We already have a fair choice of boards with Arduino compatible headers powered by an FPGA with options such as $99 Digilent Arty (Xilinx Artix-7 FPGA), FleaFPGA (Lattice FPGA), Papillio DUO (Xilinx Spartan 6), or Snickerdoodle + shieldBuddy (Xilinx Zynq-7010/20). There’s no yet another choice with Alorium Technology XLR8 Arduino UNO like board powered by Altera MAX10 FPGA. XLR8 board specifications: FPGA – Altera MAX 10 FPGA MCU – Atmel/Microchip ATmega328 8-bit MCU Digital I/Os 5V inputs, 3.3V outputs 14x Digital I/O Pins 6x PWM Digital I/O Pins 6x Analog Pins Analog Inputs 5V tolerant Op-amp circuit emulates 0-5V behavior of the ADCs on the Arduino UNO Performance: 1 MHz; Resolution: 12-bit sustained Sample Rate: 154k samples/second Power Supply – 5V via USB or barrel connector Dimensions – Arduino UNO form factor The board is supported by Altera Quartus Prime Lite Edition, and programmable either via JTAG though a USB […]
Intel Has Started Sampling Altera Stratix 10 ARM Cortex A53 + FPGA SoC
Intel bought Altera last year, which means Intel is now in the FPGA business, and the company has recently announced they had started to provide samples of Startix 10 SoC manufactured using Intel 14 nm tri-gate process. The interesting part if that beside FPGA fabric, the SoC also includes four ARM Cortex A53 cores. Intel / Altera Stratix 10 SoC key features and specifications: Processor – Quad-core ARM Cortex-A53 MP Core up to 1.5 GHz Logic Core Performance – 1 GHz Logic Density Range – 500K LE – 5.5M LE Embedded Memory – 229 Mb Up to 11,520 18 x 19 Multipliers Up to 144 Transceivers up to 30 Gbps data rate (Chip to Chip) Memory Devices Supported – DDR4 SDRAM @ 1,333 MHz,DDR3 SDRAM @ 1066 MHz, LPDDR3 @ 800 MHz, RLDRAM 3 @ 1200 MHz, QDR IV SRAM @ 1066 MHz, QDR II+ SRAM @ 633 MHz, Hybrid […]
LinkSprite O-board Altera Cyclone IV FPGA Development Board Targets OpenRISC Development
OpenRISC project‘s goal is to create a free and open processor for embedded system that include RISC instruction set architecture with DSP features, an open source implementations of the architecture, open source development tools and software, and simulators. You normally need FPGA board to emulate the processor before silicon is made available, so LinkSprite designed the O-board powered by Altera Cyclone IV FPGA to help with OpenRISC development and evaluation. O-board specifications: FPGA – Altera Cyclone IV E with 22K LUT (P/N: EP4CE22F17C8N) System Memory – 32MB SDRAM Storage – 1MB SPI FLASH, micro SD slot Connectivity – 1x Fast Ethernet (RJ45) USB – 1x micro USB for OTG HOST/SLAVE, 1 x micro USB for power supply, configuration, 2x UARTs, 2x JTAG… Expansion connectors – 2x 70-pin headers Power Supply – 5V via miro USB Dimensions – 96 x 40 mm The Wiki for the board explained how to get […]
LimeSDR Open Source Hardware Software Defined Radio Goes for $199 and Up (Crowdfunding)
Canonical and Lime Micro showcased SoDeRa software defined radio (SDR) a couple of months ago, with a promise to launch a crowdfunding campaign later this year. They’ve fulfill their promise, and launched the open source SDR, renamed to LimeSDR, on Crowdsupply. LimeSDR board specifications: FPGA – Altera Cyclone IV EP4CE40F23 Altera FPGA compatible with EP4CE30F23 System Memory – 256 MB DDR2 SDRAM RF Lime Microsystems LMS7002M RF transceiver with continuous coverage of the frequency range between 100 kHz and 3.8 GHz; 61.44 MHz bandwidth 4 x TxOut and 6 x RxIn U.FL connectors Power Output (CW): up to 10 dBm Wi-Fi, GSM, UMTS, LTE, LoRa, Bluetooth, Zigbee, RFID, Digital Broadcasting, configurable through apps. USB – 1x micro USB3 via CYUSB3014-BZXC Cypress Microcontroller for control, data transfer and power Misc – Status LEDs, RGB LEDs, 4x switches Power – USB or external power supply Dimensions – 100 mm x 60 mm The board […]
Canonical Introduces SoDeRa Software Defined Radio Solution for Base Stations and IoT Gateways
Canonical and Lime Micro have jointly announced SoDeRa low-cost software defined radio (SDR) which can be programmed to support any type of wireless standard including UMTS, LTE, LoRa, Bluetooth, Zigbee, RFID, Digital Broadcasting, and more, and aiming at helping operators reducing costs & complexity, while speeding up time to market and providing greater flexibility. The kit will include a board with the following specifications: FPGA – Altera Cyclone IV EP4CE40F23 Altera FPGA (compatible with EP4CE30F23) System Memory – 256 MB DDR2 SDRAM RF Lime Microsystems LMS7002M Transceiver with continuous Frequency range of 100 kHz – 3.8 GHz 4 x TxOut and 6 x RxIn U.FL connectors for RF cables Power Output (CW): up to 6.5 dBm Wi-Fi, 2G, 3G, LTE, any other air interfaces USB – 1x micro USB3 via CYUSB3014-BZXC Cypress Microcontroller for control, data transfer and power Misc – Status LEDs, RGB LEDs, 4x switches Dimensions – 100 mm x […]
DAB Embedded OpenWrt Router Board Combines Atmel SAMA5D3 SoC and Altera MAX 10 FPGA
DAB Embedded, a Belgian engineering company specialized in research and development of electronic products, has designed DAB-OWT-SAM5 router board powered by Atmel SAMA5D36 Cortex-A5 processor and Altera MAX 10 FPGA, which runs OpenWrt or Windows Embedded Compact 7, and targets IoT applications. DAB-OWT-SAM5 board specifications: SoC – Atmel SAMA5D36 ARM Cortex-A5 processor @ 536MHz with Floating-Point Unit. FPGA – Altera MAX 10 FPGA with integrated ADC (Exact part number not disclosed) System Memory – Up to 512MB DDR2 Storage – Up to 2GB NAND flash, 1Mbit SPI flash, micro SD slot Connectivity – 2x Fast Ethernet ports, 802.11 b/g/n WiFi (Direct, station mode, and soft-AP) via Atmel ATWILC1000B module Display Interface – LVDS connected to FPGA USB – 1x USB 2.0 host, 1x USB 2.0 device Expansion Connectors Wired interfaces – RS232, CAN 2.0 A/B, KNX, RS-485/422, etc… Wireless connectivity – Zigbee, Z-Wave, KNX RF, etc… Power Supply – 5V DC […]
Armadeus Systems APF6_SP SoM Combines Freescale i.MX6 Processor and Altera Cyclone V GX FPGA
Xilinx Zynq and Altera Cyclone V are both SoC families combining an ARM processor (Hard Processor System – HPS) with FPGA fabric into a single chip. But Armadeus Systems, a French company designing industrial ARM Linux processor modules, has unveiled a new module where the CPU and FPGA are two separate chips, namely Freescale i.MX6 (single to quad) and Altera Cyclone V GX FPGA, in order to provide more flexibility, and extra features like a GPU with OpenCL support, an hardware video processing unit, a dedicated SATA port, and so on. Armadeus APF6_SP SoM specifications: SoC – Freescale i.MX6 single, dual or quad core Cortex A9 processor with Vivante GPUs FPGA – Altera Cyclone V GX (C4/C5/C7/C9) System Memory 512MB to 1GB DDR3 32-bit @ 800 MHz for i.MX6 Solo or Duallite 512MB to 2GB DDR3 64-bit @ 1066MHz for i.MX6 Dual or Quad Optional up to 768MB RAM dedicated […]
LA1016, LA2016, and LA5016 Logic Analyzers Cost as Low as $75
I remember 10+ years ago, when my managers argued whether buying a logic analyzer, because some of its functions could be done by an oscilloscope, and logic analyzers were selling for a few thousands dollars at the time. Fast forward to 2014, it’s now possible to acquire lower end logic analyzers that connect to a PC for as low as $75 thanks to products such as LA1016, LA2016, and LA5016, all supports 16-channels and respectively 100, 200 and 500 Mbps sampling rate. Key features and specifications: Input channels – 16 Max Sampling Rate: LA1016: 100M; LA2016: 200M; LA5026: 500M Measurement Bandwidth – LA1016: 20M; LA2016: 40M; LA5016: 80M Min pulse width – LA1016: 20ns; LA2016: 12.5ns; LA5016: 6.25ns Hardware memory size – LA1016/LA2016: 1Gbits; LA5016: 512Mbits Hardware sampling depth – LA1016/LA2016: 50M/channel; LA5016: 32M/channel Max compressed depth – LA1016/LA2016: 10G/channel; LA5016: 5G/channel Input voltage range – -50V ~ +50V Input […]