‏إظهار الرسائل ذات التسميات Wearable. إظهار كافة الرسائل
‏إظهار الرسائل ذات التسميات Wearable. إظهار كافة الرسائل

Next generation intelligent wearables enabled by sureCore’s ultra-low power memory


EverOn uses up to 50% less power than off-the-shelf memory

As the market for wearable electronics and earbuds grows dramatically, architects are adding more features or ‘smarts’ to create product differentiation. The additional intelligence means that designers are required to add more embedded memory to the chip resulting in increased power demands. In the case of some designs, these power demands of the memory can account for 50% of the total device power budget. For battery powered applications with a constrained form factor, this creates huge challenges for the design team to create a viable product.

“This is where our EverOn ultra-low power memories can make these product designs feasible as they need up to 50% less power than standard ‘off-the-shelf’ memories,” explained Paul Wells, CEO of sureCore, the ultra-low power, embedded memory specialist. “The power penalty for extra features is now recognised by designers as a real limitation for next generation devices and, as a result, we are signing multiple licensing deals for smart watches, fitness trackers and earbuds. Our SRAM IP is silicon proven in ‘leading foundry’ processes enabling customers to minimise power demand increases and gain fast time to market."

Low voltage design methodologies are becoming more prevalent as a route to cutting operating power. This is achieved by dynamically reducing operating voltages in line with the applications processing demands. Standard logic cells can, with careful design, operate over a wide voltage range, often close to near threshold voltages. However, off-the-shelf SRAM IP can only operate around the process nominal voltage. Integration of the two on the same chip means having two different power rails with level shifting circuitry, which consumes a lot of power, to provide the higher voltage for the memory plus extra circuitry to handle signals crossing between voltage domains. This adds to the complexity of the design and its verification as well as adding silicon real estate.

However, EverOn™ SRAM IP is specially designed for these kinds of systems where the voltage is adjusted to save power with operation from the process nominal operating voltage all the way down to the bit cell retention voltage that effectively dictates the lowest possible operating voltage. In a leading 40nm process technology, this means from 1.21V down to 0.6V without any additional circuitry or power rails. Hence the voltage of the chip can be dynamically adjusted up and down in tandem with the performance requirements for the operation in hand to save power as required. For example, this could be going from a high performance to a low performance mode or even a monitoring state awaiting a wake-up event. This makes the chip design much simpler. By contrast, adjusting the voltage in chips with traditional memory is far more complex as, while the logic part is easy to drop, the voltage to the memory needs to be maintained at the higher operational voltage.

Off-the-shelf SRAM IP has typically been optimised for either high density or high speed rather than power, and, as outlined above, this creates challenges for integration in a variable voltage, power-optimised system. EverOn achieves operating voltage flexibility by the use of sureCore’s patented SMART-Assist™ circuitry that is an integral part of the IP thereby conferring much-simplified integration and verification requirements. This methodology is thus an effective strategy for architects to deliver power savings of up to 50% compared to traditional approaches.

"Being able to easily and dynamically drop the voltage of a chip is key to saving power,” explained Tony Stansfield, sureCore’s CTO, “because power is proportional to the square of the voltage. For example, dropping from 0.9V to 0.6V roughly halves the power. In battery operated devices, low power is paramount so this amount of saving can be significant in designs that have a lot of memory. There is a constant drive to make these devices ‘smarter’ with more intelligence which means increasing amounts of memory that have to be very power designs to make the power budget and battery capacity calculations work. EverOn ultra-low power memory makes the next generation of intelligent, battery-powered devices possible."

sureCore™ -- When low power is paramount™

sureCore, the ultra-low power, embedded memory specialist, is the low-power innovator who empowers the IC design community to meet aggressive power budgets through a portfolio of ultra-low power memory design services and standard IP products. sureCore’s low-power engineering methodologies and design flows meet the most exacting memory requirements with a comprehensive product and design services portfolio that create clear market differentiation for customers. The company’s low-power product line encompasses a range of close to near-threshold, silicon proven, process-independent SRAM IP.
www.sure-core.com


sureCore, EverOn and When low power is paramount are trademarks of sureCore Limited.

5 Reasons to Use a Wearable Health Tracker



The Internet of Medical Things (IoMT) - medical devices and applications that are connected to the healthcare IT systems are expected to grow at a significantly higher rate, particularly between 2018-2023. Wearable health trackers, such as the smartwatches – elements of IoMT, are increasingly becoming mainstream products. Capable of tracking our health data, these devices can help us better understand our overall health and fitness.

According to a wearable tracker report published by IDC, the Indian wearables market saw a massive surge in growth by 144.3%, as compared to 2019, making India the only country in the top three that saw a three-digit growth in 2020. In fact, over the next few years, it is the healthcare industry that is expected to drive the entire wearable devices and technology market - thanks to the availability of cutting-edge products for health and fitness.

Now as the future of health-tracking wearables looks bright than ever before, we asked five Impact Creators to share why a health-tracking wearable is worth considering:

1. THEY TRACK OUR EXERCISE, BREATHING, HEART RATE AND MORE


“Wearables are helping us monitor our exercise, our breathing and our heart rates with the use of sensors embedded in their chips – software algorithms working on the software layer.

There are numerous techniques from which we are able to achieve this monitoring such as photoplethysmography for blood pressure to share breathing and heart rates, accelerometer sensing for movement, etc. More often, some technologies which come under the application of wearables are edge computing, IoT and cloud computing.”

–Ramneek Kalra, IEEE Member

2. WE CAN SELF-MONITOR OUR EXERCISE

“Fitness has gained significant mindshare, thanks to the pandemic. At the same time, social-distancing protocols have restricted access to gyms and other similar community sports centers. In these circumstances, wearables are a boon to help keep track of one’s activity.

Monitoring vital signs and changes as one exercises and providing real-time feedback would help one to keep within safe bounds of stress. For people with lifestyle, chronic or other diseases, exercises could be prescribed with greater confidence that reliable feedback mechanisms would help prevent harm.”

–Aiyappan Pillai, Senior IEEE Member

3. THEY PROVIDE A MORE COMPLETE VIEW OF OUR HEALTH

“Activity tracking helps in creating awareness among people the importance of balance in exercise, sleep and eating habits. But the wearables are not only for the healthy people, they are more importantly used for people who have some ailments like heart problems and obesity. Athletes may also get into injuries while training where the wearables can help them to be monitored through workout logs and other self-tracking methods.

The devices with self-tracking features help health-aware individuals monitor their own fitness levels through apps and messages, which the wearer can view without even bothering to take the device out of their pockets. The most important effect of these wearables is that a complete view of one’s health can be obtained all in one place thus reducing time and cost.”

–Ramalatha Marimuthu, IEEE Senior Member

4. DOCTORS CAN USE THE DATA TO HELP DIAGNOSE

“Even though the data collected by these wearables are very personal information associated with an individual, data protection and privacy standards prevail. But with proper consent, this data can be shared by an individual with their doctors which in turn are vital information for a patient’s diagnosis.

There was news where someone used a smartwatch, and after some months of data trends, helped the doctors diagnose a serious heart condition and immediately acted on it. It saved someone’s life.”

–Sukanya Mandal, Senior IEEE Member

5. THE TECHNOLOGY IS IMPROVING

“Today we see wearables’ total addressable market around 33 Billion USD, and it is expected to grow beyond 15% year-over-year. The future is promising for wearables, as it bundles the technology to change the social behaviour and acceptance of transformative use-cases.

Apart from the forms of wearables that are available today such as smartwatches, smart badges, smart glasses, smart bracelets, and smart head-mounted gadgets, I see the emergence of exoskeleton suits for lifting heavy objects and prosthetics through 3D printing for creating human organs will be used in manufacturing and healthcare industries to promote the same.”

– Bala Prasad Peddigari, Senior IEEE Member


Indian Scientist Unveils A Flexible Low Cost Wearable Sensor that Tracks Sweat for Monitoring Health and Physiological Status


Dr. Vinu Mohan A.M., scientist at CSIR-Central Electrochemical Research Institute (CECRI), Karaikudi, Tamil Nadu, a recipient of the INSPIRE Faculty Fellowship instituted by the Department of Science & Technology (DST), Government of India, has introduced a flexible low cost, wearable sensor that can track sweat for monitoring the health and physiological status of the human body. It can obviate the necessity of blood and other invasive tests.

The wearable microfluidic sensor, which does not need a clean room, can be used for in situ monitoring of biomarkers such as lactate, Sodium (Na+), Potassium (K+), and Alkaline/acidic nature (pH) simultaneously from sweat samples. Using the INSPIRE Faculty fellowship, Dr. Vinu is improving upon the sensor to make it stretchable as well so that it can monitor the sweat during exercising and biking.

The sensor can analyse biomarkers from human sweat during exercise activities without transfer of signals. The high-throughput sweat sampling ability of the sensor facilitates continuous capture and transport of sweat over the surface of the device resulting in real-time analysis. The flexible sensor can be attached on the irregular skin surface and monitors the dynamic biomarker levels, and are important for clinical diagnosis and personalized point-of-care analysis.



Developing microfluidic sensors with rapid sweat sampling and multiplexed electrochemical recognition abilities are extremely important for accurate sweat biomarker analyses and continuous real-time monitoring of health.



In the sensor set up by Dr. Vinu’s research group, a fluidic channel captures real-time sweat and directs it through the active sensing electrodes for subsequent interference-free analyses. A miniaturized printed circuit board collects cross-talk-free sensor responses without the need for wires. 

The fully-integrated pump-less microfluidic device is mounted on the skin, and the regional variations in sweat composition are analyzed at the underarm and upper back locations during stationary biking. The epidermal patch can monitor the hydration level and oxygenation of muscles which is essential for fitness monitoring application. This research has been published in the journal ‘ACS Sensor’.


Dr. Vinu Mohan and his team are also exploring other reliable biofluids such as saliva and fluid in tissues as they contain abundant chemical markers that could reflect the underlying physiology of the human body. They are also in-parallel focusing on developing wearable energy storage devices as they are essential for powering wearable electrochemical sensors. An all-printed solid-state flexible and stretchable supercapacitor having serpentine-shaped, interdigitated, freestanding interconnects was recently developed and used as energy buffering element for powering a wearable pulse rate sensor. 

The work was published in NanoEnergy journal. Besides, his group is developing omni-directionally stretchable high-performance supercapacitors for self-powered wearable sensors.

Fitbit and JMDC Sign Agreement to Appoint JMDC as Exclusive Distributor of Fitbit Premium for Enterprise Customers in Japan



Fitbit (NYSE: FIT) today announced that JMDC (TOKYO: 4483) will be the exclusive distributor of Fitbit Premium, Fitbit’s paid membership service, for enterprise customers in Japan. 

JMDC, one of Japan’s biggest medical database providers, has offered Fitbit devices (trackers and smartwatches) to its enterprise customers (payers, companies focusing on corporate wellness, and private insurers) since 2016, and will offer Fitbit Premium to its enterprise customers in Japan starting today.

Fitbit Premium provides personalized, actionable guidance to help people move more, sleep better and eat well. Premium membership includes customized programs, advanced analytics, personal insights, workouts, new challenges, new key health metrics, health reports and more – all in one place in the Fitbit app. Fitbit Premium will also be offering localised programs in Japanese for sleep, nutrition and mind-fullness from partners like Asken, Croix and Neurospace. Fitbit Premium has already reached more than 500,000 paid subscribers in less than a year since launch.

According to the Ministry of Health, Labour and Welfare, Japan continues to see healthcare expenditure reach record highs, with an estimated ¥42.6 trillion (USD 385.9 billion) spent in 20181 to support a rapidly aging population. Japanese employers pay a significant portion of these healthcare costs and, in response, many companies have stepped up their efforts to improve workplace health and wellness, with strong support and recognition from the government.2

“In recent years, Japanese organisations have become increasingly dedicated to improving the health and well-being of their employees and members, and Fitbit’s innovative wearables and supportive global community make us a natural partner to help enterprise customers achieve these goals,” said Steve Morley, Vice President of International Health Solutions & General Manager Asia Pacific at Fitbit. “Through our work with a strategic partner like JMDC and our network of distributors, we have made important strides towards making health and wellness more accessible and achievable for everyone in Japan. By expanding our enterprise partnership with JMDC to include Fitbit Premium, we will be able to offer extra motivation and support to help drive positive health outcomes for even more people.”

“I am truly grateful to have been able to enter this partnership with Fitbit, a world-leading company in the field of wearable devices. With corporate wellness ‘Kenko-Keiei’ growing in Japan, we are now able to provide more sophisticated wearable solutions than ever before. We will continue to contribute to the promotion of personal health, and at the same time, we will continue to develop further solutions using the insights accumulated through wearable devices and offerings such a Fitbit Premium,” said Matsushima Yosuke, President and CEO, JMDC.

Fitbit was first introduced in Japan in 2014, and today Fitbit works with nearly 300 Japanese enterprise customers across a wide range of industries to provide health and wellness solutions that help drive meaningful engagement, better health outcomes, and positive returns for employers, health insurers, and payers.

Historically, JMDC has focused on the health promotion business for health insurance association clients, however, JMDC plans to enhance its provision of services that focus on aspects such as exercise, sleep, meditation, preventive mental health, in the corporate wellness field with Fitbit Premium. Fitbit Premium will be a core service offering for JMDC’s enterprise customers. This partnership will greatly expand its business in the field of health management for its corporate clients.

Interested organizations are invited to pre-register their interest by contacting https://fitbit.jmdc.co.jp/

About Fitbit

Fitbit helps people lead healthier, more active lives by empowering them with data, inspiration and guidance to reach their goals. Fitbit designs products and experiences that track and provide motivation for everyday health and fitness. Fitbit’s diverse line of innovative and popular products include Fitbit Sense™, the Fitbit Versa™ family of smartwatches, Fitbit Charge 4™,Fitbit Inspire 2™, and Fitbit Ace 2™ activity trackers, and Fitbit Aria Air smart scale. Fitbit products are carried in approximately 39,000 retail stores and in 100+ countries around the globe. The Fitbit platform delivers personalized experiences, insights and guidance through leading software and interactive tools, including the Fitbit app and Fitbit OS for smartwatches. Fitbit’s paid subscription service, Fitbit Premium, provides advanced analytics and actionable guidance in the Fitbit app to help you reach your health and fitness goals. Fitbit Health Solutions develops health and wellness solutions designed to help increase engagement, improve health outcomes, and drive a positive return for employers, health plans and health systems.

Fitbit and the Fitbit logo are trademarks or registered trademarks of Fitbit, Inc. in the U.S. and other countries. Additional Fitbit trademarks can be found www.fitbit.com/legal/trademark-list. Third-party trademarks are the property of their respective owners.

About JMDC

Established in 2002. JMDC’s mission is “Leveraging data and ICT solutions to create a sustainable national healthcare system”. JMDC is a pioneer in the field of healthcare big data with proprietary technology in data anonymization processing and data analysis and aggregation. Based on analysis of over 540 million Health Insurance (Payer’s) Claims Data and over 26 million Health Examination Data (as of March 2020), it engages in health promotion for payers, safety evaluation and health economic analysis pharmaceuticals and other information services. JMDC continue developing service of health promotion such includes Pep Up, a personal health record service aimed at promoting wellness that employs a single health indicator (health age), and in other ways strives to create a sustainable healthcare system harnessing the leveraging data and ICT ‘(information and communication technologies) solutions.

1 https://www.mhlw.go.jp/topics/medias/year/18/dl/iryouhi_data.pdf
2 https://www.meti.go.jp/english/press/2019/0830_002.html 

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