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DARU/SPECTRUM-ANALYZER! freeware
here's something cool from Japan. the best frequency analysis freeware I've ever seen. google translate manual posted below.
the first link (blue vector.co.jp text below) is the download.. hit the green button three times. second link is the author's page listing all his progs, probably nothing else of interest to ttd people. enjoy! 46b9ffd3d04b3030b3079799f33e6808 *dsAnA.zip 5e9d513c05b2bdc481fee32c70e1df32 *dsana.chm 6cd229a7e06a6b06c980938329762333 *dsana.exe Quote:
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#2
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Re: DARU/SPECTRUM-ANALYZER! freeware
dsana-eng.txt
Code:
-------------------------------------------------------------------------------- 1.1 -------------------------------------------------------------------------------- DARU/SPECTRUM-ANALYZER! Copyright(C) 2011-2014 DULL https://www.vector.co.jp/soft/win95/art/se501656.html official web site d3b.png for Vector http://hp.vector.co.jp/authors/VA027311/index_e.htm [ Note ] DaruDaruDan officially distributes software only to Vector. If it is distributed on other sites, it will be posted without permission. Files downloaded from non-official sites contain viruses and spyware The risk is very high, so please delete and download from Vector. * There is no problem with the files included in the magazine's appendix media. -------------------------------------------------------------------------------- How to use Sound wave FAQ Support Update history Copyright -------------------------------------------------------------------------------- Who is this software? Spectrum analyzer compatible with WAV / MP3 / WMA / OGG / FLAC and high resolution (192KHz / 24,32bit) Analyzes and displays audio frequency bands using FFT (Fast Fourier Transform). It has the following features. File size can be analyzed up to 2GB in linear PCM. A large file can be analyzed in small units. Sampling rate is unlimited if it is over 8000Hz. The number of quantization bits corresponds to the integers 8, 16, 24, 32 bits and the decimal number 32 bits. Real-time analysis from a recording device is possible. Multi-channel files can be analyzed. Reading of WAVE file of business software is also possible. (BWF chunk compatible) Frequency analysis results can be switched between logarithmic and linear. * It does not support compressed WAV files that require the ACM codec. -------------------------------------------------------------------------------- File description dsana.exe-executable file dsana.chm-HTML help file Since dsana.exe operates by itself, MSVCRT, MFC, VB, There is no need to prepare a runtime such as DirectX. It also doesn't use compression like UPX. Uninstall is not used because the registry is not used Just delete the file and you're done. Operating environment OS-Works on Windows95 / 98 / ME / NT4 / 2000 / XP / Vista / 7. CPU-Maybe after 2000 Memory-the extent to which the OS does not cause a swap HDD-50 [MB] or more as working area when analyzing audio compression (MP3 etc.). -------------------------------------------------------------------------------- 1.2 -------------------------------------------------------------------------------- Usage -------------------------------------------------------------------------------- [Brief explanation] dsana.png -------------------------------------------------------------------------------- [File operation] tb_open.png Open button Select the file you want to refer to in the file open dialog. tb_close.png Close button Close the file opened by "Open". tb_save.png Save button Saves the currently displayed analysis result as an image. -------------------------------------------------------------------------------- [Window function] tb_win.png "Switch window function" button Switch between humming, hanning, blackman, square and window functions. Hanning Good balance of analysis. W (n) = 0.5-0.5cos (2pn / N) Humming Suitable for slightly lower frequencies than Hanning. W (n) = 0.54-0.46cos (2pn / N) Black Man The computation is complex but better than Hanning. W (n) = 0.42-0.5cos (2pn / N) + 0.08cos (4pn / N) square The calculation process is simple and fast, but high frequency noise is likely to occur. W (n) = 1 -------------------------------------------------------------------------------- [Analysis width] tb_width.png "Switch analysis width" button Switches the size processed by FFT to 256, 512, 1024, 2048, 4096. -------------------------------------------------------------------------------- [Display method] tb_LorDB.png "Switch between logarithmic and linear display" button Switches between logarithmic and linear. -------------------------------------------------------------------------------- [CH number] tb_chno.png "Switch analysis channel" button This is the channel displaying the analysis results. 0 is the LR W display mode. 1 is L channel, 2 is R channel. Later Switches in the order saved in the multi-channel. (In the case of monaural, it does not switch because it is 1ch.) -------------------------------------------------------------------------------- [Switch magnification] tb_zoom.png "Switch waveform magnification" button Use 1 to 8 to switch the waveform drawing magnification. -------------------------------------------------------------------------------- [Play, Stop] tb_play.png Play button Plays the selected file. tb_stop.png "Stop" button Stop playback and recording device analysis. tb_mic.png "Recording device analysis" button Start recording device analysis. -------------------------------------------------------------------------------- 1.3 -------------------------------------------------------------------------------- About sound waves [Sound wave] A sound wave is a "wave that propagates around an object that emits sound when it vibrates." The frequency that can be heard by human ears is said to be about 20Hz to 20kHz, Ultrasonic waves are high-frequency sound waves exceeding 20 KHz that cannot be heard by the human ear. Conversely, sound waves with frequencies below 20 Hz that cannot be heard by the human ear are called low frequencies. In a broad sense, "sound waves that cannot be heard directly by the human ear" In order to use ultrasonic waves, low-frequency sound waves may be included in the ultrasonic waves. -------------------------------------------------------------------------------- [Sound speed] The speed of sound is the speed of sound traveling through matter. Since sound is transmitted by vibration of the substance itself, the speed of sound varies depending on the type of substance. Also, no sound is transmitted in a vacuum state where there is no vibrating object. The types of substances are roughly divided into solid, liquid, and gas. Even with the same substance, a substance having a smaller molecular weight tends to have a higher speed. Also, the speed of sound is independent of the frequency of sound, and there is no difference in speed between 20Hz and 20000Hz. [Material and speed] The speed of sound also changes depending on the state of the material, humidity, pressure, etc. It is easily attenuated in gas, but is transmitted efficiently in liquids and solids. Propagation speed Material Temperature ? Density Speed ??m / sec Air 20 1.204 343 10 1.247 337 0 1.292 331 -10 1.341 325 Helium 20-1006 10-988 0-970 Water 80 972 1552 70 978 1553 60 982 1550 20 998 1483 10 1000 1448 5 1000 1426 Iron-7860 5950 Aluminum-2690 6420 Tree-300 ~ 800 3500 ~ 4500 Glass-2200 ~ 2600 4000 ~ 5500 Lead-11300 1960 Helium transmits sound faster than air When you inhale and talk to helium, you hear a high key voice. (This is called the Donald Duck effect.) -------------------------------------------------------------------------------- [Reflection] Sound waves reflect in the same way as light. The value of "density ? x sound velocity v" of a substance is called acoustic impedance, Sound cannot be transmitted through substances whose acoustic impedance values ??differ greatly, The reflected component increases. If you try to listen to the sound waves emitted from the air toward the water in the water, Because the acoustic impedance values ??of air and water are very different, Sound waves are reflected from the surface of the water and are hardly transmitted into the water. Because it is attenuated even if it passes without being reflected on the water surface, The sound waves will be very small. Propagation speed Material Acoustic impedance Density Speed ??m / sec Air 20 ? 413 1.204 343 Water 20 ? 1480034 998 1483 Iron 46767000 7860 5950 Aluminum 17269 800 2690 6420 Tree 1050000 ~ 3600000 300 ~ 800 3500 ~ 4500 Glass 8800000 ~ 14300000 2200 ~ 2600 4000 ~ 5500 Lead 22148000 11300 1960 -------------------------------------------------------------------------------- [diffraction] Sound waves diffract in the same way as light. Diffraction is a phenomenon in which sound waves travel around behind obstacles. (Sounds can be heard even when hidden behind a building) -------------------------------------------------------------------------------- [Directivity] Sound waves are diffused and attenuated. This characteristic is related to the frequency. Directivity improves. -------------------------------------------------------------------------------- [Sound pressure] The pressure fluctuation of the atmospheric pressure when sound waves are generated is called sound pressure, The physical loudness of the sound is expressed in Pascal (Pa). Also, a decibel (unit: dB) obtained by multiplying the number of digits by 20 is used. Estimated sound pressure Sound pressure level of main sound Sound pressure Pa Sound pressure level dB Minimum audible sound 0.00002 0 Whispering voice (1m) 0.0002 20 Conversation (1m) 0.02 60 Phone bell 0.2 80 Inside the subway train 0.5 90 Near the engine of the airplane (50m) 20 120 -------------------------------------------------------------------------------- [Difference between sound waves and radio waves (electromagnetic waves)] Radio waves are included in electromagnetic waves and are different from sound waves. Sound waves cannot be transmitted in a vacuum (no substance), but radio waves can also be transmitted in a vacuum. Electromagnetic waves are classified as follows according to the level of frequency (wavelength). (Those with low frequencies are called radio waves.) Electric wave <Microwave <Infrared <Visible light <Ultraviolet When you say "high frequency, low frequency" to sound waves If you say "high frequency, low frequency" with respect to electromagnetic waves, It points to something completely different. -------------------------------------------------------------------------------- [References, sites] Introduction to ultrasonic engineering About metal and sound Water density Tree construction.com/Sound insulation and sound absorption of wood Wikipedia sound speed Wikipedia impedance matching Wikipedia glass Wikipedia vacuum -------------------------------------------------------------------------------- 1.4 -------------------------------------------------------------------------------- FAQ [Q] When analyzing 44KHz WAV files, only 22KHz is displayed. [A] To restore the recorded (A / D converted) analog signal, If you need to sample at least twice the maximum frequency bandwidth It is said by Shannon's theorem. This restores files sampled at 44KHz to 22KHz, If sampling at 96KHz, the range up to 48KHz can be restored. It is generally said that the frequency range between 20 and 20000 Hz is human-viewable, Music CDs recorded at 44KHz higher than 40KHz are for 20KHz It seems to be a measure against high frequency noise generated near the margin and limit. * There are individual differences, and some people can hear up to 24000 Hz. -------------------------------------------------------------------------------- [Q] There is no frequency component higher than 24KHz even though the file was recorded at 96KHz. [A] I think the following two are possible. No frequency component higher than 24KHz existed during recording. Recording was not possible due to the performance limitations of the hardware used for recording (including the microphone). * Confirm development machine Microphone I connected a microphone to the PC, recorded 96KHz with VIA HD Input, and tried analysis. frequency There was no frequency component above 24KHz. (It was equivalent to 48KHz recording.) This does not support hardware, but it supports 96KHz recording with driver, 48It is presumed to be the result of 48KHz ? 96KHz conversion by the driver. -------------------------------------------------------------------------------- [Q] Even if the same MP3 is analyzed by a file decoded by different software, the result will be different. [A] MP3 is lossy compression, so different decoding software is used. Errors may occur due to differences in the decoding engine and the analysis results may be different. (Even if the software is different, the result will be the same if the decoding engine is the same.) It is recommended to use the same software (same version) if you value analysis results. -------------------------------------------------------------------------------- [Q] WAV files decoded from MP3 etc. have reduced high frequency components. [A] When encoding with the 128kbps bit rate setting commonly used for MP3, the encoder In order to lower the bit rate, it is common to skip the frequency band above 16KHz. (It depends on the encoder and settings.) -------------------------------------------------------------------------------- [Q] When MP3 is analyzed, a WAV file with the file name of the date is created. [A] When analyzing audio compressed files such as MP3, decode the Saved as a WAV file. (The file name is determined from the work start time, and it becomes 201201231951.wav.) The work file is deleted when the analysis ends, but it could not be completed normally In that case the working file is not deleted. * Access violation and forced termination by Task Manager. If there are multiple working files, delete them manually. -------------------------------------------------------------------------------- [Q] Do you use a registry? [A] I do not use it at all. -------------------------------------------------------------------------------- [Q] How do I uninstall? [A] Since the registry is not used, just deleting the file is OK. -------------------------------------------------------------------------------- 1.5 -------------------------------------------------------------------------------- Support <sorry no translation> -------------------------------------------------------------------------------- 1.6 -------------------------------------------------------------------------------- History -------------------------------------------------------------------------------- 2014/10/29 version Release 26 Analysis parameters can be changed even during playback. Fixed that files other than WAVE files could not be read. 2014/09/18 version Release 25 Real-time analysis can be performed from a recording device. The analysis format is fixed at 44KHz, 16bit, 2ch. 2014/08/16 version Release 24 Fixed the possibility of high load at the end of playback thread. 2014/02/27 version Release 23 Fixed a possibility that garbage data might be entered at the end of data. Release 2013/11/18 Release 22 The content now supports MP3 WAV files. The analysis size limit of the WAVE header has been removed. 2013/10/25 version Release 21 Fixed that wav files could not be played. Added an error message when playback fails. 2013/10/19 version Release 20 For compressed audio files (MP3 / WMA / OGG / FLAC) Work wav file is generated and analyzed. 2013/05/14 edition Release 19 The image size for saving images has been changed. 2013/05/12 version Release 18 Changed the line color of the waveform to blue. Added W display mode for LR channel. 2013/05/01 edition Release 17 Improved that the precision was deteriorated by rounding when the sound pressure was extremely low. 2013/04/26 edition Release 16 The drawing area of ??the analysis result was slightly changed. 2013/04/25 version Release 15 The displayed analysis results can be saved as images. Fixed a case where level adjustment was not reset correctly. 2013/04/04 edition Release 14 Fixed a case where a 32 bit integer and a small number were incorrectly identified in playback. Level adjustment is reset when a file is opened. 2013/03/31 edition Release 13 Changed GUI design. Delete status bar. Add path information to Operation. Add level adjustment to Operation. Extremely low sound can be visually recognized by adjusting the level. 2013/03/27 edition Release 12 It is possible to start more than one. Fixed that a small number of 32-bit WAVE files are processed at twice the volume. H25.3.25 version Release 11 The analysis during playback has been changed from 4fps to 10fps. 2013/03/21 edition Release 10 Added support for playback. Updated analysis in synchronization with playback. 2013/03/15 edition Release 9 Added status bar. 2013/02/22 edition Release 8 Reduced file size. (22,016 byte) 2013/02/18 version Release 7 Modified to read only the analysis part from the file. 2013/02/11 version Release 6 The sample movement amount can be changed to any value. Release 5/2013/02/05 The sample movement amount can be changed from 1 to the sample value. 2013/02/04 edition Release 4 Corresponding sampling rate range from 8000Hz to unlimited. Set values ??are displayed on the toolbar. 2013/02/03 version Release 3 Quantization bit number 32bit (integer, decimal) analysis is supported. 2013/02/02 version Release 2 Correspond to the analysis of the quantization bit number 24bit. The range of the number of channels was modified from 1ch to unlimited. 2011/11/11 version Release 1 Available for the time being. -------------------------------------------------------------------------------- 2.1 -------------------------------------------------------------------------------- Copyright Copyright, Terms of Use, Redistribution, Reprint Documents attached to the archive, software Copyright belongs to the author (DULL). This software may be used without permission for non-profit purposes only. Permission is required for commercial use. No permission is required for publication and introduction in magazines. (In that case, please report it.) However, when recording software on CD-ROM etc. Author permission is required. For the second and subsequent times, you need only report. On large networks (such as the Internet) without the author's permission Redistribution of software is prohibited. This software has no warranty. We do not guarantee any damage resulting from its use, No obligation to upgrade or support. --------------------------------------------------------------------------------
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#3
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Re: DARU/SPECTRUM-ANALYZER! freeware
here's the english manual with txt and png from above in a zip.
b39630a80e94d836a745a91b688fdf96 *dsAnA-eng.zip bd3d621d38b062676c9d3040b03a5f02 *dsAnA-eng.png 5b00e3d45cae9e6bb7e33ae719e5d309 *dsAnA-eng.txt
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#7
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Re: DARU/SPECTRUM-ANALYZER! freeware
wow I haven't seen that fa in foobar2k, looks very nice!
hardware is good as well, sam! while we're here I guess we should mention AnalFreq 856aaf2edbf4b558c98d9f0e4a0e3c8f *afreq18.zip 4ba7897a89c00c77fb5bf343ce644bb0 *AnalFreq.exe 0128eb119dc595a393460fbceba71540 *FFT.DLL e13fca2618fe5a1fa5268b4a2aae576c *readme.txt 9de840be66582ad2293fd48f19a7b20f *UserManual.rtf afreq18.zip 28-Aug-2000 09:24 59K http://info.elf.stuba.sk/packages/pub/pc/sound/
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#8
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Re: DARU/SPECTRUM-ANALYZER! freeware
The one for Foobar is called Enhanced Spectrum Analyzer, and visualizes in real time. Colors can be changed. No bugs, pretty cool
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#9
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Re: DARU/SPECTRUM-ANALYZER! freeware
My preferred soundcard from RME is great for audio measurements (there Digicheck Software is outstanding) , in combination with for example WaveLab (has a FFT on board) you have a very good tool for audio editing/measurement.
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#10
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Re: DARU/SPECTRUM-ANALYZER! freeware
I used to always use the one in cep/audition. when fixing glitchy stuff I start with spectral then use the fa and hover over it to find more exact frequency values.
the one in audacity is not so good... lol. doesn't run live, you just give it a smallish sample and it makes a graph. it is much better than nothing! pawel it seems that all roads lead to foobar2000...
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#11
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Re: DARU/SPECTRUM-ANALYZER! freeware
Yup, I use Foobar to stream through WiFi to DAC.
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#12
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Re: DARU/SPECTRUM-ANALYZER! freeware
Quote:
Don't say anything against Foobar , it is one of the few HiFi-compatible players under Windows, so you can directly address the corresponding sound drivers. Foobar plays almost all valid audio formats, also SACD, DVDA.
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#13
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Re: DARU/SPECTRUM-ANALYZER! freeware
Quote:
I was speaking about spot-repairs, distortion or something in a wav... Quote:
not one other bad thing to say, ever so far!
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#14
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Re: DARU/SPECTRUM-ANALYZER! freeware
at the risk of sounding like oliver twist, can it rip cds offset correct with log as per ttd seeding rules?
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#15
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Re: DARU/SPECTRUM-ANALYZER! freeware
I was probably pondering about the old/new times ; that was probably related to the live operation. That's sometimes easy nowadays because the parameters of different venues are known, so you just choose "Carnegie Hall" for your band and that's it.
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