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BIOMEDICAL ENGINEERING
Biomedical Engineering studies the implementation of engineering knowledge in the field of biology and medicine. The combination of instrumentation and electronic control systems and the application of mathematical algorithms and physical and chemical principles allow Biomedical Engineering to investigate and develop new techniques and devices for the resolution of clinical problems. This discipline covers from the design of diagnostic elements and medical software tools to physiological analysis for the study of the heart or the nervous system.
Biomedical Engineering has evolved over the years thanks to scientific and technological advances. At present, devices such as vital signs monitoring systems or diagnostic devices facilitate medical care work. The development of image analysis methods such as X-rays, ultrasounds and magnetic resonance allow the study of the human organism clearly and quickly. In addition, telemedicine and hospital management software are used.
The future of Biomedical Engineering has a long way to go, since today's society requires fast and efficient medical solutions. The electronic devices used day to day will allow remote patient monitoring, following the vital signs values to be able to analyze the symptoms before a health problem and, even, prevent that possible problem. Another trend of Biomedical Engineering is the simplification of laboratory tools. Systems, such as Lab On a Chip (LOC), integrate laboratory functions into a single chip. New robotic surgery techniques, new organic materials for the manufacture of artificial tissues and regenerative tissues or 3D printing of artificial organs will make it possible to resolve future medical needs.
UV Chamber for Surface Disinfection
Product Brochure
Manufacturer | Technosys |
Controller | Microprocessor controller that constantly monitors operation of the UV bulbs |
Timer | 0-59 minute UV Light Timer |
Display | Digital, Microprocessor Control |
Voltage | 110V and 230V |
Safety Standard | Clear polycarbonate sash with overlap and safety position switch |
UV light dead air boxes are designed to provide powerful UV irradiation energy to effectively kill bacteria and viruses on the surface of various objects. The UV Box is designed with a microprocessor controller that constantly monitors the operation of the UV bulbs. The microprocessor controller has a digital UV timer that permits the end user to set the irradiation time up 59 minutes. Each UV box is equipped with a door position switch that turns off the UV light if the door of the box is opened. The door position switch, in combination with the microprocessor controller, only allows for the UV lights to be turned on when the door is in the closed position.
The UV Box’s main chamber is constructed of thermally fused polypropylene and the clear door is polycarbonate. The polycarbonate door has the natural ability to reflect UV light and does not allow transmission of the UV energy, thus making it the safest choice for a clear viewing material.
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Typical applications:
- Finger print brushes
- Cell phones
- Hand guns
- Tactical gear
- Respirators
- Utility belts
Isothermal Fluorescence PCR
Number of Reactions/Preps | 15ul-150ul |
Number of Reactions(Preps) per Kit | 15ul-150ul |
Sample Capacity/Format | 08 wells |
Volume Thermal Block Sample | 0.2mL |
No of Channels | 2 |
Method | PCR |
- Ptoduct Detail
Gene-8C/Gene-8C2 is an Isothermal fluorescence PCR instrument, it is a compact, lightweight, low cost, stand alone, sensitive instrument suitable for field based and point of care diagnostic applications. The Gene-8C/Gene-8C2 is a portable instruments that provides measurement of one fluorophore, and the Gene-8C2 provide measurement of two fluorophores. We designed these to run any isothermal amplification method that employs target detection by fluorescence measurement. The Gene-8C/Gene-8C2 boast low power requirements and includesa rechargeagle Lithium-polymerbattery that can keep it running for 2-5 hours. Gene-8C/Gene-8C2 have a 7inch touch screen. Realtime temperature and fluorescence data are displayed graphically and in real-time during a run and all of the data are held in the instrument’s large internal Flashmemory. These data are permanently stored and can be reviewed at any time after the run has finished or uploadedto a PC or an android mobile via USB link or WIFI.
Features:
1. Small footprint, low-cost and easy to use, suitable for bench top and field applications
2. Purpose-designed sophisticated instruments that support any isothermal DNA/RNA amplification method employing fluorescence readout
3. 7 inch touchscreen, and offers stand-alone operation, it no need for a host computer
4. Support eight standard 0.2ml tubes
5. One channel or two channel fluorescence detection per tube
6. Easy to use advanced desktop software and APP software (Android mobile) for the test configuration management and export
7. Testing temperature range: RT. to 99???
8. PC software, APP software and bulit-in software for powerful and validated data analysis and review
9. Easy access to data via USB interface and WIFI
10. Use independently via touch screen, link to computer via a USB cable or link to android mobile via WIFI
11. To link printer via USB cable and print the text data and results which you require
12. Mains or battery-powered
COMPUTER CONTROLLED BIOMEDICAL PARAMETERS AND BIOSIGNALS UNIT
Electrocardiography and Temperature Biomedical Module | Three-lead EGC output. |
Heart rate range | 30 - 145 bpm |
Cardiovascular diseases | atrial fibrillation, atrial flutter, asystole, first, second and third degree atrioventricular block |
Temperature range | 25 - 43.5 DegreeC. |
Biosignals Patient Monitor | 12.1" TFT-LCD screen. |
The Computer Controlled Biomedical Human Biosignals and Parameters Teaching Unit "BIHBPC" allows the user to simulate the main human Biosignals and to monitor them in a real Biosignals Patient Monitor (BI-PM). It includes a hardware emulator, which imitates the Biosignals that can be studied by the monitor, so that there is no need to connect any sensors to the students and the monitor.
Human body Temperature Scanner / Detection
Brand | Flir |
Model Name/Number | E75, E85 |
Usage/Application | Hospital |
Color | Arctic, Gray, Iron, Lava, Rainbow and Rainbow HC |
Resolution | 320x240 |
Thermal Imaging Camera for Elevated Human body Temperature Detection
1. IR resolution: 320 × 240 pixels or more
2. Screening Mode (must have this feature in camera to screen Human being) with 0.5°C (0.9°F) accuracy @ 37°C (98.6°F) with reference
3. Audio Alarm: Audible alarm if the object temperature is above set temperature range
4. Object temperature range: 20°C to 50°C at least
5. Accuracy: ±2°C or ±2% of reading
6. Field of view (FOV) : 24° × 18° or less
7. Spatial resolution (IFOV) :1.31 mrad/pixel or less
8. Thermal sensitivity/NETD: <40 mK or less @ +30°C
9. Minimum focus distance: 0.15 m
10. UltraMax (super-resolution): Facility should be available to achieve 640x480 pixel resolution
11. Image frequency: 30 Hz or more
12. Focus: Continuous, one shot & manual
13. Digital zoom: 1-4x continuous
14. Detector type: Focal plane array (FPA), uncooled microbolometer
15. Spectral range: 7.5–14 µm
16. Display: Touch screen, 4.0 in. LCD, 640 × 480 pixels or more
17. Auto Orientation: Yes (should be available)
18. Programmable buttons: Should be available
19. Spot meter: minimum 1 in live mode
20. Area: minimum1 in live mode
21. Image adjustment: Auto, Auto max, Auto min & manual
22. Image modes: IR image, visual image, high spectral image, picture in picture, thumbnail gallery
23. Picture in Picture: Resizable & movable IR area on visual image
24. Automatic hot/cold detection: Auto hot or cold spot meter markers within area
25. Color alarm (isotherm): Above, below, interval, condensation & insulation
26. Difference temperature: Delta temperature between measurement functions or reference temperature
27. Reference temperature: Manually set or captured from any measurement function
28. Emissivity correction: Variable from 0.01 to 1.0 or selected from materials list
29. External optics/windows correction: Automatic, based on inputs of optics/window transmission and temperature
30. Color palettes: Arctic, Gray, Iron, Lava, Rainbow and Rainbow HC
31. Image storage: Standard JPEG, including measurement data (Infrared-only mode)
32. Remote control operation: Should be possible using USB cable) &with Mobile device using Wi-Fi
33. Voice Annotation: 60 seconds (via Bluetooth)
34. Text Annotation: Text from predefined list or soft keyboard on touch screen
35. Visual image annotation: Yes
36. Sketch: From touch screen
37. Compass: Yes
38. Laser distance meter information: Yes