SPICE MODEL of LQH2MCN470K02 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
This document summarizes the DC model of an inductor with part number LQH3NPN6R8NJ0 from manufacturer Murata Manufacturing Co. It includes a circuit simulation showing the inductor's inductance-current characteristics. Measurement data is also provided in a comparison table showing the inductance values match the simulation results with less than 1% error across a range of currents from 10mA to 1500mA.
SPICE MODEL of LQM21PNR47MC0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH3NPN1R0MM0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
This document summarizes the device modeling report for an inductance component. It includes the part number, manufacturer, and simulation results showing the inductance-current characteristics match measured values with less than 2% error for currents up to 1000mA. The report compares the simulated and measured inductance values over a range of currents.
SPICE MODEL of LQH32PN2R2NN0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH32PN220MN0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH6PPN680M43 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH32PN1R0NN0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
This document summarizes the DC model of an inductor with part number LQH3NPN6R8NJ0 from manufacturer Murata Manufacturing Co. It includes a circuit simulation showing the inductor's inductance-current characteristics. Measurement data is also provided in a comparison table showing the inductance values match the simulation results with less than 1% error across a range of currents from 10mA to 1500mA.
SPICE MODEL of LQM21PNR47MC0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH3NPN1R0MM0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
This document summarizes the device modeling report for an inductance component. It includes the part number, manufacturer, and simulation results showing the inductance-current characteristics match measured values with less than 2% error for currents up to 1000mA. The report compares the simulated and measured inductance values over a range of currents.
SPICE MODEL of LQH32PN2R2NN0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH32PN220MN0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH6PPN680M43 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH32PN1R0NN0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH55PN220MR0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQM2HPN1R5MG0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
This document summarizes the DC model of an inductor with part number LQH3NPN470MJ0 from manufacturer Muarata Manufacturing Co. It includes the inductor's inductance-current characteristics as measured from a circuit simulation using test conditions of a 560mA current over frequencies from 10mA to 10A. A comparison table shows the measured and simulated inductance values over currents from 10mA to 560mA, with percentage errors generally below 3%.
SPICE MODEL of HL6714G (Standard Model) in SPICE PARKTsuyoshi Horigome
This document summarizes the PSpice model and simulation results for a Hitachi HL6714G GaAIAs laser diode. It includes the component parameters, optical output power characteristics with variations in forward current, an evaluation circuit diagram, and comparison graphs showing good agreement between measured and simulated results for output power at different forward currents and monitor currents.
SPICE MODEL of HL7859MG (Standard Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of HL7859MG (Standard Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SLD322V (Standard Model) in SPICE PARKTsuyoshi Horigome
This document reports on the modeling of a laser diode component. It includes the manufacturer, part number, and PSpice model parameters for the component. It then shows the results of circuit simulations measuring the optical output power and monitor current characteristics against the forward current and compares the simulation results to measurements, finding small errors.
SPICE MODEL of HL6738MG (Standard Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of HL6738MG (Standard Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SLD304XT (Standard Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SLD304XT (Standard Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH3NPN470NJ0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SLD322XT (Standard Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SLD322XT (Standard Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of PAT160-50T in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of PAT20-200T in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of PAT20-400T in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of PAT40-100T in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH3NPN2R2NJ0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
This document summarizes the modeling of a DC power supply component. It details the manufacturer, part number, specifications including power output, voltage and current limits. Circuit simulations show the operation area and output voltage characteristics over time. The power supply can provide 40V at 200A within 0.26% accuracy according to simulations matching measurements.
This document summarizes the PSpice model for the SFL95-RT-C solar cell manufactured by Solar Frontier. It includes output characteristics from simulation showing current and power at varying voltages. An evaluation circuit schematic shows how the cell was modeled. A comparison table shows measured versus simulated maximum power, voltage at maximum power, current at maximum power, short circuit current, and open circuit voltage, with percent errors generally under 1%.
This document summarizes a device modeling report for a solar cell with part number SFL95-C manufactured by Solar Frontier. It includes graphs of the cell's output characteristics from simulation showing current and power at varying voltages. It also shows the evaluation circuit used in simulation and provides a comparison table of maximum power, voltage and current measurements from simulation and measurement with less than 2% error.
SPICE MODEL of LQH44PN220MP0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH88PN220M38 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH55PN220MR0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQM2HPN1R5MG0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
This document summarizes the DC model of an inductor with part number LQH3NPN470MJ0 from manufacturer Muarata Manufacturing Co. It includes the inductor's inductance-current characteristics as measured from a circuit simulation using test conditions of a 560mA current over frequencies from 10mA to 10A. A comparison table shows the measured and simulated inductance values over currents from 10mA to 560mA, with percentage errors generally below 3%.
SPICE MODEL of HL6714G (Standard Model) in SPICE PARKTsuyoshi Horigome
This document summarizes the PSpice model and simulation results for a Hitachi HL6714G GaAIAs laser diode. It includes the component parameters, optical output power characteristics with variations in forward current, an evaluation circuit diagram, and comparison graphs showing good agreement between measured and simulated results for output power at different forward currents and monitor currents.
SPICE MODEL of HL7859MG (Standard Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of HL7859MG (Standard Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SLD322V (Standard Model) in SPICE PARKTsuyoshi Horigome
This document reports on the modeling of a laser diode component. It includes the manufacturer, part number, and PSpice model parameters for the component. It then shows the results of circuit simulations measuring the optical output power and monitor current characteristics against the forward current and compares the simulation results to measurements, finding small errors.
SPICE MODEL of HL6738MG (Standard Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of HL6738MG (Standard Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SLD304XT (Standard Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SLD304XT (Standard Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH3NPN470NJ0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SLD322XT (Standard Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SLD322XT (Standard Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of PAT160-50T in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of PAT20-200T in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of PAT20-400T in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of PAT40-100T in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH3NPN2R2NJ0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
This document summarizes the modeling of a DC power supply component. It details the manufacturer, part number, specifications including power output, voltage and current limits. Circuit simulations show the operation area and output voltage characteristics over time. The power supply can provide 40V at 200A within 0.26% accuracy according to simulations matching measurements.
This document summarizes the PSpice model for the SFL95-RT-C solar cell manufactured by Solar Frontier. It includes output characteristics from simulation showing current and power at varying voltages. An evaluation circuit schematic shows how the cell was modeled. A comparison table shows measured versus simulated maximum power, voltage at maximum power, current at maximum power, short circuit current, and open circuit voltage, with percent errors generally under 1%.
This document summarizes a device modeling report for a solar cell with part number SFL95-C manufactured by Solar Frontier. It includes graphs of the cell's output characteristics from simulation showing current and power at varying voltages. It also shows the evaluation circuit used in simulation and provides a comparison table of maximum power, voltage and current measurements from simulation and measurement with less than 2% error.
SPICE MODEL of LQH44PN220MP0 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of LQH88PN220M38 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of CUS08F30 (Professional Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of CUS08F30 (Professional Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SG30JC6M (Professional Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SG30JC6M (Professional Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SG30JC6M (Professional Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SG30JC6M (Professional Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of XBS203V17R (Professional Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of XBS203V17R (Professional Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of CUS10F30 (Professional Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of CUS10F30 (Professional Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SG30JC6M (Standard Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SG30JC6M (Standard Model) in SPICE PARK. English Version is http://www.spicepark.net.Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SG30JC6M (Standard Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SG30JC6M (Standard Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SG30SC6M (Professional Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SG30SC6M (Professional Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SG30SC6M (Professional Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SG30SC6M (Professional Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of XBS204S17R (Professional Model) in SPICE PARKTsuyoshi Horigome
This document provides a device modeling report for a Schottky rectifier diode with part number XBS204S17R. It includes:
1) Details of the diode components and manufacturer.
2) Descriptions of the PSpice model parameters used to simulate the diode.
3) Simulation results and comparisons with measurement data for the diode's forward and reverse characteristics, capacitance over voltage, and reverse recovery time.
4) Circuit diagrams used to simulate the diode's electrical behavior.
SPICE MODEL of TLWH1100 , White ,TA=-20degree (Professional Model) in SPICE PARKTsuyoshi Horigome
The document provides a device modeling report for an LED lamp component. It includes specifications such as manufacturer, part number, and operating temperature range. It also contains simulation results that model the forward current, luminous intensity, reverse current, and reverse recovery characteristics of the component and compare the simulation data to measurement data.
SPICE MODEL of TLWH1100 , White ,TA=60degree (Professional Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of TLWH1100 , White ,TA=60degree (Professional Model) in SPICE PARK. English Version is http://www.spicepark.net.Japanese
Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SG10SC4M (Standard Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SG10SC4M (Standard Model) in SPICE PARK. English Version is http://www.spicepark.net.Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of XBS104S13R-G (Professional Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of XBS104S13R-G (Professional Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of IDH10S60C (Professional Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of IDH10S60C (Professional Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of SG10SC4M (Professional Model) in SPICE PARKTsuyoshi Horigome
This document summarizes the specifications and simulation results of a Schottky rectifier diode with part number SG10SC4M. It includes:
1) Details of the diode components and manufacturer.
2) SPICE model parameters used to simulate the diode.
3) Simulation results comparing the forward current, capacitance, and reverse characteristics to measurements.
4) Graphs showing good agreement between simulation and measurement data.
SPICE MODEL of SG10SC4M (Professional Model) in SPICE PARKTsuyoshi Horigome
SPICE MODEL of SG10SC4M (Professional Model) in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of XBS203V17R (Standard Model) in SPICE PARKTsuyoshi Horigome
This document summarizes the component specifications and simulation results for a Schottky rectifier diode with part number XBS203V17R. It includes:
1) Details on the diode parameters used in the PSpice model such as saturation current, emission coefficient, series resistance, and breakdown voltage.
2) Simulation results showing the forward current, capacitance, and reverse recovery characteristics match closely with measurements, with less than 2% error.
3) An evaluation of the reverse recovery time showing the simulated value is within 1.32% of the measured value.
Similar to SPICE MODEL of LQH2MCN470K02 in SPICE PARK (20)
Update 22 models(Schottky Rectifier ) in SPICE PARK(APR2024)Tsuyoshi Horigome
This document provides an inventory update of 6,747 parts at Spice Park as of April 2024. It lists the part numbers, manufacturers, and quantities of various semiconductor components, including 1,697 Schottky rectifier diodes from 29 different manufacturers. It also includes details on passive components, batteries, mechanical parts, motors, and lamps in the inventory.
The document provides an inventory update from April 2024 of the Spice Park collection which contains 6,747 electronic components. It includes tables listing the types of semiconductor components, passive parts, batteries, mechanical parts, motors, and lamps in the collection along with their manufacturer and quantities. One of the semiconductor components, the general purpose rectifier diode, is broken down into a more detailed table with 116 entries providing part numbers, manufacturers, thermal ratings, and remarks.
Update 31 models(Diode/General ) in SPICE PARK(MAR2024)Tsuyoshi Horigome
The document provides an inventory update from March 2024 of parts in the Spice Park warehouse. It lists 6,725 total parts across various categories including semiconductors, passive parts, batteries, mechanical parts, motors, and lamps. The semiconductor section lists 652 general purpose rectifier diodes from 18 different manufacturers with quantities ranging from 2 to 145 pieces.
This document provides an inventory list of parts at Spice Park as of March 2024. It contains 3 sections - Semiconductor parts (diodes, transistors, ICs etc.), Passive parts (capacitors, resistors etc.), and Battery parts. For Semiconductor parts, it lists 36 different part types and provides the quantity of each part. It then provides further details of Diode/General Purpose Rectifiers, listing the manufacturer and quantity of 652 individual part numbers.
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The document provides an inventory update from February 2024 of Spice Park, which contains 6,694 total pieces of electronic components and parts. It lists 36 categories of semiconductor devices, 11 categories of passive parts, 10 types of batteries, 5 mechanical parts, DC motors, lamps, and power supplies. It provides the most detailed listing for solar cells, with 1,003 total pieces from 51 manufacturers listed with part numbers.
The document provides an inventory update from February 2024 of Spice Park, which contains 6,694 electronic components. It lists the components by type (e.g. semiconductor), part number, manufacturer, thermal rating, and quantity on hand. For example, it shows that there are 621 general purpose rectifier diodes from manufacturers such as Fairchild, Fuji, Intersil, Rohm, Shindengen, and Toshiba. The detailed four-page section provides further information on the first item, general purpose rectifier diodes, including 152 individual part numbers and specifications.
This document discusses circuit simulations using LTspice. It describes driving a circuit simulation by inserting a 250 ohm resistor between the output terminals. It also describes simulating a 1 channel bridge circuit where the DUT1 and DUT2 resistors are both set to 100 ohms and the input voltage is set to either 1V or 5V.
This document discusses parametric sweeps of external and internal resistance values Rg for circuit simulation in LTspice. It also references outputting a waveform similar to a report on fall time characteristics for a device modeling report with customer Samsung.
Removing Uninteresting Bytes in Software FuzzingAftab Hussain
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UiPath Test Automation using UiPath Test Suite series, part 6DianaGray10
Welcome to UiPath Test Automation using UiPath Test Suite series part 6. In this session, we will cover Test Automation with generative AI and Open AI.
UiPath Test Automation with generative AI and Open AI webinar offers an in-depth exploration of leveraging cutting-edge technologies for test automation within the UiPath platform. Attendees will delve into the integration of generative AI, a test automation solution, with Open AI advanced natural language processing capabilities.
Throughout the session, participants will discover how this synergy empowers testers to automate repetitive tasks, enhance testing accuracy, and expedite the software testing life cycle. Topics covered include the seamless integration process, practical use cases, and the benefits of harnessing AI-driven automation for UiPath testing initiatives. By attending this webinar, testers, and automation professionals can gain valuable insights into harnessing the power of AI to optimize their test automation workflows within the UiPath ecosystem, ultimately driving efficiency and quality in software development processes.
What will you get from this session?
1. Insights into integrating generative AI.
2. Understanding how this integration enhances test automation within the UiPath platform
3. Practical demonstrations
4. Exploration of real-world use cases illustrating the benefits of AI-driven test automation for UiPath
Topics covered:
What is generative AI
Test Automation with generative AI and Open AI.
UiPath integration with generative AI
Speaker:
Deepak Rai, Automation Practice Lead, Boundaryless Group and UiPath MVP
“An Outlook of the Ongoing and Future Relationship between Blockchain Technologies and Process-aware Information Systems.” Invited talk at the joint workshop on Blockchain for Information Systems (BC4IS) and Blockchain for Trusted Data Sharing (B4TDS), co-located with with the 36th International Conference on Advanced Information Systems Engineering (CAiSE), 3 June 2024, Limassol, Cyprus.
Essentials of Automations: The Art of Triggers and Actions in FMESafe Software
In this second installment of our Essentials of Automations webinar series, we’ll explore the landscape of triggers and actions, guiding you through the nuances of authoring and adapting workspaces for seamless automations. Gain an understanding of the full spectrum of triggers and actions available in FME, empowering you to enhance your workspaces for efficient automation.
We’ll kick things off by showcasing the most commonly used event-based triggers, introducing you to various automation workflows like manual triggers, schedules, directory watchers, and more. Plus, see how these elements play out in real scenarios.
Whether you’re tweaking your current setup or building from the ground up, this session will arm you with the tools and insights needed to transform your FME usage into a powerhouse of productivity. Join us to discover effective strategies that simplify complex processes, enhancing your productivity and transforming your data management practices with FME. Let’s turn complexity into clarity and make your workspaces work wonders!
Driving Business Innovation: Latest Generative AI Advancements & Success StorySafe Software
Are you ready to revolutionize how you handle data? Join us for a webinar where we’ll bring you up to speed with the latest advancements in Generative AI technology and discover how leveraging FME with tools from giants like Google Gemini, Amazon, and Microsoft OpenAI can supercharge your workflow efficiency.
During the hour, we’ll take you through:
Guest Speaker Segment with Hannah Barrington: Dive into the world of dynamic real estate marketing with Hannah, the Marketing Manager at Workspace Group. Hear firsthand how their team generates engaging descriptions for thousands of office units by integrating diverse data sources—from PDF floorplans to web pages—using FME transformers, like OpenAIVisionConnector and AnthropicVisionConnector. This use case will show you how GenAI can streamline content creation for marketing across the board.
Ollama Use Case: Learn how Scenario Specialist Dmitri Bagh has utilized Ollama within FME to input data, create custom models, and enhance security protocols. This segment will include demos to illustrate the full capabilities of FME in AI-driven processes.
Custom AI Models: Discover how to leverage FME to build personalized AI models using your data. Whether it’s populating a model with local data for added security or integrating public AI tools, find out how FME facilitates a versatile and secure approach to AI.
We’ll wrap up with a live Q&A session where you can engage with our experts on your specific use cases, and learn more about optimizing your data workflows with AI.
This webinar is ideal for professionals seeking to harness the power of AI within their data management systems while ensuring high levels of customization and security. Whether you're a novice or an expert, gain actionable insights and strategies to elevate your data processes. Join us to see how FME and AI can revolutionize how you work with data!
Building Production Ready Search Pipelines with Spark and MilvusZilliz
Spark is the widely used ETL tool for processing, indexing and ingesting data to serving stack for search. Milvus is the production-ready open-source vector database. In this talk we will show how to use Spark to process unstructured data to extract vector representations, and push the vectors to Milvus vector database for search serving.
For the full video of this presentation, please visit: https://www.edge-ai-vision.com/2024/06/building-and-scaling-ai-applications-with-the-nx-ai-manager-a-presentation-from-network-optix/
Robin van Emden, Senior Director of Data Science at Network Optix, presents the “Building and Scaling AI Applications with the Nx AI Manager,” tutorial at the May 2024 Embedded Vision Summit.
In this presentation, van Emden covers the basics of scaling edge AI solutions using the Nx tool kit. He emphasizes the process of developing AI models and deploying them globally. He also showcases the conversion of AI models and the creation of effective edge AI pipelines, with a focus on pre-processing, model conversion, selecting the appropriate inference engine for the target hardware and post-processing.
van Emden shows how Nx can simplify the developer’s life and facilitate a rapid transition from concept to production-ready applications.He provides valuable insights into developing scalable and efficient edge AI solutions, with a strong focus on practical implementation.
“Building and Scaling AI Applications with the Nx AI Manager,” a Presentation...
SPICE MODEL of LQH2MCN470K02 in SPICE PARK
1. Device Modeling Report
COMPONENTS: Inductor DC Model
PART NUMBER: LQH2MCN470K02
MANUFACTURER: Murata Manufacturing Co, Ltd.
Remark: DC Model
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