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Special Method To Synthesize Tera Hertz Pulse Solid State Method

Abstract: In this invention, Tera Hertz pulses are synthesized from solid state materials in a special type of chambers. The device uses nano materials to emit Tera Hertz pulses under typical operating conditions. These pulses are found highly useful in medical instrumentation and other scientific applications.

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Notices, Deadlines & Correspondence

Patent Information

Application #
Filing Date
07 January 2013
Publication Number
20/2016
Publication Type
INA
Invention Field
COMMUNICATION
Status
Email
Parent Application

Applicants

EESAVYASA TECHNOLOGIES PVT. LTD.,
PLOT NO : 79, PHASE-III, SVCIE, BALANAGAR, HYDERABAD, R. R. DISTRICT, ANDHRA PRADESH - 500 037

Inventors

1. D.P. CHAKRAVARTHY
PLOT NO : 79, PHASE-III, SVCIE, BALANAGAR, HYDERABAD, R. R. DISTRICT, ANDHRA PRADESH - 500 037
2. BANDA RAVI SANKAR
PLOT NO : 79, PHASE-III, SVCIE, BALANAGAR, HYDERABAD, R. R. DISTRICT, ANDHRA PRADESH-500037
3. DR. KUNAM SASIDHAR REDDY
PLOT NO : 79, PHASE-III, SVCIE, BALANAGAR, HYDERABAD, R. R. DISTRICT, ANDHRA PRADESH-500037

Specification

1. Title of Invention

Special method to Syntehsize Tera Hertz pulse - Solid state method

2. Applicant

Name : EESAVYASATECHONOLOGIES PVT. LTD
Nationality : INDIAN
Address : R&D center, Plot No: 79, Phase - III, Balanagar, Hyderabad, R.R.
District, Andhra pradesh, Pin - 500037, INDIA.

3. Preamble to the description:

Complete Specification:

Summary:

In the summary of invention, each important salient feature is explained as follows:
In this method of TerzHertz pulse generator construction, Infrared Beam and radio frequency waves are perpendicularly placed against each other in a magnetic field. This field arranged space is when bombarded with femto second lasers, the resultant beam obtained is Tera Hertz pulses. This is a novel method of synthesizing Tera Hertz pulses using femto second pulsed laser diodes which is the uniqueness of the invention. The Tera Hertz pulse generated is identified with Silicon Selenium alloy.

4. Description

In this method of invention conventional approach of Tera Hertz pulse is not followed. Femto second laser diode pulses are chopped with perpendicularly traced infrared beams and radio frequency fields under external strong magnetic field. When magnetic field is chopping the femto laser pulses, as the laser light passes through perpendicular described field resultatnt will be Tera Hertz pulses which are considered to be soft pulses.

Background of invention

There are several methods of diagnostics used for image generation in medical, biotech, industrial applications. Depending on the object to be studied X-ray source, ultrasonic sound source, laser beam source and electron beam sources are used. There is a need for a innovative method which can replace all the above type of light sources which are eventually radiation emitters causing damage to soft tissues. Tera Hertz pulses invetion is a one stop solution for all the said requirements where images can be generated.

6. Brief description of drawing:

7. Claims

In this method of the following claims are possible

1. Tera Hertz pulse generator is used to take the images of soft tissues, muscle tendons and hard bones simultaneously without causing any hazardous effects like X-rays. Hence digital tera hertz images are obtained.

2. Tera Hertz pulses are used to study the property of materials when passed through at variable pulse rates

3. Tera hertz pulse can study amorphous crystaline structure to understand the molecular symmetries are amorphous substances, crystals and also liquids.

4. Tera hertz pulses can pass through living organsims without damaging them. Hence these pulses can be used to study the biological structures, cell walls and microbes and virus etc.

5. The proposed method of invetion being a solid state method can give a flexibility to the instrument to carry wherever casulities are occured and immediately appropriate diagnosis is possible.

6. Tera hertz pulses are also a substitute for electron beam sensors in constructing Scanning Tunneling microscope, scanning electron microscope and transmission electron microscope.

Documents

Application Documents

# Name Date
1 79-CHE-2013 FORM-3 07-01-2013.pdf 2013-01-07
2 79-CHE-2013 FORM-2 07-01-2013.pdf 2013-01-07
3 79-CHE-2013 FORM-1 07-01-2013.pdf 2013-01-07
4 79-CHE-2013 DESCRIPTION (PROVISIONAL) 07-01-2013.pdf 2013-01-07
5 79-CHE-2013 FORM-2 06-01-2014.pdf 2014-01-06
6 79-CHE-2013 DRAWINGS 06-01-2014.pdf 2014-01-06
7 79-CHE-2013 DESCRIPTION(COMPLETE) 06-01-2014.pdf 2014-01-06
8 79-CHE-2013 CORRESPONDENCE OTHERS 06-01-2014.pdf 2014-01-06
9 79-CHE-2013 CLAIMS 06-01-2014.pdf 2014-01-06
10 79-CHE-2013 ABSTRACT 06-01-2014.pdf 2014-01-06
11 79-CHE-2013 FORM-28 05-08-2016.pdf 2016-08-05
12 79-CHE-2013-Other Patent Document-F18-F28-050816.pdf 2016-08-19
13 79-CHE-2013-FORM28-050816.pdf 2016-08-19
14 79-CHE-2013-Form 18-050816.pdf 2016-08-19
15 79-CHE-2013-FER.pdf 2019-02-26
16 79-CHE-2013-OTHERS [24-08-2019(online)].pdf 2019-08-24
17 79-CHE-2013-FER_SER_REPLY [24-08-2019(online)].pdf 2019-08-24
18 79-CHE-2013-DRAWING [24-08-2019(online)].pdf 2019-08-24
19 79-CHE-2013-COMPLETE SPECIFICATION [24-08-2019(online)].pdf 2019-08-24
20 79-CHE-2013-CLAIMS [24-08-2019(online)].pdf 2019-08-24
21 79-CHE-2013-ABSTRACT [24-08-2019(online)].pdf 2019-08-24
22 79-CHE-2013-US(14)-HearingNotice-(HearingDate-28-12-2023).pdf 2023-12-07
23 79-CHE-2013-FORM-26 [26-12-2023(online)].pdf 2023-12-26
24 79-che-2013-Correspondence to notify the Controller [26-12-2023(online)].pdf 2023-12-26
25 79-CHE-2013-Written submissions and relevant documents [21-02-2024(online)].pdf 2024-02-21
26 79-CHE-2013-PETITION UNDER RULE 138 [21-02-2024(online)].pdf 2024-02-21
27 79-CHE-2013-FORM-26 [21-02-2024(online)].pdf 2024-02-21
28 79-CHE-2013-FORM 13 [21-02-2024(online)].pdf 2024-02-21

Search Strategy

1 79CHE2013table1_26-02-2019.pdf