Samsung Introduces IoT-Ready POWERbot VR7000 Robot Vacuum Cleaner Compatible with Amazon Echo

2017 is the year where the future starts. You’ll be wandering in your automated home or office where lights and heating system are fully handled by a gateway taking into account sensors values, and equipped with a CO2 level controlled ventilation systems, your eyes constantly looking at your phone, wearing neckband speakers likely connected to your Amazon Echo to let you know when it’s time to get up, eat, go to work, brush your teeth, and get back to bed again. All your life will be taken care of on your behalf by the Internet of Things, relieving you of the stress of taking routine daily decisions… Luckily, you’ll still be have an illusion of control thanks to your “IoT-ready” Samsung POWERbot VR7000 vacuum cleaner that can be controlled with your voice via that Echo thing, giving your life a purpose. Samsung Electronics’ latest POWERbot vacuum cleaner will be unveiled […]

JeVois-A33 is a Small Quad Core Linux Camera Designed for Computer Vision Applications (Crowdfunding)

JeVois Neuromorphic Embedded Vision Toolkit – developed at iLab at the University of Southern California – is an open source software framework to capture and process images through a machine vision algorithm, primarily designed to run on embedded camera hardware, but also supporting Linux board such as the Raspberry Pi. A compact Allwinner A33 has now been design to run the software and use on robotics and other projects requiring a lightweight and/or battery powered camera with computer vision capabilities. JeVois-A33 camera: SoC – Allwinner A33  quad core ARM Cortex A7 processor @ 1.35GHz with  VFPv4 and NEON, and a dual core Mali-400 GPU supporting OpenGL-ES 2.0. System Memory – 256MB DDR3 SDRAM Storage – micro SD slot for firmware and data 1.3MP camera capable of video capture at SXGA (1280 x 1024) up to 15 fps (frames/second) VGA (640 x 480) up to 30 fps CIF (352 x 288) […]

Grid-EYE Breakout Board is a $49 Low Resolution Thermal Camera Module

Thermal cameras can be really expensive pieces of equipment, and even the cheap 60×60 thermal cameras available on Aliexpress costs a little over $200. However, PURE Engineering has made an breakout board with Panasonic Grid-EYE infrared 8×8 array sensor that allows you to experiment with the technology, or integrate into your own projects for just $49. Grid-EYE breakout board features: Panasonic Grid-EYE AMG8834 64 pixel infrared / thermal camera sensor with 60 degree viewing angle using MEMS thermopile technology Pinout compatible with Arduino Zero,  ST-NUCLEO board, and other 3.3V boards with I2C, VDD, GND, INT, and AD pins PUREModules PCB edge connectors with UART, GPIO, to interface with the company’s IoT board Power Supply – On-board regulator handles 3 to 5V input The Panasonic sensor transfers thermal presence, direction, and temperature values over I2C. The company wrote a demo for the module with an Arduino sketech and a Processing sketch […]

Nvidia Unveils Xavier Automotive & AI Octa-core SoC with 512-Core Volta GPU, 8K Video Decode & Encode

Nvidia has introduced the successor to their Parker SoC mostly targeting self-driving cars and artificial intelligence applications, with Xavier SoC featuring 8 custom ARMv8 cores, a 512-core Volta GPU, a VPU (Video Processing Unit) supporting 8K video decode and encode and HDR (High Dynamic Range), as well as a computer vision accelerator (CVA). The processor will deliver 20 TOPS (trillion operations per second) of performance, while consuming only 20 watts of power, and since it’s designed specifically for autonomous cars, it will comply with automotive safety standards such as ISO 26262 functional safety specification. Anandtech published a comparison table with Tegra X1 (Erista), Parker, and Xavier using currently available information. Xavier Parker Erista (Tegra X1) CPU 8x NVIDIA Custom ARM 2x NVIDIA Denver + 4x ARM Cortex-A57 4x ARM Cortex-A57 + 4x ARM Cortex-A53 GPU Volta, 512 CUDA Cores Pascal, 256 CUDA Cores Maxwell, 256 CUDA Cores Memory ? LPDDR4, […]

Parrot S.L.A.M Dunk is a Ubuntu & ROS Computer with 3D Depth Cameras for Drones & Robots

Parrot and Canonical have partnered to develop the Parrot S.L.A.M.dunk development kit for the design of applications for autonomous navigation, obstacle avoidance, indoor navigation and 3D mapping for drones and robots, and running both Ubuntu 14.04 and ROS operating systems. The name of the kit is derived from its “Simultaneous Localization and Mapping algorithm” (S.L.A.M) allowing for location without GPS signal. Parrot S.L.A.M Dunk preliminary specifications: SoC – NVIDIA Tegra K1 processor Camera – Fish-eye stereo camera with a 1500×1500 resolution at 60fps Sensors – Inertial-measurement unit (IMU), ultrasound sensor up to 15 meters range, magnetometer, barometer Video Output – micro HDMI USB – 1x micro USB 2.0 port, 1x USB 3.0/2.0 port Weight – 140 grams Parrot S.L.A.M dunk can be fitted various drones and robotic platforms such as quadcopters and fixed-wings, rolling robots and articulated arms using mounting kits. The computer module is then connected to the host […]

HICAT.Livera Machine Vision Board and Robot Kit Feature HiSilicon Hi3518 SoC (Crowdfunding)

HiSilicon Hi3518 ARM9 processor is mostly being used in IP cameras, but Hicat startup decided to combined the camera processor with an Atmel MCU and a MT7601 WiFi module to create a wireless camera board to be used with OpenCV, and even provide a complete affordable robot kit with the board. Hicat.livera board specifications: Vision Core – Hisilicon Hi3518 ARM9 processor @ 440 MHz Storage – 16MB flash + micro SD card MCU – Atmel ATmega32U4 AVR micro-controller Connectivity – 802.11 b/g/n WiFi via Mediatek MT7601 module + u.FL antenna connector Camera interface with provided 140 deg. camera using Omnivision OV9712 720p (1280×720) sensor USB – 1x micro USB port for power and programming Audio – Built-in microphone, speaker header Sensors – MPU6050 accelerometer and gyro Expansion – 2x GPIO headers with GPIOs, I2C, SPI, serial, PWM, digital, analog and power signals. Misc – MCU reset and Linux reset buttons, […]

Learn the Basics of Humanoid Robots with InMoov Finger Starter Kit

In a not so distant future, most humans will live off their government provided basic income, relaxing and drinking their robot brewed, drone delivered beer or soda, opened and served by their humanoid robot maid. Well, maybe… In the meantime, it might be interesting to learn how to make humanoid robots such as InMoov, but since it’s quite complicated, it might be better to start small… with a single finger. That’s exactly what InMoov Finger Starter Kit offers you to do in order to understand the basics principles of the complete robot. The kit includes: 1x 3D printed base support in ABS 3D printed finger parts in ABS 1 meter braided 200 LB tendon 1x 5cm filament for peg/pin use to assemble finger joints 1x wheel horn adapter (Servo Pulley) 4x screws to fix the servo to the base support. You’ll also need to provide your own Arduino Uno (or […]

Evive is an Arduino Compatible Platform with Enclosure, Lots of I/Os, Buttons, and an 1.8″ Display (Crowdfunding)

Engineers at Agilo Technologies, an Indian startup based in Kanpur, Uttar Pradesh, felt that the wire mess often produced while learning or prototyping with Arduino boards could be an issue, and it was easy to mis-wire your setup, so they’ve decided to create a user and student friendly Arduino compatible system with many of the items you’d normally use with Arduino board such as buttons, probes inputs, an 1.8″ color display, headers for ESP8266, Bluetooth, and XBEE moduels, etc.. and all of that enclosed in a neat case. Evive was born. Evive specifications: MCU – Atmel ATmega2560 8-bit AVR MCU @ 16 MHz with 256KB flash, 4KB EEPROM, 8KB SRAM Storage – micro SD slot up to 32GB Display – 1.8″ TFT display; 160×128 resolution; 18-bit color User inputs – Tactile and slide switches, joysticks, and potentiometers Probes inputs – Voltage / Intensity sensing inputs USB – USB device port Expansion Headers […]

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