SPICE MODEL of NJM2742RB1 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
SPICE MODEL of NJM2742RB1 in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.
Strømselskapet E-co ønsket innspill på hvordan de mer hensiktsmessig kan ta i bruk nye kommunikasjonsverktøy. Under seansen på i oktober 2012 på trivelige Kleivstua vektla vi særlig nytteverdien av å bruke redskapene til å gjøre unge mer nysgjerrige og til rekruttering.
Strømselskapet E-co ønsket innspill på hvordan de mer hensiktsmessig kan ta i bruk nye kommunikasjonsverktøy. Under seansen på i oktober 2012 på trivelige Kleivstua vektla vi særlig nytteverdien av å bruke redskapene til å gjøre unge mer nysgjerrige og til rekruttering.
Untuk download versi penuh slide ini beserta animasinya sila ke laman web berikut:
http://caliphjunior.blogspot.com/p/blog-page_10.html#4
Ketahui tahap perkembangan anak anda yang berumur antara 3-6 bulan melalui senarai semak perkembangan ini. Bayi yang lambat mencapai tahap tersebut perlu diberi perhatian khusus. Manakala bayi yang mencapai kebolehan dengan baik boleh diberi aktiviti pengukuhan untuk menyokong perkembangannya.
DevOps and Testing slides at DASA ConnectKari Kakkonen
My and Rik Marselis slides at 30.5.2024 DASA Connect conference. We discuss about what is testing, then what is agile testing and finally what is Testing in DevOps. Finally we had lovely workshop with the participants trying to find out different ways to think about quality and testing in different parts of the DevOps infinity loop.
Smart TV Buyer Insights Survey 2024 by 91mobiles.pdf91mobiles
91mobiles recently conducted a Smart TV Buyer Insights Survey in which we asked over 3,000 respondents about the TV they own, aspects they look at on a new TV, and their TV buying preferences.
SAP Sapphire 2024 - ASUG301 building better apps with SAP Fiori.pdfPeter Spielvogel
Building better applications for business users with SAP Fiori.
• What is SAP Fiori and why it matters to you
• How a better user experience drives measurable business benefits
• How to get started with SAP Fiori today
• How SAP Fiori elements accelerates application development
• How SAP Build Code includes SAP Fiori tools and other generative artificial intelligence capabilities
• How SAP Fiori paves the way for using AI in SAP apps
Accelerate your Kubernetes clusters with Varnish CachingThijs Feryn
A presentation about the usage and availability of Varnish on Kubernetes. This talk explores the capabilities of Varnish caching and shows how to use the Varnish Helm chart to deploy it to Kubernetes.
This presentation was delivered at K8SUG Singapore. See https://feryn.eu/presentations/accelerate-your-kubernetes-clusters-with-varnish-caching-k8sug-singapore-28-2024 for more details.
Dev Dives: Train smarter, not harder – active learning and UiPath LLMs for do...UiPathCommunity
💥 Speed, accuracy, and scaling – discover the superpowers of GenAI in action with UiPath Document Understanding and Communications Mining™:
See how to accelerate model training and optimize model performance with active learning
Learn about the latest enhancements to out-of-the-box document processing – with little to no training required
Get an exclusive demo of the new family of UiPath LLMs – GenAI models specialized for processing different types of documents and messages
This is a hands-on session specifically designed for automation developers and AI enthusiasts seeking to enhance their knowledge in leveraging the latest intelligent document processing capabilities offered by UiPath.
Speakers:
👨🏫 Andras Palfi, Senior Product Manager, UiPath
👩🏫 Lenka Dulovicova, Product Program Manager, UiPath
Le nuove frontiere dell'AI nell'RPA con UiPath Autopilot™UiPathCommunity
In questo evento online gratuito, organizzato dalla Community Italiana di UiPath, potrai esplorare le nuove funzionalità di Autopilot, il tool che integra l'Intelligenza Artificiale nei processi di sviluppo e utilizzo delle Automazioni.
📕 Vedremo insieme alcuni esempi dell'utilizzo di Autopilot in diversi tool della Suite UiPath:
Autopilot per Studio Web
Autopilot per Studio
Autopilot per Apps
Clipboard AI
GenAI applicata alla Document Understanding
👨🏫👨💻 Speakers:
Stefano Negro, UiPath MVPx3, RPA Tech Lead @ BSP Consultant
Flavio Martinelli, UiPath MVP 2023, Technical Account Manager @UiPath
Andrei Tasca, RPA Solutions Team Lead @NTT Data
GraphRAG is All You need? LLM & Knowledge GraphGuy Korland
Guy Korland, CEO and Co-founder of FalkorDB, will review two articles on the integration of language models with knowledge graphs.
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https://arxiv.org/abs/2306.08302
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https://www.microsoft.com/en-us/research/blog/graphrag-unlocking-llm-discovery-on-narrative-private-data/
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Participants will gain insights into the responsibilities, challenges, and best practices associated with test management in SAP projects. Additionally, the webinar delves into the significance of heatmaps as a visual aid for identifying testing priorities, areas of risk, and resource allocation within SAP landscapes. Through this session, attendees can expect to enhance their understanding of test management principles while learning practical approaches to optimize testing processes in SAP environments using heatmap visualization techniques
What will you get from this session?
1. Insights into SAP testing best practices
2. Heatmap utilization for testing
3. Optimization of testing processes
4. Demo
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Execution from the test manager
Orchestrator execution result
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SAP heatmap example with demo
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Transcript: Selling digital books in 2024: Insights from industry leaders - T...BookNet Canada
The publishing industry has been selling digital audiobooks and ebooks for over a decade and has found its groove. What’s changed? What has stayed the same? Where do we go from here? Join a group of leading sales peers from across the industry for a conversation about the lessons learned since the popularization of digital books, best practices, digital book supply chain management, and more.
Link to video recording: https://bnctechforum.ca/sessions/selling-digital-books-in-2024-insights-from-industry-leaders/
Presented by BookNet Canada on May 28, 2024, with support from the Department of Canadian Heritage.
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https://alandix.com/academic/papers/synergy2024-epistemic/
As machine learning integrates deeper into human-computer interactions, the concept of epistemic interaction emerges, aiming to refine these interactions to enhance system adaptability. This approach encourages minor, intentional adjustments in user behaviour to enrich the data available for system learning. This paper introduces epistemic interaction within the context of human-system communication, illustrating how deliberate interaction design can improve system understanding and adaptation. Through concrete examples, we demonstrate the potential of epistemic interaction to significantly advance human-computer interaction by leveraging intuitive human communication strategies to inform system design and functionality, offering a novel pathway for enriching user-system engagements.
Encryption in Microsoft 365 - ExpertsLive Netherlands 2024Albert Hoitingh
In this session I delve into the encryption technology used in Microsoft 365 and Microsoft Purview. Including the concepts of Customer Key and Double Key Encryption.
1. Device Modeling Report
COMPONENTS: OPERATIONAL AMPLIFIER
PART NUMBER: uPC4064C
MANUFACTURER: NEC ELECTRONICS
REMARK TYPE: (OPAMP)
Bee Technologies Inc.
All Rights Reserved Copyright (c) Bee Technologies Inc. 2004
2. Spice Model
U13
OUT1 OUT4
-IN1 -IN4
+IN1 +IN4
VCC VEE
+IN2 +IN3
-IN2 -IN3
OUT2 OUT3
UPC4064_SUB
All Rights Reserved Copyright (c) Bee Technologies Inc. 2004
3. Output Voltage Swing, +Vout and –Vout
Simulation result
These simulation results are compared with +Vout
Evaluation circuit
Rload
10k Vout U13 Vout4
OUT1 OUT4
-IN1 -IN4
+IN1 +IN4
0
VCC VEE
V1 V+ V2 +IN2 +IN3
0Vdc
0Vdc -IN2 -IN3
15Vdc V3
OUT2 OUT3 0Vdc V- V4
Vout2 Vout3 0Vdc
UPC4064_SUB
-15Vdc
0
Output Voltage Swing Data sheet Simulation %Error
+Vout(V) +14 +13.96 0.285
-Vout(V) -13.6 -13.56 0.294
All Rights Reserved Copyright (c) Bee Technologies Inc. 2004
4. Input Offset Voltage
Simulation result
Evaluation circuit
Rload
2k Vout U13 Vout4
OUT1 OUT4
-IN1 -IN4
+IN1 +IN4
0 Vin4
VCC VEE VOFF = 0
Vin
VOFF = 0 VAMPL = 0
VAMPL = 0 V+ +IN2 +IN3 FREQ = 0
FREQ = 0 Vi3 AC = 0
AC = 0 -IN2 -IN3 VOFF = 0 -15Vdc DC = 0
Vin2
DC = 0 15Vdc VOFF = 0 VAMPL = 0 V-
VAMPL = 0 OUT2 OUT3 FREQ = 0
Vi Vi4
VOFF = 0 FREQ = 0 Vout2 Vout3 AC = 0 VOFF = 0
UPC4064_SUB
VAMPL = 0 AC = 0 DC = 0 VAMPL = 0
FREQ = 0 DC = 0 Vin3 FREQ = 0
AC = 0 Vi2 VOFF = 0 AC = 0
DC = 0 VOFF = 0 VAMPL = 0 DC = 0
VAMPL = 0 FREQ = 0
FREQ = 0 AC = 0
AC = 0 DC = 0
DC = 0
0
Measurement Simulation Error
Vos
10 mV 9.985 mV 0.15 %
All Rights Reserved Copyright (c) Bee Technologies Inc. 2004
5. Slew Rate, +SR, -SR
Simulation result
Evaluation circuit
Rload
2k Vout U13 Vout4
OUT1 OUT4
-IN1 -IN4
+IN1 +IN4
0 Vin4
VCC VEE
V1 = 0 Vin Vi4
V2 = 13 VOFF = 0
TD = 0 V+ +IN2 +IN3 VAMPL = 0
TR = 10n Vi3 FREQ = 0 V1 = 0
TF = 10n -IN2 -IN3 VOFF = 0 AC = 0 V2 = 13
V1 = 0 Vin2
PW = 5u 15Vdc V2 = 13 VAMPL = 0 DC = 0 TD = 0 Vof f 4
PER = 500u Vof f TD = 0 OUT2 OUT3 FREQ = 0 V- TR = 10n
Vi
-9.985m VOFF = 0 TR = 10n Vout2 Vout3 AC = 0 TF = 10n -9.985m
UPC4064_SUB
VAMPL = 0 TF = 10n V1 = 0 Vin3 DC = 0 PW = 5u
FREQ = 0 PW = 5u V2 = 13 -15Vdc PER = 500u
AC = 0 Vi2 PER = 500u Vof f 2 TD = 0 Vof f 3
DC = 0 VOFF = 0 -9.985m TR = 10n
VAMPL = 0 TF = 10n -9.985m
FREQ = 0 PW = 5u
AC = 0 PER = 500u
DC = 0
0
Data sheet Simulation %Error
Slew Rate(v/us)
3V/us 2.936V/us 2.13
All Rights Reserved Copyright (c) Bee Technologies Inc. 2004
6. Input current Ib, Ibos
Simulation result
Evaluation circuit
Rload
2k Vout U13 Vout4
OUT1 OUT4
-IN1 -IN4
+IN1 +IN4
0 Vin4
VCC VEE VOFF = -9.985m
Vin
VOFF = -9.985m VAMPL = 0
VAMPL = 0 V+ +IN2 +IN3 FREQ = 0
FREQ = 0 Vi3 AC = 0
AC = 0 -IN2 -IN3 VOFF = 0 V- DC = 0
Vin2
DC = 0 15VdcVOFF = -9.985m VAMPL = 0
VAMPL = 0 OUT2 OUT3 FREQ = 0
Vi Vi4
VOFF = 0 FREQ = 0 Vout2 Vout3 AC = 0 -15Vdc VOFF = 0
UPC4064_SUB
VAMPL = 0 AC = 0 DC = 0 VAMPL = 0
FREQ = 0 DC = 0 Vin3 FREQ = 0
AC = 0 Vi2 VOFF = -9.985m AC = 0
DC = 0 VOFF = 0 VAMPL = 0 DC = 0
VAMPL = 0 FREQ = 0
FREQ = 0 AC = 0
AC = 0 DC = 0
DC = 0
0
Data sheet Simulation %Error
Ib(pA) 100(Max) 25.35 -
Ibos(pA) 5 5.04 0.8
All Rights Reserved Copyright (c) Bee Technologies Inc. 2004
7. Open Loop Voltage Gain vs. Frequency , Av-dc, f-0dB
Simulation result
Evaluation circuit
R1 Vout U13 Vout4
OUT1 OUT4
2k
-IN1 -IN4
+IN1 +IN4
Vin4
VCC VEE VOFF = 0
Vin
VOFF = 0 VAMPL = 0
VAMPL = 0 V+ +IN2 +IN3 FREQ = 0
FREQ = 0 Vi3 AC = 1m
AC = 1m -IN2 -IN3 VOFF = 0 DC = -9.985m
Vin2
DC = -9.985m 15Vdc VOFF = 0 VAMPL = 0 V-
VAMPL = 0 OUT2 OUT3 FREQ = 0
Vi Vi4
VOFF = 0 FREQ = 0 Vout2 Vout3 AC = 0 VOFF = 0
UPC4064_SUB
VAMPL = 0 AC = 1m DC = 0 -15Vdc VAMPL = 0
FREQ = 0 DC = -9.985m Vin3 FREQ = 0
AC = 0 Vi2 VOFF = 0 AC = 0
DC = 0 VOFF = 0 VAMPL = 0 DC = 0
VAMPL = 0 FREQ = 0
FREQ = 0 AC = 1m
AC = 0 DC = -9.985m
DC = 0
0
0
Data sheet Simulation %Error
f-0dB(MHz) 1 0.981 1.9
Av-dc(dB) 9000 8709 3.23
All Rights Reserved Copyright (c) Bee Technologies Inc. 2004
8. Output Short Circuit Current - Ios
Simulation result
Evaluation circuit
Rload
1 Vout U13 Vout4
V6 OUT1 OUT4
-IN1 -IN4
0
+IN1 +IN4
Vin4
VCC VEE VOFF = -6.9402m
Vin
VOFF = -9.985m VAMPL = 0
VAMPL = 0 V+ +IN2 +IN3 FREQ = 0
FREQ = 0 Vi3 AC = 0
AC = 0 -IN2 -IN3 VOFF = 0 DC = 0
Vin2
DC = 0 15VdcVOFF = -6.9402m VAMPL = 0 V-
VAMPL = 0 OUT2 OUT3 FREQ = 0
Vi Vi4
VOFF = 0 FREQ = 0 Vout2 Vout3 AC = 0 VOFF = 0
UPC4064_SUB
VAMPL = 0 AC = 0 DC = 0 -15Vdc VAMPL = 0
FREQ = 0 DC = 0 Vin3 FREQ = 0
AC = 0 Vi2 VOFF = -6.9402m AC = 0
DC = 0 VOFF = 0 VAMPL = 0 DC = 0
VAMPL = 0 FREQ = 0
FREQ = 0 AC = 0
AC = 0 DC = 0
DC = 0
0 0
Data sheet Simulation %Error
Short Circuit Current
5mA 5.034mA 0.68
All Rights Reserved Copyright (c) Bee Technologies Inc. 2004
9. Common-Mode Rejection Voltage gain
Simulation result
Evaluation circuit
Vout U13 Vout4
OUT1 OUT4
-IN1 -IN4
+IN1 +IN4
Vin4
VCC VEE VOFF = 0
Vin
VOFF = 0 VAMPL = 0
VAMPL = 0 +IN2 +IN3 FREQ = 0
FREQ = 0 Vi3 AC = 0
AC = 0 V+ -IN2 -IN3 VOFF = 0 DC = 0
Vin2
DC = 0 VOFF = 0 VAMPL = 0
VAMPL = 0 OUT2 OUT3 FREQ = 0 V-
Vi Vi4
VOFF = 0 15Vdc FREQ = 0 Vout2 Vout3 AC = 0 VOFF = 0
UPC4064_SUB
VAMPL = 0 AC = 0 DC = 0 VAMPL = 0
FREQ = 0 DC = 0 Vin3 -15Vdc FREQ = 0
AC = 0 Vi2 VOFF = 0 AC = 0
DC = 0 VOFF = 0 VAMPL = 0 DC = 0
VAMPL = 0 FREQ = 0
FREQ = 0 AC = 0
AC = 0 DC = 0
DC = 0
V
VOFF = 0
VAMPL = 0.5
FREQ = 1
AC = 0
DC = -9.985m
0
Common mode gain=1/3.51
Common Mode Reject Ratio=8709/0.284=30665
Data sheet Simulation %Error
CMRR
31622 30665 3.02
All Rights Reserved Copyright (c) Bee Technologies Inc. 2004