Difference between revisions of "Workshops/SensorHeaven"

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(Created page with " == Biomedical == == Vision == == Athmospheric == == Motion == == Location == == Proximity == == Force == == Touch == == Audio ==")
 
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+
= The Sensors =
 
== Biomedical ==
 
== Biomedical ==
 +
* heartbeat
 +
* blood pressure
 +
* muscle (electromyography)
 +
* galvanic skin response
 +
* ...
 +
Group 1
  
 
== Vision ==
 
== Vision ==
 +
* light
 +
* camera (CCD)
 +
* motion
 +
* Infrared (IR)
 +
* ...
  
== Athmospheric ==
+
== Atmospheric ==
 +
* humidity
 +
* pressure
 +
* temperature
 +
* light
 +
* ...
 +
Group 2
 +
 
 +
Nina
 +
Bienke
 +
Lotte
 +
Sara
 +
Paula
 +
 
 +
[[ATMOSPHERIC]]
  
 
== Motion ==
 
== Motion ==
 +
* acceleration
 +
* gyroscopic
 +
* tilt, roll, pitch
 +
* ...
 +
Group 3
  
 
== Location ==
 
== Location ==
 +
* GPS (Wifi? Cell towers?)
 +
* compass
 +
* Altitude
  
 
== Proximity ==
 
== Proximity ==
 +
* proximity sensors
 +
* distance sensors
  
 
== Force ==
 
== Force ==
 +
* force sensor
 +
* tension sensors
 +
* vibration/knock sensor (piezo)
 +
* flex
  
 
== Touch ==
 
== Touch ==
 +
* Touch sensor
 +
* capacitive touch
 +
* other kinds of touch
  
 
== Audio ==
 
== Audio ==
 +
* sound sensors
 +
* microphones
 +
 +
 +
 +
= A. Understanding the tech =
 +
 +
# What are they? What do they do? On a conceptual level ? (abstraction)
 +
# How do they work? What do they actually do? techically, explain the most common ways to "read" them.
 +
# What can you do with them? What are the applications? (what are the current uses of this tech? from the most conventional to the bizarre, futuristic)
 +
 +
= B. Possible Scenarios =
 +
Develop 5 scenarios (in sketches) in which your sensor could augment / enhance a field that is in our class:
 +
 +
* Animation
 +
* Audiovisual Design
 +
* Autonomous Arts
 +
* Communication and Multimedia Design
 +
* Fashion
 +
* Graphic Design
 +
* Lifestyle
 +
* Product Design
 +
* Visual Arts Teacher

Latest revision as of 16:13, 3 November 2014

The Sensors

Biomedical

  • heartbeat
  • blood pressure
  • muscle (electromyography)
  • galvanic skin response
  • ...

Group 1

Vision

  • light
  • camera (CCD)
  • motion
  • Infrared (IR)
  • ...

Atmospheric

  • humidity
  • pressure
  • temperature
  • light
  • ...

Group 2

Nina Bienke Lotte Sara Paula

ATMOSPHERIC

Motion

  • acceleration
  • gyroscopic
  • tilt, roll, pitch
  • ...

Group 3

Location

  • GPS (Wifi? Cell towers?)
  • compass
  • Altitude

Proximity

  • proximity sensors
  • distance sensors

Force

  • force sensor
  • tension sensors
  • vibration/knock sensor (piezo)
  • flex

Touch

  • Touch sensor
  • capacitive touch
  • other kinds of touch

Audio

  • sound sensors
  • microphones


A. Understanding the tech

  1. What are they? What do they do? On a conceptual level ? (abstraction)
  2. How do they work? What do they actually do? techically, explain the most common ways to "read" them.
  3. What can you do with them? What are the applications? (what are the current uses of this tech? from the most conventional to the bizarre, futuristic)

B. Possible Scenarios

Develop 5 scenarios (in sketches) in which your sensor could augment / enhance a field that is in our class:

  • Animation
  • Audiovisual Design
  • Autonomous Arts
  • Communication and Multimedia Design
  • Fashion
  • Graphic Design
  • Lifestyle
  • Product Design
  • Visual Arts Teacher