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Seminar Presented by
R.Sharmila
II year EEE
Introduction
 It is a medical monitoring system.
 Our body is a sensitive system. At some situations, doctors
can’t easily detect diseases and hence it becomes too late to
cure it. Use of electronic pill helps us to easily detect the
diseases and can take sudden action against it.
 In 1972, Professor John Cooper and Dr. Eric
Johannessen from Glasgow University, U.K has led to the
development of electronic pill.
Process of Electronic pill
 Measurement parameters of electronic pills
include temperature analysis, pH measurements,
conductivity and dissolved oxygen. And they can
also capture images and sent it into a
system. Electronic pills are swallowable. It has a
16mm diameter, a length of 55mm and 5gram
weight. This pill is covered by chemically resistant
polyether-terketone (PEEK) coating
Internal Structure
Block Diagram
PARTS
CONTROL CHIP
BIOCOMPATIBLE
CAPSULE
ENCASING
MICROSENSOR
SILICON DIODE
ION-SELECTIVE
FIELD EFFECT
TRANSISTOR
(ISFET)
DIRECT
CONTACT GOLD
ELECTRODE
3 ELECTRODE
ELECTROCHEMICAL
CELL
RADIO
TRANSMITTER
2 SILVER OXIDE
CELLS
Structure
4 Microelectronic Sensors
 1st Sensor-Silicon Diode
 2nd Sensor-ISFET (Ion-Sensitive Field-Effect
Transistor)
 3rd Sensor-Direct Contact Gold Electrode
 4th Sensor-Three-Electrode Electrochemical Cell
Silicon Diode
 It measures the body core temperature.
 Also compensates with the temperature induced
signal changes in other sensors.
 It also identifies local changes associated with
Tissue Inflammation & Ulcers.
ISFET (Ion-Sensitive Field-Effect
Transistor)
 The ISFET measures pH.
 It can reveal pathological conditions associated with abnormal
pH levels
 These abnormalities include :
 Pancreatic disease
 Hypertension
 Inflammatory bowel disease
 The activity of fermenting bacteria
 The level of acid excretion
 Reflux of oesophagus
 Effect of GI specific drugs on target
 organs.
Direct Contact Gold Electrode
 The pair of direct contact Gold electrodes measures
conductivity, by
 measuring the contents of water & salt absorption,
 bile secretion & the breakdown of organic components into
charged colloids etc. in the GI tract.
 Since the gold has best conductivity among all the
elements, Therefore it gives true value of conductivity as
measured.
Three-Electrode Electrochemical Cell
 The three electrode electrochemical cell detects the level of
dissolved oxygen in solution.
 It measures the oxygen gradient from the proximal to the distal
GI Tract
 It investigates :
 Growth of aerobic or bacterial infection
 Formation of radicals causing cellular injury &
pathophysiological conditions like inflammation &
Gastric ulceration.
 It develops 1st generation enzymes linked with amperometric
biosensors.
Internal Blocks
Control chip
 The ASIC (Application Specific Integrated Circuit) is the control unit
that connects together other components of the micro system.
 It contains an analogue signal –conditioning module operating the
sensors, 10-bit analogue to digital (ADC) & digital to analogue (DAC)
converters, & digital data processing module.
 The temperature circuitry bias the diode at constant current so that
change in temperature reflects a corresponding change in in diode
voltage.
 The pH ISFET sensor is biased as a simple source at constant current
with the source voltage changing with threshold voltage & pH.
Radio Transmitter
 Size of transmitter = 8×5×3 mm
 Modulation Scheme = Frequency Shift Keying (FSK)
 Data Transfer Rate = 1 kbps
 Frequency = 40.01 MHz at 20°C
 Bandwidth of the signal generated 10 KHz
 It consumes 6.8 mW power at 2.2 mA of current.
Power supply
Two Silver Oxide Batteries
 2 SR44 Ag2O batteries are used.
 Operating Time > 40 hours.
 Power Consumption = 12.1 mW
 Corresponding current consumption =
3.9mA
 Supply Voltage = 3.1 V
Range & Accuracy
RANGE :
 Temperature from 0 to 70°C
 pH from 1 to 13
 Dissolved Oxygen up to 8.2 mg per liter
 Conductivity above 0.05 mScm-1
 Full scale dynamic Range analogue signal = 2.8 V
ACCURACY :
 pH channel is around 0.2 unit above the real value
 Oxygen Sensor is ±0.4 mgL.
 Temperature & Conductivity is within ±1%.
Over all process
Advantages
 It is being beneficially used for disease detection &
abnormalities in human body.
 It can be used in industries in evaluation of water
quality, Pollution Detection, fermentation process
control & inspection of pipelines.
 Power consumption is very less.
 It has very small size, hence it is very easy for
practical usage
 High sensitivity, Good reliability & Life times.
Limitations (The Dark Side)
 It cannot perform ultrasound & impedance
tomography.
 Cannot detect radiation abnormalities
 Cannot perform radiation treatment associated with
cancer & chronic inflammation.
 Micro Electronic Pills are expensive & are not
available in many countries.
 Still its size is not digestible to small babies
 Further research are being carried out to remove its
draw backs
Reference
 https://www.mepits.com/
 https://meee-services.com/
 S. Mackay and B. Jacobson, "Endoradiosonde,"
Nature, vol. 179, pp. 1239-1240, 1957.
 2. H. S. Wolff, "The radio pill," New Scientist, vol
12, pp. 419-421, 1961.
Electronics pills

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Electronics pills

  • 2.
  • 3. Introduction  It is a medical monitoring system.  Our body is a sensitive system. At some situations, doctors can’t easily detect diseases and hence it becomes too late to cure it. Use of electronic pill helps us to easily detect the diseases and can take sudden action against it.  In 1972, Professor John Cooper and Dr. Eric Johannessen from Glasgow University, U.K has led to the development of electronic pill.
  • 4. Process of Electronic pill  Measurement parameters of electronic pills include temperature analysis, pH measurements, conductivity and dissolved oxygen. And they can also capture images and sent it into a system. Electronic pills are swallowable. It has a 16mm diameter, a length of 55mm and 5gram weight. This pill is covered by chemically resistant polyether-terketone (PEEK) coating
  • 6. Block Diagram PARTS CONTROL CHIP BIOCOMPATIBLE CAPSULE ENCASING MICROSENSOR SILICON DIODE ION-SELECTIVE FIELD EFFECT TRANSISTOR (ISFET) DIRECT CONTACT GOLD ELECTRODE 3 ELECTRODE ELECTROCHEMICAL CELL RADIO TRANSMITTER 2 SILVER OXIDE CELLS
  • 8. 4 Microelectronic Sensors  1st Sensor-Silicon Diode  2nd Sensor-ISFET (Ion-Sensitive Field-Effect Transistor)  3rd Sensor-Direct Contact Gold Electrode  4th Sensor-Three-Electrode Electrochemical Cell
  • 9. Silicon Diode  It measures the body core temperature.  Also compensates with the temperature induced signal changes in other sensors.  It also identifies local changes associated with Tissue Inflammation & Ulcers.
  • 10. ISFET (Ion-Sensitive Field-Effect Transistor)  The ISFET measures pH.  It can reveal pathological conditions associated with abnormal pH levels  These abnormalities include :  Pancreatic disease  Hypertension  Inflammatory bowel disease  The activity of fermenting bacteria  The level of acid excretion  Reflux of oesophagus  Effect of GI specific drugs on target  organs.
  • 11. Direct Contact Gold Electrode  The pair of direct contact Gold electrodes measures conductivity, by  measuring the contents of water & salt absorption,  bile secretion & the breakdown of organic components into charged colloids etc. in the GI tract.  Since the gold has best conductivity among all the elements, Therefore it gives true value of conductivity as measured.
  • 12. Three-Electrode Electrochemical Cell  The three electrode electrochemical cell detects the level of dissolved oxygen in solution.  It measures the oxygen gradient from the proximal to the distal GI Tract  It investigates :  Growth of aerobic or bacterial infection  Formation of radicals causing cellular injury & pathophysiological conditions like inflammation & Gastric ulceration.  It develops 1st generation enzymes linked with amperometric biosensors.
  • 14. Control chip  The ASIC (Application Specific Integrated Circuit) is the control unit that connects together other components of the micro system.  It contains an analogue signal –conditioning module operating the sensors, 10-bit analogue to digital (ADC) & digital to analogue (DAC) converters, & digital data processing module.  The temperature circuitry bias the diode at constant current so that change in temperature reflects a corresponding change in in diode voltage.  The pH ISFET sensor is biased as a simple source at constant current with the source voltage changing with threshold voltage & pH.
  • 15. Radio Transmitter  Size of transmitter = 8×5×3 mm  Modulation Scheme = Frequency Shift Keying (FSK)  Data Transfer Rate = 1 kbps  Frequency = 40.01 MHz at 20°C  Bandwidth of the signal generated 10 KHz  It consumes 6.8 mW power at 2.2 mA of current.
  • 16. Power supply Two Silver Oxide Batteries  2 SR44 Ag2O batteries are used.  Operating Time > 40 hours.  Power Consumption = 12.1 mW  Corresponding current consumption = 3.9mA  Supply Voltage = 3.1 V
  • 17. Range & Accuracy RANGE :  Temperature from 0 to 70°C  pH from 1 to 13  Dissolved Oxygen up to 8.2 mg per liter  Conductivity above 0.05 mScm-1  Full scale dynamic Range analogue signal = 2.8 V ACCURACY :  pH channel is around 0.2 unit above the real value  Oxygen Sensor is ±0.4 mgL.  Temperature & Conductivity is within ±1%.
  • 19. Advantages  It is being beneficially used for disease detection & abnormalities in human body.  It can be used in industries in evaluation of water quality, Pollution Detection, fermentation process control & inspection of pipelines.  Power consumption is very less.  It has very small size, hence it is very easy for practical usage  High sensitivity, Good reliability & Life times.
  • 20. Limitations (The Dark Side)  It cannot perform ultrasound & impedance tomography.  Cannot detect radiation abnormalities  Cannot perform radiation treatment associated with cancer & chronic inflammation.  Micro Electronic Pills are expensive & are not available in many countries.  Still its size is not digestible to small babies  Further research are being carried out to remove its draw backs
  • 21. Reference  https://www.mepits.com/  https://meee-services.com/  S. Mackay and B. Jacobson, "Endoradiosonde," Nature, vol. 179, pp. 1239-1240, 1957.  2. H. S. Wolff, "The radio pill," New Scientist, vol 12, pp. 419-421, 1961.