Advantech Launches AIMB-233 “THIN” Mini-ITX Industrial Motherboard with 8th Gen. Intel® Core™

Advantech, a leading industrial solutions provider, is pleased to release AIMB-233, a low-profile industrial-grade “THIN” Mini-ITX motherboard to enable graphics processing and computing power in limited space applications.  AIMB-233 is powered by an 8th Gen. Intel® Core™ Processor, features diverse I/O ports, and utilizes an optimized thermal solution. With an overall height of just 25 mm (.08 in), this motherboard is an excellent choice for applications in nursing carts, patient care systems, Human-Machine Interfaces (HMI), and mobile devices.

Featuring Dual Ethernet and Numerous I/O for Diverse Applications

Advantech AIMB-233 features multiple high-speed I/O — including 8 USB ports (1x type C USB 3.1, 3x USB 3.1, 2x USB 3.0, 2x USB 2.0), 2x SATA III, PCIe x1, 1x M.2 M-Key, and 1x M.2 E-key (optional full-size MiniPCIe) — to consolidate legacy and modern peripheral devices on a motherboard. Additionally, this motherboard has 8-bit digital programmable I/O, 6x COM ports (one port for RS-232/422/485), and a 2W dual-channel audio amplifier. AIMB-233 is further equipped with dual Gigabit Ethernet ports that deliver up to 1000 Mbps of bandwidth for two network segment applications. These features allow AIMB-233 to support a wide range of peripherals and network connections in a myriad of applications.

Designed to Empower High-End Graphics and Low-Latency Storage

AIMB-233 supports high-speed interfaces via USB Type-C Alt to offer USB, DisplayPort and HDMI. USB Type-C Alt supports a max. 4906 x 2034 @60Hz resolution to deliver excellent graphics to medical imaging processing. The M.2 M-key socket enables the use of high-performance SSD to deliver reliable high-speed processing for critical data operations.

Rapid Deployment in Harsh Environments

AIMB-233’s fanless design reduces time-to-market for system integrators. This motherboard provides powerful and stable computing performance during wide temperature range working condition in harsh environments (-20 ~ 70 °C/-4 ~ 158 °F). Additionally, its 12-24V DC-in feature accommodates flexible system power designs for medical and industrial automation applications.

Enhanced Security Solution for Medical Applications

Medical devices, including radiation/diagnostic equipment, monitoring devices, and patient information systems require advanced security capabilities. AIMB-233 motherboard features secure hardware and software to protect data and patient confidentiality. Its software, UEFI Secure Boot and boot guard, secures pre-boot environments, while its hardware supports optional TPM 2.0 for enhanced data protection.

AIMB-233 Key Features

  • Equipped with 8th Gen. Intel® Core™ i / Celeron mobile processors
  • Dual channel DDR4-2400 260-pin SODIMM up to 32 GB
  • 8x USB, 2x SATA III, 6x COM, 1x M.2 M-key/8-bit GPIO, 1x M.2 E-key
  • Triple display by Type C Alt. + HDMI + LVDS (or eDP*)
  • FCC/CB Class B Certified and ESD level 4 (Contact 8 KV)
  • 12~24V DC power input
  • Pre-installed WISE-DeviceOn software for remote monitoring and management

*Note: BOM optional function by request.

Advantech AIMB-233 industrial-grade “THIN” Mini-ITX motherboard is available now. For further information or Advantech Industrial Motherboard products, please contact your local sales support team, an authorized channel partner, or visit www.advantech.com.

Arduino’s official IoT Cloud release puts the power of easy connectivity into everyday life and business

Next phase of Arduino’s cloud platform enables everyone to breathe digital life into everyday things

ITALY: Arduino, the leading IoT development platform announces the full release of Arduino IoT Cloud – an end-to-end solution that makes building connected projects easy for makers, IoT enthusiasts and professionals from start to finish.

Arduino IoT Cloud provides a low-code approach that enables users to collect, graph and analyze their sensor data, trigger events and fully control their devices. People can automate their home or businesses with ease, all in a single place. Arduino IoT Cloud provides a full stack approach that is ready-to-use, by combining hardware, firmware, cloud services, and knowledge support that is needed to deliver an end-to-end IoT solution. This enables millions of users at any level of experience to start deploying connected projects.

Easy for beginners, fast for professionals

Getting started has never been easier; simply sign up for free today and follow the guides to connect a device to start your project. Arduino IoT Cloud’s low-code approach helps users to optimize their workflows and simplify device registration for convenience and flexibility. For more advanced users, the platform also enables other methods of interaction, including HTTP REST API, MQTT, Command-Line Tools, Javascript, and Websockets.

Arduino IoT Cloud has a range of key features, including:

Automatically generated code that can be easily adapted by users with minimal effort, removing barriers for anyone who is not familiar with coding and empowering makers of all ages and experience Plug & Play onboarding will automatically generate a sketch when setting up a new device, enabling users to go from unboxing their board to a working device within minutes ‘On-the-go’ mobile dashboard allows users to access, check data and control remote sensor monitoring from anywhere using accessible widgets. Using open hardware and IoT standards, users can send and receive data across multiple connected objects within the platform – making it perfectly suited to professionals that want to manage fleets of devices. Arduino IoT Cloud also supports STEM/STEAM learning programs. Educators can share sketches with students with pre-existing code that allows entry-level developers to understand and create projects without having any prior coding experience.

Users can also upgrade their plan to power-up their tools and access additional features. For USD $6.99 per month, the Create Maker plan allows users to connect more ‘things’, save more sketches, increase data storage on the cloud and access unlimited compilation times, plus much more. For businesses, the Create Professional plan provides flexible and scalable options for enterprise solutions.

Complex technology (made simple)

Deploying a connected object with Arduino IoT Cloud requires just a few simple steps by removing the most common points of friction e.g. installing software, security management etc. Arduino IoT Cloud aims to further demystify the set-up, by allowing people to express their requirements in terms of the physical aspects they are trying to capture or influence, for instance temperature, pressure or the status and color of a light, rather than the technical parameters: voltages, currents etc. Users can leverage a wide selection of widgets and assemble them into meaningful dashboards within minutes, by intuitively connecting these UI controls to the physical properties they refer to.

The platform integrates with Amazon Alexa, Google Sheets, IFTTT and ZAPIER, which allows users to program and manage devices using voice, spreadsheets, databases, and automate alerts using webhooks. The platform also enables developers to create custom apps using the Arduino IoT API, with custom endpoint webhooks to be added for further flexibility.

Automatic control of devices through an API puts easy remote management at the heart of the platform. Users can manage, configure and connect not only Arduino hardware, but the vast majority of Linux-based devices, easily and securely through a simple Internet connection. Devices are secured using X.509 certificate-based authentication, with further security benefits unlocked by the secure element crypto chips embedded into Arduino IoT enabled boards.

Fabio Violante, CEO of Arduino commented:

“As technology progresses, things that were impossible to imagine a few years ago are becoming much easier to approach. But when we talk about leveraging the power and robustness of embedded systems to connect physical objects and environments with the cloud, a lot of skills are required. Our aim at Arduino is to lower this barrier to entry for IoT and ultimately, democratize technology. This has been our mission forever, and is why we are investing time, money and energy to build our holistic approach that goes from connected hardware for super secure IoT nodes, like our MKR Wifi 1010 board, Nano 33 IoT or Portenta H7 for the PRO market, to our user friendly cloud and development environments.”

“Especially on the cloud side, our aim is to take care of the “underlying” complexity by performing code generation and automation at every possible step of the process. Combining the ease of build with the ability for users to leverage their mobile device as a control interface through specialized apps for Android and iPhone, we’re excited to make simple and secure IoT possible for everyone.”

To get started with Arduino IoT Cloud, visit: https://create.arduino.cc/iot/.

Skylo Partners with Sony Semiconductor Israel to Deploy 5G-Ready Narrowband-IoT Connectivity over Satellite

Narrowband-IoT Connectivity over Satellite

The partnership brings 5G-ready NB-IoT over satellite for the first time and delivers massive cost and interoperability advantages for the IoT industry

Skylo, maker of the world’s most affordable and ubiquitous network that connects any machine or sensor, today announced a partnership with Sony Semiconductor Israel (Sony, formerly known as Altair Semiconductor). With the partnership, Skylo and Sony are the first to develop and deploy cellular IoT chipsets (branded “Altair”) that can connect via geostationary satellites and that leverage the standardized, 5G-ready, NB-IoT protocol. The partnership also makes significant contributions to 3GPP future specifications, which will help standardize and accelerate the adoption of NB-IoT over satellite. In addition, this innovative new use of Sony’s Altair cellular IoT chipsets dramatically reduces the cost for IoT applications to connect via traditional satellite networks; until the launch of this solution, satellite connectivity was cost-prohibitive and required custom-built protocols.

Skylo, which was founded in late 2017 by foremost researchers including Dr. Andrew Kalman, is building an efficient, global NB-IoT network over satellite for millions of presently unconnected devices, machines, and sensors. Sony Semiconductor Israel is a leading provider of cellular IoT chipsets. Through this partnership, both parties have extended existing cellular IoT chipsets to communicate directly over Skylo’s hosted satellite network.

“For industries with assets deployed all over the globe — including marine vessels, vehicles, and industrial equipment — having access to a ubiquitous fabric of carrier-grade, affordable IoT connectivity that is enabled by Sony’s Altair cellular IoT chipsets is a game-changer,” said Dr. Andrew Nuttall, Skylo’s co-founder, and CTO. “This partnership ensures our ability to quickly scale the manufacturing and deployment of connector Skylo Hubs to our customers worldwide.”

“We are glad to collaborate with Sony Semiconductor Israel on this important technological breakthrough, which provides an entirely new connectivity method for IoT for customers around the world and contributes greatly to the development of future 3GPP standards,” said Moshe Noah, Vice President of Engineering at Skylo.

“We are excited to work with Skylo and launch an entirely new IoT category for industrial machines,” said Dima Feldman, Vice President of Product Management and Marketing at Sony Semiconductor Israel. “We’re impressed by the innovative way that Skylo has extended our chip functionality over satellites to expand the connectivity reach to the most remote locations. We look forward to helping Skylo bring billions of sensors online for the first time.”

“In addition, the Altair field-proven, ultra-low-power, and ultra-small chipset solutions are ideal for the type of data exchange for industrial use cases,” added Feldman.

This new geostationary satellite connectivity is a technological breakthrough for Skylo. Any customer who is building IoT into their remote businesses can use familiar technologies like Bluetooth and WiFi in order to connect existing sensors to Skylo Hub. Those IoT sensors are already programmed for these communications protocols. Adding Skylo’s satellite connectivity is a seamless extension for customers that, in addition to terrestrial networks, can now use satellite connectivity, virtually in any place on the planet. In addition, because Sony’s Altair cellular IoT chipsets are mass-produced for terrestrial cellular networks, Skylo can affordably manufacture the Skylo Hub and pass along that savings to its customers.

Skylo is launching commercially this year over South Asia and can be accessed using the Skylo Hub, a portable satellite NB-IoT antenna terminal. The Skylo Hub costs less than $100 USD and integrates seamlessly with existing machines & sensors. The Skylo Network is hosted on existing geostationary satellites and enables immediate connectivity for customers without the need to add new infrastructure in space. Skylo is venture-backed by leading investors in telecom and space, including SoftBank Group, Boeing HorizonX, Innovation Endeavors, and DCM Ventures.

For more information, visit our website. Follow us on Twitter and LinkedIn.

Optically Isolated Bidirectional I2C Shield For Arduino

Optically isolator Arduino Shield has been designed to provide optically isolated I2C communication between Arduino and any other device or sensors that works with I2C protocols. I have used the ISO1540 Low-Power Bidirectional I2C Isolator IC from Texas Instruments to build this project, and the device is compatible with I2C interfaces. These devices have logic input and output buffers that are separated by Texas Instruments Capacitive Isolation technology using a silicon dioxide (SiO2) barrier. When used with isolated power supplies, these devices block high voltages, isolate grounds, and prevent noise currents from entering the local ground and interfering with or damaging the Arduino board. The ISO1540 has two isolated bidirectional channels for clock and data lines. The project is suitable for multi-master applications. For applications where clock stretching by the slave is possible. LED D1 is the power indicator for side two. This board requires two separate supplies, side one powered from Arduino UNO 5V, side 2 require separate 3.3V to 5V.

Optically Isolated Bidirectional I2C Shield For Arduino – [Link]

Newark Introduces New TBS1000C Digital Storage Oscilloscope from Tektronix

Newark added the new Tektronix TBS1000C Digital Storage Oscilloscope to its test and measurement portfolio. Designed to meet the needs of today’s educational institutions, embedded design engineers, and makers, this new oscilloscope offers an upgrade in performance over the TBS1000B.

The TBS1000C is ideal for use in the education environment. It comes with a courseware system that integrates lab exercises with step-by-step instructions for use by educators and students. Ready-made educational content can be downloaded for free from Tektronix’s Courseware Resource Center, enabling lab work without the need to design an entire course from scratch. Built-in support for learning also includes the innovative HelpEverywhere system that provides useful on-screen tips and hints throughout the user interface, allowing new users and students to learn how to use the oscilloscope.

The TBS1000C comes with a standard 5-year warranty, providing added security for educators requiring a product that can be used year after year in the teaching lab.

Other key features include:

  • A 7-inch multifunction WVGA color display that shows 50% more signal with pan and zoom capability. The multi-language user interface supports 10 languages and front panel overlay.
  • 2-channel models with 20k point record length and up to 1GS/s sample rate with bandwidths from 50 MHz to 200 MHz.
  • 32 automated measurements and dual window FFT with simultaneous time and frequency domain views.
  • Advanced triggers including pulse, runt and line triggers, and trigger frequency counter.
  • Compatibility with TekSmartLab for remote control and access.
  • A small footprint and lightweight fan-less design contributing to low noise operation and reliability.

The Tektronix TBS1000C Digital Storage Oscilloscope is available for delivery from Newark in North America, Farnell in EMEA and element14 in APAC.

For more information, visit: www.tek.com

Broadcom AFBR-S50LV85D time-of-flight sensor module

The AFBR-S50LV85D is the new addition to Broadcom’s Time of Flight (ToF) sensor family

The AFBR-S50LV85D is the new addition to Broadcom’s Time of Flight (ToF) sensor family and has been developed with a special focus on industrial sensing applications for large distances of typical up to 30 m. The module has an integrated 850 nm laser light source, and due to a 2° x 2° emission cone, it can typically use 1 to 3 pixels, depending on distance and remission of the measured object. It is an ideal solution for industrial sensing applications over large distances up to 30 m, typically.

Key features

  • Integrated 850 nm laser light source
  • Field-of-View (FoV) of 12.4° x 6.2° with 32 pixels
  • Typical distance range up to 30 m
  • Works well on all surface types

Additional features

  • Transmitter beam of 2° x 2° to illuminate between 1 and 3 pixels
  • Reference pixel for system health monitoring
  • Measurement rates of up to 3 kHz
  • Unambiguous range up to 100 m with dual-frequency mode
  • Operation of up to 200 klx ambient light
  • Single voltage supply 5 V, typical 33 mA
  • Integrated voltage and temperature sensors
  • Integrated clock source
  • Laser Class 1 eye-safe ready
  • Drop-in compatible within the AFBR-S50 sensor platform

Applications

  • Distance measurement
  • Security surveillance
  • Robotics
  • Human-machine interfaces
  • Automation and control
  • Inventory monitoring

Upcoming seminars or promotion activities

Register for the on-demand IEEE webinar: Time-of-Flight 3D Sensors: Taking Optical Measurement to a New Level https://www.globalspec.com/events/eventdetails?eventId=3030

5G NB-IoT Low-Power Cellular Developer Starter Kit

Thales’ DevKit and Qoitech’s Arc power analyzer are combined in one starter kit

Thales and Qoitech have combined their products into starter kits that offer easy setup for evaluation and prototyping of narrowband IoT (NB-IoT) connectivity and its energy consumption.

Thales’ DEVKIT ENS22-E NB-IOT is an easy-to-configure starter kit with an NB-IoT module that supports major operators in Europe and APAC regions where NB-IoT technology has already been well-deployed. This powerful development board allows users to quickly test prototypes in a laboratory environment, providing cellular connectivity as well as various control functions over standard AT command interfaces. External peripherals like sensors, actuators, or additional interfaces to external applications are easily connected to all accessible module lines via pin headers. Thales’ DevKit ENS22 is configured to work with the Otii Arc, using a dedicated cable that is included in the package. Check out the configuration details on the related “Low Power Modes of Cellular LPWA” video.

Qoitech’s OTII-ARC-001 is a multitool, power analyzer, power supply, and log sync, all in one package. Designed for everyday use on any developer’s desktop, Otii is compact, portable, and quiet, yet comprehensive in the technical features needed for the energy optimization of battery-driven devices. One of the most prominent features of Otii Arc is its ability to display current and voltage measurements in real-time, enabling analysis of an energy profile synced to device UART logs. Otii Arc can be upgraded with Otii Toolboxes; software add-ons that elevate the instrument into specialized tools such as a battery profiler and simulator or automation tool. Otii Arc can be used in the development, test and verification, quality assurance and maintenance (for example as part of continuous integration set-up), and technical sales.

DEVKIT ENS22-E NB-IOT Features

  • UART via USB VCP
  • Direct module signal access with complete interruption for deep level investigation
  • Real module current consumption measurement; no additional leakage current
  • Powered via USB or external devices
  • Adjustable module supply level 3.1 V to 4.2 V
  • Further supported interfaces: I²C, ASC1/SPI, and GPIO
  • Clear and easy concept for usage and signaling
  • QR code scanning leads users to all the information necessary for usage

OTII-ARC-001 Power Analyzer Features

  • Quick install, plug-and-play setup; start measuring in less than a minute (app for Ubuntu, Windows, and macOS)
  • Continuous system-level current and voltage measurements
  • Current auto-range of 0.5 µA to 5 A with a sample rate of up to 4 ksps
  • Subsystem current and voltage measurements via ADC in the expansion port
  • Power supply with an output voltage range of 0.5 V to 3.75 V when USB-powered; up to 5 V when powered with optional DC adapter
  • Measurements are continuously synchronized with UART debug logs from the device under test
  • Real-time analysis; scroll, zoom, and select parts of the current consumption and debug logs while measuring
  • Record and compare multiple recordings

more information: www.digikey.dk

Axiomtek’s All-in-One Machine Vision Solution for AIoT – MVS900-511-FL

Axiomtek – a world-renowned leader relentlessly devoted in the research, development and manufacture of series of innovative and reliable industrial computer products of high efficiency – is proud to introduce the MVS900-511-FL, its all-in-one fanless machine vision system with the real-time vision I/O and camera interfaces. Its vision I/O includes trigger input, trigger output, LED lighting control, quadrature encoder input, and isolated DIO. Equipped with four IEEE802.3at GbE LAN ports (PoE) for popular GigE cameras, this powerful vision system can support area scan and line scan for automated optical inspection (AOI). By adding the support of the Intel® OpenVINO™ toolkit, it can be trained and perform inference to catch defects, flawed parts, making sure every product leaving a production line meets all quality criteria. With its integrated vision elements, the high-precision MVS900-511-FL addresses the needs and requirements of smart manufacturing and AIoT applications.

The MVS900-511-FL has scalable processing powers with a choice of LGA1151 socket 7th/6th generation Intel® Core™ processors or Celeron® processor (up to 65W) with the Intel® H110 chipset. This high-performance machine vision system can operate under sequential control and can be synchronized with four cameras. Meanwhile, the MVS900-511-FL enables easy integration of any light source. Its integrated lighting controller comes with both the strobe mode and trigger mode, which can support various kinds of LEDs and reduce the overall cost of system integration. These advanced features allow system integrators to configure and deploy vision applications faster and easier.

“As AI technology advances, manufacturers increasingly look to machine vision solutions to expand its inspection capabilities to increase yield, improve product quality, and increase operational efficiency. To facilitate the captured image clear and free of distortion under accurate lighting control, the MVS900-511-FL is equipped with an advanced encoder operating mode with high-speed trigger function and flexible lighting control. This machine vision system achieves seamless interoperability between cameras and vision devices through the integrated real-time vision I/O. Its front I/O design also offers ease of maintenance,”

said Wayne Chung, a product manager of Product PM Division at Axiomtek. ”To ensure reliable and stable performance in harsh environments, the IP40-rated MVS900-511-FL supports a wide operating temperature range of -10°C to +60°C.”

The intelligent MVS900-511-FL comes with dual DDR4-2133/2400 unbuffered SO-DIMM sockets for up to 32GB of system memory. Two 2.5″ swappable HDDs are available for extensive storage needs. It is feature-rich with four PoE, two GbE LAN, two RS-232/422/48, one isolated 8-in/8-out DIO, four USB 3.0, one HDMI, one VGA, one Mic-in, one Line-out and one internal USB connector. It also includes a power switch, a remote switch, a reset switch, a 3-pin terminal block, and an AT/ATX quick switch. This reliable vision system also supports Trusted Platform Module (TPM) 2.0 for enhanced security.

Advanced Features:

  • Integrated real-time vision I/O
    4-CH trigger input – 4 trigger output
    4-CH LED lighting control
    2-CH quadrature encoder input
    16-CH isolated DIO
  • Supports camera interfaces – 4 IEEE802.3at GbE LAN ports (PoE)
  • Supports Intel® OpenVINO™ toolkit
  • Power input: 24 VDC (uMin=19V/uMax=30V)
  • -10°C to +60°C operating temperature range with W.T. SSD
  • Supports 2 swappable 2.5″ HDD
  • Supports TPM 2.0 function

The MVS900-511-FL is now available for purchase. For more product information or customization services, please visit our global website at www.axiomtek.com or contact one of our sales representatives at info@axiomtek.com.tw.

xTendLoRa mesh-capable LoRa data radio Supports AT commands & MODBUS

A Crowdfund campaign is set to be launched soon for the XTendLoRa, which is a mesh-capable LoRa data radio with support for AT commands & MODBUS.

“Whether you are designing an Internet of Things (IoT) product, constructing a smart home, rolling out a sensor network, developing a building automation solution, or just trying to make your machines talk to one another (and to their SCADA overlords), xTendLoRa will help you avoid many of the usual pitfalls. And if your project has to contend with RF noise, large metal objects, and extreme temperatures, xTendLoRa is likely one of the only affordable wireless mesh technologies capable of getting the job done.”

Operating over the 915 MHz, license-free Industrial, Scientific and Medical (ISM) bands, the xTendLoRa capitalizes on the spread-spectrum modulation of LoRa to derive reliable, long-range, high-sensitivity communication—over a multi-hop mesh—even when faced with significant RF or physical interference. You can use basic AT commands or a MODBUS register map to configure and control its complete wireless mesh stack. This combination of simplicity and flexibility is important to reducing development and deployment times for projects that depend on robust communication in harsh environments.

The device features a multi-hop mesh stack and RS485 serial interface. It enables simple AT commands, compatible with a MODBUS Remote Terminal Unit (RTU) profile, and has Good interference immunity. Repeater functionality is field configuration via IO pin. Devices can be allocated to different virtual networks, and it offers Unicast, multicast, and broadcast messaging. It also offers a flexible sink node setting for gateway Device and enables device Firmware Upgrade (DFU) over UART. The device is hardware competent for OTA, and supports 915 MHz ISM-band operation, 4.5 v to 30 V operating volt, and operation temperature from -20° C to 85° C. It has a fixable output power up to +17 dBm, with receiver sensitivity down to -12dBm at SF 8. Finally, it enables AES- 128 CBC packet encryption, and MUI – 64 modem identity

xTendLoRa’s modem—which, thanks to its RS485 interface, can talk to any device with a serial port—will arrive factory-provisioned for guaranteed out-of-the-box connectivity but with full support for custom configurations. For now, there is not much information about the device, so we do not know when the campaign will kickoff, but hopefully very soon. There is also no information about the price, but we will surely get information when the campaign goes live.   You can visit crowd supply’s page to sign up for information about when the campaign will go live.

Panasonic introduces polymer tantalum solid capacitors

Panasonic Industry Europe introduces the new TPS series, a surface mount Conductive Polymer Tantalum Solid capacitor series. The POSCAP TPS series capacitors feature sintered tantalum as an anode and highly conductive polymer as the cathode.

TPS series also has a compact design of only 3.5×2.8.x1.1mm and a high-temperature rating of 105°C for up to 2.000 hours. The new capacitors benefit from a rated voltage of 2.5 to 6,3V and a low ESR (Equivalent Series Resistance) of only 30mΩ. The capacitance range is rated from 150 up to 330µF.

The very compact TPS series capacitors aim to ensure optimal quality and reliability that renders them ideal for demanding applications like placement close to the processor (CPU) of a notebook or a very compact desktop PC, for example at the rear side of a PCB or under the heat sink.

Also, IoT applications or wearables can benefit from the features of the new POSCAP TPS series by Panasonic Industry Europe.

more information: industrial.panasonic.com

TOP PCB Companies