astra-addon domain was triggered too early. This is usually an indicator for some code in the plugin or theme running too early. Translations should be loaded at the init action or later. Please see Debugging in WordPress for more information. (This message was added in version 6.7.0.) in /home4/edumaket/edu-market.net/wp-includes/functions.php on line 6131wp-plugin-hostgator domain was triggered too early. This is usually an indicator for some code in the plugin or theme running too early. Translations should be loaded at the init action or later. Please see Debugging in WordPress for more information. (This message was added in version 6.7.0.) in /home4/edumaket/edu-market.net/wp-includes/functions.php on line 6131wp-plugin-hostgator domain was triggered too early. This is usually an indicator for some code in the plugin or theme running too early. Translations should be loaded at the init action or later. Please see Debugging in WordPress for more information. (This message was added in version 6.7.0.) in /home4/edumaket/edu-market.net/wp-includes/functions.php on line 61311. Measuring wind speed in the surroundings with anemometer
2. Relationship between wind speed and wind speed controller of the blower
3. Effect of blade type on the output power of horizontal axis wind turbine
4. Relationship between the number of blades and the output power of horizontal axis wind turbine
5. Effect of blade angle on the output power of horizontal axis wind turbine
6. I-V curve of the horizontal axis wind turbine at constant rotational speed
7. Relationship between placement and I-V curve of horizontal axis wind turbine
8. Effect of wind speed on the output power of horizontal axis wind turbine
9. Output power of 3-blade and 4-blade vertical axis wind turbines
10. I-V curve of the vertical axis wind turbine at constant wind speed
11. Charging a capacitor with the horizontal axis wind turbine
12. Discharging the capacitor through different loads
13. Constructing a wind power island system
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]]>Main Features of the Wind Energy Trainer • RE-014:
1. Self-contained wind energy trainer
2. Modular design, easy setup and storage
3. Types of blades are selectable. Adjust number and tilt angle of blades
4. Horizontal and vertical axis wind generator available
5. DAQ has the advantage of gaining and saving the experimental data (optional)
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]]>1. Measuring the irradiation of various light sources
2. Energy conversion of solar cells
3. Diode characteristic of a solar cell
4. Effect of light-sensing area on the open-circuit voltage of solar cell
5. Effect of light-sensing area on the short-circuit current of solar cell
6. Effect of irradiation on open-circuit voltage and short-circuit current of solar cells
7. Relationship between the angle of irradiation and the short-circuit current of solar cell
8. Open-circuit voltage and short-circuit current of solar cells connected in series-shading
9. Open-circuit voltage and short-circuit current of solar cells connected in parallel-shading
10. I-V curve of solar cells 11. Conversion efficiency and Maximum Power Point (MPP)
12. Simulating a daily course of sunlight
13. Charging a capacitor with solar cells
14. Capacitor discharging
15. Constructing a solar power island system
16. Inverter
17. Effect of temperature on solar performance
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]]>Main Features of the Solar Cell Trainer • RE-013:
1. Self-contained solar cell trainer
2. Adjustable solar irradiation and azimuth for sunlight simulation
3. DAQ Equipped is of much benefit to acquire and save the experimental data
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]]>The board itself takes advantage of the latest Intel® Stratix® 10 to obtain speed and power breakthrough (with up to 70% lower power). Also, armed with 32GB DDR4 memory module running at over 150 Gbps, up to 15.754 GB/s data transfer via PCIe Gen 3 x16 edge between FPGA and host PC, and 4 on-board QSFP28 (100GbE) connectors, the board delivers more than 2X the performance of previous generation acceleration cards.
DE10-Pro • FPGA-027 fully supports Intel Open VINO™ toolkit to provide optimal Computer Vision and Deep Learning solutions. Our clients' systems can achieve highest computing performance and lowest cost for their AI applications by leveraging the Stratix® 10 FPGA on DE10-Pro .
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]]>FPGA
Intel Stratix 10 GX/SX FPGA
FPGA Configuration
On-Board USB Blaster II or JTAG header for FPGA programming
Avalon-ST (AVST x8) configuration via MAX V CPLD and CFI flash memory
ASx4 Configuration
Memory
128MB FLASH
Up to 8 GB DDR4 2666/2400(FPGA Core Speed 1/2 FPGA) for each socket
Communication and Expansion
Four QSFP28 connectors for 100/40/25/10 GbE network interface
PCI Express Gen3 x16 edge connector (includes PCIe drivers)
2×5 Timing expansion header
Others
General user input / output:
• 4 LEDs
• 2 push-buttons
• 2 slide switches
• U.FL clock input / output
On-Board Clock
• 50MHz Oscillator
• Programmable Clock Generator
System Monitor and Control
• Temperature sensor
• Power Monitor
• Fan control
Power
• PCI Express 2×4 power connector for 12V DC Input
• PCI Express edge connector power
Mechanical Specification
• PCI Express standard height and 3/4-length
Supported Memory Modules for Sockets
• DDR4-2666/2400 for FPGA Core Speed 1/2 FPGA
• QDRII+ 550MHz 144MBits
• QDRIV 1066MHz 144MBits
Download Datasheet for DE10-Pro • FPGA-027
The post DE10-Pro appeared first on EDU Market.
]]>The package of Starter Platform for OpenVINO™ Toolkit includes reference designs for all the peripherals onboard. It also has a detailed user manual for developers to follow and start building up a system according to their needs immediately.
The Starter Platform for OpenVINO™ Toolkit is a perfect starting point as OpenCL HPC (High Performance Computing) development platform. It supports Intel FPGA OpenCL BSP for developers to design a system with high level programming language. The computation demanding tasks can be off-loaded from CPU to FPGA, resulting in significant system performance improvement.
The post Starter Platform for OpenVINO™ Toolkit appeared first on EDU Market.
]]>
Toolkit
FPGA Device
Cyclone V
• 301K Programmable Logic Elements
• 13,917 Kbits embedded memory
• Eight Fractional PLLs
• Two Hard Memory Controllers
• Nine Transceivers (the GT speed is 6.144G, and GX speed is 3.125G )
Configuration and Debug
• Quad Serial Configuration device-EPCQ256
• On-Board USB Blaster II (Mini-B USB connector)
Memory Device
• 64MB (32M x16) SDRAM
• 1GB (2 x256M x16) DDR3 SDRAM
Communication
• UART to USB(Mini-B USB connector)
• GT device supports PCIe Gen2x 4(GX device supports PCIe Gen1x 4)
Expansion I/O
2 x40 GPIO Header
• 36 General GPIO Pins
• Support 8 pairs LVDS TX and 8 pairs LVDS RX
• Diode protection circuit
• Configurable I/O standards: 1.5/1.8/2.5/3.3V
One Arduino Uno Revision 3 Expansion Header
Analog ADC
• SPI Interface
• 500Ksps Sampling Rate
• Eight Channels
• Analog Input Range:0 ~ 4.096 V
• Resolution: 12-bit
Digital IO
• Diode protection circuit
SMA IN/OUT 3.3V single port
Switches, Buttons, LED, and 7-Segments
• 5 User Buttons (4 normal buttons, one CPU_RESET_n)
• 4 User Switches
• 4 LEDs
• 2 7-Segments
Power
• 12V DC input
• PCIe 12V Input
Cooling
• 12V, 5000 Speed Fan
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]]>DE10-Agilex is based on the powerful Intel® Agilex™ FPGA to obtain speed and power breakthrough, with 40% higher performance, 40% lower power for equivalent performance. The accelerator includes PCI Express Gen 4.0 x16, two 200G QSFP-DD connectors and offers 32GB of DDR4 up to 680Gbps bandwidth to provide adaptable acceleration, maximum throughput and highly customizable processing of data for compute intensive applications.
DE10-Agilex • FPGA-025 fully supports Intel® OpenCL™ BSP and Intel® oneAPI Toolkits to provide optimal Computer Vision and Deep Learning solutions. Our clients' systems can achieve highest computing performance and lowest cost for their Data Center and AI applications by leveraging the Agilex® FPGA on DE10-Agilex accelerator.
The post DE10-Agilex appeared first on EDU Market.
]]>FPGA
Intel® Agilex
FPGA AGFB014R24B2E2V
(FPGA with higher core speed is available, please contact Sales Team at sales@terasic.com for details.)
FPGA Configuration
On-Board USB Blaster II or JTAG header for FPGA programming
Avalon-ST (AVST x16) configuration via MAX 10 and CFI flash memory
Memory
128MB FLASH
Total 32GB DDR4 SODIMM with ECC.
Communication and Expansion
Two QSFPDD connectors for 200/100/40/25/10 GbE network interface
PCI Express Gen4 x16 edge connector (includes PCIe drivers)
2×5 Timing expansion header
UART
Others
General user input / output:
• 8 LEDs
• 2 push-buttons
• 2 slide switches
• U.FL clock input / output
On-Board Clock:
• 50MHz Oscillator
• Programmable Clock Generator ±5 ppb, 30.72MHz, OCXO ClocK (DNI)
System Monitor and Control:
• Temperature sensor
• Power Monitor
• Auto Fan control
• Auto Shutdown Control
Power In:
• PCI Express 2×4 power connector for 12V DC Input
• PCI Express edge connector power
Mechanical Specification:
• PCI Express standard height and 3/4-length
Supported Memory Modules for Sockets
• Single Rank SODIMM: Up to 2666/3200 MT/s for FPGA Core Speed 2/1
• Dual Rank SODIMM: Up to 2400/2666 MT/s for FPGA Core Speed 2/1
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]]>The motor driver daughter card has a 3.3V 2x20 GPIO interface which can connect to the DE series of FPGA boards as a host board, e.g., DE0-Nano and DE0-Nano-SoC. The host board can send PWM signals to the motor driver card to control the rotate angle of servo motors.
The kit includes the PWM IP and application examples showing how to control the servo motor. With the examples, developers can easily develop their robot machines.
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]]>Motor Driver Daughter Card
• Input 6.2~12V DC for driving motors
• Provide 5V DC power output for host board
• 2X20 3.3V GPIO Interface
• Drive 24 servo motors at most
• Fuse protection for each servo driving port
• Build-In Altera CPLD and Power Monitor Chip:
• Battery voltage monitor
• Total current monitor
• Auto shutdown when battery is low or total current is too high
• Source code is available for users to modify according to their application
Servo Motor MG966R
• Rotation Angle: 0~120
• Weight: 55g
• Dimension: 40.7×19.7×42.9mm
• Stall torque: 9.4kg/cm (4.8v); 11kg/cm (6.0v)
• Operating speed: 0.19sec/60degree (4.8v); 0.15sec/60degree (6.0v)
• Operating voltage: 4.8~ 6.6v
• Gear Type: Metal gear
The post Servo Motor Kit appeared first on EDU Market.
]]>In addition to these offerings, the DE5a-Net-DDR4 fully supports Intel Open VINO™ toolkit to provide optimal Computer Vision and Deep Learning solutions. Our clients' systems can achieve highest computing performance and lowest cost for their AI applications by leveraging the Arria® 10 FPGA on DE5a-Net-DDR4.
The post DE5A Net-DDR4 appeared first on EDU Market.
]]>Download Datasheet for DE5A Net-DDR4 • FPGA-024
The post DE5A Net-DDR4 appeared first on EDU Market.
]]>The post DE10-Nano Kit appeared first on EDU Market.
]]>The following hardware is provided on the board:
Download Datasheet for DE10-Nano Kit • FPGA-011
The post DE10-Nano Kit appeared first on EDU Market.
]]>• Measure the waveforms and check the changes according to RPM speed.
• Engine operation: check the operation of the injector and sparks in the order of switch plugs (1, 3, 4, 2) and inspect whether normal operation of each sensor.
• Failure code: the device allows to inspect failures on purpose.
• Sensor inspection: can check failure by using variable simulation. (Variable RPM: 0 - 3,000RPM)
The post Gasoline Ignition System Simulator – Auto Fault • AUT-014 appeared first on EDU Market.
]]>• An effective educational unit that allow students to understand structure of ignition system devices and operation principles.
• By installment of connection terminals at sensors, circuits and parts, students are able to practice wiring and measure waveform.
• By manipulating the controller, able to check the waveforms and changes in accordance with RPM speed.
• Students are able to understand flow of entire circuit, find out what causes fault and how to repair.
• The panel composing the ignition circuit is made with aluminum CNC-treated panel.
Specifications of the Gasoline Ignition System Simulator – Auto Fault • AUT-014
– Composition:
Crank sensors, injectors, spark plugs, fan, relay, RPM meter, self- diagnosis jack, emergency switches, fuses, Key switch, ATS, TPS, WTS, MAP, HO2S
• Size: Approx. 400 X 200 X 400 mm
• Weight: Approx. 30 kg
The post Gasoline Ignition System Simulator – Auto Fault • AUT-014 appeared first on EDU Market.
]]>• Manufacturing hybrid starting simulation with AVANTE HEV 1.6 engine, Hybrid control Unit.
• Attached sensor of slant angle, brake boost pressure.
• To check the operation such as start of hybrid engine, power support by idle or slow move, driving force support when speed up, energy retrieve decreasing speed (battery charge) with brake switch.
• With the center of HCU (hybrid control unit), connect each control unit, ECU, TCM, BMS ECU, MCU, LDC with CAN communication.
• Panel display engine start-engine status.
• With diagnosis equipment, check sensor, short circuit, failure diagnosis and output power Display panel, ECU circuit, education check terminal and toggle switches are set up in the front control panel, it is convenient to check failure, diagnosis, test and experiment.
The post LPI Engine Fault Diagnosis Trainer • AUT-013 appeared first on EDU Market.
]]>– Composition
1) Engine and A/T auto transmission Specification
2) 1,600cc LPI & Hybrid motor
3) Engine Style: I4 1.6 (1,591cc), AVANTE HEV
• Size: Approx. 4,600 X 1,800 X 1,500 mm
• Weight: Approx. 1,300kg
Optional Accessories:
• Oscilloscope
• Laptop
• Monitor
The post LPI Engine Fault Diagnosis Trainer • AUT-013 appeared first on EDU Market.
]]>