Ten Audio Terms That May Become Obsolete

Ten Audio Terms That May Become Obsolete Thanks to AES67
April 26, 2018

By Anthony P. Kuzub, Ward-Beck Systems

https://daleproaudio.com/blogs/dale-tech-corner/ten-audio-terms-that-may-become-obsolete-thanks-to-aes67

The audio and video industry is experiencing an IP renaissance. With the deployment of AES67 networked audio solutions, certain terms are in need of revisiting. Though these terms are commonly used in analog and digital transmission, with AES67 and SMPTE ST2110-30 the mechanisms of moving audio are completely re-invented. The terms must follow. These obsolete audio terms are discussed with an update offered for its IP equivalent.

Split
A single microphone on stage in a performance has to feed the talent, the audience, the recorders, and the broadcaster. We’ve been relying on iron core isolation transformers with miles of fine copper to perform this splitting of delicate signals, for decades. Lately, thesesame electrical primitives in use between the front end of multiple digital mixing consoles. Different sample rates, different clocks, and vendor proprietary ecosystems force this. The redundancy of analog to digital conversion with activeand passive splits is no longer needed on a converged network. With AES67 being multicasted onto the network an engineer subscribes to the sources needed to perform the task of signal splitting. The network switch is the most powerful audio splitter ever made and costs less than the road-case for the splitter one can pay thousands for. It’s time to stop splitting and start multicasting.

Patch
We have been weaving, making and breaking audio signals patches since we’ve had a need for them. As the quality of microphones went down, the quantity of them went up. As we made studios and facilities larger, the need for flexibility went up. Multiple sources from different rooms needed to be strung through buildings and hard-wired for a limited and specific purpose. As AES67 is using a layer 3 networking protocol, the need for single application rigid physical infrastructure disappears. As all of these signals are converge to a network, we’re not patching them from source to destination, the destination is joining an IGMP stream. As the sources populate the network, the receivers can have access to that signal. We’re not using patch cables anymore to connect sources and destinations. We’re trading a Session Description Protocol (SDP) and we’re using software to request a stream delivered through IGMP. We’re not patching, we’re joining IGMP streams!


Distribute
Traditionally we push audio to a distant load through a transmission line. Signals on a network do not need to be distributed as they were in the past. With AES67 and SMPTE ST2110-30, you are subscribing to the stream and the networks flow control, Internet Group Management Protocol (IGMP), handles the join connections for you. The classic audio distribution amplifier is over 50 years old, 1 input 8 outputs. 1 transmitter to 8 fixed receivers. With AES67/SMPTE ST2110-30 you have 1 transmitter and (n) receivers. The need to distribute signals is no longer required as they are available anywhere and everywhere at the same time. AES67 signals are Discovered using a mechanism like Ravenna (MDNS-Bonjour), Session Announcement Protocol (SAP-Dante Controller) and Session Initiation Protocol (SIP). These discovery mechanisms are a byproduct of telco-industry.


System Ground
When the front of house mixing console, a hundred plus feet away from the stage, is receiving microphone signals it is very susceptible to noise. If the ground at the console has a different potential for grounding than that of the stage you’re in trouble. Ditto TV studio, Radio studio, Recording studio, Mobile truck etc. With AES67 and networking technologies there is no need for a common system ground. There is no benefit to a common system ground because your sound that’s digitally encoded is now packetized data. The sound is not susceptible to external environmental interference within the transmission path. You cannot bond fiber optic glass to earth and optical pulses are not susceptible to electromagnetic interference. And, ethernet cables are transformer isolated from the electrical system they are operated on. Power over ethernet derives its own reference relative to the switch that generates it. Everything is floating relative to everything else!

Word Clock
Word clock is an imperfect one-way communication system for synchronization. Because of its unidirectional transmission, a receiver of word clock cannot know how far off it is from the generator. Word clock is a one-way conversation with no start, no finish and therefore no linear reference. With AES67 and ST2110-30, audio is synchronized using a precision time protocol (PTP) designed by the IEEE(1588). PTP is a conversation between a master clock server and client edge device. Algorithms are used for elections of the best master clock; this keeps the network in sync and always with a clock. A PTP master clock can be generated by an oscillator locally or slaved. There is no clock source on earth quite like the one not on the earth. Using GPS synchronization, (n) number of stations/remotes or devices can be perfectly synchronized and sync locked continents apart. SMPTE 2059 and PTPV2.1 are the new timepieces for your audio and video networks. What good is word clock when you can be world clocked?

Surround Sound
There is no naturally occurring stereo sound. If that’s true then there is no naturally occurring surround sound. All naturally occurring sound is monophonic, the rest of what we hear must be reflections and influences of the acoustic environment. Mono sounds must be positioned somewhere in a playback environment to give position, depth, width and now (finally) height information relative to the listener’s position. With a traditional five point one audio system we are bussing signals to emulate the above.

With AES70 we can now encode a set of Open Control Architecture parameters to deliver positional information with what could become sample accuracy in a stream of data. Pan, tilt, dolly, roll, truck, pedestal and geo-positional information of a microphone can be captured in the AES70 class architecture. Like an access database, you need a Key, its Length, and the Value. These parameters can then rendered by a multichannel speaker system or encoded relative to Head-related transfer functions in personal headphones. Why be surrounded by sound when you can be immersed in it?


Switching
An audio switch toggles to make a result based on what is feeding it. If you have multiple sources and you need to switch between them, you must receive all the sources and switch between them. Switching between multiple sources requires a lot of wiring fed from distribution systems or large scale matrix systems. With AES67, devices capable of subscribing to any source that is on the network at any time. A source is described in a Session Description Protocol defined by AES67 to include Clock source, Payload format, and stream protocol information. Changing the receivers SDP switches its source. Most devices can be automated and switched remotely with the pushing of a JSON (JavaScript Object Notation) object containing the desired SDP. To ‘switch’ between two sources the receiver changes its join of IGMP streams. Switching is out, choosing the SDP is in!



DeMux – Mux
Somethings Done Iterating. The serialized transmission of multiplexed video is coming to an end. With a converged network we are seeing the things once bundled together be split apart and scattered across the network as unique streams. With SMPTE ST2110 the audio, data, and video are unique multicasts. The best solutions to manages these devices is the NMOS (Networked Media Open Specifications). Its model refers to these elements in a hierarchy of Sources, Flows, and Grains. The audio, data, and video are grains that can be combined to create a flow that becomes a source of the device. The flows from sources are then received and split back into individual grains. Goodbye multiplexing, hello Source. Goodbye de-muxing, hello flow-grains.



Input List
Inputs are dynamic. As systems evolve and changes are made on the fly it is very hard to have an input list 100%. Being up to date takes paper and runners; unless, you’re using the same exact spreadsheet. The use of ‘living documents’ such as Google Sheets or Smartsheet allow all operators to have immediate access to the current information, everyone will now be on the same sheet. With AES67, your patching can be automated. With AES67 you are never changing the parameters of the transmitter you are only changing what is being received where. If all of your multicast sources were in a database, with metadata, it could be used to dynamically update your console’s inputs. When you realized that most modern digital consoles are just database driven analog console emulators, you wonder why we’re still passing around paper input lists with numbers instead of a Database of raw accurate data.



Recording
Sound recording is an electrical, mechanical, electronic, or digital inscription of sound waves. In AES67 you have none of the above. Data packets that contain transmissions are moved over a network. Within those packets is a representation of the digital inscription but the packet itself is not the inscription, therefore not a recording. Wireshark could capture the ‘packet storm’ that is on a network. If all of those packets were intercepted captured to a reliable and readable capture format one would accomplish the “recording of AES67”. This process would capture the audio on the network without any introduced signal processing, conversion or dependence on synchronization. The packets captured are individually time-stamped and could be re-assembled for playback. We’re not recording anymore – we’re capturing.

Tony Kuzub – Wikipedia

Tony Kuzub

Anthony Peter George Kuzub or simply Tony Kuzub, as he is better known, is a Canadian recording engineer and producer based in Saskatoon, Saskatchewan, Canada. He is the founder of the now defunct High Voltage Recording, and is currently co-owner and head engineer of Tanda Recording.

Biography
Kuzub was born April 4, 1983 in Saskatoon, Saskatchewan, where he attended Cardinal Leger Elementary School, and later moved to Evan Hardy Collegiate for high school . Something of a child prodigy, Kuzub showed precocious skills with computing and media equipment, often building computers from scratch, creating videos, and even establishing a viable recording studio in his mother’s basement . At the age of ten he founded his first company, Copycat Recording, which duplicated audio CD’s to cassettes for the benefit of those who did not own CD players. It was in high school that his talents truly blossomed, as he founded High Voltage recording, and began to connect with budding musicians from the Saskatoon area. He also stood out as class president during his senior year.
Career
After graduating from high school in 2001, Kuzub moved his studio to the heart of downtown Saskatoon and began to engineer professionally. He also worked briefly during this period for the Division of Media and Technology at the University of Saskatchewan, editing and arranging video for the local educational cable channel SCN . After leaving this job, he came to concentrate exclusively on recording and producing for studio High Voltage Recording, working with such notable Canadian artists as The Wheatmonkeys, Joel Plaskett, North of Shorty, Spade the Shovelhead and Jordan Cook, and later on even more high-profile acts such as The Mars Volta . His impressive resume landed him a job as an engineer at the MuchMusic Video Awards (or MMVAs) in 2004, where he worked with such artists as The Beastie Boys, Evanescence, Hoobastank, Arcade Fire and Hilary Duff. Kuzub reprised this role in each of the years which followed through to 2007 .
After cutting ties with his employee Sandy Burnett in late 2007, Kuzub closed High Voltage Recording. Soon after, Kuzub spent several months in Sydney, Australia, where he worked at Fox Studios as an audio editor before returning to Canada. Having forged a partnership with session/studio drummer Arlen Hall, Kuzub co-founded Tandaphonic Incorporated and its subsidiary Tanda Recording, a new recording company with a capacious studio, also based in Saskatoon . Here Kuzub works not only as a recording engineer and mixer, but has become even more active in the creative process as a producer.
Controversy
Kuzub made local headlines in 2006 when he identified a potential conflict of interest in the adjudication process to select a song for Saskatoon’s centennial that same year. Speaking for a number of disenchanted members of the Saskatoon recording industry, Kuzub identified that one of the judges, Ross Nykiforuk, had overseen the selection of a former bandmate by the name of Corey Hildebrand as the winner of contest and the $1,000 recording contract that came with it.
Ward-Beck Preservation Society
Kuzub is the founder of the Ward-Beck Systems Preservation Society, an organization dedicated to maintaining Canadian make Ward-Beck recording equipment. The mission statement of the society, as described by the website, is to “keep vintage Ward-Beck equipment running and working by supplying a database of documentation, knowledge, and support.” In order to accomplish this task, Kuzub has created an online library of technical manuals, and photo gallery for Ward-Beck equipment, as well as a forum for the exchange of Ward-Beck related information .
Discography

Year Artist Album / “Song Name” Role
2008 Arms Up “Caroline” P, M, E
2008 Jordan Cook Seven Deadly Sins E, Cp, M, Ed
2008 Magic Band Magic Band E
2008 Sundown Strip P, M, E
2007 Drowning Ophelia TBA P, M, E
2007 Jeremy Lane Skeletonmask P, M, E
2007 Johnny Gritt Johnny Gritt M, E
2007 Matty Powel Ness Creek Sessions Ed
2008 Arms Up “Streets Cities”, “Oh well” P, M, E
2007 Otenang M
2007 Rising 4 “Before I Awaken” M, E
2007 Smokekiller “Out there” “Back to the Heart” M, E
2007 Spade the Shovel Head Get a Helmet P, M, E
2007 Streetlight Scenery P, M, E
2007 Sundown Strip P, M, E
2007 The Huxxtabulls The Huxxtabulls M, E
2006 Everlong Mixing
2006 Les Fabian “Here She Comes” M, E
2006 Letter Bomb M, E
2006 Mykal Gambull Volume 1 M, E, A
2006 Noel Wilcox “Generation Why” P, M, E
2006 North Of Shorty Trouble in Paradise P, M, E
2006 Poser Disposer A
2006 The ROA M, A
2006 The Wheatmonkeys “Television” and “Brightside” M, E
2006 Whiskey Halo M
2005 Darry Dinnell “Sorry Ms. Brandon” P, M, E
2005 FYFy E, A
2005 Holy Cross High School Sound and Fury M, E
2005 Hush Twins A, E
2005 Joel Plaskett Live at Amigo’s E, M
2004 Holy Cross High School Sound and Fury E
2004 Liberated Noise A
2004 Orchestra Diamante Orchestra Diamante E, M, A
2003 Clete Rekve “Sleepin’ on the Engine” M, E
2001 Ambush Rural Brewery P, M, E
2001 Tint M, E

LEGEND:

  • P: Producer
  • M: Mixer
  • E: Engineer
  • Cp: Composer
  • Ed: Editor
  • A: Arranger

P=Producer
M=Mixed or Remixed
Ed=Editor
E=Engineer
D=development
Cp=Co-Producer
A=Assistant
 

Spring Cleaning – leads to…

Summer sale!

Cleaning out the shop…  more to follow


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WBS-L – 10-060 : PPM Meter Driver
WBS-L – 14-260 : Mic-Preamp and HP Filter
WBS-L – 4-109 : Amplifier Card
WBS-L – 8-109 : Amplifier Card
WBS-L – 8200 Rack 1 : 8200 Rack 1
WBS-L – 8200 Rack 2 : 8200 Rack 2
WBS-L – 8200 Rack 3 : 8200 Rack 3 – Front Room
WBS-L – 8200 Rack 4 : 8200 Rack 4 – Front Room
WBS-L – 8200 Rack 5 : 8200 Rack 5 – Front Room
WBS-L – 970029-1 : 12 Fader remote modules
WBS-L – ADC-48 : 48 Point Patchbay to EDAC90
WBS-L – Antoinette : Antoinette
WBS-L – Bryston 4B : Power Amplifier
WBS-L – BS – BIG PPM : Bach and Simpson – Large WBS PPM meter
WBS-L – BS – BIG VU : Bach and Simpson – Large WBS VU meter
WBS-L – BS – BIG VU – 400 : Bach and Simpson – Large WBS VU meter
WBS-L – BS – SMALL PPM : Bach and Simpson – Small WBS PPM meter
WBS-L – BS – SMALL VU : Bach and Simpson – Small WBS VU meter
WBS-L – BS – SMALL VU : Bach and Simpson – Small WBS VU meter
WBS-L – COUNTER : Timer
WBS-L – DMM12 : Tannoy DMM12 Speaker
WBS-L – M124 : Universal Audio Amplifier
WBS-L – M166 : Summing – Summing amplifier
WBS-L – M174 : Intercom Cross Point
WBS-L – M201 : M201 Relay Module
WBS-L – M201 : M201 Relay Module
WBS-L – M201D : M201 Relay Module
WBS-L – M202 : M202 – Logic Latch Relay Module
WBS-L – M202 : M202 – Logic Latch Relay Module
WBS-L – M207 : Phantom Power 24V to 48 V
WBS-L – M207 : Phantom Power 24V to 48 V
WBS-L – M207 : Phantom Power 24V to 48 V
WBS-L – M24A : Broadcast Multi-Track Console
WBS-L – M401 : Stereo Noise Suppressor
WBS-L – M402B : M402B – Equalizer
WBS-L – M404A : Passive HP Low Pass filter
WBS-L – M406B : Compressor / Limiter / De-Esser
WBS-L – M441M : Line input and Microphone pre-amp
WBS-L – M450 : Universal Amplifier
WBS-L – M450B : Universal Audio Amplifier
WBS-L – M450B : Universal Audio Amplifier
WBS-L – M451 : Talkback Conrtole and Dual Microphone Pre-amps
WBS-L – M452 : Tone Generator
WBS-L – M453A : Cue Speaker Amplifier
WBS-L – M453A : Cue Speaker Amplifier
WBS-L – M453A : Cue Speaker Amplifier
WBS-L – M453A : Cue Speaker Amplifier
WBS-L – M455 : Reverb Return Module
WBS-L – M457 : 4 Channel Sub Mixer
WBS-L – M458 : Peak Detector
WBS-L – M461 : Microphone and line Pre-amp
WBS-L – M461 : Microphone and line Pre-amp
WBS-L – M461 : Microphone and line Pre-amp
WBS-L – M461M : Microphone and line Pre-amp
WBS-L – M462 : 3-Band Equalizer – Full Parametric
WBS-L – M462 : 3-Band Equalizer – Full Parametric
WBS-L – M462 : 3-Band Equalizer – Full Parametric
WBS-L – M462A : 3-Band Equalizer – Mid Sweep
WBS-L – M462A : 3-Band Equalizer – Mid Sweep
WBS-L – M462A : 3-Band Equalizer – Mid Sweep
WBS-L – M462A : 3-Band Equalizer – Mid Sweep
WBS-L – M462A : 3-Band Equalizer – Mid Sweep
WBS-L – M462B : 4-Band Equalizer – Full Parametric
WBS-L – M462B : 4-Band Equalizer – Full Parametric
WBS-L – M462B : 4-Band Equalizer – Full Parametric
WBS-L – M463B : M463AB – Submaster Module
WBS-L – M463M : Summing – Sub Group
WBS-L – M464 : High Pass / Low Pass Filter
WBS-L – M464 : High Pass / Low Pass Filter
WBS-L – M464 : High Pass / Low Pass Filter
WBS-L – M466 : Compressor / Limiter / De-Esser
WBS-L – M466 : Compressor / Limiter / De-Esser
WBS-L – M466 : Compressor / Limiter / De-Esser
WBS-L – M466 : Compressor / Limiter / De-Esser
WBS-L – M466M : M466M Meter Module
WBS-L – M467 : VU Meter – Comp tie – Noise Gate
WBS-L – M467 : VU Meter – Comp tie – Noise Gate
WBS-L – M467 : VU Meter – Comp tie – Noise Gate
WBS-L – M467K : VU Meter – Comp tie – Noise Gate with Key
WBS-L – M467K : VU Meter – Comp tie – Noise Gate with Key
WBS-L – M468V : Reverb Return Module
WBS-L – M469C : M1204 Routing module
WBS-L – M470A : Microphone and line Pre-amp
WBS-L – M470A : Microphone and line Pre-amp
WBS-L – M470C : Microphone and line Pre-amp
WBS-L – M470D : Microphone and line Pre-amp
WBS-L – M471 : Stereo Input
WBS-L – M471A : Stereo Input
WBS-L – M472 : 3 Band Equalizer
WBS-L – M473A : Summing – sub Group
WBS-L – M473A : Summing – sub Group
WBS-L – M475 : Monitor – Stereo speaker monitor
WBS-L – M477 : Summing – Master Summing
WBS-L – M479 : Summing – Aux
WBS-L – M479 : Summing – Aux
WBS-L – M487 : Dual Master Module
WBS-L – M490A : Microphone Pre-amp
WBS-L – M490C : Mono line in – Via Transformer
WBS-L – M490E : Stereo Input Module
WBS-L – M490E : Stereo Input Module
WBS-L – M490E : Stereo Input Module
WBS-L – M490F : Stereo Input Module with Aux routing
WBS-L – M495 : Stereo Monitor Module
WBS-L – M495 : Stereo Monitor Module
WBS-L – M497 : Summing Amplifiers
WBS-L – M497 : Summing Amplifiers
WBS-L – M497 : Summing Amplifiers
WBS-L – M497A : M497A – Dual Master Module
WBS-L – M498 : Selector – 8 Stereo
WBS-L – M498A : Selector – 10 Stereo
WBS-L – M499 : Selector – 12 Channel
WBS-L – M499 : Selector – 12 Channel
WBS-L – M520 : ST Series Microphone Pre-amp
WBS-L – M520A : ST Series – Microphone Pre-amp
WBS-L – M520A : ST Series – Microphone Pre-amp
WBS-L – M521A : ST Series – Stereo Line in
WBS-L – M522 : ST Series 3-Band EQ
WBS-L – M522A : ST Series 3-Band EQ
WBS-L – M522A : ST Series 3-Band EQ
WBS-L – M522A : ST Series 3-Band EQ
WBS-L – M523 : ST Series Sub Group
WBS-L – M525 : Monitor Controller
WBS-L – M527 : M527, MASTER MODULE
WBS-L – M528B : Dual Summing Amp
WBS-L – M529 : M529 – Communications Module
WBS-L – M529A : Communications Module and Tone Generator
WBS-L – M562C : Stereo 3-Band Equalizer
WBS-L – M562C : Stereo 3-Band Equalizer
WBS-L – M562C : Stereo 3-Band Equalizer
WBS-L – M604 : M604 – Dual Frequency Oscillator
WBS-L – M605A : Distribution Amplifier
WBS-L – M605A : Distribution Amplifier
WBS-L – M621 : 20 Watt Power Amplifier
WBS-L – M621 : 20 Watt Power Amplifier
WBS-L – M624 : 24 Volt Power Supply
WBS-L – M624 : 24 Volt Power Supply
WBS-L – M624 : 24 Volt Power Supply
WBS-L – M625B : 25V Audio Power Supply
WBS-L – M625B : 25V Audio Power Supply
WBS-L – M625B : 25V Audio Power Supply
WBS-L – M625B : 25V Audio Power Supply
WBS-L – M625B : 25V Audio Power Supply
WBS-L – M648 : 48V Phantom Power Supply
WBS-L – M648 : 48V Phantom Power Supply
WBS-L – M648 : 48V Phantom Power Supply
WBS-L – M701B : Intercom on ramp
WBS-L – M805 : Distribution Amplifier
WBS-L – M805 Rack : M805 Rack
WBS-L – M808 : Logic – Relay Board
WBS-L – M8200 : Remote Controlled Micpre-amp
WBS-L – M8202 : Digital to Analog Converter
WBS-L – M8204 : Distribution Amp
WBS-L – M8205 : Distribution Amplifier
WBS-L – M8205B : Distribution Amp
WBS-L – M8205B : Distribution Amp
WBS-L – M8205B : Distribution Amp
WBS-L – M8245 : 8200 series Power Supply
WBS-L – M8540 : Intercom Power Supply
WBS-L – MF10 : Rack Mount Module Tray
WBS-L – MISC INTERCOM : MISC INTERCOM
WBS-L – PAULINE : MP1, MP2,MP3,MP4 Meter Panels
WBS-L – Peggy Sue : Peggy Sue Mixing Console
WBS-L – PG 1550 : Penny and Giles 1550
WBS-L – PG 1550 : Penny and Giles 1550
WBS-L – PG 1550 : Penny and Giles 1550
WBS-L – PG 1550 : Penny and Giles 1550
WBS-L – PG 4520 ST : ST Series Penny and Giles 4520 Fader
WBS-L – PG 4520 ST : ST Series Penny and Giles 4520 Fader
WBS-L – PG 4520 ST-ereo : ST Series Penny and Giles 4520 Fader Stereo
WBS-L – R1400-870139 : R1400-14 Channel Radio Console
WBS-L – RACK – MF10 : RACK – MF10 – 10 Space Rack
WBS-L – RACK-FX Rack 1 : WBS-FX Rack 1 – Dynamics – EDAC 90 and XLR for Keys
WBS-L – RACK-FX Rack 2 : WBS-FX Rack 2 – Dynamics and Filter – EDAC 90
WBS-L – RACK-FX Rack 3 : WBS-FX Rack 3 – Filters – EDAC 90
WBS-L – RACK-Summing Rack : RACK-Summing Rack
APK – Rhonda : Rhonda
APK – RTO-214-NAB2015 : 2 X 14 Retro Module Rack
APK – RTO-47-NAB2015 : 4 X 7 Retro Module Rack
APK – RTO-47-The Hoser : 4 X 7 Retro Module Rack
WBS – ST12-10-3-F : ST series – 10′ – 1′ tail-Female – LINE IN
WBS – ST12-10-3-M : ST series – 10′ – 1′ tail-Female – DIRECT OUT
WBS – ST12-25-U : ST series – 20′ – USER TERMINATED
WBS – ST12-3-1-F : ST series – 3′ – 1′ tail-Female – INSERT
WBS – ST12-3-1-M : ST series – 3′ – 1′ tail-Male – INSERT
WBS – ST12-30-3-M : ST series – 30′ – 1′ tail-Female – MIC IN
APK – Stan : STan – 12 Channel ST series Console
STUDER – Studer-Phase : Analog Studer-Phase meter
– DBX – 911 – Noise Reduction
– DBX – 911 – Noise Reduction
– DBX – 911 – Noise Reduction
– SKOTEL – SKOTEL “Digital” Metronome
– – Cart Deck
– Alesis – Midiverb 2
– Symetrix – A220 – 20 Watt amplifier
– Behringer – Behringer Edison – Stereo enhancer
– DOLBY – Dolby SDDU-4 – Surround sound decoder
– DOLBY – DOLBY SDEU-4 – Surround sound encoder
– Marantz – PDM 221 – portable field recorder
– Tascam – 122 Cassette Deck
– UREI – UREI METRONOME
– ADC – Digital Patchbay
– APK – EDAC breakout – RACK output
– DBX – 120XP Sub Harmonic Synth
– Clydsdale – Orange Case – Dutchie
– Digidesign – 003 Rack – missing pwr on button – discolored
– Studer – Telephone Hybrid
– Studer – Telephone Hybrid
– Tascam – 122MK2 – 3 head stereo cassette recorder
– BBE – BBE 702 (stereo Sonic Maximizer in 900 series)
– Altec – Altec Lansing Tube Mics 001
– Altec – Altec Lansing Tube Mics 002
– Altec – Altec Lansing Tube Mics 003
– Altec – Altec Lansing Tube Mics 004
– Altec – Altec Lansing Tube Mics 005
– Altec – Altec Lansing Tube Mics 006
– Altec – Altec Lansing Tube Mics 007
– Altec – Altec Lansing Tube Mics 008
– APK – EDAC breakout – XLR
– ASHLY – ASHLEY SC-68 notch filter
– BSS – DPR-402 – Compressor limiter / De-Esser
– BSS – DPR-402 – Compressor limiter / De-Esser
– MOGAMI – (24) Channel 25′ EDAC TO EDAC EXTENSION
– MOGAMI – (24) Channel 6′ EDAC TO EDAC EXTENSION
– MOGAMI – (24) Channel 8′ EDAC TO EDAC Snake – 001
– MOGAMI – (24) Channel 8′ EDAC TO EDAC Snake – 002
– MOGAMI – (24) Channel 8′ EDAC TO EDAC Snake – 003
– MOGAMI – (24) Channel 8′ EDAC TO EDAC Snake – 004
– MOGAMI – (24) Channel 8′ EDAC TO EDAC Snake – 005
– MOGAMI – (24) Channel 8′ EDAC TO EDAC Snake – 006
– MOGAMI – (24) Channel 8′ EDAC TO EDAC Snake – 007
– Shure – Shure SM81
– Yamaha – YAMAHA PB-1
– Yamaha – Yamaha SPX900 Reverb
– AKG – AKG – H99 – Harry – BINAURAL Stereo Microphone
– APK – EDAC breakout – TRS
– DELTA LABS – EFFECTRON II ADM1024
– Tascam – 122MK2 – 3 head stereo cassette recorder
– LEXICON – PCM41
– New Frontiers – DSP-2110-EX S – signal Analyzer
– AUDIO ACCESSORIES – 2RU – 96 point – TT Patchbays – EDAC 56
– SELA – 2880-6F ( field mixing console)
– SPL – Vitalizer ( Classic grey faced)
– TC ELECTRONICS – TC Electronics – FireworX
– TC ELECTRONICS – FINALIZER PLUS
– DBX – DBX 900 – Rack – Wired to EDAC with EDAC snake
– APK – TT Patchbays – EDAC 90 – CUSTOM
– APK – TT Patchbays – EDAC 90 – CUSTOM
– APK – TT Patchbays – EDAC 90 – CUSTOM
– APK – TT Patchbays – EDAC 90 – CUSTOM
– Alesis – Alesis HD24 – 24 Track – with Hard case and mogami snakes

Done another semester… a review.


2015-04-15 21.02.41 “Connected up” – “Don’t Expect an Exemption to be there in two minutes”2015-04-21 16.01.06 copy 2015-04-12 13.29.53
I swear surmesur uses facial recognition software… IMG_0549 IMG_0653

IMG_0630 First half of a semester pencil use.

IMG_0614

To the guy who bought that CD player a few years back I FOUND IT!
IMG_0594 IMG_0581“ZA DUMPING RATIO”
IMG_0574 IMG_0562It’s three rows deep

IMG_0550 IMG_0546 IMG_0541
The Pencil Bump
IMG_0487 IMG_0812 2015-03-28 01.45.35 IMG_0828
The BIGVUMETERS!!!!2015-03-30 13.37.41Good guy with Accessible sicker.  Didn’t take advantage of it.
2015-03-30 18.35.45-2
This was a whole car covered in a decal2015-03-30 19.25.59 IMG_0873 2015-04-03 14.01.45
“The Eskimo Express”IMG_0885 IMG_0891
That easy huh…IMG_0899 2015-04-08 07.50.06-2 2015-04-08 07.50.12 2015-04-10 12.12.09 2015-04-11 13.42.51
This had my attention2015-04-15 15.31.59 2015-04-15 15.32.02
The refrigeration course at school…
2015-03-27 15.20.092015-03-27 15.20.39 2015-03-27 15.20.35

2015-03-27 12.20.35-1
2015-03-26 09.52.39
Retirement2015-03-25 18.13.35 2015-03-25 18.13.31 2015-03-25 18.13.28 2015-03-24 23.40.15 2015-03-21 15.01.35-1 2015-04-20 09.45.39 2015-04-19 19.13.38-1 2015-04-19 19.12.46-1
The ENTIRE funk and Wangles… I’ve only seen A and B!2015-04-18 16.39.42 2015-04-18 16.39.37 2015-04-16 12.57.24

On Compressing the English Language

Someone picked my brain the other day looking for a technique to compress language files.

After walking away to think about it… my method was to re-order the ASCII code to the letters by their frequency and the most common words by their frequency.

Where lowercase e is stored as an ASCII value using 1 byte
ASCII  e = 0x61 = 0b1100001 = 7 bits
vs
APK e = 0x1 = 1 bit

… this method stores an E in 1 bit.  This is similar to the Huffman Code with the addition of whole words being included in the code.

For example:

because” is the 94th most used word in the english language and in this method is stored in 7 bits.

I don’t know if this has been done before… but I would imagine it could compress Language files substantially.

I have thought about a third addition of using the most used 2 or three letter combinations commonly used.

APK ORDER APK LET FREQ WORD FEQ APK BIN APK HEX APK BITS USED
0 space 0 0 1
1 e 12.70% 1 1 1
2 t 9.06% 10 2 2
3 a 8.17% 11 3 2
4 o 7.51% 100 4 3
5 i 6.97% 101 5 3
6 n 6.75% 110 6 3
7 s 6.33% 111 7 3
8 h 6.09% 1000 8 4
9 r 5.99% 1001 9 4
10 d 4.25% 1010 A 4
11 l 4.03% 1011 B 4
12 c 2.78% 1100 C 4
13 u 2.76% 1101 D 4
14 m 2.41% 1110 E 4
15 w 2.36% 1111 F 4
16 f 2.23% 10000 10 5
17 g 2.02% 10001 11 5
18 y 1.97% 10010 12 5
19 p 1.93% 10011 13 5
20 b 1.49% 10100 14 5
21 v 0.98% 10101 15 5
22 k 0.77% 10110 16 5
23 j 0.15% 10111 17 5
24 x 0.15% 11000 18 5
25 q 0.10% 11001 19 5
26 z 0.07% 11010 1A 5
27 the 1 11011 1B 5
28 be 2 11100 1C 5
29 to 3 11101 1D 5
30 of 4 11110 1E 5
31 and 5 11111 1F 5
32 a 6 100000 20 6
33 in 7 100001 21 6
34 that 8 100010 22 6
35 have 9 100011 23 6
36 I 10 100100 24 6
37 it 11 100101 25 6
38 for 12 100110 26 6
39 not 13 100111 27 6
40 on 14 101000 28 6
41 with 15 101001 29 6
42 he 16 101010 2A 6
43 as 17 101011 2B 6
44 you 18 101100 2C 6
45 do 19 101101 2D 6
46 at 20 101110 2E 6
47 this 21 101111 2F 6
48 but 22 110000 30 6
49 his 23 110001 31 6
50 by 24 110010 32 6
51 from 25 110011 33 6
52 they 26 110100 34 6
53 we 27 110101 35 6
54 say 28 110110 36 6
55 her 29 110111 37 6
56 she 30 111000 38 6
57 or 31 111001 39 6
58 an 32 111010 3A 6
59 will 33 111011 3B 6
60 my 34 111100 3C 6
61 one 35 111101 3D 6
62 all 36 111110 3E 6
63 would 37 111111 3F 6
64 there 38 1000000 40 7
65 their 39 1000001 41 7
66 what 40 1000010 42 7
67 so 41 1000011 43 7
68 up 42 1000100 44 7
69 out 43 1000101 45 7
70 if 44 1000110 46 7
71 about 45 1000111 47 7
72 who 46 1001000 48 7
73 get 47 1001001 49 7
74 which 48 1001010 4A 7
75 go 49 1001011 4B 7
76 me 50 1001100 4C 7
77 when 51 1001101 4D 7
78 make 52 1001110 4E 7
79 can 53 1001111 4F 7
80 like 54 1010000 50 7
81 time 55 1010001 51 7
82 no 56 1010010 52 7
83 just 57 1010011 53 7
84 him 58 1010100 54 7
85 know 59 1010101 55 7
86 take 60 1010110 56 7
87 people 61 1010111 57 7
88 into 62 1011000 58 7
89 year 63 1011001 59 7
90 your 64 1011010 5A 7
91 good 65 1011011 5B 7
92 some 66 1011100 5C 7
93 could 67 1011101 5D 7
94 them 68 1011110 5E 7
95 see 69 1011111 5F 7
96 other 70 1100000 60 7
97 than 71 1100001 61 7
98 then 72 1100010 62 7
99 now 73 1100011 63 7
100 look 74 1100100 64 7
101 only 75 1100101 65 7
102 come 76 1100110 66 7
103 its 77 1100111 67 7
104 over 78 1101000 68 7
105 think 79 1101001 69 7
106 also 80 1101010 6A 7
107 back 81 1101011 6B 7
108 after 82 1101100 6C 7
109 use 83 1101101 6D 7
110 two 84 1101110 6E 7
111 how 85 1101111 6F 7
112 our 86 1110000 70 7
113 work 87 1110001 71 7
114 first 88 1110010 72 7
115 well 89 1110011 73 7
116 way 90 1110100 74 7
117 even 91 1110101 75 7
118 new 92 1110110 76 7
119 want 93 1110111 77 7
120 because 94 1111000 78 7
121 any 95 1111001 79 7
122 these 96 1111010 7A 7
123 give 97 1111011 7B 7
124 day 98 1111100 7C 7
125 most 99 1111101 7D 7
126 use 100 1111110 7E 7

Music Note Frequency Calculator With Cent Adjustment

A colleague posed a very interesting question:
“I am looking for any music/music math wizard help me figure this out. If I am moving the pitch of a song up by 50 cents (a quarter step?) What frequency is A instead of 440?”

Sounded like the kind of math challenge I like:

Screen Shot 2015-02-06 at 8.59.14 AM

Screen Shot 2015-02-06 at 8.59.29 AM

The answer is 452.893Hz
Screen Shot 2015-02-06 at 8.59.38 AM

 

 


To test and confirm that it’s calculating properly, this is up 100 cents making G# 440
Screen Shot 2015-02-06 at 8.48.14 AM
This is down 100 cents making A# 440
Screen Shot 2015-02-06 at 8.48.29 AM

Here is a link to the excel file