Thread Rating:
  • 0 Vote(s) - 0 Average
  • 1
  • 2
  • 3
  • 4
  • 5
RADIATION HARDENED CHIPS
#1

RADIATION HARDENED CHIPS

Space is a hostile environment. No atmosphere, extreme variations in temperature and almost no energy sources, where even the slightest of mistakes can lead to a disaster. The vast emptiness of space is filled with radiation, mostly from the sun. A normal computer unless given proper shielding will not be able to work properly. Thus special types of chips- rad hard chips are used.

Radiation hardened chips are made by two methods: - Radiation hardening by process (RHBP) and Radiation hardening by design (RHBD). The latter method is much more cost effective and has a great potential for the future. . It has been demonstrated that RHBD techniques can provide immunity from total-dose and single-event effects in commercially produced circuits. Commercially produced RHBD memories, microprocessors, and application-specific integrated circuits are now being used in defense&space industry. Rad hard chips have a great scope in military application and protecting critical data (both industrial &domestic) from the vagaries of man and nature.

Current trends throughout military and space sectors favor the insertion of commercial off-the-shelf (COTS) technologies for satellite applications. However, there are also unique concerns for assuring reliable performance in the presence of ionizing particle environments which present concerns in all orbits of interest. This seminar will detail these concerns from two important perspectives including premature device failure from total ionizing dose and also single particle effects which can cause both permanent failure and soft errors.
Reply

#2
Space is a hostile environment. No atmosphere, extreme variations in temperature and almost no energy sources, where even the slightest of mistakes can lead to a disaster. The vast emptiness of space is filled with radiation, mostly from the sun. A normal computer unless given proper shielding will not be able to work properly. Thus special types of chips- rad hard chips are used.
Radiation hardened chips are made by two methods: - Radiation hardening by process (RHBP) and Radiation hardening by design (RHBD). The latter method is much more cost effective and has a great potential for the future. . It has been demonstrated that RHBD techniques can provide immunity from total-dose and single-event effects in commercially produced circuits.
Commercially produced RHBD memories, microprocessors, and application-specific integrated circuits are now being used in defense&space industry. Rad hard chips have a great scope in military application and protecting critical data (both industrial &domestic) from the vagaries of man and nature.
Current trends throughout military and space sectors favor the insertion of commercial off-the-shelf (COTS) technologies for satellite applications. However, there are also unique concerns for assuring reliable performance in the presence of ionizing particle environments which present concerns in all orbits of interest. This seminar will detail these concerns from two important perspectives including premature device failure from total ionizing dose and also single particle effects which can cause both permanent failure and soft errors.
Reply

#3
Radiation hardening
It is a method used for the purpose of designing and testing electronic components and systems to make them resistant to the effects of the ionizing radiation (particle radiation and high-energy electromagnetic radiation) which would be encountered in the situations like that of outer space, nuclear reactors, high altitude flight etc. Most of the radiation hardened chips would be the same as the commercial equivalents but including some design variation used for reducing their susceptibility for electromagnetic radiation. The radiation hardened chips tends to lag behind the latest developments because extensive development and testing is required to produce a radiation-tolerant design.

Problems caused by radiation
electronic noise and signal spikes are created when the high velocity ionizing radiation knocks out thousands of electrons. inaccurate or unintelligible signals maybe produced in the case of digital circuits.

Radiation-hardening techniques
insulating substrates are used instead of the usual semiconductor wafers in the hardened chips. normal commercial-grade chips radiation hardened, rewritable, non-volatile conductor memory is provided by the Magnetoresistive RAM

get the details here:
http://en.wikipediawiki/Radiation_hardening
http://scribddoc/41272330/Total-Dose-Rad...-Assurance
http://honeywellsites/portal?smap=aerosp...3F61&sel=1
Reply

#4
Space is a hostile environment. No atmosphere, extreme variations in temperature and almost no energy sources, where even the slightest of mistakes can lead to a disaster. The vast emptiness of space is filled with radiation, mostly from the sun.

A normal computer unless given proper shielding will not be able to work properly. Thus special types of chips- rad hard chips are used.

Radiation hardened chips are made by two methods: -
Radiation hardening by process (RHBP)
Radiation hardening by design (RHBD)

The latter method is much more cost effective and has a great potential for the future. . It has been demonstrated that RHBD techniques can provide immunity from total-dose and single-event effects in commercially produced circuits.

Commercially produced RHBD memories, microprocessors, and application-specific integrated circuits are now being used in defense&space industry.

Rad hard chips have a great scope in military application and protecting critical data (both industrial &domestic) from the vagaries of man and nature.

Current trends throughout military and space sectors favor the insertion of commercial off-the-shelf (COTS) technologies for satellite applications.

However, there are also unique concerns for assuring reliable performance in the presence of ionizing particle environments which present concerns in all orbits of interest. This seminar will detail these concerns from two important perspectives including premature device failure from total ion
Reply

#5
Radiation


Radiation
Thermal radiation.:
That electromagnetic radiation emitted by a body as a result of its temperature .

Thermal radiation is restricted to a limited range of the electromagnetic spectrum.

Blackbody radiation
A blackbody is a perfect radiator.
Three characteristics:
It absorbs all incident radiation
It radiates more energy than any real surface at the same temperature
The emitted radiation is independent of direction
Also:
Blackbody radiation obey certain simple laws

Stefan-Boltzmann s law
The total power radiated from a blackbody is calculated from Stefan-Boltzmann s law:
Eb = T4
where Eb = total power radiated per unit area from
a blackbody (W/m2)
= 5.669 10-8 W/(m2 K4). (Stefan-Boltzmann
constant)
T = absolute temperature (K)

Planck distribution law
The wavelength distribution of emitted blackbody radiation is determined from the Planck distribution law:
[]ETCCTb ,(,)exp(/())= 1521
where C1 = 2 h co2 = 3.742 108 W m4 / m2
C2 = (h co / k) =1.439 104 m K
= wavelength ( m)
T = absolute temperature (T)
h = Planck constant

For more information about this article,please follow the link
http://energy.kth.se/courses/4A1601/File...ANSFER.PDF
Reply

#6
Radiation hardening is a method of designing and testing electronic components and systems to make them resistant to damage or malfunctions caused by high-energy subatomic particles and electromagnetic radiation[1], such as would be encountered in outer space, high-altitude flight, around nuclear reactors, or during warfare.

Most radiation-hardened chips are based on their commercial equivalents, with some manufacturing and design variations that reduce the susceptibility to interference from electromagnetic radiation. Due to the extensive development and testing required to produce a radiation-tolerant design of a microelectronic chip, radiation-hardened chips tend to lag behind the cutting-edge of developments.

and read more http://en.wikipediawiki/Radiation_hardening
Reply

#7
Space is a hostile environment. No atmosphere, extreme variations in temperature and almost no energy sources, where even the slightest of mistakes can lead to a disaster. The vast emptiness of space is filled with radiation, mostly from the sun.A normal computer unless given proper shielding will not be able to work properly. Thus special types of chips- rad hard chips are used.
Reply

#8
to get information about the topic "radiation hardend chips " full report ppt and related topic refer the page link bellow
http://seminarsprojects.net/Thread-radia...hips--4745

http://seminarsprojects.net/Thread-radia...hips--1294

http://seminarsprojects.net/Thread-radia...3#pid26213
Reply

#9
Hi,
please visit these links for more details in this topic:
http://patentstorm.us/patents/6613978/fulltext.html
http://linkinghub.elsevierretrieve/pii/S...0201011378
http://osti.gov/bridge/purl.cover.jsp;js...2I/native/

[attachment=2293]
Reply

#10
Hi,
visit this thread for more details on the topic:
http://seminarsprojects.net/Thread-radia...6#pid38866
Reply



Forum Jump:


Users browsing this thread:
1 Guest(s)

Powered By MyBB, © 2002-2024 iAndrew & Melroy van den Berg.