University Haptic Labs Leading the Way in Haptic Research
Haptics is a rapidly growing field. As the demand for more immersive and intuitive user interfaces increases, so does the demand for more in-depth research and studies in this fascinating area. Many universities worldwide are quickly recognizing this need, and have not only begun to offer specialized courses about haptics, but have also established dedicated haptics labs. Their research primarily focuses on human-computer tactile interaction, with use cases in areas such as robotics, automotive, virtual and augmented reality, and medical.
Below, we've collected a few of the university haptic labs worldwide that conduct research within this growing technological field.
1. University of Southern California – HaRVI lab
The University of Southern California's Haptics Robotics and Virtual Interaction (HaRVI) Laboratory is a haptics lab dedicated to exploring human interaction with the environment via touch. The lab's primary focus is on human perception, to develop interactions that authentically replicate the sensations felt during real-world physical interactions.
The HaRVI Lab is directed by Dr. Heather Culbertson.
2. University of California Santa Barbara – RE TOUCH Lab
The RE TOUCH Lab at the University of California Santa Barbara is an interdisciplinary lab that explores the mechanisms of perception and action. They design haptic devices, create soft or wearable robots, investigate new material technology, and advance applications in VR and health.
The lab is directed by Professor Yon Visell, and is a part of the Media Arts and Technology Program, as well as the Departments of Electrical and Computer Engineering, and Mechanical Engineering at UCSB.
3. University of Chicago – Human Computer Integration Lab
The Human Computer Integration Lab at the University of Chicago focuses on engineering interactive devices that directly integrate with the user’s body, superseding traditional wearable interfaces. Their research explores human-computer integration, using EMS on their interactive devices to create enhanced VR experiences and interactive learning without the bulkiness of robotic exoskeletons. Moreover, they borrow parts of the user’s body as input/output hardware, which results in the implementation of a novel interaction model.
The lab is led by Professor Pedro Lopes at the Computer Science Department of the University of Chicago.
4. Carleton University – Creative Interactions Lab
The Creative Interactions Lab at Carleton University also focuses on human-computer interaction. They aim to develop interaction methods with new user interfaces through the use of software and hardware design, development, and evaluation. Currently, their research is on flexible displays, exploring their distinctive features to develop novel interaction methods and enhance the current touch capabilities of rigid screens.
The Creative Interactions lab is currently led by Dr. Audrey Girourard.
5. University of Waterloo – Haptic Experience Lab
The Haptic Experience (HX) Lab at the University of Waterloo is a team of researchers dedicated to the comprehensive study of haptic systems. They delve into these systems extensively and on a large scale, developing theoretical tools and producing research to make haptic technology as accessible as any other medium. They aim to develop a range of haptic computing tools to aid in the design, implementation, and research of haptic technology, which they will utilize to carry out groundbreaking studies in the field of haptics.
The lab is highly interdisciplinary, spanning faculties from Engineering to Arts, and is directed by Professor Oliver Schneider.
6. University of British Columbia – SPIN Lab
The Sensory Perception & Interaction Research Group (SPIN) research group at the University of British Columbia designs and creates innovative, touch-based user interactions to address real-world problems. The group focuses on human perception and emotion, emphasizing both the functionality and design process of these interfaces and exploring how these interactions will be perceived by users. The application of their work spans various areas including wearable technology, robotics, furniture, therapeutic tools, and car interiors.
The Research group is directed by Professor Karon MacLean.
7. McGill University – Shared Reality Lab
The Shared Reality Lab at McGill University is committed to developing interaction systems that incorporate both real and virtual data. The lab works with audio, video, and haptic technologies, as well as mixed reality and mobile computing to facilitate and enhance both human-computer and computer-mediated human interaction. Their current projects include creating avatars for elderly engagement, audio-haptic experiences for blind users, immersive walking experiences, and futuristic flight deck designs.
The lab is currently directed by Dr. Jeremy Cooperstock.
8. KAIST – Interactive Robotics Systems (IRIS) Laboratory
The Interactive Robotics Systems (IRIS) Laboratory at KAIST in South Korea is committed to enhancing human lives through the development of cutting-edge technologies. They research haptics and telerobotics in order to design interactive robotic systems, specifically for field robotics in sectors such as disaster response, construction, mining, and agriculture.
The lab is currently led by Dr. Jee-Hwan Ryu.
9. University of Tokyo – Tachi Lab
The Tachi Lab at the University of Tokyo is a global leader in the fields of Virtual Reality, Human Augmentation, and Telexistence. The lab aims to develop human-centered that enables natural interaction between humans and machines such as robots and computers. Their research spans topics such as haptics, RPT, robotics, and autosteroscopy, in order to design human-machine interaction akin to handling natural objects.
The Tachi Lab is currently led by Dr. Susumu Tachi.
10. King's College London – CoRE Haptics Lab
The CoRe Haptics Lab at King's College London is focused on the development, design, and evaluation of innovative haptic systems to augment human perception. Their focus is on applications such as Minimally Invasive Surgery (MIS) and Human Robot Interaction (HRI). Some of their projects include designing methods to reintroduce partial haptic feedback and mimicking the physical interaction during surgery, and developing a robot that can guide firefighters in a low-light visibility environment.
The CoRe Haptics Lab is currently led by Dr. Helge A. Wurdemann.
11. Delft University of Technology – Delft Haptics Lab
The Delft Haptics Lab, part of the Human-Robot Interaction group within the Department of Cognitive Robotics at Delft University of Technology, is dedicated to improving human-robot interaction through the development of haptic interfaces. The lab's mission is to understand how humans use force when performing dynamic control tasks and use this knowledge to improve physical interaction with machines. The team conducts research and education in haptic and human-robot interaction across various practical applications, collaborating with different companies across the world to bring their research to market. The lab also aims to stimulate societal discussions about human-robot interaction through media and outreach activities.
The Delft Haptics Lab is currently led by Professor David A. Abbinik.
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HEATSINK,50956A24030E,PS400-XP2,FDK172-834-R-DC,E393295100,50916624000E,82211970070E,CEM521PG-I5-8365UE,PS302-XP2,AX92904+AX98615,TBOX500-510-FL-CELERONI5-TMDC,UST100-504-FL,FAB105,59380880250E,FAB101,FAB100,CEM521PG-I7-86
华力西产品目录
型号- DART-MX8M,VAR-SP8CUSTOMBOARD,VAR-SOM-MX8M-NANO,VAR-DVK-MX6,VAR-SOM-MX6,VAR-SOM-MX7,VAR-DVK-MX8M-MINI,VAR-DVK-MX8,VAR-SOM-MX8,VAR-DVK-MX7,VAR-DVK-MX8M-PLUS,VAR-MX6CUSTOMBOARD,DART-MX8M-MINI,VAR-DVK-DT8M-MINI,DART-6UL,VAR-SOM-MX8M-PLUS,VAR-SOM-MX8M-MINI,VAR-MX7CUSTOMBOARD,VAR-DVK-DT8M-PLUS,VAR-DVK-SOLO/DUAL,VAR-DT8MCUSTOMBOARD,DART-MX8M-PLUS,VAR-SOM-SOLO/DUAL,VAR-DVK-MX8M-NANO,VAR-SOM-6UL,VAR-DVK-MX8X,VAR-DVK-6UL,VAR-SOLOCUSTOMBOARD,VAR-SOM-MX8X,VAR-DVK-DT8M,VAR-DVK-SP8,SPEAR-MX8,VAR-6ULCUSTOMBOARD
引领创新未来:汽车半导体解决方案带来安全可靠的驾驶体验
描述- 本资料介绍了Renesas公司作为全球领先的嵌入式解决方案提供商,在汽车半导体领域的创新解决方案。资料涵盖了Renesas公司的概况、产品组合、应用解决方案、ADAS与自动驾驶、集成驾驶舱与联网汽车、连接网关/汽车服务器、车身、底盘与安全系统、动力系统、EV/HEV等方面的内容,旨在展示Renesas如何通过其先进的技术和产品,助力汽车行业实现安全、舒适、环保的驾驶体验。
型号- RAA270005,ISL78171,RJQ7031,Y-BLDC-SK-RH850F1KM-S1-V2,RH850/D1M1A,RAA270000,RH850/C1M-A2,R-CAR E SERIES,R-CAR D SERIES,RAJ2800034,SSC FAMILY,R-CAR M SERIES,R-CAR H SERIES,RH850/P1M,ANM SERIES,ISL78419,RAA2799XX,RJU7032,ISL799XX,NP50N04YUK,ANL SERIES,ISL78714,R-CAR,RH850/F1KM-S1,RAA FAMILY,ISL78264,R-CAR V SERIES,RAJ28000X,RAJ2800024,R-CAR S SERIES,RAJ2800044,RAA27XX FAMILY,R2A25110,RH850/C1X,RH850 E2X SERIES,RH850/E1X,RAA278840,UPD166031A-34,RV1S2752Q,Y-BLDC-SK-RH850F1KM-S1,RAA2788XX,RH850,TW88XX,IPS2550,ISL78206,ISL76683,RL78,RH850P1M
【电机】TITAN HAPTICS Drake马达外观小巧轻便,振动力相比Carlton增强25% ∣视频
本视频介绍TITAN的Drake系列马达产品,采用TITAN专利的第二代线性磁悬浮技术,外观小巧轻便,尺寸更精巧、振动力相比Carlton增强25%、功率密度相比Carlton增加320%。
【电机】TITAN HAPTICS首款DRAKE触觉马达,以微小体积实现强大冲击力,提供高达320%功率密度及4.5克振动强度
DRAKE触觉马达系列开创了多项先河,每一款电机单元均采用全密封设计,并细分为四种不同性能版本:通用宽带型(MR),适用于音乐和低音震动反馈的低频共振版(LR),针对警报提示与纹理模拟优化的高频共振版(HF),以及专为生成锐利冲击触感而设计的LFi版本。
【电机】TITAN HAPTICS采用固态磁悬浮技术的马达Carlton系列,尺寸大至15*34.3mm ∣视频
本视频介绍了TITAN的carlton系列马达,Carlton系列是TITAN尺寸最大,重量最重,冲击峰值和标准峰值加速度都最强的一款标准品。
TITAN Haptics采用最新触觉技术以实现绝佳性能和用户体验,优化产品设计和提高市场竞争力
在这个由技术驱动的科技创新时代,需要不断与各种电子设备互动。触觉肯定会成为我们未来生活和工作的重要部分,并且把虚拟世界从视觉扩展到触觉体验。TITAN Haptics的目标之一是积极分享更多触觉技术、信息和资源,促进其融入日常生活。
XELA Robotics 接触传感器选型指南
目录- Company profile XELA Overview Tactile Sensors Integration UAI Software
型号- USMU,USCU EALHA,USPR EF2,USPR EWSEGI,USPA 46,USPA 11,USPA 22,USPA 44,USKIN 4X4,USPA 21
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