ar
Feedback
Embedded - ->for u

Embedded - ->for u

الذهاب إلى القناة على Telegram

Are you serious about your career!!!! Here is the solutions with emerging technologies like embedded systems, python, XLSX VBA, C, C#, C++ and many through our workshops..Also get embedded projects for your academics..Free ebooks on all emerging techno

إظهار المزيد
7 457
المشتركون
لا توجد بيانات24 ساعات
-107 أيام
-2830 أيام
أرشيف المشاركات
photo content

photo content

photo content

photo content

photo content

photo content

photo content

photo content

photo content

photo content

Fun fact: 69 is the only natural number whose square (4761) and cube (328509) use every decimal digit from 0–9 exactly once

What Information Does the Ball Sensor by KINEXON Provide? With live ball tracking, analysts can assign player data to certain in-game situations. That works thanks to the comprehensive data package the sensor detects and transmits in real-time.  Consequently, we can measure dribbling speed, distance covered, acceleration with the ball, attacking and defending sprints, pass and shot speed, time of possession, passing accuracy and many more.  More sophisticated metrics such as turnovers, ball gains, space control, exact moments of actions like shots or passes and even pressing can also be detected and visualized using KINEXON’s live ball tracking. 

A lightweight sensor utilizing both ultra-wideband (UWB) radio frequency and an Inertial Measurement Unit (IMU) is integrated into the ball. As a result, KINEXON provides real-time position and motion data. The real-time transmission is enabled by KINEXON’s Local Positioning System (LPS) installed around the pitch. The solution gives the context needed to monitor player and team performance, improve tactical understanding, support officiating, and analyze everything that happens on the field more accurately and quickly than ever before. The sensor detects ball movements two and three-dimensionally in real-time, centimeter-accurate and with a delay of less than 20 ms.

KINEXON Becomes World’s First "FIFA Preferred Provider Live Player & Ball Tracking" In 2021, FIFA made KINEXON the ​“FIFA Pre
KINEXON Becomes World’s First "FIFA Preferred Provider Live Player & Ball Tracking" In 2021, FIFA made KINEXON the ​“FIFA Preferred Provider Live Player Tracking.” Today, KINEXON is proud to announce the world’s first designation of ​“FIFA Preferred Provider Live Player & Ball Tracking.”  KINEXON’s player and ball tracking solutions have been successfully validated during FIFA EPTS testing at Estadio Ramón Sánchez Pizjuán in Sevilla in September 2021. 

Logic Gate.. 😍😍
Logic Gate.. 😍😍

photo content

Illuminated heart 3D-printed custom jig that held each of the 46 WS2812B LEDs in place so they could be soldered together. On
Illuminated heart 3D-printed custom jig that held each of the 46 WS2812B LEDs in place so they could be soldered together. Once completed, the heart was wired into an external ATtiny85 chip and powered with a 1,000mAh battery cell.

Calculator and clock Instead of the traditional LCD screen at the top, it instead uses two rows of eight LEDs to show 8-bit d
Calculator and clock Instead of the traditional LCD screen at the top, it instead uses two rows of eight LEDs to show 8-bit digits with the help of a 16-channel multiplexer. Time is kept with a real-time clock module that, in turn, is read and interpreted by an ATmega328P MCU.

ATtiny85 handheld snake game Took two pieces of plywood and hand-drilled holes for routing the copper wire between components
ATtiny85 handheld snake game Took two pieces of plywood and hand-drilled holes for routing the copper wire between components. After laying them out and doing a bit of soldering, he uploaded the firmware that displays the game on a central I2C OLED screen.

LED Chaser This project relies on a central Arduino Nano that has been surrounded by a hexagonal copper rod. A total of 18 LE
LED Chaser This project relies on a central Arduino Nano that has been surrounded by a hexagonal copper rod. A total of 18 LEDs were then soldered to thin copper wire along with an in-series current-limiting resistor and attached to the hexagon and Arduino Nano. An infrared receiver at the end picks up incoming commands and can play various effects accordingly.