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मिरांडा हाउस में बायोलॉजिकल सेंसर विकसित, समय रहते खतरे को पहचान कर जान बचाने में करेंगे मदद, हार्ट अटैक की पहचान में बनेंगे मददगार

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00:00My work is on the sensors, as we know that we are able to know in which environment we are going to go to the environment.
00:10So, the sensors have been increased.
00:12Therefore, we are working on a lot of different gases of the sensors.
00:16The gases that contribute to the production, such as NO2, SO2,
00:22and other gases such as methane and hydrogen in the sensors.
00:27Besides, we are working on the point-of-care diagnosis.
00:32We are working on the bio-sensors for Alzheimer's disease.
00:37Besides, we are working on the devices as well.
00:42We are working on the sensor, which can be done on the field.
00:49In this lab, we are making many sensors.
00:53For the fabrication, we use RF-mectrons and lithography.
00:59In photography, we can create circuits to 0.6 micrometer line width.
01:06Besides, we have been fabricated by hand-held prototypes.
01:12We have wire-bonders also are also equipped with wire-bonders.
01:16We also work on the final circuit wire-bonding through connection.
01:20We also send our prototypes to different industries.
01:24Recently, we have installed gas sensors in Sigma Gas.
01:28We have installed gas sensors, temperature sensors, magnetic field sensors.
01:40So, if we look at one example,
01:44we have a lot of pollution,
01:46the most major problems are in Delhi.
01:48This pollution is a problem,
01:50which is passing vehicles.
01:54Vehicles, which are diesel cars or petrol cars,
01:56which are many pollutants from the liquid,
01:58such as NO2 gas or SO2 gas.
02:02in gas carbon dioxide carbon dioxide
02:07we create the sensors in gases detect
02:12in gasses in gas
02:15png lines
02:17cng p pump stations
02:20we install our sensors
02:23safety guards
02:24also if we look at our sensors
02:28we install different industrial sites
02:32where the testing continues
02:35and we are trying to get these sensors
02:38to the market to the people
02:40and this is why we collaborate with the industry
02:44how will you do this work?
02:46what will you do?
02:48as I have told you
02:50if there is gas leakage
02:52if there is a sensor
02:54then it will give us a buzzer
02:56or we will generate an alarm
02:58so we will know
03:00that there is gas leakage
03:02and we can timely
03:04measures and precautions
03:06like our biological sensors
03:10if our soldiers
03:12or Indian soldiers
03:14they are very high altitude
03:16and the blood of the blood
03:19starts to clot
03:21because there is temperature minus
03:23that is not
03:25the problem
03:26that we can detect
03:27that there is blood clotting
03:29that there is blood clotting
03:30or that is not
03:31so we can send these sensors
03:32and check those sensors
03:33to those sensors
03:34that we can know
03:35that the soldiers
03:37are not blood thinning
03:39level of blood thinning
03:40is very high
03:41and therefore
03:43we can save them
03:45from heart attacks
03:46this is a normal thing
03:47that we can save it
03:49as we can save them
03:50due to the heart attack
03:51because the most main reason
03:52is blood clotting
03:53is the main reason
03:55is the main reason
03:56it is blood clotting
03:57as well
03:58it is for testing
03:59for this
04:00to be a patient
04:01it is still
04:02ongoing process
04:03it is about
04:04the ongoing process
04:05when will it be the market
04:06this is the first time
04:07will come
04:08look at that
04:09Research is starting at R&D level and then it goes into industry where it is scaling up.
04:16It takes time to reach market level, so for 5-10 years of market level, it will take a minimum.
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