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Authoritative application notes, data sheets, reference designs, and test procedures to accelerate design and validation decisions.
Hands‑on bootcamps that teach system design, test methods, and production workflows engineers can apply immediately.
Success Stories
Explore the complete portfolio of Keysight accessories designed to complement and extend your instruments. Use the filters below to quickly find compatible accessories such as modules, cables, adapters, and other system components to configure, expand, and optimize your test system for your specific measurement needs.
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U3814A
U3814A IoT 系統設計課程套件和 IoT 訓練套件,可協助教師快速編訂新的物聯網工程課程並配置實驗室。
是德科技現成可用的進階 IoT 課程套件,可協助教育工作者快速制定新的物聯網工程課程,讓學生能夠充分了解 IoT 系統設計週期從驗證到市場部署的挑戰和要求。 課程內容涵蓋從系統設計基本原理,到無線通訊和功率量測等實用設計和測試技巧,同時還介紹隨著物聯網不斷演進,工程師需留意的重要設計考量,例如網路安全防護、相符性和不間斷運作。
IoT 系統設計和驗證基本原理實驗室配置是現成可用的教學套件,其中深入介紹物聯網和嵌入式系統設計的基本原理。 您可使用此教學套件,向學生介紹物聯網架構、技術、標準、無線協定、應用和生態系統。 課程中還涵蓋物聯網嵌入式系統設計,包括設備網路安全基礎知識。
正在尋找沒有教學簡報檔的課程套件? 請查看 U3813A IoT 系統設計和驗證基本原理教學套件,備有訓練套件和實驗表單。
註:
需要 BeagleBone® Green MCU 來建構完整的 IoT 訓練套件。 是德科技無法出貨給所有國家或地區。 請參考下列國家或地區:
出貨國家或地區:美國、加拿大、歐洲、中國、俄羅斯、日本、韓國、越南、馬來西亞、香港、新加坡、泰國、印度、瑞士、澳洲、紐西蘭、菲律賓、台灣、印尼、巴西、土耳其、哥倫比亞、沙烏地阿拉伯和墨西哥
所有其他國家或地區:必須另外購買 BeagleBone® Green。 https://beagleboard.org/green
U3813A
是德科技立即可用的進階 IoT 課程套件,可協助教師快速編訂新的物聯網工程課程並配置實驗室。
是德科技現成可用的進階 IoT 課程套件,可協助教育工作者快速制定新的物聯網工程課程,讓學生能夠充分了解 IoT 系統設計週期從驗證到市場部署的挑戰和要求。 課程內容涵蓋從系統設計基本原理,到無線通訊和功率量測等實用設計和測試技巧,同時還介紹隨著物聯網不斷演進,工程師需留意的重要設計考量,例如網路安全防護、相符性和不間斷運作。
IoT 系統設計和驗證基本原理實驗室配置是現成可用的教學套件,其中深入介紹物聯網和嵌入式系統設計的基本原理。 您可使用此教學套件,向學生介紹物聯網架構、技術、標準、無線協定、應用和生態系統。 課程中還涵蓋物聯網嵌入式系統設計,包括設備網路安全基礎知識。
正在尋找包含教學簡報的課程套件? 請查看 U3814A IoT 系統設計與驗證基本原理教學套件,備有訓練套件、教學簡報檔和實驗表單。
註:
需要 BeagleBone® Green MCU 來建構完整的 IoT 訓練套件。是德科技無法出貨給所有國家或地區。 請參考下列國家或地區:
出貨國家或地區:美國、加拿大、歐洲、中國、俄羅斯、日本、韓國、越南、馬來西亞、香港、新加坡、泰國、印度、瑞士、澳洲、紐西蘭、菲律賓、台灣、印尼、巴西、土耳其、哥倫比亞、沙烏地阿拉伯和墨西哥
所有其他國家或地區:必須另外購買 BeagleBone® Green。 https://beagleboard.org/green
U3851A
U3851A 射頻微波電路設計課程套件,讓學生能夠學習從模擬到原型建構和驗證的完整流程,以便進行端對端射頻產品設計。
U3851A 射頻微波電路設計、模擬和量測課程,為是德科技射頻微波教學解決方案的核心元件。此課程套件包含一套模組化原型工具組,而其中包括了 1.8 GHz 接收器模組、可編輯實驗記錄本,以及涵蓋了 50 小時實驗內容的問題導向作業。U3851A 課程套件讓學生能夠更輕易地學習設計射頻產品的完整流程,包括制定規格、進行模擬,一直建立和驗證原型。學生可學習使用符合產業標準的測試與量測儀器(例如示波器、網路分析儀、信號產生器和頻譜分析儀),藉以培養職場必備的技能。此外,他們還將學習如何使用是德科技領先業界的電子設計與自動化(EDA)軟體,包括 PathWave 先進設計系統(ADS)和 PathWave 系統設計(SystemVue),來設計射頻接收器。
是德科技射頻微波教學解決方案,可讓學生獲得堅實的射頻微波基礎知識,使其日後能夠專精於先進的 5G 或物聯網無線應用。透過此課程套件,學生能夠掌握實用的技能和現實生活的應用知識,為將來從事的工作做好準備,以便在職場脫穎而出。
此訓練套件包括模組化原型套件、控制器套件、射頻轉接器和分離器、電纜(射頻、電源、LAN、BNC)、電源轉接器和攜帶包。
U3816A
Keysight’s ready-to-teach Advanced IoT courseware is designed to assist educators in quickly setting up new engineering courses and lab on the Internet of Things.
Keysight’s ready-to-teach Advanced IoT courseware is designed to assist educators in quickly setting up new engineering courses on the Internet of Things, with the intention of producing students who will fully understand the challenges and requirements of the IoT system design cycle, from design and validation to deployment in the market. In addition to teaching practical design and test techniques from the fundamentals of system design to wireless communication and power measurement, this courseware will also cover critical design considerations that have emerged with the evolution of the Internet of Things, such as cybersecurity, compliance and continuity.
The Wireless Connectivity and Network Security is a ready-to-teach package starting from portion of IoT System Design and Validation Fundamentals. The courseware than moves into how to develop typical IoT applications with various types of wireless connectivity and compliance study. It also covers IoT device and network security learning.
Looking for the courseware without teaching slides? Check out the U3815A IoT Wireless Communication and Compliance, with Training Kit and Lab Sheet.
Note:
BeagleBone® Green MCU is required to form a complete IoT training kit. Keysight is not able to ship to all countries. Please refer to the country list below:
Countries: USA, Canada, Europe, China, Russia, Japan, Korea, Vietnam, Malaysia, Hong Kong, Singapore, Thailand, India, Switzerland, Australia, New Zealand, Philippines, Taiwan, Indonesia, Brazil, Turkey, Colombia, Saudi Arabia and Mexico
All Others: BeagleBone® Green must be purchased separately. https://beagleboard.org/green
U3815A
Keysight’s ready-to-teach Advanced IoT courseware is designed to assist educators in quickly setting up new engineering courses and lab on the Internet of Things.
Keysight’s ready-to-teach Advanced IoT courseware is designed to assist educators in quickly setting up new engineering courses on the Internet of Things, with the intention of producing students who will fully understand the challenges and requirements of the IoT system design cycle, from design and validation to deployment in the market. In addition to teaching practical design and test techniques from the fundamentals of system design to wireless communication and power measurement, this courseware will also cover critical design considerations that have emerged with the evolution of the Internet of Things, such as cybersecurity, compliance and continuity.
The Wireless Connectivity and Network Security is a ready-to-teach package starting from portion of IoT System Design and Validation Fundamentals. The courseware then moves into how to develop typical IoT applications with various types of wireless connectivity and compliance study. It also covers IoT device and network security learning.
Looking for the courseware offers teaching slides? Check out the U3816A IoT Wireless Communication and Compliance, with Training Kit, Teaching Slide and Lab Sheet.
Note:
BeagleBone® Green MCU is required to form a complete IoT training kit. Keysight is not able to ship to all countries. Please refer to the country list below:
Countries: USA, Canada, Europe, China, Russia, Japan, Korea, Vietnam, Malaysia, Hong Kong, Singapore, Thailand, India, Switzerland, Australia, New Zealand, Philippines, Taiwan, Indonesia, Brazil, Turkey, Colombia, Saudi Arabia and Mexico
All Others: BeagleBone® Green must be purchased separately. https://beagleboard.org/green
U3818A
Keysight’s ready-to-teach Advanced IoT courseware is designed to assist educators in quickly setting up new engineering courses and lab on the Internet of Things.
Keysight’s ready-to-teach Advanced IoT courseware is designed to assist educators in quickly setting up new engineering courses on the Internet of Things, with the intention of producing students who will fully understand the challenges and requirements of the IoT system design cycle, from design and validation to deployment in the market. In addition to teaching practical design and test techniques from the fundamentals of system design to wireless communication and power measurement, this courseware will also cover critical design considerations that have emerged with the evolution of the Internet of Things, such as cybersecurity, compliance and continuity.
The Precision Power Measurement and MEMS sensors lab setup is a ready-to-teach package starting from portion of IoT System Design and Validation Fundamentals. The courseware then moves into topics of how to characterize the power consumption of IoT devices onboard controllers, sensors and wireless modules, to eventually covering sophisticated battery optimization learning involving RF event detector and analysis software.
Looking for the courseware without teaching slides? Check out the U3817A IoT Precision Power Measurement and MEMS Sensors with Training Kit and Lab Sheet.
Note:
BeagleBone® Green MCU is required to form a complete IoT training kit. Keysight is not able to ship to all countries. Please refer to the country list below:
Countries: USA, Canada, Europe, China, Russia, Japan, Korea, Vietnam, Malaysia, Hong Kong, Singapore, Thailand, India, Switzerland, Australia, New Zealand, Philippines, Taiwan, Indonesia, Brazil, Turkey, Colombia, Saudi Arabia and Mexico
All Others: BeagleBone® Green must be purchased separately. https://beagleboard.org/green
U3817A
Keysight’s ready-to-teach Advanced IoT courseware is designed to assist educators in quickly setting up new engineering courses and lab on the Internet of Things.
Keysight’s ready-to-teach Advanced IoT courseware is designed to assist educators in quickly setting up new engineering courses on the Internet of Things, with the intention of producing students who will fully understand the challenges and requirements of the IoT system design cycle, from design and validation to deployment in the market. In addition to teaching practical design and test techniques from the fundamentals of system design to wireless communication and power measurement, this courseware will also cover critical design considerations that have emerged with the evolution of the Internet of Things, such as cybersecurity, compliance and continuity.
The Precision Power Measurement and MEMS sensors lab setup is a ready-to-teach package started from portion of IoT System Design and Validation Fundamentals. Then move into topic of how to characterize the power consumption of IoT devices onboard controllers, sensors and wireless modules, eventually covers sophisticated battery optimization learning involve RF event detector and analysis software.
Looking for the courseware offers teaching slides? Check out the U3818A IoT Precision Power Measurement and MEMS Sensors with Training Kit, Teaching Slide and Lab Sheets.
Note:
BeagleBone® Green MCU is required to form a complete IoT training kit. Keysight is not able to ship to all countries. Please refer to the country list below:
Countries: USA, Canada, Europe, China, Russia, Japan, Korea, Vietnam, Malaysia, Hong Kong, Singapore, Thailand, India, Switzerland, Australia, New Zealand, Philippines, Taiwan, Indonesia, Brazil, Turkey, Colombia, Saudi Arabia and Mexico
All Others: BeagleBone® Green must be purchased separately. https://beagleboard.org/green
Y1801A
Access more than 400 editable Microsoft PowerPoint slides, covering 45 hours of teaching for one full semester
More than 400 editable Microsoft PowerPoint teaching slides, covering 45 hours of teaching for one full semester are provided. The slides cover the following topics:
DSOXBODE
The DSOXBODE Bode plot training kit helps train engineering students and others on the basics of frequency response analysis measurements (gain & phase Bode plots).
Note: All specifications stated as typical.
The DSOXBODE Bode plot training kit consists of a series R-L-C circuit board with a BNC input that attaches directly to the output of the oscilloscope’s WaveGen function generator. There are clearly labeled test points for probing VIN and BPFOUT (bandpass filter output) or LPFOUT (low-pass filter output). Also included with this training kit is a comprehensive tutorial and lab guide that engineering students and professors can download.
For limited time, get a free DSOXBODE Bode plot training kit with the purchase of each InfiniiVision 1000 X-Series oscilloscope with the built-in waveform generator (EDUX1052G, DSOX1202G, and DSOX1204G models only)
Click on the Document Library tab to download the DSOXBODE Tutorial & Lab Guide document.
UU101LAB
The Semiconductor Teaching Lab is a hands-on platform bridging theory and practice in semiconductor engineering, offering both foundational and advanced knowledge.
Prebuilt DLS test plans and lab sheets for SMU-based device characterization, plus ADS projects for mixer and FET amplifier design—mirroring common industry workflows.
Access an industry tool such as the B2902C precision SMU with Digital Learning Suite software and ADS software.
Supports university semiconductor training and Keysight credential initiatives so graduates can demonstrate job-ready skills.
Keysight’s Semiconductor Teaching Lab helps educators accelerate course development or refresh existing programs. Students begin with device-level measurements using a precision SMU and Digital Learning Suite automation. They then progress to RF block-level design in ADS, where they build practical habits of setting objectives, running simulations, validating results, and refining designs—skills valued in today’s engineering teams.
The Module emphasizes fundamentals with professional-grade tools. Students measure LEDs, BJTs, and MOSFETs using the B2902C and DLS. They then design a low-power active mixer and a small-signal FET amplifier in ADS, applying bias network design, Smith chart matching, noise and stability analysis, parametric sweeps, and optimization. These activities mirror the methods used in modern IC and RF design environments.
UU102LAB
The UU102LAB Semiconductor Teaching Solution(Parametric Test and On-Wafer Measurement) delivers a ready-to-teach, industry-grade platform for semiconductor education. It offers hands on training in device characterization, low-current measurement, C–V analysis, and on-wafer probing using Keysight’s B1500A Parameter Analyzer, DUT, probe station, and structured lab exercises.
Keysight UU102LAB is a semiconductor teaching lab solution focused on parametric testing and on-wafer measurement. It provides universities with a complete, industry aligned learning environment that exposes students to real world semiconductor measurement practices.
The solution includes a probe station, Keysight B1500A Parameter Analyzer, three DUT units, and 13 hours of structured, hands-on laboratory exercises delivered across seven guided labs.
UU103LAB
Keysight’s UU103LAB solution enables students to gain hands-on experience in photonic device testing and optical coupling. By combining industry-standard instrumentation with structured lab exercises, it bridges theoretical learning with real-world semiconductor measurement practices.
Keysight UU103LAB is a semiconductor teaching lab solution designed to provide students with the foundational expertise required for advanced photonic device testing and optical coupling optimization.
It provides universities with a complete, industry aligned learning environment that exposes students to real world semiconductor measurement practices.
The solution includes a probe station, Keysight N7778C Tunable Laser Source, N7788C Component Analyzer, B2901CL Source Measure Unit, N7786C Polarization Synthesizer, N7742C Optical Power Meter, three Photonic IC DUT units, Lambdascan Measurement Software and 18 hours of structured, hands-on laboratory exercises delivered across six guided labs.