Thursday, April 28, 2022
The most common Google Wear OS problems and how to fix them
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The tech-boosted G-Shock GA-B2100 watch is a great buy
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Wednesday, April 27, 2022
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The best smartwatches for 2022
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Tuesday, April 26, 2022
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Monday, April 25, 2022
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Thursday, April 21, 2022
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Monday, April 18, 2022
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Wednesday, April 13, 2022
Infrafon Smart Badge Connected by Sequans’ Monarch Technology
Sequans Communications announced that Infrafon is using its Monarch cellular IoT technology to connect its award-winning Infrafon CC1 Smart Badge, an intelligent name tag introduced earlier this year at Mobile World Congress.
The Infrafon CC1 Smart Badge is a computerized name tag with smartphone functions that are fully controlled in the cloud. It can be worn as a wearable on clothing where it can ensure visual identification of the wearer through its e-paper display, and can contain a wide variety of desired information, including personalized credentials, appointment details, healthcare data, geofencing parameters, NFC credentials, and more. Sequans’ Monarch 2 GM02S LTE-M/NB-IoT module provides the cellular IoT connectivity that enables the Infrafon Smart Badge to remain always connected via the highly reliable LTE-M cellular network, according to a press release.
“The Infrafon Smart Badge is a truly innovative personal communication system with a multitude of uses, for example, in healthcare and workplace safety,” said Louis Chuang, EVP of Sequans’ Massive IoT Business Unit. “It can perform all of the advanced smartphone functions you can imagine, but without the need of a smartphone, making it one of the most interesting IoT connected devices we’ve seen this year.”
“We selected Sequans’ Monarch module to connect our Smart Badge because it is the most advanced cellular IoT connectivity solution available today, with unmatched low power consumption, highly secure iSIM, and proven reliability,” said Frieder Hanson, Infrafon founder and CEO. “The ultra-low power consumption of Monarch allows the Smart Badge to run for many days without user intervention, making it extremely simple to use, which was one of our most important design goals.”
The Infrafon CCI is a tiny CC1 smart badge device that weighs only 50g, close to credit card size, and is equipped with a high res 600×480 pixel interactive e-paper screen. All familiar smartphone functions can be managed remotely OTA and centrally by the operator. The device user can interact with multiple DataView tasks or can answer questions. Device users have no access to the device´s functional setup details. This Infrafon design principle provides stability and efficiency to the operator´s processes. For more information, visit the Infrafon CCI web page.
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Infrafon is using Sequans’ second-generation LTE-M/NB-IoT module, Monarch 2 GM02S, that delivers ultra-low power consumption and a very high level of security. Monarch 2 GM02S is the world’s only cellular IoT module supporting an EAL5+ secure enclave for integrated SIM (ieUICC) capability that is compliant with GSMA standards. The module also supports a single rail power supply starting at 2.2 V, the lowest level in the industry, allowing for better efficiency of the internal power management unit, further reducing power consumption, and lowering battery and BOM costs. For full product details, visit Sequans’ Monarch 2 GM02S web page.
About Sequans
Sequans Communications is a leading developer and supplier of cellular IoT connectivity solutions, providing chips and modules for 5G/4G massive and broadband IoT. For 5G/4G massive IoT applications, Sequans provides a comprehensive product portfolio based on its flagship Monarch LTE-M/NB-IoT and Calliope Cat 1 chip platforms, featuring industry-leading low power consumption, a large set of integrated functionalities, and global deployment capability. For 5G/4G broadband IoT applications, Sequans offers a product portfolio based on its Cassiopeia Cat 4/Cat 6 4G and high-end Taurus 5G chip platforms, optimized for low-cost residential, enterprise, and industrial applications. Founded in 2003, Sequans is based in Paris, France with additional offices in the United States, United Kingdom, Israel, Hong Kong, Singapore, Finland, Taiwan, South Korea, and China.
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Tuesday, April 12, 2022
Stanford Researchers Develop Elastic Light-Emitting Polymer for Stretchable, Wearable Displays
No one would ever imagine crumpling up their smartphone, television or another electronic device. Today’s displays – which are flat, rigid and fragile – lack the ability to reshape to interactively respond to users.
As part of an overarching quest to build “skin-inspired” electronics that are soft and stretchy, Stanford University chemical engineer Zhenan Bao and her research team have been developing a display to change that. Now, after more than three years of work, they show the proof of principle toward a stretchable, potentially reshapable display in a new paper published March 23 in Nature.
Related Samsung Develops Stretchable Electronic Skin for Monitoring Heart Rate
Their invention hinges on the discovery of a method to produce a high-brightness elastic light-emitting polymer, which functions like a filament in a lightbulb. The group’s resulting display is made entirely of stretchy polymers – synthetic plastic materials. The device has a maximum brightness at least two times that of a cellphone and can be stretched up to twice its original length without tearing, reports McKenzie Prillaman in Stanford News.
“Stretchable displays can allow a new way of interactive human-machine interface,” said Bao, the K. K. Lee Professor in the School of Engineering and senior author of the paper. “We can see the image and interact with it, and then the display can change according to our response.”
An illuminating discovery
Most light-emitting polymers are stiff and crack when stretched. Scientists can increase their flexibility by adding elastic insulating materials, such as rubber. But these additives decrease electrical conductivity, which requires the polymer to use a dangerously high voltage to generate even dim light.
About three years ago, however, postdoctoral scholar Zhitao Zhang discovered that a yellow-colored light-emitting polymer called SuperYellow not only became soft and pliable but also emitted brighter light when mixed with a type of polyurethane, a stretchy plastic.
“If we add polyurethane, we see SuperYellow form nanostructures,” said Zhang, the first author of the study. “These nanostructures are really important. They make the brittle polymer stretchable, and they make the polymer emit brighter light because the nanostructures are connected like a fishnet.”
Unlike adding rubber, the interconnected net of nanoscale fibers that make the SuperYellow stretchy don’t inhibit electricity flow – which is key to developing a bright display. After this discovery, the group also created elastic red, green and blue light-emitting polymers.
Stacking the layers
With stretchable light-emitting polymers now available, the group needed to layer together the remaining ingredients of an electronic display.
“It was really challenging to figure out the right materials to use,” Bao explained. “Electronically, they have to match each other to give us high brightness. But then, they also need to have similarly good mechanical properties to allow the display to be stretchable. And finally, for the fabrication, Zhitao had to figure out a way to stack the layers together so that the process will not degrade the brightness.”
The final display contains seven layers. Two outer layers are two substrates that encapsulate the device. Moving inward are two electrode layers, each followed by charge transporting layers. Finally, the light-emitting layer sits sandwiched in the center.
When electricity runs through the display, one electrode injects positive charges, called holes, into the light-emitting layer while the other injects negatively charged electrons into it. When the two types of charges meet, they bond and go into an energetically excited state. Almost immediately after, the state returns to normal by producing a photon – a particle of light.
The resulting all-polymer film can be adhered to an arm or finger and doesn’t rip during bending or flexing. This will allow wearable trackers to have their display directly attached to the skin.
Related Chinese Researchers Develop Wearable Electronic Textiles With a Large-Area Display
Bao sees a variety of additional potential uses for a stretchable display. It could be used to produce reshapable interactive screens or even form three-dimensional landscapes on a map.
“Imagine a display where you can both see and feel the three-dimensional object on the screen,” Bao said. “This will be a completely new way to interact with each other remotely.”
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Monday, April 11, 2022
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Plantiga Launches Data-Driven Membership Program Giving Athletes Access To Advanced Technology And Coaching
Plantiga, a movement diagnostics company, today launched its exclusive membership program designed for goal-driven athletes who use impact-based activities, such as running and jumping in their training and competition. Plantiga’s proprietary technology, data analytics, and personalized coaching allow athletes to reduce and recover from injury and reach the startline of their next event more prepared than ever before.
Related With The Next Gen Of Wearables, Athletes Will Alter The Way They Fuel For Sport
“From our perspective, being an athlete is about your mindset and identity,” said Plantiga’s co-founder and CEO, Quin Sandler. We’re launching this membership to help athletes move more efficiently, helping them reduce and recover from injury to reach their competitive goals.”
Years of testing and validation from the world’s top human performance organizations, from NBA teams to the Military, have allowed Plantiga to expand access to athletes who run, jump and use impact activities in their training and competition. “Our 1:1 coaching and data analysis is core to our offering,” said Sandler. Plantiga’s movement coaches are highly credentialed biomechanists, kinesiologists, and strength and conditioning coaches. They work within an athlete’s current training and coaching team to provide an additional layer of insight into how movement plays a role in their training and racing load, says a press release.
The cost of Plantiga’s membership is $30/month plus the one-time charge for the proprietary Plantiga insoles and hardware platform. The membership launch comes after securing recent financing and adding athlete investors like Thaddeus Young of the San Antonio Spurs and Will Fuller of the Miami Dolphins to their team.
“We’re building much more than wearable devices. Our members join a community of athletes driven to live longer and healthier lives. We place the human at the center of everything we do through dedicated coaching so that our members not only understand their data but can apply it to their unique goals.” said Sandler.
The impressive roster of individual athletes who use Plantiga to maximize performance includes Olympians Cynthia Appiah and Andre De Grasse and professional triathlete Rach McBride.
Related How Wearables are Helping Athletes Enhance Their Performance
“Using Plantiga allows me to get feedback from my body before I notice anything is wrong. The data I receive is so robust, it helps to identify tightness, asymmetries, and changes in my gait well before I see them and before they become pathologic,” said McBride.
About Plantiga
Plantiga is a human movement health company that reduces injury risk, improves health, and boosts performance through better movement. The Plantiga membership comes with smart insoles, 1:1 coaching, education from leading human performance experts, and a community of driven athletes and high performers. Plantiga customers include professional and Olympic athletes, military organizations, NCAA programs, and teams in the NBA, NFL, NHL, MLB, and MLS.
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Saturday, April 9, 2022
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Friday, April 8, 2022
Western Sydney University Researchers Develop Smart Gloves for Safe Surgery
Researchers from Western Sydney University, in consultation with Liverpool Hospital, have developed tools to help trainee surgeons master intricate surgical procedures.
Gough Lui, a biomedical engineer at Western’s MARCS Institute for Brain, Behavior and Development, has worked closely with Liverpool Hospital for a number of years. “We get engineers to sit in with clinicians to identify problems and inspire solutions that can really make a difference,” he says. In one of these sessions, Clinical Dean and Foundation Professor of Surgery and Colorectal Surgery, Professor Les Bokey, discussed with Lui the possibility of training surgeons in a more objective and evidence-based manner to ensure evidence-based competency.
Related Smart Glove Market Is Expected To Grow On A Large Scale During Forecast Period 2019-2026
A big hurdle is that the surgical skills needed now are more complex than in previous decades. Surgeons must master open surgery, keyhole surgery with cameras, and robotic surgery, for instance. But while techniques have advanced, teaching methods have not greatly changed. In training, an experienced surgeon watches over the student’s shoulder, giving feedback. “Often they say, ‘that wasn’t very good,’ but can’t concretely articulate what is wrong,” says Lui. “That’s very frustrating when you’re trying to master a skill, but not seeing a way forward.”
One positive advance in training has been that students can now practice on simulators. But these are hugely expensive, and trainees in typical hospitals rarely have easy access.
To solve the problem, Lui has developed surgical gloves containing electronics to record the subtle, fast and controlled hand movements of skilled surgeons. When worn by students, the gloves can monitor how their hand motions differ from the experts’. Lui hopes that the gloves will eventually be coupled with a smartphone app, so trainees can practice tasks at home, for as little as $100 — a fraction of the cost of a simulator, reports Western Sydney University.
Creating the perfect gloves is a work in progress. At first, Lui placed electronics on the back of the glove, to detect acceleration and hand orientation, and added force-sensors in the fingertips. But experienced surgeons reported that they reduced their touch sensitivity and were too bulky, hindering movement. Lui has looked at alternatives including the use of force sensors further up the forearm and motion sensors on the back of the hand for an upgraded version.
“Now we have a tool that can assist in objectively measuring the intricate hand maneuvers,” says Bokey. Trainees who have participated in the development of the prototype can readily appreciate their potential contribution to training. Lui laughs that students even loved the clunky early version. “They are excited because they can see the promise,” he says.
Related This Smart Glove Interprets Sign Language In Real Time
Lui is working out how best to deliver useful instructions to trainees. The gloves collect motion data and relay them to a screen, where even the tiniest jitters are visualized. This can be distracting to students concentrating on difficult tasks. Alternatives include ‘haptic’ feedback — the fingertips buzz — or audio feedback to guide trainees along the right path. But Lui is cautious in case students become overly reliant on the technology. “In reality, human debriefing is always better than computer feedback alone,” he says. “This is not a replacement for trainers, but it will augment their ability to give advice.”
The plan is to do a pilot trial in mid-2020, says Lui. If successful, the gloves could have unexpected uses. “We’ve already had requests from musicians asking if these gloves could help people become more skilled performers,” says Lui. “They could have a wider impact than we ever hoped.”
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Wednesday, April 6, 2022
Mojo Vision Unveils Augmented Reality Contact Lens Prototype
Mojo Vision announced its most advanced prototype of Mojo Lens, the world’s first true smart contact lens, including an array of new, industry-first features.
The Mojo Lens prototype is a critical milestone for the company in its development, testing and validation process, and is an innovation positioned at the intersection of smartphones, Augmented Reality/Virtual Reality, smart wearables and healthtech. The prototype includes numerous new hardware features and breakthrough technologies embedded directly into the lens — advancing its display, communications, eye tracking, and power system.
Related Apple Could Release Augmented Reality Glasses and Contact Lenses Within a Decade
Over the past two years, Mojo has also been investing in various software experiences for Mojo Lens. In this new prototype, the company has built foundational operating system code and user experience (UX) components for the first time. The new software will allow for further development and testing of important use cases for consumers and partners.
This new Mojo Lens prototype will further accelerate the development of Invisible Computing, a next-generation computing experience where information is available and presented only when needed. This eyes-up experience allows users to access timely information quickly and discreetly without forcing them to look down at a screen or lose focus on the people and the world around them, says a press release.
Mojo has identified initial compelling consumer uses of Invisible Computing for performance athletes and recently announced strategic partnerships with leading sports and fitness brands, such as Adidas Running, to collaborate on eyes-up, hands-free experiences. Mojo has been working with its new partners to find unique ways to improve athletes’ access to in-the-moment data or during data. Mojo Lens can give athletes a competitive edge, allowing them to stay focused on their workout or training and maximize their performance, without the distraction of traditional wearables.
“Mojo has created advanced foundational technologies and systems that weren’t possible before now. Innovating the new features in the lens is a tremendous amount of work, but successfully bringing them all together into an integrated system in such a small form factor is a considerable achievement in cross-disciplined product development,” said Mike Wiemer, VP of Engineering, CTO and co-founder of Mojo Vision. “We are excited to share our progress and can’t wait to start testing Mojo Lens in real-world scenarios.”
To reach this milestone, Mojo had to invent and develop many of the technologies in the new prototype. The proprietary technologies and first of their kind innovations include: the world’s smallest and densest display for projecting augmented reality imagery, a low latency communications protocol for efficiently streaming visual data, and ultra-precise eye tracking and a unique eye-controlled user interface to access and interact with AR content with just a glance.
“This latest prototype of Mojo Lens demonstrates major advances in the development of our platform and the goals for our company,” said Drew Perkins, CEO and co-founder of Mojo Vision. “Six years ago, we had a vision for this experience and faced an immense number of design and technology challenges. But we had the expertise and confidence to take them on and have made consistent, breakthrough progress over the years.”
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“I’m proud of our entire team for getting us to this stage and excited that we’re closer than ever to getting Mojo Lens to market,” he continued.
Since 2019, Mojo Vision has been working with the U.S. Food and Drug Administration (FDA) through its Breakthrough Devices Program, a voluntary program designed to provide safe and timely access to medical devices that can help treat irreversibly debilitating diseases or conditions.
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Tuesday, April 5, 2022
MFine App Now Allows You To Monitor Your Blood Pressure and Glucose
India’s leading digital health platform MFine announced a groundbreaking innovation by bringing Blood Pressure and Glucose monitoring on a smartphone. These will be added to MFine’s suite of self-check health tools available on its app, eliminating the need of any external devices to measure and track these health vitals.
Related Amrita University Launches Wearable For Home Monitoring of Glucose and Blood Pressure
Launched three weeks ago in beta, the BP monitoring tool has already been used by more than 10,000 users and is clocking over thousands of readings everyday by users from across the country.
According to a press statement, these health monitoring features are built with MFine’s proprietary algorithm that measures blood pressure and glucose level by obtaining PPG signals from a user’s fingertip. A smartphone camera and flash are used to observe the changes in the red and blue wavelengths of the PPG signals and come up with a reading. The company claims its algorithm for measuring BP scores an accuracy “close to 90%”, reports MobiHealthNews.
At present, the new vital measurement features are available on the MFine app for select Android phones and will soon come to iOS devices.
“Advances in the areas of big data, artificial intelligence and mobile technology have opened new opportunities for monitoring health, detecting and preventing diseases using smartphones,” said Ajit Narayan, CTO of MFine. Mr. Narayan believes this would help make basic health assessments universal, easy and free to use for millions of people in India.
India is currently experiencing a massive increase in non-communicable diseases (NCDs) and bears a higher burden than most nations, particularly in cardiovascular and chronic respiratory diseases, hypertension and diabetes. There are more than 200 million diagnosed hypertension patients in the country who have limited access to BP (blood pressure) measuring tools for use at home.
Related Penn State Researchers Develop Wearable Non-Invasive Glucose Monitor
Similarly, there are over 80 million diabetes patients and 200 million pre-diabetic people in India who primarily monitor their glucose levels by using invasive and time-consuming blood tests.
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Monday, April 4, 2022
Singapore Brand BUZUD Launches Smartwatch With Sleep Apnea Detection
Singapore brand BUZUD, Fosun Trade Medical Device, a leading manufacturer of medical appliances, has announced its next-generation smartwatches DM01 and DM02 that can detect blood oxygen levels and monitor sleep quality with its SpO2 technology.
The feature-rich smartwatches have highly sensitive sensors that provide accurate health data insights, for both consumers actively seeking to manage their wellness and health conditions, and for fitness enthusiasts, according to a press release.
SpO2 Oximeter Sensor detects sleep apnea
Developed together with medical professionals, the DM01 and DM02 have been validated in clinical studies and tested on 3,000 people in a clinical trial conducted by doctors. The SpO2 oximeter sensor measures oxygen saturation levels while the user is still or sleeping. The measurement of the percentage of oxygen in the blood, and sleep patterns help to determine if there is a dip in oxygen levels during sleep—which can mean a condition called sleep apnea. Sleep apnea is a sleep disorder where breathing is interrupted briefly and repeatedly.
Related FDA Authorizes Daytime Device to Reduce Snoring and Mild Obstructive Sleep Apnea
“Our DM01 and DM02 smartwatches enable the optimal monitoring of consumers’ health, unlocking the innovative ability to alert users that they might have sleep apnea, paving the way to help people better track and manage their health,” said Mr. Frankie Fan, founder, CEO and CTO of BUZUD, Fosun Trade Medical Device.
“These feature-rich smartwatches place powerful monitoring capabilities in a small form factor accessible on a wrist. Our innovations strive to help even more people manage their wellness and reach their fitness goals faster,” added Mr. Fan.
Feature-rich smartwatches in a sleek silhouette
Both watches showcase a sleek silhouette, with a variety of looks that allow users to express their unique individuality. The watches provide comprehensive health insights by monitoring in real-time blood pressure, blood oxygen level, heart rate, body temperature, and sleep pattern data. Other features include measuring the number of steps done, the distance covered and calories burned.
Designed with health and fitness in mind, the watches support 24 different sports modes to provide additional opportunities for fitness activities, with customizable functions that include training workouts, social apps support, and other information prompts.
Health and workout tracking
The DM02 smartwatch is the brand’s most advanced health and fitness tracker with a high-definition, 1.69” IPS (in-plane switching) full-color touchscreen and customizable watch face and strap colors.
The DM01 smartwatch is an affordable and versatile smartwatch for users who want an easy-to-use device with key features. Equipped with a color screen and responsive button, the stylish and customizable watch face allows consumers to stay focused on their health and fitness goals.
Both DM01 and DM02 provide insights into wellbeing through a Health Metrics dashboard by transmitting data via a Bluetooth 4.0 connection to a mobile app on both Android and iOS. This dashboard provides insights into health data and can help identify any changes in sleep patterns that can be caused by a lack of sleep or increased stress levels.
Through the Bluetooth connection, the DM01 and DM02 smartwatches support the receiving of text messages and call alerts from the mobile phone.
Related Withings Launches New ‘ScanWatch’ with ECG and Sleep Apnea Detection at the CES 2020
“The growing global drive for healthier lifestyles amid this Covid-19 situation is prompting many to better manage stress and improve health. As a result, these smartwatches are part of our focus on introducing products that empower people to take proactive steps to be healthy both physically and mentally,” said Mr Fan.
Pricing and availability
Both DM01 and DM02 smartwatches are now available with the DM01 priced at S$94.16 and the DM02 priced at S$243.96 (GST included).
About BUZUD
BUZUD, Fosun Trade Medical Device is a Singapore-based medical appliance brand. The brand carries a variety of high-quality medical products of the latest and best technologies. Visit the showroom of BUZUD, Fosun Trade Medical Device, at Raffles Hospital to view the brand’s top-of-the-line medical appliances.
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What is Integrated SIM (iSIM)? How is it better than eSIM?
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Friday, April 1, 2022
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Zebra Introduces New Purpose-Built Offerings for Digitizing and Automating Fulfillment
Zebra Technologies is demonstrating new industrial solutions that improve communications and efficiencies. The company has introduced its first all-in-one Android-based wearable computer, the new WS50, and its first RFID sled designed for industrial usage, the RFD90. In addition, Zebra is also showcasing its recently announced Fetch FlexShelf autonomous mobile robot (AMR) solution as well as several other in-booth demos focused on optimizing the fulfillment process and streamlining workflows.
Read more Zebra Technology Announces New Warehouse Solution to Increase Worker Productivity
Zebra’s innovative, all-in-one WS50 Android wearable computer is half the size of traditional wearables and includes a small display, WiFi and an imager or camera, eliminating the need for multiple devices supporting hands-free workflows, such as picking, sorting, loading, and put away. With powerful data capture capabilities and an integrated speaker and microphone, the WS50 supports task management and communication in warehouse, manufacturing, and retail environments. With the option of three different wearable styles including back of hand, wrist, or on the fingers, the ergonomic WS50 wearable computer provides users with the flexibility they need that’s right for the job, according to a press release.
Zebra’s new RFD90 RFID sled offers industrial-grade IP65 and 67 sealing and 6-foot drop specifications to concrete, making it ideal for use in extreme weather and tough environments. The RFD90 sled supports packaging and baggage tracking, cycle counting, cold chain, and item locating as well as raw materials inventory, work in progress (WIP) tracking, and returnable transport object (RTO) tracking. Featuring a long-lasting battery for lengthier shifts and industry-leading read rates, the RFD90 optimizes workflows and reduces task completion time resulting in greater productivity and a better user experience.
At MODEX 2022, Zebra will also be showcasing its recently announced fulfillment solution, featuring dynamic orchestration of equipped workers augmented by the latest FlexShelf series of autonomous mobile robots (AMRs), including the FlexGuide and RollerTop Guide. Both AMRs are purpose-built for maximizing pick productivity in e-commerce and wholesale operations where speed and accuracy are critical to meeting the increasing demand of customers. New FetchCore fulfillment software optimizes the human workforce and robot fleet, while intelligent safety features leveraging cloud-based machine learning algorithms help front-line workers, robots, and even forklifts work safely side-by-side.
In April 2022, Zebra will launch a new specialization track in its award-winning PartnerConnect program for experienced mobile robotics partners. Zebra’s Mobile Robotics specialization program will feature partners with deep mobile robotics, manufacturing, and warehouse expertise to provide businesses with the best possible automation solution.
Read more ProGlove Unveils MARK Display Wearable Scanner and ProGlove Cloud Analytics Solution
“The global pandemic created exponential growth in the industrial automation sector as businesses worked to scale their operations and stay on time with shipping demands, all while addressing labor shortages and high turnover rates,” said Mark Wheeler, Director of Supply Chain Solutions, Zebra Technologies. “Zebra’s solutions help businesses confidently accelerate their automation efforts through a single vendor, helping them address needs ranging from the movement of pallets from trucks to put-away locations, to the movement of pickers and cobots in diverse picking environments. By addressing these needs, companies are seeing increased productivity and worker satisfaction, reduced costs, and improved safety.”
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