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Supplier: Columbus McKinnon Corporation
Description: Magnetek's LaserGuard2 enhances the performance of overhead material handling systems by preventing crane-to-crane or crane-to-end-stop collisions. Avoiding collisions results in reduced maintenance costs and increased operator safety. This system is ideal for use with
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Supplier: Conductix-Wampfler
Description: Our most capable system, the BridgeGuard Pro, offers the latest Time of Flight laser technology on the market today. Pro offers a dual stage system with an analog output for distance sensing. The Pro system comes standard with a custom mounting bracket that has more
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Supplier: Conductix-Wampfler
Description: BridgeGuardTM Plus uses advanced technology and is engineered for a variety of applications. Plus offers a dual stage system allowing for slow then stop functions. The Plus system comes standard with a custom mounting bracket that offers more adjustability than competing models. This
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Supplier: Conductix-Wampfler
Description: BridgeGuard Essential uses angle reflective technology to sense the distance between machines. Essential is an economical and efficient single stage system engineered for single stopping action. The Essential system is equipped with a custom mounting bracket for easy installation and
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Supplier: ifm electronic gmbh
Description: 3D collision warning system for mobile machines
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Supplier: SAE International
Description: This document presents criteria for flight deck controls and displays for Airborne Collision Avoidance Systems providing vertical-only guidance, and provides design guidance for operational, functional, and installation characteristics and requirements for airborne
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Supplier: Accuris
Description: Collision Avoidance System
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Supplier: SAE International
Description: This document presents criteria for flight deck controls and displays for Airborne Collision Avoidance Systems.
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Description: Annex 10 - Vol. IV - Aeronautical Telecommunications - (Surveillance Radar and Collision Avoidance Systems).
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Supplier: Advantech
Description: The TREK-130 is an advanced, multifunction Advanced Driver Assistance System (ADAS) module that combines Front Collision Warning (FCW) and Lane Departure Warning (LDW) algorithms. It is a vision-based active safety solution for accident prevention and injury mitigation using video
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Supplier: Accuris
Description: Traffic Alert and Collision Avoidance System (TCAS)
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Standards and Technical Documents - Recommendations for Future Collision Avoidance Systems -- DO-337Supplier: Accuris
Description: Recommendations for Future Collision Avoidance Systems
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Supplier: Accuris
Description: (R) TRAFFIC DISPLAY AND COLLISION AVOIDANCE SYSTEMS
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Supplier: SAE International
Description: This document sets forth design and operational recommendations concerning the human factors issues and criteria for airborne collision and avoidance systems. The visual and aural characteristics are covered for the display of traffic information as well as the escape maneuver
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Supplier: SAE International
Description: This document sets forth design and operational recommendations concerning the human factors issues and criteria for airborne collision and avoidance systems. The visual and aural characteristics are covered for the display of traffic information as well as the escape maneuver
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Supplier: CSA Group
Description: mitigate collision severity. This document, while not a collision avoidance standard, does not preclude a manufacturer from implementing collision avoidance with PDCMS. Systems that include other countermeasures such as evasive steering are not within the
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Description: , held in 2008 at the Swiss Federal Institute of Technology in Zurich. The papers presented cover a range of topics, including computer vision, mapping, terrain identification, distributed systems, localization, manipulation, collision avoidance, multibody dynamics, obstacle
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Description: , held in June 2007 at Georgia Tech. Papers report state-of-the-art research on topics as diverse as Legged Robotics, Reconfigurable Robots, Biomimetic Robots, Manipulation, Humanoid Robotics, Telerobotics, Haptics, Motion Planning, Collision Avoidance, Robot Vision and Perception,
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Supplier: ifm electronic gmbh
Description: Video Processing Unit; DC; Connector; ODS (obstacle detection) for collision avoidance
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Description: such as orbit propagation and orbit reconstruction, f) assessing mutual physical and electromagnetic interference among satellites orbiting the same celestial body (currently primarily Earth, Moon, and Mars), g) performing orbit conjunction (collision avoidance) studies, and h
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Supplier: CSA Group
Description: International Standard focuses on the relative motion between the objects involved in one launch mission. It does not cover the issues about the collision avoidance between newly launched objects and on-orbit ones.
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Supplier: CSA Group
Description: such as orbit propagation and orbit reconstruction, f) assessing mutual physical and electromagnetic interference among satellites orbiting the same celestial body (currently primarily Earth, Moon, and Mars), g) performing orbit conjunction (collision avoidance) studies, and h
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Supplier: ASTM International
Description: ). The system integrator shall document system limitation (that is, due to operating environments and/or minimum altitudes at which the air picture is no longer valid). 1.5 This specification is applicable to the avoidance of crewed aircraft by uncrewed aircraft systems
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Supplier: ASTM International
Description: specification is applicable to the avoidance of manned aircraft by unmanned aircraft systems (UAS), not UA-to-UA or terrain/obstacle/air space avoidance (both to be addressed in future efforts). Likewise, birds or natural hazard (for example, weather, clouds) avoidance
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Supplier: Infineon Technologies AG
Description: , speed and direction of movement (approaching or retreating) On-board antennas Potential Applications Building security Drone obstacle avoidance Smart home Robotics collision avoidance Street lighting Industrial
- Category: Development Board
- Supported System: Other
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Supplier: RS Components, Ltd.
Description: , Collision Avoidance and Tolling. Furthermore the antenna element is enclosed in a tough white fibreglass radome and tested to withstand the harshest environments. Internal/External = External Supported Frequency Bands = 5.9 - 6 GHz Connector Type = N Type Female
- Applications: Broadband Network / WLAN
- Primary Frequency Range: 5900 to 6000 MHz
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Supplier: AGVE AB
Description: are: Windows/PC based client/server technology Continuous narrow band or WLAN communication to AGV’s AGV Traffic management- collision avoidance & route optimization AGV Transport order management
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Supplier: CoorsTek
Description: systems, such as: Altimeters L1 and L2 GPS RF Communications (UHF/VHF) Traffic Avoidance Collision Systems (TCAS) Broadband WiFi Metallized Antenna Components Severe-service ceramic-metal and metallized antenna components and arrays serve in airborne and spaceborne
- Applications: Electronics / RF-Microwave
- Material Type: Specialty Ceramic
- Performance Features: Metallized / Silvered
- Shape / Form: Fabricated / Custom Shape
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Description: aspects of vehicle safety. It also provides the latest research results, ideas, developments, and applications in improvement in safety systems and safety technologies, solutions for the crash avoidance, examination of the driving behavior, and issues of collision damage
- Type: Conference
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Supplier: RFMW
Description: The TPX978/1030/1090SA triplexer from Sangshin Elecom targets avionics applications for Automatic Dependent Surveillance-Broadca st (ADS-B), Universal Access Transceiver (UAT) and Traffic Collision Avoidance System (TCAS) offering excellent isolation of 45dB between each band
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Supplier: RS Components, Ltd.
Description: Industry, Collision avoidance, mobile applications (AGV), Area protection, Internal space protection (large presses) and the replacement of safety mats. Accessory Type = System Plug For Use With = S3000 Series
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Supplier: RobotWorx
Description: than 1 kg.bsp;The small footprint of the MH5 reduces installation requirements.bsp; Advanced features such as built-in collision avoidance and multiple robot control make the Motoman MH5 an ideal solution for many applications. Internally routed cables and hoses maximize system
- Features: Ceiling Mounted, Wall Mounted
- Load Capacity: 5 kg
- Number of Axes: 6 #
- Reach: 706 mm
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Supplier: CoorsTek
Description: systems, such as: Altimeters L1 and L2 GPS RF Communications (UHF/VHF) Traffic Avoidance Collision Systems (TCAS) Broadband WiFi Ceramic Components for Antennas, RF, & Microwave Metallized Antenna Components
- Materials of Construction: Specialty / Other
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Description: coefficient of its antenna, thereby backscattering data to the interrogator. The working mode adopted by the tags is purely passive, i.e. tags do not actively initiate any kind of RF communication. In ISO/IEC 29143:2011, collision arbitration and collision avoidance for Mobile
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Supplier: PI (Physik Instrumente) L.P.
Description: software. Virtual Hexapod machine software. Optional: Collision avoidance software (external obstacles). Hexapods are by default configured and delivered as a system including a controller C-887.52 compact bench-top controller for a lower system price. Digital I/O
- Applications: Other / Specialty
- Drive System: Electric
- Load Capacity: 2.4 to 10 kg
- Number of Axes: 6 #
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Featured Products Top
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are widely specified for use in Navigation, Collision Avoidance and Communications systems. VideoMATES are 75-ohm video wire solutions, both coaxial and triaxial, focused on (read more)
Browse Coaxial Cables and Triaxial Cables Datasheets for PIC Wire & Cable -
) – The TNC connector is a widely used RF connector within the aerospace industry today. It’s a mid-size, threaded coupling connector that’s used on virtually all TCAS (Traffic Collision Avoidance System) antennas and antennas in general. The frequency (read more)
Browse RF and Microwave Connectors Datasheets for PIC Wire & Cable -
have grown into a big company we have still maintained the virtues of the founding years: The flexibility and individuality of a small enterprise and the quality and professionalism of a group. And our customers are still today in the centre of our work - close to you. ifm ifm develops, produces and sells sensors, controllers, software and systems for industrial automation and digitalization (read more)
Browse Collision Avoidance Systems Datasheets for ifm electronic gmbh -
a few examples. Collision Avoidance Reducing the risk of collisions means increased operator safety, lower (read more)
Browse Industrial Cranes Datasheets for Columbus McKinnon Corporation -
-state LiDAR technology to increase the productivity of small autonomous and line-guided transport vehicles. Certified as a Type 2/SIL 1 safety sensor according to IEC 61496-3, the scanGrid2 can protect hazardous areas up to performance level c and works well for collision avoidance. An app and cloning (read more)
Browse LiDAR Sensors Datasheets for SICK -
-state structure, IP67 protection design and the aviation aluminum housing enable them to be used in a variety of complex environments. It can be used in for robot collision avoidance and safe working area protection. Features: 1. Measuring range: 0.25-8m 2. Large Field of view: 76°*32°; 68°*55° 3 (read more)
Browse LiDAR Sensors Datasheets for Hypersen Technologies Co., Ltd. -
-state structure, IP67 protection design and the aviation aluminum housing enable them to be used in a variety of complex environments. It can be used in for robot collision avoidance and safe working area protection. Features: Measuring range: 0.25-8m (read more)
Browse LiDAR Sensors Datasheets for Hypersen Technologies Co., Ltd. -
control and collision avoidance technology, which helps increase productivity and reduce the potential for injuries and equipment damage during crane or hoist operation. “IMPULSE·G+/VG+ Series 5 Variable Frequency Drives include more built-in features so they can serve as the intelligent (read more)
Browse AC Motor Drives Datasheets for Columbus McKinnon Corporation -
control, and collision avoidance promote safety and productivity. You can safely set up these VFDs with low voltage. The built-in USB also ensures secure PC connections. Simplified Operation: With a clearer keypad, streamlined menus, and timestamp features, diagnosing, adjusting settings (read more)
Browse AC Motor Drives Datasheets for Columbus McKinnon Corporation -
Space and weight are a premium in most aerospace and defense systems. Engineers must carefully plan out routes for any equipment or wiring needed to maintain the safety and security of such systems. But when it comes to coax cables, they never seem to come in small enough sizes to fit through these tight spaces.
That's where RFMATES® Ultralite comes in!
(read more)
Browse Coaxial Cables and Triaxial Cables Datasheets for PIC Wire & Cable
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Kangaroo Collision Avoidance
Australia's population and the US population, that would translate into 275,000 kangaroo-vehicle collisions.
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Robot Collision Avoidance
This article mainly describes that Hypersen's 6-Axis Force Torque Sensor can measure the force and moment in three directions of XYZ in real time. Its ultra-high precision can detect subtle changes in force and torque. It can be widely used in industrial robot collision test to ensure manual safety
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Additional Solutions for Collision Avoidance with Indoor AGVs
A common problem with some indoor AGVs is that sometimes using just a safety-rated sensor, like a safety laser scanner, doesn't provide enough coverage, particularly above the laser scan plane. But SICK has the perfect solution to solve for this with the Visionary-T.
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ifm introduces the 3D Smart Sensor - Your assistant on Mobile Machines
ifm 's new 3D Smart Sensor with field of view imaging is your assistant on mobile machines. The 3D Smart Sensor provides advanced object detection and blind spot detection for collision avoidance and support of automation tasks.
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Hypersen 3D LiDAR for Vehicle Height Limit
This article mainly describe application scenario of 3D LiDAR. The LiDAR height limit intelligent collision avoidance system uses LiDAR as the core sensor, which can predict in advance whether the vehicle entering the detection area is super high. When the LiDAR detects the passing information
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What is Machine Vision?
Machine Vision Systems use a mix of cameras, computers and software to make instantaneous decisions regarding food quality, packaging consistency, CT scan diagnosis, avoidance of a vehicle collision, and much more.
More Information Top
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Handbook of Unmanned Aerial Vehicles
77 Automatic Traffic Alert and Collision Avoidance System (TCAS) Onboard UAS ....................................................
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Wireless Vehicular Networks for Car Collision Avoidance
Collision Avoidance System CCA .
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Handbook of Intelligent Vehicles
A radar- or vision-based collision avoidance system can sense obstacles ahead and prevent an imminent crash by automat- ically braking when the driver fails to do so.
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Sense and Avoid in UAS: Research and Applications
An example of this service is the resolution advice issued by the Traffic Alert and Collision Avoidance System II (TCAS II in the United States [4], or ACAS II elsewhere [5]) used aboard manned aircraft.
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http://dspace.mit.edu/bitstream/handle/1721.1/50325/39031251-MIT.pdf?sequence=2
This thesis describes the design and analysis of a collision avoidance system (CAS) for autonomous air vehicles (AAVs).
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http://dspace.mit.edu/bitstream/handle/1721.1/64487/727063332-MIT.pdf?sequence=2
We approach dynamic collision avoidance problem from the perspective of designing collision avoidance systems for unmanned aerial vehicles.
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Buried waste integrated demonstration human engineered control station. Final report
The overall HECSconsistsof the technologyinterface stations,supportingengineeringaids, platform (trailer), communications network (broadband system), and collision avoidance system .
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Computer Safety, Reliability, and Security
Approach for Demonstrating Safety for a Collision Avoidance System . . . . .
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Advances in Aerospace Guidance, Navigation and Control
Cooperative Autonomous Collision Avoidance System for Unmanned Aerial Vehicle . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .