W. Sams & Company, 1987.
[9] D. Davis and C. Davis, “Sound System Engineering”, Howard W. Sams &
Company, 1987.
[10] R.H. Small, “Simplified Loudspeaker Measurements at Low Frequencies”, J.
Audio Eng. Soc., 1972 Jan/Feb.
[11] D.B. Keele Jr, “Low Frequency Loudspeaker Assessment by Near-field Sound
Pressure Measurements”, J. Audio Eng. Soc., 1974 April.
[12] W.D.T. Davies, “Generation and properties of maximum length sequences”,
Control, 1966 June/July/August.
[13] F.J. MacWilliams and N.J.A. Sloane, “Pseudo-random sequences and arrays”,
Proc. IEEE, 1976 December.
[14] M.R. Schroeder, “Integrated impulse method measuring sound decay without
using impulses”, J. Acoust. Soc. Am., 1979 August.
[15] J. Borish and J.B. Angell, “An efficient algorithm for measuring the impulse
response using pseudorandom noise”, J. Audio Eng. Soc., 1983 July/August.
[16] D.D. Rife, “Maximum length sequences optimize PC-based linear system
analysis”, Pers. Eng. Inst. News, 1987 May.
[17] C. Dunn and M.O. Hawksford, “Distortion Immunity of MLS-Derived Impulse
Response Measurements”, J. Audio Eng. Soc., 1993 May.
[18] R.H. Small, “Direct-Radiator Loudspeaker System Analysis”, J. Audio Eng. Soc.,
1972 June.
BIBLIOGRAPHY 227