mercredi 24 septembre 2014

DOUBLE ALIMENTATION REGLABLE ±5 a 12 Volts 500 mA

DOUBLE ALIMENTATION REGLABLE ±5 a 12 Volts 500 mA



Le reglage simultane des deux sorties permel de l'utiliser pour alimenter des circuits integres et tous les autres dispositifs qui prevoient une alimentation duelle comprise entre +-5 et 12 Volts.

Il est en outre possible d'alimenter des circuits logiques TTL, des circuits integres et n'importe quel autre dispositif donl la tension de travail est comprise entre 5 et 12 Volts en utilisant une seule sortie.

En utilisant les deux sorties en serie, on obtient une alimentation avec une tension variable entre 10 et 24 Volts.

II ne taut pas oublier que quelque soit le type d'utilisation possible, il ne faut pas depasser la consommation de 500-600 mA.Pour son fonctionnement, il faut connecter a l'entree un transformateur avec un secondaire de + 15 Volts qui puisse distribuer un courant de 500 mA minimum.




LISTE DES COMPOSANTS ELECTRONIQUE :

Toutes les resistances sontdes 1/4 watt sauf mention contraire.
Rl = 4,7Kohms
R2 = 4,7Kohms
Pl = 2,2KohmspotentA.
Cl = 1000uF25Velec.
C2 = 1000uF25Velec.
C3 = 0,1 uF ceramique.
D1-1N4001...7
D2 = 1N4001...7
D3-1N4001...7
D4 = 1N4001...7
T1=TIP32
1C1 = 7805
IC2 = 741
1 Support 8 broches.
2 Dissipateur thermique


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lundi 22 septembre 2014

How does an artificial heart work?


How does an artificial heart work?

 A patient heading home after being given an artificial heart recently made news headlines. How do they work?
Earlier this month, 40-year-old Matthew Green left hospital and headed back home to his family after having his heart replaced with an artificial device made of plastic – the first UK patient to be discharged after having both sides of his heart replaced.

The development and operation of these life-saving devices requires understanding and application of a combination of biology, materials science and physics.

The heartA natural human heart has four chambers – two atria and two ventricles.
The artficial heart
Image: Syncardia Systems

The right atrium collects blood and the right ventricle then pumps it to the lungs where it is oxygenated. The blood is then picked up by the left atrium and distributed around the body and brain by the left ventricle. Each side of the heart has a pair of valves – one pair per lung – controlling the flow of blood.

Artificial hearts can now completely, if temporarily, replace the ventricles and valves with a device made of plastic or other man-made materials, which does the job of pumping blood around.

The type of artificial heart that was given to Green, made by Syncardia Systems, works by using a pump carried externally in a backpack – previously, patients would have to be connected to a large, immobile pump and would not have the freedom to move around.

The NHS Choices website explains that tubes connecting the heart to the pump “send pulses of air into two expandable, balloon-like sacs in the artificial ventricles, forcing out blood in much the same way that a beating heart would”.

Other models such as that produced by AbioMed use an internal pump and battery, which can be charged via transcutaneous energy transmission – a method of transferring power under the skin without having to penetrate it, thereby decreasing the chance of infection.
The physics

Energy transmissionIn the artificial hearts produced by AbioMed, an electronics package is implanted in the abdomen of the recipient of the transplant to monitor and control the pumping of the heart.
Power is supplied from an external source to components under the skin, without penetrating it, using inductive electromagnetic coupling – the same principle as used by transformers to transfer electricity between different circuits, as in the national grid.
At their simplest, systems of transcutaneous energy transmission will use an external power supply connected to an external coil of wire, generating a magnetic field in it. This, in turn, produces an induced voltage in a second coil implanted under the skin, and a rectifier is used to change this alternating current into direct current that can be used to power the electronics of the heart and its controller.
Though simple in theory, in practice there are complications that arise from the need to keep the two coils aligned correctly as the patient moves, in delivering the correct level of power so that there is no excess dissipated as heat to potentially damage surrounding tissue in the patient’s body, and in making the components small enough to be carried around without too much discomfort.

The artficial heart
Image: Syncardia Systems

Monitoring blood flow
A replacement heart needs to be able to monitor the flow of blood to regulate its pumping and ensure that the correct amount of blood is delivered around the body.
Quicker pumping is required when the transplant recipient is more active, whereas the opposite is true while he or she is resting.
Blood-flow monitors make use of ultrasound – they bounce high-frequency sound waves off blood cells coming out of the heart, the volume and speed can be measured using similar basic principles to those behind radar.
Ultrasound is used because it can monitor the flow of blood without having to be in contact with it.

Appropriate materialsArtificial hearts need to be made of light but durable materials – the Syncardia version is plastic whereas that made by AbioMed is a combination of titanium and a specially developed polyurethane, called ‘Angioflex’.
Although the Abiomed heart is designed to have as few moving parts as possible, those that it does have are made from Angioflex and are tested to ensure that they are safe for contact with blood and capable of withstanding beating 100 000 times a day for years on end.
Materials scientists can develop substances with specific properties by manipulating the constituent elements and the way in which they are processed. Materials are characterised using various techniques from condensed-matter physics including electron microscopy, x-ray diffraction and neutron diffraction.
Because they were still quite large, the first devices produced were limited to around half the male population – those with the largest chest cavities. A newer, smaller, model is intended to extend their availability to smaller people.
An artificial heart being produced by the French medical company Carmat and expected to be available by 2013 will use chemically treated animal tissue to help avoid rejection by the host’s immune system. Aerospace engineers from Airbus were also involved in its development.

Artificial hearts combine, and improve upon, many existing physics ideas to produce a piece of technology that saves lives – although they are currently only approved as a stopgap until a donor heart can be found.

dimanche 21 septembre 2014

Inexpensive, Mobile, Wireless, Portable Ultrasound

Inexpensive, Mobile, Wireless, Portable Ultrasound
Inexpensive, Mobile, Wireless, Portable Ultrasound
This groundbaking mobile, wireless, portable ultrasound is sure to find widepread use in all medical settings across America, and the world. And it is inexpensive, which will lead to even wider use, especially in rural and third-world areas. This device will find widepread use in Emergency Rooms, and in the surgical and medical wards, as well as in office practice. Of course, there will be times when a higher grade ultrasound will be needed, but this Smartphone Ultrasound is a great start for diagnosing all types of medical problems, as a screening device., such as vascular problems, gallstones, kidney stones, abdominal masses, and other problems.  This invention will be brought to areas that could not afford it, or live in inaccessible areas.

The above model is a Mobisante, which is the world’s first smartphone-based ultrasound imaging system, the MobiUS™ SP1 ultrasound system. This device has been approved by the FDA is made to order to reduce healthcare costs and improve diagnostics in areas that cannot access imaging centers..
In their words, .”….MobiUS fuses the power and wireless connectivity of a smartphone with the Internet into a game-changing diagnostic solution that is personal and accessible. Our patent pending intellectual property makes the system easy to use and to share information with remote providers.”
See a video on how this fantastic  portable ultrasound device works

 
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Principes d'électronique

Principes d'électronique






Cet ouvrage est la traduction de la 7e édition américaine «Electronic principles». Pour cette nouvelle édition le contenu a été réactualisé, avec des compléments en électronique numérique et plus particulièrement sur les circuits intégrés. Les qualités pédagogiques de l'ouvrage sont conservées, avec des rubriques : Objectifs, Vocabulaire, Résumé, A retenir, Questions d'un recruteur... Des encadrés et des tableaux apportent des précisions utiles et plus de mille figures en couleur facilitent la compréhension du cours. La rubrique «grilles de dépannage» place l'étudiant dans la situation concrète d'un dépannage. Des fiches techniques précisant les caractéristiques de composants récents sont fournies. Des exercices et des problèmes corrigés, de difficulté progressive et regroupés par sujet, complètent des questionnaires à choix multiples.




Sommaire:

Chapitre 01 Circuits, unités et mesures électriques
Chapitre 02 Résistance, inductance et capacité dans les circuits CA et CC
Chapitre 03 Dispositifs unidirectionnels
Chapitre 04 Redresseurs et circuits régulateurs de tension
Chapitre 05 Amplificateurs a vide et a semi-conducteurs
Chapitre 06 Amplificateurs audiofréquences
Chapitre 07 Système audiofréquence
Chapitre 08 Résonance et amplificateurs a haute fréquence
Chapitre 09 Principes des récepteurs AM et FM
Chapitre 10 Antennes et émetteurs
Chapitre 11 Dispositifs commandes
Chapitre 12 Circuits fondamentaux d'ordinateurs


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vendredi 19 septembre 2014

Automatique - Contrôle et régulation


Automatique - Contrôle et régulation

Cours, exercices et problèmes corrigés

 


Description:



Cette nouvelle édition actualisée met en valeur des méthodes techniques qui sont maintenant largement utilisées dans l'industrie. Les bases de la régulation automatique sont expliquées avec le minimum de mathématiques. Afin de metttre en application les savoir-faire assimilés dans les exercices, les deux derniers chapitres proposent des problèmes résolus basés sur des situations réelles auquelles sont confrontés les techniciens automaticiens.
Cette nouvelle édition actualisée met en valeur des techniques maintenant largement utilisées dans l'industrie. Les bases de la régulation automatique sont expliquées avec le minimum de mathématiques. Chacun des chapitres est illustré d'exemples et d'exercices originaux dont les solutions sont détaillées. Afin de mettre en application les savoir-faire assimilés dans les exercices, une seconde partie propose des problèmes résolus basés sur des situations réelles auxquelles sont confrontés les techniciens automaticiens. 


Sommaire:

. Objectif de la régulation

. Etude des systèmes linéaires
. Etude des systèmes primordiaux
. Identification
. Régulateur industriel
. Notions de stabilité
. Précision
. Réglage
. Problèmes simple boucle
. Problèmes : boucles imbriquées ou boucles particulières
. Boîte à outils


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Part1: Click here


Part2: Click here

dimanche 14 septembre 2014

Analysis and Application of Analog Electronic Circuits to Biomedical Instrumentation

 

Analysis and Application of Analog Electronic Circuits to Biomedical Instrumentation

 



 ISBN-13: 978-0849321436 
 ISBN-10: 0849321433 
 Edition: 1ère

Description:
This book introduces the basic mathematical tools used to describe noise and its propagation through linear systems and provides a basic description of the improvement of signal-to-noise ratio by signal averaging and linear filtering. The text also demonstrates how op amps are the keystone of modern analog signal conditioning systems design, and illustrates their use in isolation and instrumentation amplifiers, active filters, and numerous biomedical instrumentation systems and subsystems. It examines the properties of the ideal op amp and applies this model to the analysis of various circuits. It explores models and architectures of the ...building blocks... of the signal conditioning systems used to monitor and measure medical data.

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Cost 35 $
Format PDF
Download here for free
See also this :


Advanced Probability Theory for Biomedical Engineers

Download Advanced Probability Theory for Biomedical Engineers


Description:

This is the third in a series of short books on probability theory and random processes for biomedical engineers. This book focuses on standard probability distributions commonly encountered in biomedical engineering. The exponential, Poisson and Gaussian distributions are introduced, as well as important approximations to the Bernoulli PMF and Gaussian CDF. Many important properties of jointly Gaussian random variables are presented. The primary subjects of the final chapter are methods for determining the probability distribution of a function of a random variable. We first evaluate the probability distribution of a function of one random variable using the CDF and then the PDF.

Next, the probability distribution for a single random variable is determined from a function of two random variables using the CDF. Then, the joint probability distribution is found from a function of two random variables using the joint PDF and the CDF. The aim of all three books is as an introduction to probability theory. The audience includes students, engineers and researchers presenting applications of this theory to a wide variety of problems—as well as pursuing these topics at a more advanced level. The theory material is presented in a logical manner—developing special mathematical skills as needed. The mathematical background required of the reader is basic knowledge of differential calculus. Pertinent biomedical engineering examples are throughout the text. Drill problems, straightforward exercises designed to reinforce concepts and develop problem solution skills, follow most sections.


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Series: Synthesis Lectures on Biomedical Engineering
Paperback: 108 pages
Publisher: Morgan and Claypool Publishers; 1 edition
Language:
 English
ISBN-10: 1598291505
ISBN-13: 978-1598291506

Cost : 35 $
Format: PDF

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samedi 13 septembre 2014

Bioinstrumentation - John D. Enderle


Download : Bioinstrumentation - John D. Enderle

Desription:
his short book provides basic information about bioinstrumentation and electric circuit theory. Many biomedical instruments use a transducer or sensor to convert a signal created by the body into an electric signal. Our goal here is to develop expertise in electric circuit theory applied to bioinstrumentation. We begin with a description of variables used in circuit theory, charge, current, voltage, power and energy.


 


Next, Kirchhoff's current and voltage laws are introduced, followed by resistance, simplifications of resistive circuits and voltage and current calculations. Circuit analysis techniques are then presented, followed by inductance and capacitance, and solutions of circuits using the differential equation method. Finally, the operational amplifier and time varying signals are introduced. This lecture is written for a student or researcher or engineer who has completed the first two years of an engineering program (i.e., 3 semesters of calculus and differential equations). 
A considerable effort has been made to develop the theory in a logical manner—developing special mathematical skills as needed. At the end of the short book is a wide selection of problems, ranging from simple to complex.

Cost 35 $
But here For free *__*
click here for more Biomedical Books : 

Sahre!