<span style='color:red'>AMEYA360</span>:AVs See the Future with Perception Sensors
  Autonomous driving has moved from hype to reality, and it might be some time before autonomous vehicles (AVs) allow their passengers to watch a movie or admire the scenery while driving them safely to their destination. In this blurry picture, camera, radar and LiDAR units are the “eyes” of the vehicles, mapping the road to full autonomy.  To gain an objective view of the present situation and prospects, EE Times consulted Pierrick Boulay, senior technology and market analyst in the Photonics and Sensing Division at Yole Intelligence, part of Yole Group. Pierre Cambou, principal analyst in the Photonics and Sensing Division at Yole Intelligence, also contributed to the analysis.  “It is clear that the automotive industry has underestimated how difficult it would be to develop autonomous driving features,” Boulay said. “Ten years ago, the industry expected that autonomous driving would be more common. It was one of Tesla’s promises, and if we look at where we are today, Tesla has still not achieved full autonomous driving features.”  The only automated features have been implemented by European and Japanese OEMs, and these features are still limited to highways, with driving speeds up to 60 km/h, Boulay said. “It is almost a useless feature and quite far from what people expected 10 years ago.”  During Tesla’s Autonomy Day in April 2019, CEO Elon Musk made a bold prediction: “By the middle of next year, we’ll have over a million Tesla cars on the road with full self-driving hardware, feature complete, at a reliability level that we would consider that no one needs to pay attention [to the road].”  A wave of euphoria swept through the automotive industry. Tesla’s stock price rocketed, and investors poured jaw-dropping amounts of money into startups as optimists claimed AVs were just around the corner.  A sense of disillusionment came when the National Highway Traffic Safety Administration announced it had received incident reports for 392 crashes related to partial self-driving and driver-assistance systems in the 10 months between July 1, 2021, and May 15, 2022. Almost 70% of them, or 273, were Tesla vehicles using Autopilot or the Full Self-Driving beta, while Honda cars were involved in 90 crashes and Subaru models in 10.  The AV era is forging ahead and continues to pledge enhanced driving safety. As of March 20, 2023, 42 companies have received test permits with safety drivers, and seven companies have driverless test permits in specific areas in California. Three companies—Cruise, Nuro and Waymo—have deployment permits.  Yet full autonomy is taking longer to deliver than promised, and the need for capital expenditure is exploding. From the perspective of perception sensors, why is autonomous driving still a distant dream?
Release time:2023-04-11 11:40 reading:1725 Continue reading>>
<span style='color:red'>AMEYA360</span>:Ams OSRAM TOPLED® D5140 Silicon PIN Photodiode
  AMEYA360:Ams OSRAM TOPLED D5140 Broadband Silicon PIN Photodiode (SFH 2202) provides higher sensitivity to visible light in the green wavelength and increased linearity (30x higher) than standard photodiodes on the market. By reducing the effect of interference from ambient light and improving the received optical signal quality, these enhanced features enable smart watches, activity trackers, and other wearables to measure heart rate and blood oxygen saturation (SpO2) more accurately.          The SFH 2202 photodiode allows system operation with lower LED light intensity, saving power and extending battery run-time while maintaining highly accurate measurements. The specially designed package with black sidewalls minimizes internal cross-talk, further decreasing errors in optical measurements and increasing the constancy of heart rate measurements.  FEATURES  Clear silicone package  ESD of 2kV acc. to ANSI/ESDA/JEDEC JS-001 (HBM, Class 2)  Especially suitable for applications from 400nm to 1100nm  Small outline dimensions  Suitable for reflow soldering  Enhanced green sensitivity  Speed-enhanced PD for 940nm  APPLICATIONS  Digital diagnostic devices  Vital sign monitoring  SPECIFICATIONS  16V maximum reverse voltage  150mW maximum total power dissipation  830nm typical wavelength of maximum sensitivity  400nm to 1100nm typical spectral range of sensitivity  3.2A to 4.1A typical photocurrent range  8.12mm2 typical radiant sensitive area  2.85mm x 2.85mm typical active chip area dimensions (LxW)  60° typical half angle  Dark current  0.07nA typical at 5V  25nA maximum at 10V, 0.1nA typical  75ns to 250ns typical rise time range  75ns to 200ns typical fall time range  1.1V typical forward voltage  23pF capacitance  -40°C to +85°C operating temperature range
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Release time:2023-04-11 11:30 reading:3204 Continue reading>>
<span style='color:red'>AMEYA360</span>:Microchip USB4927 is a USB2.0 Hi-Speed Hub
  The Microchip USB4927 is a USB2.0 Hi-Speed Hub with unique Smart Hub features targeted to automotive consumer ports and head unit applications. The USB4927 is compliant with the USB 2.0 Specification and has passed AEC-Q100 testing.  This highly integrated chip optimizes board area and reduces overall system costs, with the incorporation of  leadership functionality, including;  Dual UpSTream (DUST) architecture, battery charging support for industry profiles, embedded 32 bit micro-controller for the implementation of  USB IO bridging and USB Power Delivery.  The multiple downstream USB ports support USB2.0 Low Speed/Full Speed/Hi-Speed with a single USB2.0 Hi-Speed upstream port for host connection.  The Dual UpSTream architecture incorporates two USB Hubs into a single-chip device. The two upstream ports connect to a USB Host Port and a USB OTG/Device port. Four of the downstream facing ports can be dynamically configured to the second, single-port USB hub, while the third downstream, non-removable port is always connected to the Upstream USB Host. The non-removable port is targeted for cascading hubs or to connect a USB peripheral, such as a card reader.  By providing the capability to activate a second USB network through internal muxing, dedicated bandwidth is assured for the second USB network. This capability can be used in delivering solutions for smart phones that require host / device swapping during the set-up of an automotive session, where the mobile device becomes the USB Host and manages the graphic user interface on the head unit display.  Standard USB drivers, which are  native to the operating system, are utilized to execute device operation. No custom drivers are required. .  Contact your Microchip local sales support for information on support documents, demonstration application boards, configuration software, datasheet and application notes.  Product Features  2 Upstream porst for USB Host connection  4 downstream ports with dual role (host/device) physical interfaces  1 Non-removable port for cascading hubs or attaching card reader device  Patented Dual UpSTream (DUST) architecture  Device features to enable smart phone automotive sessions with head unit display  USB Battery Charging, revision 1.2, support on downstream ports (DCP, CDP, SDP)  Battery charging support for China and Apple profiles  Apple authentication support  I2S for audio support; Asynchronous In, Adaptive Out, 48KHz, two channel (16 bits/channel)  Flexible I2S capabilities via firmware  update  32 bit, embedded microcontroller in the hub executes  PD stack and system policy manager  Interfaces to Microchip UPD350, Power Delivery Interface device  Power delivery stack runs from external  SPI Flash  SPI Flash provides flexibility for specification revisions and evolving system needs  Dedicated transaction translator per port  Configurable port mapping and disable sequencing  Configurable differential intra-pair signal swapping  PHYBoost  Programmable USB receiver sensitivity  USB Link Power Management (LPM) support  Vendor Specific Messaging (VSM) support  Enhanced OEM configuration options available through external straps,  OTP configuration or SMBus Slave Port  3.3V supply voltage  64-pin  SQFN  64 pin Wettable Flanks VQFN  Media Hubs  Infotainment Head Units  Break-Out- Boxes  GPS systems  Infotainment systems  Advanced instrumentations and controls  LCD Monitors  Multi-function USB Peripherals  Embedded Automotive Systems
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Release time:2023-04-10 13:33 reading:1846 Continue reading>>
<span style='color:red'>AMEYA360</span>:Power Semiconductor Selection and Insights for Your Next Design
<span style='color:red'>AMEYA360</span>:MultiTech OneBox™ Kit featuring Reveal™ Sensors
<span style='color:red'>AMEYA360</span>:TE Connectivity Sensor Flat Connectors
  TE Connectivity's Sensor Flat Connectors are designed to provide high reliability and performance in harsh conditions. These connectors are available in 2-, 3-, and 4- position options with Connector Position Assurance (CPA) technology. This technology helps create dependable engine sensor connectivity with high efficiency, minimum downtime, and maximum durability.         The sensor flat connectors achieve IP67 and IPK9K sealing levels and meet the high vibration and temperature resistance demands of connectors used in modern engines. The radial housing seal, CPA, and secondary hinge lock ensure proper terminal positioning, reliable mating, and terminal retention during installation. These flat connectors prevent mismating of connectors with two coding options and colors. Typical applications include sensors, gauges, and actuators.  FEATURES  Designs with time-tested high vibration sensor flat resistance contact system  Reliable:  Ensure proper positioning with integrated Connector Position Assurance (CPA)  Achieves IP67 and IP6K9K sealing levels (with back shell)  Provide dependable connectivity with a large variety of engine sensor interfaces  High efficiency:  Eliminates the need for additional assembly with a secondary hinge locking structure  Support smooth and low mating force with improved radial seal  Prevent mismating of connectors with two coding options and colors  SPECIFICATIONS  <50VDC operating voltage  500VAC voltage resistance  >100MΩ insulation resistance @ 500VDC  Operating temperature range:  -40°C to 130°C (Sn)  -40°C to 150°C (Au, Ag)  APPLICATIONS  Sensors  Gauges  Actuators  Industrial and Commercial Transportation (ICT)  Agriculture  Automotive  Bus  Construction  Marine  Lift truck  Specialty vehicles  Power sports  Recreational  Truck
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Release time:2023-04-07 11:33 reading:1326 Continue reading>>
<span style='color:red'>AMEYA360</span>:Finger Clip Oximeter Solution Based on GD32 MCU
  Using GD32E230C8T6 as the main MCU, it is the first general-purpose microcontroller product based on the new Arm? Cortex?-M23 core in China, replacing and upgrading traditional 8-bit and16-bit MCUs and replacing Cortex-M0/M0+ products to bring a more cost-effective solution. This series of MCUs not only has great value for high-speed processing power, but also provides rich interface resources to enhance connectivity.  The whole oximeter is powered by 2 AAA batteries, the internal ADC can monitor the battery power in real time, powering on and setting parameters can be done with the click of one button, the   buzzer beeps for power on and alarm alert. The transmitter is driven by PWM, the receiver is sampled by ADC, and the OLED is connected to the main control via SPI interface for displaying various parameters and waveform information.  Solution Advantages  Display: using two-color OLED, support four-way switching display  Alarm: sound and light alarm, adjustable upper and lower limits  Battery: 2 AAA batteries  Automatic shutdown: no operation for 8 seconds, shutdown automatically  Small size, light weight, easy to carry  Product Specifications:  Blood oxygen saturation measurement range: 70%-99%  Oximetry measurement accuracy: 80%-99%, range ±2%, ≤70%, accuracy undefined  Blood oxygen saturation resolution: blood oxygen saturation ± 1%Pulse rate measurement range: 30-240BPM  Related Products  Recommended Products: GD32E230 Series
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Release time:2023-04-07 11:13 reading:1931 Continue reading>>
<span style='color:red'>AMEYA360</span>:SPICE Simulators and SPICE Models
  Points of this article  Free SPICE simulator versions are provided by simulator vendors, and can be downloaded and used.  In order to simulate circuits using ICs or other components, SPICE models for the components, which provide parameter information for the devices, are necessary.  Many SPICE models are provided by different manufacturers for downloading from websites.  This article introduces sources for downloading SPICE-based simulators and SPICE models. It is after all best to actually run a simulator in order to come to understand it. The simulators run on general-use PCs and OSes; please give one a try.  SPICE Models  In order to execute a simulation, the simulator software, and SPICE models (macro models) that provide parameters for the devices and elements, are necessary. SPICE models of general-use transistors, resistors, capacitors and other basic components may be included with the simulator. SPICE models of specific transistors, ICs and so on are provided on the websites of the manufacturers.  Moreover, SPICE models of different manufacturers can be downloaded from the PSpice Community managed by Cadence. Also, circuit examples in which external components required by specific ICs and devices are positioned and optimized are provided by manufacturers, in the guise of evaluation circuits and demo circuits; these can be used to greatly speed up design. Nearly all evaluation circuits and demo circuits are for use with specific simulators, and so it is important to check the simulator for which the circuit is intended.  Below, details for downloading SPICE models and evaluation circuits from the ROHM website and from the PSpice Community are provided.
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Release time:2023-04-06 14:18 reading:2378 Continue reading>>
<span style='color:red'>AMEYA360</span>丨Panasonic Connect Adds KAIROS Touch Control Panel Software Feature
<span style='color:red'>AMEYA360</span>:Panasonic Connect to Showcase New KAIROS Products
  Panasonic Connect Co., Ltd. today announced that it will exhibit its latest video technologies and solutions at the National Association of Broadcasters’ show, “2023 NAB Show”, the world’s largest international exhibition of broadcast equipment, which will be held in Las Vegas, US from April 16–19, 2023 (GMT).  The booth will showcase innovative live-video production platform “KAIROS”, industry-leading PTZ camera systems and IP video production workflows integrated with robotics, as well as solutions for enhanced efficiency and creativity.  Panasonic Connect’s booth in the Central Hall of the Las Vegas Convention Center (booth C3308) will exhibit as well as demonstrate lineup of advanced technologies and solutions with new products in four zones.  PTZ camera 15th anniversary logo  ST 2110 Production Ecosystem  See how operational efficiency and creativity can be elevated with an IP video-production system connecting PTZ and studio cameras with the IT/IP platform KAIROS using ST 2110.  In the demonstration, each camera will be linked to a robotics system for shooting with dynamic camera work in an efficient way.  KAIROS Deep Dive  Don’t miss this hands-on demonstration of the new KAIROS Touch Control Panel Software option AT-SFTC10 (software key).  In addition to operator demonstrations, visitors will be invited to experience flexible KAIROS features such as unrestricted layers and scene creation, Canvas functionality for the video productions in special formats.  Also, there will be reference exhibit of a cloud-based remote production system for US.  PTZ Camera Systems Lineup  Panasonic’s PTZ camera system lineup, now celebrating its 15th anniversary, is designed to meet diverse budgets and application needs.  Along with the just-launched new flagship model (AW-UE160W/K), exhibits also will include the new 4K60p outdoor PTZ camera (AW-UR100) and new IP-enabled compact live switcher (AV-HSW10).  Connected Classroom  There will be a mock classroom to show our solution for video production and streaming.  Advanced features will include an in-camera auto-tracking feature* for existing PTZ cameras, and microphone-linked audio based preset controls for automated video production that simplify operation and reduce operators’ burden.  The PC-based auto-tracking software uses deep learning for accurate recognition even when multiple subjects are present, and the auto tracing feature built in PTZ cameras offers easy integration and simple system configuration.  *Available in selected PTZ cameras with free firmware update: AW-UE40W/K & AW-UE50W/K in the third quarter of calendar year2023 and AW-UE80W/K in the fourth quarter of calendar year 2023.  In sum, Panasonic will showcase how its solutions meet increasing needs for high quality 4K video, complex/advanced video expression, and streamlined production and distribution operations with IP-based remote operation, robotics-based automation and more.
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Release time:2023-04-06 13:44 reading:2746 Continue reading>>

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