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What is UWB?

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UbiTrack

Lvl 2
3y ago
Updated: 11/9/2021

Ultra-Broadband, or UWB, is a short-range radio frequency (RF) technology for wireless communication that can be used to pinpoint the precise location of people, equipment, and assets. UWB, like other communication protocols like Bluetooth and Wi-Fi, can be used to send data over radio waves between devices.

Ubitrack is a company that sells a variety of tracking devices, including UWB Outdoor Positioning Systems and UWB Indoor Positioning Systems. Anyone interested in purchasing these systems should contact UbiTrack.

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UbiTrack

Lvl 2
3y ago

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Related Questions

Advantages of wireless UWB modules for distance measurement??

High accuracy: UWB technology provides centimeter-level positioning accuracy, making it suitable for scenarios that require precise location tracking. Strong anti-interference capability: UWB signals use low-power short pulses, effectively reducing interference and maintaining stable signal transmission in complex environments. High data transfer rate: UWB modules not only support high-precision distance measurement but also enable high-speed data transmission. Low power consumption: UWB technology employs a low-power design, which effectively extends the device's operational lifespan. Wide spectrum support: UWB signals can operate over a broader frequency range, coexist with other narrowband signals, and are less susceptible to interference from traditional wireless signals. NiceRF


What are some uses of UWB?

Ultra-Wideband (UWB) technology is primarily used for high-precision location tracking, enabling applications such as indoor navigation and asset tracking in warehouses. It also plays a significant role in secure data transmission for contactless payments and smart home devices. Additionally, UWB is utilized in automotive applications for keyless entry systems and collision avoidance technologies. Its ability to provide accurate distance measurements makes it valuable for various industrial and consumer applications.


NiceRF UWB base stations have the following installation requirements??

Each UWB base station should be at least 30 cm away from the wall, with no obstructions around it. The base station should be installed at a height above human level. It's best to ensure that there is a clear line of sight between base stations without any visual obstructions.


What is WI media technology?

WiMedia is the Evolution of Wireless Personal Area Networks. It is expected to acheive a throughput of 500 mbps over a range of 100 meters. And the technology works over Ultra wide band(UWB) making it power efficient.


Can you share several common indoor location technology with me please?

There are many types of indoor location technology, this article compares the advantages and disadvantages of these technology. Ultrasonic Wave The device calculates the distance by get the ultrasonic propagation time in the medium. The location accuracy of the ultrasonic is the highest. It has simple structure, but it may be by affected multipath and obstacles. If someone can solve the above problem, The location system based on the ultrasonic technology will have a wide range of applications. Radio Frequency Identification Radio frequency Identification uses two-way communication to exchange data in order to achieve the purpose of identification and location. The advantage is the relatively small size and the low cost. but the distance it can detect tags is short, and the location accuracy is lower than the ultrasonic technology. Ultra-wideband Technology Compared with conventional narrowband systems, The UWB system can penetrate obstacles. The low power consumption and good resistance to multipath effects make the UWB become a good way to locate the tag, but the location accuracy is worse than ultrasound and the cost is very high to buy a UWB system. In addition, there are Wi-Fi, Bluetooth and ZigBee realizing the real-time location. come ecived to check it.


What is the difference between near field communication and ultra wideband?

A near field communication (NFC) is a very short-range wireless connectivity technology made for cell phones and credit cards, while the ultra wideband (UWB) is a form of short-range communications that employs extremely short electromagnetic pulses that are transmitted across a broad range of radio frequencies.


What is the latency of an IPS (indoor positioning system)?

Client-based: There is no or extremely minimal latency because the position is determined completely on the smartphone. The sample rate is determined by the technology utilized. Differences arise as a result of the localization technology used (Wi-Fi-based systems, Bluetooth beacons, UWB tracking). Please contact UbiTrack and we will provide you with an estimate based on your needs.


How wireless monitor work with wireless adapter?

It’s same like other wireless devices like keyboard, mouse and other Bluetooth devices. Only thing is here transferring huge amount video data could not applicable by normal wireless technology. For this UWB (Ultra Wide Band) wireless signal data is used to transfer the video and audio data in high data rate.


What is nanotron?

Nanotron is a technology company specializing in wireless communication solutions, particularly for the Internet of Things (IoT) applications. Their primary focus is on providing precise location and tracking capabilities through ultra-wideband (UWB) technology. This enables efficient asset management and monitoring in various industries, enhancing operational efficiency and safety. Nanotron's innovations are particularly beneficial in environments where accurate positioning is critical, such as logistics and healthcare.


Why is the indoor positioning system important?

Indoor positioning systems, such as those used by UbiTrack, allow you to locate objects or people within a building. Because there is no visual contact with GPS satellites inside, an IPS (indoor positioning system) must rely on other locating techniques. Wi-Fi and Bluetooth Low Energy (BLE), as well as solutions based on Ultra-wideband (UWB) or passive RFID, are examples of common consumer protocols. The devices from infsoft can be used both indoors and outdoors. The first and most important step in the installation of locating systems is to choose the positioning method and technology.


How much does a heart rate monitor cost?

If you're seeking an excellent Bluetooth heart rate monitor, UbiTrach makes the greatest heart rate monitor on the market with cutting-edge technology. Our TWC1, TWL1, and TWL2 heart rate monitors are the best on the market. It is composed of high-quality materials and uses UWB and Bluetooth technology to a lesser extent. These devices are conveniently accessible from any location. Our devices have an IP68 waterproof rating, which means they are resistant to water and dust. You can get a decent Bluetooth heart rate monitor from our store without a doubt.


Who is Shantanu Padhi?

Dr. Shantanu Kumar Padhi School of Information Technology & Electrical Engineering University of Queensland Biography Shantanu received his Ph.D in Electronic Science (Microwave Engineering) from University of Delhi, India in 1999. His doctoral thesis focussed on novel design of planar antennas for mobile communication system. He held a visiting research appointment with Wireless Research Group (WSG), School of Information Technology and Electrical Engineering (former School of CSEE/ELEC), University of Queensland, Brisbane in 1997. During his stay in Brisbane, he was working on vehicle mounted antennas for mobile communication system. In 1998 he was working as consultant to SB Electromechanicals Pvt. Ltd and Astra Microwave Pvt. Ltd on design development of phased array antenna for radar level gauge instrument. He was also involved on the development of Ku-band ridged horn antenna for satellite and terrestrial communication link. In 1999 he joined Global Positioning System Centre (currently PWTC), School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore, where he was actively involved in the design and development of MEMS antennas and filters for the millimetre-band MEMS RF-Identification Tag (MEMSAT), which was a strategic research project funded by NSTB (currently A*Star), Singapore. During this time he was also involved in other projects; (i) development of RFID system at 2.4 GHz and 5.8 GHz band, (ii) photonic bandgap and (iii) planar antenna array for VSAT applications and (iv) on-wafer RF measurement system upto 110 GHz. The research work results successful lunching of prototypes of RFID system at 2.4 GHz band. In 2002 Shantanu joins Molecular Science division of CSIRO, Melbourne, where he was involved in various projects ; (i) Fractal polymer RFID, (ii) low cost and flexible tag, and (iii) organic electronics. His main research was focussed on covert and overt security features, organic electronics, conducting Polymer, organic diodes, flexible RFID and conducting ink. He joins CSSIP (CRC-SSIP) in 2004 and was working on Microwave imaging of breast cancer project. Currently he is involved in ARC project Target identification with Ultra-wideband Polarimetric Radar. His current research activities includes, design and development of low profile antenna system for UWB communication system, fractal antenna for RFID, time domain near-field and far-field antenna measurements, resonance based target identification, tumor detection and microwave imaging. He has published one book chapter and more than 60 referred articles in journals and conferences. Above retrieved from Answers.com Viper1