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In this video, I have discussed the fields after ADC degree, importance of ADC, career opportunities for ADC students. Watch the full video and subscribe the channel. Thanks How to make CV video 01: 🤍 How to Make CV video 02: 🤍 CA / ACCA Advice: 🤍 (PLAYLISTS ) Watch Accounting Lectures (Complete Playlist): 🤍 Watch Complete Guess Papers Videos (Playlist): 🤍 Watch Business Communication Lectures (Playlist): 🤍 Watch other Knowledge Series Videos ( Complete Playlist): 🤍 Watch My Vlogs (Playlist): 🤍 Online & Home Tuitions are also available for ADC, BCom, ICom, BBA, MBA. (WhatsApp# 0344-27324441) You may follow us on: Facebook Page: 🤍 Gmail: aamirpk1992🤍gmail.com Instagram: 🤍instagram.com/aamirnazir28 WhatsApp: 0344-2732441 #ADC #CareerOpporunitiesforADC #KarachiUniversity #AamirNazir
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How to make better oscilloscope measurements Click to subscribe! ► 🤍 ◄ Enter to win 🤍 Make Great Oscilloscope Measurements: 🤍 Today's scope tip looks at how to make good vertically-dependent measurements. Watch the webcast for more tips! Scope Month FAQs: 🤍 (select your language first) Test to Impress Contest, Find Daniel, more: 🤍 🤍 See all the winners: 🤍 Twitter: 🤍DanielBogdanoff 🤍 Learn more about using oscilloscopes: 🤍 Check out the EEs Talk Tech podcast: 🤍 The 2-Minute Guru Season 2 playlist: 🤍 The 2-Minute Guru Season 1 playlist: 🤍 More about Keysight oscilloscopes: 🤍 Check out our blog: 🤍 Like our Facebook page: 🤍 The Keysight InfiniiVision 1000 X-Series Oscilloscope: 🤍 The Keysight InfiniiVision 4000 X-Series Oscilloscope: 🤍 For beginners, I recommend the InfiniiVision 1000 X-Series or 2000 X-Series oscilloscopes. #1000X #ScopeMonth #ScopeMonth2017 #Oscilloscope #HowTo #Engineering #ElectricalEngineering #Waveform #DigitalStorageOscilloscope
Higher sample rate is better – until it isn't... Free whitepaper download: 🤍 Click to subscribe! ► 🤍 ◄ Helpful Links: Keysight Bench Facebook page: 🤍 Keysight RF Facebook page: 🤍 EEs Talk Tech Electrical Engineering podcast: 🤍 🤍 Check out our blog: 🤍 The simple lesson with sample rate is that more is better. But did you know that the method of achieving that high sample rate can actually distort your signal and throw off your measurements? We all know sample rate as one of the banner specifications of an oscilloscope. We’ve been taught that the higher the sample rate, the better the measurement will be. Don’t get me wrong, this still holds completely true. However, there is something to be warry of. Do you know exactly how your oscilloscope is achieving that high sample rate? That could make a huge difference in your measurements. Sample rate is the rate at which the sampler collects samples. The sample rate is measured in samples per second. This rate ultimately affects the signal you see on screen. In a well-designed oscilloscope, samples will occur at a consistent rate with no variation. Too low of a sample rate makes your signal look distorted and lacks signal detail. Under sampling could easily cause you to think that your signal is clean, when in fact it has several issues. With a high sample rate we see a nice smooth representation of our signal and can make accurate measurements on it. So, the key point here is the higher the sample rate, the higher the resolution of the trace. This will allow you to make more accurate measurements of your signal and catch any errors that may exist. However, you have to be warry of the method being used to achieve that high sample rate. This method can make or break your measurements, quite literally. The problem I’m referring to is called Interleave Distortion. To achieve high sample rates some scope vendors use 2 or more ADCs. The synchronized ADCs must have the same vertical gain, offset, and frequency response. If these interleaving requirements aren’t satisfied, the phase delay clocks will not be aligned causing inconsistent spacing between samples. The misaligned clocks cause the samples to be collected at varying intervals. Much like the distorted signal with too low of a sample rate that we saw earlier, any measurements you make on a signal like this will be completely inaccurate. So, in this case, the higher sample rate actually produces a less accurate waveform. However, there are many cases where interleaving is implemented correctly, like with the Keysight S-Series oscilloscopes we’re using today. Interleaving isn’t something to be afraid of, just something to be cautious of. In summary, always be cautious when you are working with both low and high sample rates. This is a key specification to monitor when you’re making measurements. Remember that the sample rate can automatically change as you adjust the time base settings, so be sure you are using the appropriate settings for the measurements you need to make. The key things to remember about sample rate in your testing are: 1. Sample rate refers to the rate at which the oscilloscope can collect data points, in Sa/s 2. Too low of a sample rate can cause distortion and skew your measurements 3. And lastly, Interleaved ADCs will present an impressive sample rate specification; however, if they are not properly synchronized this method can distort your signal. The sample rate is more than just an internal working of your oscilloscope. It has a profound impact on the trace you see. Sample rate determines whether you see an accurate representation of your signal, or a distorted one. As an engineer creating new digital designs in a world of increasingly fast data rates and high-precision devices, you don’t have any room for unnecessary development delays. Don’t let your oscilloscope’s internal errors affect your measurements. The digital storage oscilloscope we used: MSOS804A 🤍 All our scopes: 🤍 #oscilloscope #oscilloscopes #samplerate #electricalengineering #signalintegrity #sseriesoscilloscopes #infiniiumoscillsocope #Keysightoscilloscope #bandwidth #waveform #oscilloscopesamplerate #OscilloscopeHowTo
Learn why you should care about effective number of bits (ENOB) Get the SI ebook ► 🤍 Click to subscribe! 🤍 Learn more about vertical noise and other important signal integrity considerations: 🤍 Understanding the difference between number of ADC bits and the effective number of those bits is critical if you are trying to make the most accurate measurements possible. An oscilloscope can be specified to a certain number of ADC bits, but do you know whether all of those bits are effective in making your measurements? In this episode of Exposing Signal Integrity Myths, you will first learn about why you should care about ADC bits and what they mean for your signal. The more bits there are, the more quantization levels there can be, which ultimately means more signal detail. By the end of the episode, you will understand why the effective number of bits (ENOB) specification is just as important as the number of ADC bits. You should always be considering ENOB when you are evaluating the measurement quality of an oscilloscope. Tune in for future Exposing Signal Integrity Myths episodes covering more common misconceptions around signal integrity! You can ask me questions on Instagram: 🤍keysightoscilloscopes 🤍 Learn more about using oscilloscopes: 🤍 Check out the EEs Talk Tech electrical engineering podcast: 🤍 More about Keysight oscilloscopes: 🤍 Check out our blog: 🤍 Follow us on Twitter: 🤍DanielBogdanoff 🤍 Like our Facebook page: 🤍 The mixed signal oscilloscope we used: 🤍 (The Keysight Infiniium S-Series Oscilloscope) The S-Series allows you to see the truest representation of your signal with the industry’s best signal integrity: 10-bit ADC, low noise front end, superior time base, signal processing in hardware, and responsive deep memory. Exposing Signal Integrity Myths is hosted by Erin East. The video series dives into various misconceptions around oscilloscope signal integrity. In watching this series, you will learn about the important considerations for determining an oscilloscope’s true measurement quality. Understanding the system as a whole will give you visibility into the true performance of your device. #ADCbit #SignalIntegrity #ExposingSignalIntegrityMyths #Oscilloscope #HowTo #Engineering #ElectricalEngineering #Tutorial #Basics #Electronics #ElectricalEngineers #scopespecs #oscilloscopespecs #scopespecifiations #oscilloscopespecification
AMAZON Store: 🤍 PATREON: 🤍 JOIN USCCA LEGAL SELF DEFENSE NETWORK: 🤍 CHECK OUT OUR MUSIC CHANNEL: 🤍 LEHIGH DEFENSE: 🤍 USA CHEMICAL SUPPLY: 🤍 BLACK SPIDER OPTICS: 🤍 Use code "BESTCIVC" for 5% off your entire OpticsPlanet.com order In this video we test the practicality of a 9mm carbine for home defense, specifically an integrally suppressed Spikes Tactical Brown Recluse, with a variety of different offerings from Lehigh Defense as well as more standard ammunition. Is a 9mm a viable option for a home defense scenario, stay put and find out. Stay tuned, much more on the way. CHECK OUT OUR WEBSITE! 🤍 FACEBOOK: 🤍 Follow Us On Instagram: 🤍 🤍 🤍 AMAZON NOTICE: As an Amazon Associate, Iraqveteran8888 earns from qualifying purchases. Copyright 2017, 88 Industries, LLC FTC- This video contains a paid product placement in a syndicated professional video production; all opinions are our own and are neither approved nor disapproved by the advertiser. DISCLAIMER: Our videos are strictly for documentary, educational, and entertainment purposes only. All shooting is performed on state-approved firing ranges under the supervision of trained professionals. Imitation or the use of any acts depicted in these videos is solely AT YOUR OWN RISK. All work on firearms should be carried out by a licensed individual and all state and federal rules apply to such. We (including YouTube) will not be held liable for any injury to yourself or damage to your firearms resulting from attempting anything shown in any of our videos. We do not endorse any specific product and this video is not an attempt to sell you a good or service. We are not a gun store and DO NOT sell or deal in firearms. Such a practice is heavily regulated and subject to applicable laws. We DO NOT sell parts, magazines, or firearms. We are not instructing our viewers on how to modify firearms, accessories or otherwise to change their basic legal function. These videos are free to watch and if anyone attempts to charge for this video notify us immediately. By viewing or flagging this video you are acknowledging the above. Fair Use: In the rare instance we include someone else’s footage it is covered in Fair Use for Documentary and Educational purposes with the intention of driving commentary and allowing freedom of speech.
ADC stethoscope, surprisingly good!! ADC Stethoscope 603 (Amazon Affiliate Link) 🤍 (Affiliate Link) If you are interested or need help getting your Medical / DEA License, check out the link below and use my code if you choose to use the service. ►►►Code: PALife50 (Save $50 on your first order) ►►► 🤍 - ►►►My Medical Bag (Amazon Affiliate Links) Littmann Cardiology IV Stethoscope 🤍 Littmann Master Stethoscope 🤍 PocketScope Otoscope 🤍 Sound Machine 🤍 ►►►BOOKS I have used/recommend Dave Ramsey's - The Total Money Makeover 🤍 Physician Assistant School Interview Guide 🤍 The Ultimate Guide to Getting Into Physician Assistant School, Fourth Edition 🤍 Skin Disease: Diagnosis and Treatment 4th Edition 🤍 Boards and Wards for USMLE Step 2 🤍 Tintinalli's Emergency Medicine Manual, Eighth Edition 🤍 Pocket Emergency Medicine 🤍 Basics of Emergency Medicine 🤍 The Practitioner's Pocket Pal: Ultra Rapid Medical Reference 🤍 Certification and Recertification Examinations for Physician Assistants 🤍 ►►►My Recording Equipment Sony a7iii 🤍 Microphone 🤍 Lighting 🤍 Tripod 🤍 Full Transparency for my audience: Links above are my affiliate links to Amazon Associates or other related programs. I may earn a commission if you purchase through my links. Disclaimer: the information on this channel is to share my experiences so you can make an informed decision on your life/career choices, please use this information wisely and do research as what has worked for me may not work for you, and may improve or worsen your current or future situation.
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What is bandwidth, really? Does it matter? Click to subscribe! ► 🤍 ◄ Link to the blog for a bonus tip: 🤍 Questions/comments? Ask me on Twitter: 🤍DanielBogdanoff 🤍 Learn more about using oscilloscopes: 🤍 Check out the EEs Talk Tech podcast: 🤍 Transcript: Today, we’re going to take a look at a different way to think about bandwidth. What really is bandwidth, and what does it mean for your systems? Hi, I’m Daniel Bogdanoff, and today we’re going to dig into arguably the most fundamental of all test gear specs – bandwidth. In test gear 101 you hear that bandwidth is simply the highest frequency component that you can measure or produce. For example, a 100 MHz oscilloscope can measure a 100 MHz sine wave. But, this signal is going to be attenuated by 3 dB or so, because in test gear 201 you hear that the signal will actually roll off a bit near the maximum bandwidth of your system. In fact, you can actually see frequencies that exceed the bandwidth of your scope. For example, here’s a 40 MHz, 5 Vpp signal piped into my 1.5 GHz oscilloscope. No problem. But then, I turn on my scope’s 20 MHz bandwidth limit, I can still see my 40 MHz sine wave, but the peak to peak voltage has attenuated down to 2.1 volts. So essentially I’m able to see a signal that’s double the bandwidth of my scope. The same is true for the output of a function generator, but it’s harder to see that in practice because the software won’t let you set a higher frequency than the generator’s stated max output. On a 100 MHz generator, you simply can’t turn the frequency setting any higher than 100 MHz. So, this begs the question, why don’t we, the designers of test and measurement gear, simply say the generator can produce a higher frequency and then just limit the amplitude at those extended frequencies? Or, why can’t I say my oscilloscope has a higher bandwidth? Here I am able to measure double the bandwidth on this scope. It would certainly make our specs look better! To answer that, we need to look more closely at what bandwidth really means. As it turns out, it’s not about the Hertz, the cycles per second, it’s about rise time. It’s about how fast the signal goes up and down. Edge speed. Let’s look an example. A delivery driver has a car that can travel at 100 km/h max. He has to make a delivery 50 km away, so it’ll take him 1 hour to deliver the package and get back. His frequency is 1 delivery per hour. Next, he has to deliver two packages that are only 25 km away. It’ll take him only 30m for each package, and his frequency will be 2 deliveries per hour. His frequency doubled, but his speed didn’t change. This is the same with test gear and bandwidth. An oscilloscopes bandwidth or generator’s output is like the delivery rate (deliveries per second), while the rise time is like the driver’s speed. Sure, he can deliver more packages if the deliveries are closer together, but the travel speed doesn’t change. This is the same with test gear. Another way to think about this is in terms of frequency components. Bandwidth refers to the frequency components when you look at the frequency domain, but the rise time or edge speed in the time domain. Watch my edge speed change as a toggle the bandwidth limit on and off. Here’s what’s happening. When the signal goes positive, the scope trace will start to move positive. But, it has to do so linearly, meaning it can’t just magically jump up to the new voltage value. The speed that the scope adjusts to the change is dictated by its bandwidth. So, you can technically measure a frequency higher than the max bandwidth of the scope, but you can’t measure an edge speed faster than the max bandwidth of the scope. The same is true for a function generator. The edge speed of the output maxes out at its max bandwidth. That’s why a 100 MHz function generator can create a 100 MHz sine wave, but not a 100 MHz square wave. The Hertz is the same, but the edge speeds are very different. So, if you’re picking out a function generator, think about what types of signals you want to generate, not just the max bandwidth. A general rule of thumb for square waves is that you need a generator with 3x the bandwidth of your square wave frequency. You can use this knowledge to push some of the specs of your scope – which is a topic for an upcoming video. #oscilloscope #oscilloscopes #electronics #electricalengineering #bandwidth #functiongenerator #tutorial #EE #electronicsengineering #rfengineering #engineering #Keysight
The question that will decide your fate in ADC exam. SBQ You informed pt, endo treated teeth should get crown treatment within 1 year.Pt was very disappointed that previous dentist didn’t mentioned this what to do? A.Inform APRAH B.Inform ADA C.Ask pt to get the record from the previous dentist to be transferred to you with patients consent. D. Ask your a lawyer E. Tell him that you will call his previous dentist and demand an explanation. F. Call the previous dentist and tell him a complain is coming his way from the patient. G. Tell the patient that You would call the previous dentist with patients permission and request for a clarification. H. Tell the patient to go back to the previous dentist and ask him for the explanation. If you are appearing for ADC exam be prepared for the Hardwork and most importantly smart work. I will have to devote considerable time and effort to prepare mock test and share my own exam questions and correct your responses and guide you accordingly. The entire duration until you give your exam I shall be by your side and will also share tips for part 2 exam with study materials for osce exam of part 2 once you clear your part 1 exam. To summarize, Following things would be done over the whatsapp group - join this link - 🤍 1) I shall share the study plan of what to study in a planned sequence. (Minimum 3 months of study) 2) Mock test consisting of 14 SBQs meaning 70 questions with a timer of 2 hours simulating the exam on a weekly basis. - Minimum 4 mock tests would be there. ( Meaning 280 questions) More will be added as per requests from the candidates. 3) Solved answers to these mock tests with explanations and references if any. 4) Clearing doubts related to any subject and tips to study important topics and my notes for various topics. 5) Sharing of important articles and other study materials. and most importantly 6) Sharing of questions from my paper of March 2022. So are you prepare for your ADC journey!!
Why do digital oscilloscopes appear noisier than traditional analog oscilloscopes? Dave busts the myth that digital scopes are noiser than analog scopes, and demonstrates what inherent advantages digital scopes can have over analog scopes in terms of true waveform capture. And also why your analog scope may be hiding important signal detail from you. Demonstrations of how memory depth, analog bandwidth, averaging, and intensity graded displays can all effect the signal detail you see on your digital oscilloscope. And how long exposure camera shots on analog oscilloscopes can reveal detail you can't see with your eyes. Demonstrations are done on the new Tektronix MDO3000, the Rigol DS1052E, the Tektronix TDS220, and Tektronix 2225 analog oscilloscope. Previous video on common mode noise measurement: 🤍 Discuss on the Forum here: 🤍 EEVblog Main Web Site: 🤍 EEVblog Amazon Store: 🤍 Donations: 🤍 Projects: 🤍 Electronics Info Wiki: 🤍
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In this video, the working of Dual Slope and Single Slope Integrating ADC is explained. By watching this video, you will learn the following topics: 0:25 Dual-Slope ADC advantages and limitations 1:18 Working of Single Slope ADC 5:04 Limitations of Single Slope ADC 6:32 Working of Dual-Slope ADC 14:00 Conversion Time of Dual-Slope ADC The Single and Dual Slope ADC: These ADCs are integrating type ADC, meaning that they use the integrator for the conversion. The Dual-Slope ADC provides good accuracy and high resolution but it has sloe conversion time. That's why it is not used for the data-acquisition, but due to its good accuracy and high resolution, it is used in the measurement instruments, particularly in the digital multimeters. In this video, the working of Single slope and Dual slope ADC is explained in detail. The link to the other useful related video: 1) Introduction to ADC and DAC 🤍 2) Op-amp as Comparator 🤍 3) Op-amp as Integrator 🤍 This video will be helpful to all the students of science and engineering in understanding the working of Single and Dual Slope ADC. #DualSlopeADC #SingleSlopeADC #IntegratingADC Follow me on YouTube: 🤍 Follow me on Facebook: 🤍 Follow me on Instagram: 🤍 Music Credit: 🤍
Function Gen says 1V, Scope says 2V. Which one's right? Click to subscribe! ► 🤍 ◄ The function generator is set to have a 1 V output, but the oscilloscope measures a 2 Volt signal. Why? When set to 50 ohm mode, the function generator actually outputs double the specified input voltage. It does this because it expects to see a 50 ohm load on the output, creating a 50/50 voltage divider circuit. Questions or comments? Ask me on Twitter: 🤍DanielBogdanoff 🤍 Learn more about using oscilloscopes: 🤍 Check out the EEs Talk Tech podcast: 🤍 The digital storage oscilloscope we used: 🤍 #oscilloscope #oscilloscopes #electronics #electricalengineering #impedance #impedancematching #50ohm #50ohmimpedance #highimpedance #outputimpedance #functiongenerator
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Dave shows you a neat trick on how to get a real time frequency response bode plot on your oscilloscope using your function generator. Useful for filter or system response characterisation. Forum Topic: 🤍 Spectrum Analyser Video: 🤍 EEVblog Main Web Site: 🤍 EEVblog Amazon Store: 🤍 Donations: 🤍 Projects: 🤍 Electronics Info Wiki: 🤍
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ADC unveils female Deputy Governorship candidate in Lagos State = THANK YOU FOR WATCHING DON'T FORGET TO SUBSCRIBE HERE: 🤍 = ABOUT AIT AIT NEWS LIVE delivers breaking news, in-depth analysis of political, national and local news headlines, as well a commentary and informed perspectives. You can find video clips and segments of some of our news stories. We also live stream some of our programmes such as Kakaaki, Focus Nigeria, People Politics & Power, Jig Saw, Democracy Today, Inside Parliament, Project Justices, Health Digest, Security Scope and Moneyline with Nancy. CONNECT WITH US Visit ait.live: 🤍 Find AIT LIVE on Facebook: 🤍 Follow AIT LIVE on Twitter: 🤍 Follow AIT LIVE on Instagram: 🤍 #ait #aitlive #news #currentaffairs #politics #kakkkaki #focusnigeria #democracytoday #jigsaw #peoplepoliticsandpower #moneylinewithnancytv #newshour #aitreports #worldnews
Teardown of the new Siglent SDS2000X Plus $999 oscilloscope. Can it be hacked to 500MHz? Hires teardown photos: 🤍 Hacking thread: 🤍 Siglent SDS5000X review: 🤍 Forum: 🤍 #Oscilloscope #Siglent #Teardown EEVblog Main Web Site: 🤍 The 2nd EEVblog Channel: 🤍 Support the EEVblog through Patreon! 🤍 AliExpress Affiliate: 🤍 Buy anything through that link and Dave gets a commission at no cost to you. Donate With Bitcoin & Other Crypto Currencies! 🤍 T-Shirts: 🤍
Playlist (with all related videos): 🤍 EN: This Tutorial describes basic characteristics of analog to digital converters and covers the most common errors. DE: Dieses Tutorial beschreibt grundlegende Kennlinien von Analog-Digital-Konvertern und geht auf deren gängigste Fehler ein. Tutor: Michael Fuchs Chapters: 0:00 Intro 0:59 The Process of Digitalization 2:26 The Transfer Curve 3:27 The Offset Error 4:23 The Gain Error 5:18 Non-Linearity Errors 9:34 Sampling Depth and Sampling Rate 10:39 The Quantization Error 12:22 The Sampling Error (Aliasing) 14:11 Anti Aliasing Filters Additional Links: - Analog-Digital-Conversion: 🤍 - Analog-to-Digital Converter Testing: 🤍 - Institut für Elektronik / TU Graz: 🤍 🤍 - Like us on Facebook: 🤍 Production: TU Graz – Lehr- und Lerntechnologien
Top 5 Cloud Computing Careers For 2022 - Solutions Architect Salary Included 🚀 We're building a community for Cloud enthusiasts regardless of their background - Join Us Now: 🤍 → Chapters: 00:00 intro 02:52 Cloud Architecture 05:25 Cloud Security 08:07 Internet Of Things 11:08 Data Engineering 13:15 Platform Engineering 💻 Day in the life of an AWS Solutions Architect: 🤍 ⚡ Soft skills you need to succeed as an SA: 🤍 💻 Day in the life at one of the biggest e-commerce companies: 🤍 ⚡ How I joined Amazon (And how you can too): 🤍 🚀 Get an AI to build your best resume yet: 🤍 ☕️ LOVING THE VIDEOS? BUY ME A COFFEE 😄 🤍
The title for "world's fastest oscilloscope" now belongs to the Rohde & Schwarz MXO 4. It is capable of acquiring over 4.5 million waveforms per second and processing 45,000 FFTs per second. (Though, I only got the FFTs to about 30,000 per second...) It features the lowest dead-time between triggers of any oscilloscope on the market. R&S gave Bald Engineer an early look at this next-generation oscilloscope. See how it performs, and what he thinks of it, and take a look at the chip that powers this amazing scope. Learn more about the R&S MXO 4: 🤍 Join Bald Engineer's live streams on Fri 🤍 10 AM and Sunday 7 PM (US Central Time) Twitch: 🤍 Patreon: 🤍 Discord: 🤍 Instagram: 🤍 Twitter: 🤍 Video produced by James Lewis (🤍baldengineer): 🤍 Index: 00:00 EEs love Oscilloscopes 00:43 R&S MXO 4 Introduction 02:04 Acquisition Rate 04:34 Vertical Noise (and HD Mode) 07:28 Not your mentor's FFT 08:08 EMI Debug Example 09:25 MXO 4 Teardown 12:48 Things I like 15:42 Things I did NOT like 17:28 Wrap-Up
What's the real answer when it comes to scope bits of resolution? Click to subscribe! ► 🤍 ◄ Enter now: 🤍 Keysight Podcasts Channel: 🤍 🤍 Hit me up on Twitter! 🤍DanielBogdanoff 🤍 Follow us on Facebook: 🤍 Prize breakdown: 🤍 Winners list: 🤍 FAQs Page: 🤍 #Wave2019 #KeysightWave #ScopeMonth #Oscilloscope #KeysightGiveaway #ElectricalEngineering #OscilloscopeMeasurements #ScopeMeasurements
Teardown of the new $399 Siglent SDS_1104X-U Four Channel oscilloscope. A cheaper alternative to the SDS1104X-E And what's all this magnetic shielding stuff anyhow? Video on Standard Deviation: 🤍 Forum: 🤍 Subscribe on Library: 🤍 EEVblog Web Site: 🤍 The 2nd EEVblog Channel: 🤍 EEVdiscover: 🤍 Support the EEVblog through Patreon! 🤍 AliExpress Affiliate: 🤍 Buy anything through that link and Dave gets a commission at no cost to you. Donate With Bitcoin & Other Crypto Currencies! 🤍 T-Shirts: 🤍
Playlist (with all related videos): 🤍 EN: This Tutorial describes two basic implementations of analog to digital converters, the flash converter and the successive approximation converter, as well as the sample-and-hold stage. DE: Dieses Tutorial beschreibt zwei grundlegende Implementierungen von Analog-Digital-Wandlern, den Flash-Wandler und den AD-Wandler nach dem Prinzip der sukzessiven Approximation, sowie die Abtast-Halte-Glied. Tutor: Michael Fuchs Chapters: 0:00 Intro 0:10 Performance Parameters 4:08 The Flash Converter 6:20 The Half Flash ADC 7:18 The Subranging Flash ADC 8:10 Successive Approximation (SAR) 10:05 The SAR Converter 10:42 Sample & Hold Stage 13:22 Closing Remarks Additional Links: - Comparators: 🤍 - Video on Operational Amplifiers: 🤍 - Analog-Digital-Conversion: 🤍 - Analog-to-Digital Converter Testing: 🤍 - Institut für Elektronik / TU Graz: 🤍 🤍 - Like us on Facebook: 🤍 Production: TU Graz – Lehr- und Lerntechnologien
In This video, Dr Kiran is sharing her journey of Australian Dental Exam, ADC. She is practicing in Australia after completing her BDS from India. She immigrated to Australia after clearing ADC exam. Here she is telling us whole exam journey, its fees, total expenditure. After watching you will get to know whether ADC exam is difficult or easy. She is here to Help you in Australian dental exam.
AMAZON Store: 🤍 PATREON: 🤍 JOIN USCCA LEGAL SELF DEFENSE NETWORK: 🤍 CHECK OUT OUR MUSIC CHANNEL: 🤍 In this video we wanted to test how far a 9mm is in fact capable of producing a potentially lethal wound. We do the standard pine board test that Barry demonstrated in the "How Far Will a .22 Kill" video, as well as a bit of ballistics testing at long range. Do you think the 9mm will penetrate a clear ballistics torso at 440 yards? AR500 Steel Targets: 🤍 Clear Ballistics Gel: 🤍 CHECK OUT OUR WEBSITE! 🤍 FACEBOOK: 🤍 Follow Us On Instagram: 🤍 🤍 AMAZON NOTICE: As an Amazon Associate, Iraqveteran8888 earns from qualifying purchases. Shirts & other Apparel: 🤍 🤍 Royalty Free Music by: 🤍 Copyright 2014, 88 Industries, LLC DISCLAIMER: Our videos are strictly for documentary, educational, and entertainment purposes only. All shooting is performed on state-approved firing ranges under the supervision of trained professionals. Imitation or the use of any acts depicted in these videos is solely AT YOUR OWN RISK. All work on firearms should be carried out by a licensed individual and all state and federal rules apply to such. We (including YouTube) will not be held liable for any injury to yourself or damage to your firearms resulting from attempting anything shown in any of our videos. We do not endorse any specific product and this video is not an attempt to sell you a good or service. We are not a gun store and DO NOT sell or deal in firearms. Such a practice is heavily regulated and subject to applicable laws. We DO NOT sell parts, magazines, or firearms. We are not instructing our viewers on how to modify firearms, accessories or otherwise to change their basic legal function. These videos are free to watch and if anyone attempts to charge for this video notify us immediately. By viewing or flagging this video you are acknowledging the above. Fair Use: In the rare instance we include someone else’s footage it is covered in Fair Use for Documentary and Educational purposes with the intention of driving commentary and allowing freedom of speech.
This is the recorded talk from the VLSI 2020 talk titled: A 1MS/s to 1GS/s Ringamp-Based Pipelined ADC with Fully Dynamic Reference Regulation and Stochastic Scope-on-Chip Background Monitoring in 16nm A pdf of these slides and additional materials can be found at: 🤍
Here we use edsim51 as tool to simulate 8051 microcontroller. Here assembly level code is already loaded it will be available in example of edsim51. If needed do mention. As we have covid and online classes I hope this would be useful to you guys.
Dave looks at the Digilent Open Scope MZ Review, an $89 open source oscilloscope, logic analyser, and function generator. 🤍 Forum: 🤍 EEVblog Main Web Site: 🤍 The 2nd EEVblog Channel: 🤍 Support the EEVblog through Patreon! 🤍 Donate With Bitcoin & Other Crypto Currencies! 🤍 EEVblog Amazon Store (Dave gets a cut): 🤍 T-Shirts: 🤍 💗 Likecoin – Coins for Likes: 🤍
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