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<?xml-stylesheet type="text/xsl" href="http://engineeringtv.com/utility/FeedStylesheets/atom.xsl" media="screen"?><feed xmlns="http://www.w3.org/2005/Atom" xml:lang="en"><title type="html">Vendor Submitted</title><subtitle type="html" /><id>http://engineeringtv.com/blogs/vendor-submitted/atom.aspx</id><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/default.aspx" /><link rel="self" type="application/atom+xml" href="http://engineeringtv.com/blogs/vendor-submitted/atom.aspx" /><generator uri="http://communityserver.org" version="3.1.20917.1142">Community Server</generator><updated>2009-06-23T16:00:00Z</updated><entry><title>ADM2582E: Signal and Power Isolated RS-485 Transceiver</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/11/16/adm2582e-signal-and-power-isolated-rs-485-transceiver.aspx" /><link rel="enclosure" type="image/jpeg" length="4352" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31594.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/11/16/adm2582e-signal-and-power-isolated-rs-485-transceiver.aspx</id><published>2009-11-16T10:20:00Z</published><updated>2009-11-16T10:20:00Z</updated><content type="html">The ADM2582E/ADM2587E, by Analog Devices, are fully integrated isolated data transceivers with ±15 kV ESD protection and is suitable for high speed communication on multipoint transmission lines. 
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&lt;p align="center" id="video_31594"&gt;&lt;br /&gt;(183 Views, 0 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31594" width="1" height="1"&gt;</content><author><name>Analog Devices</name><uri>http://engineeringtv.com/members/Analog-Devices.aspx</uri></author><category term="Medical" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Medical/default.aspx" /><category term="Instrumentation" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Instrumentation/default.aspx" /><category term="Analog Devices" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Devices/default.aspx" /><category term="Industrial" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Industrial/default.aspx" /><category term="Isolated transceivers" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Isolated+transceivers/default.aspx" /></entry><entry><title>EMI in isoPower® Devices</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/11/16/emi-in-isopower-174-devices.aspx" /><link rel="enclosure" type="image/jpeg" length="10438" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31595.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/11/16/emi-in-isopower-174-devices.aspx</id><published>2009-11-16T10:20:00Z</published><updated>2009-11-16T10:20:00Z</updated><content type="html">This in-depth video, from Analog Devices, shows how to reduce EMI (electromagnetic interference) in isoPower®-based devices. isoPower® is a complete and fully integrated isolation solution for power transfer across an isolation barrier using micro-transformers.
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&lt;p align="center" id="video_31595"&gt;&lt;br /&gt;(169 Views, 0 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31595" width="1" height="1"&gt;</content><author><name>Analog Devices</name><uri>http://engineeringtv.com/members/Analog-Devices.aspx</uri></author><category term="Analog Devices" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Devices/default.aspx" /><category term="icoupler" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/icoupler/default.aspx" /><category term="isopower" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/isopower/default.aspx" /></entry><entry><title>ADP2114: Highly Configurable Synchronous Step-Down DC-DC &gt; Converter</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/10/01/adp2114-highly-configurable-synchronous-step-down-dc-dc-gt-converter.aspx" /><link rel="enclosure" type="image/jpeg" length="9434" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31481.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/10/01/adp2114-highly-configurable-synchronous-step-down-dc-dc-gt-converter.aspx</id><published>2009-10-01T12:00:00Z</published><updated>2009-10-01T12:00:00Z</updated><content type="html">The ADP2114 is a dual channel step down switching regulator with integrated MOSFETs and is designed to be extremely versatile. The device can be configured as two channels with output current 2A and 2A or with one output supplying 3A and the other 1A or alternatively, the device can be configured as a single, interleaved output supporting 4A total current.
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&lt;p align="center" id="video_31481"&gt;&lt;br /&gt;(730 Views, 0 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31481" width="1" height="1"&gt;</content><author><name>Analog Devices</name><uri>http://engineeringtv.com/members/Analog-Devices.aspx</uri></author><category term="Power" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Power/default.aspx" /><category term="Medical" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Medical/default.aspx" /><category term="Instrumentation" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Instrumentation/default.aspx" /><category term="Analog Devices" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Devices/default.aspx" /><category term="Industrial" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Industrial/default.aspx" /></entry><entry><title>Introducing iMEMS® Microphones</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/10/01/introducing-imems-174-microphones.aspx" /><link rel="enclosure" type="image/jpeg" length="12222" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31482.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/10/01/introducing-imems-174-microphones.aspx</id><published>2009-10-01T12:00:00Z</published><updated>2009-10-01T12:00:00Z</updated><content type="html">This video compares the ADMP401 Analog MEMS and the ADMP421 Digital MEMS with a BK Type 4939 Measurement microphone. iMEMS(r) Microphones have high performance and reliability with 61dB A-weighted SNR and flat frequency response from 100Hz to &amp;gt; 12kHz.
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&lt;a href="http://www.addthis.com/feed.php?pub=ETVProducer&amp;amp;h1=http%3A%2F%2Fengineeringtv.com%2Fblogs%2FMainFeed.aspx&amp;amp;t1=" title="Subscribe using any feed reader!"&gt;&lt;img src="http://s9.addthis.com/button1-rss.gif" width="125" height="16" border="0" alt="AddThis Feed Button" /&gt;&lt;/a&gt;
&lt;p align="center" id="video_31482"&gt;&lt;br /&gt;(1012 Views, 2 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31482" width="1" height="1"&gt;</content><author><name>Analog Devices</name><uri>http://engineeringtv.com/members/Analog-Devices.aspx</uri></author><category term="MEMS" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/MEMS/default.aspx" /><category term="Analog Devices" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Devices/default.aspx" /><category term="Audio" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Audio/default.aspx" /></entry><entry><title>Whiteboard Wizard "Why We Need Chopper Amps"</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/07/31/whiteboard-wizard-quot-why-we-need-chopper-amps-quot.aspx" /><link rel="enclosure" type="image/gif" length="8357" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31386.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/07/31/whiteboard-wizard-quot-why-we-need-chopper-amps-quot.aspx</id><published>2009-07-31T17:00:00Z</published><updated>2009-07-31T17:00:00Z</updated><content type="html">In this Whiteboard Wizard, Intersil Senior Principal Application Engineer David Laing discusses the reason designers should use chopper stabilized amplifiers such as Intersil&amp;#39;s ISL28133. Presented by David Laing.
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&lt;p align="center" id="video_31386"&gt;&lt;br /&gt;(2750 Views, 4 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31386" width="1" height="1"&gt;</content><author><name>Intersil</name><uri>http://engineeringtv.com/members/Intersil.aspx</uri></author><category term="Analog Semiconductors" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Semiconductors/default.aspx" /><category term="Semiconductor ICs" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Semiconductor+ICs/default.aspx" /><category term="Intersil" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Intersil/default.aspx" /></entry><entry><title>AD9262: Dual Continuous Time Sigma-Delta ADC</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/07/22/ad9262-dual-continuous-time-sigma-delta-adc.aspx" /><link rel="enclosure" type="image/jpeg" length="7906" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31360.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/07/22/ad9262-dual-continuous-time-sigma-delta-adc.aspx</id><published>2009-07-22T13:00:00Z</published><updated>2009-07-22T13:00:00Z</updated><content type="html">This video features the thought leaders (engineers and marketers) involved with the creation of the AD9262. The AD9262 is  a dual, 16-bit analog-to-digital converter (ADC) based on a continuous time sigma-delta architecture that achieves 86 dB of dynamic range over a 10 MHz input bandwidth. 
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&lt;p align="center" id="video_31360"&gt;&lt;br /&gt;(1082 Views, 1 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31360" width="1" height="1"&gt;</content><author><name>Analog Devices</name><uri>http://engineeringtv.com/members/Analog-Devices.aspx</uri></author><category term="Medical" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Medical/default.aspx" /><category term="Instrumentation" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Instrumentation/default.aspx" /><category term="Analog Devices" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Devices/default.aspx" /><category term="Converter" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Converter/default.aspx" /><category term="ADC" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/ADC/default.aspx" /><category term="Industrial" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Industrial/default.aspx" /></entry><entry><title>ADAS1128: 128-channel, 24-bit, 20 kSPS Current-to-Digital Converter</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/07/22/adas1128-128-channel-24-bit-20-ksps-current-to-digital-converter.aspx" /><link rel="enclosure" type="image/jpeg" length="9851" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31361.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/07/22/adas1128-128-channel-24-bit-20-ksps-current-to-digital-converter.aspx</id><published>2009-07-22T13:00:00Z</published><updated>2009-07-22T13:00:00Z</updated><content type="html">The ADAS1128 is a 128-channel, analog-current-to-digital converter. It contains 128 low-power, low-noise, low-input current integrators, simultaneous sample-holds and two high-speed, high-resolution ADCs with configurable sampling rate and resolution up to 24 bits. The primary application is CT Scanners.
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&lt;p align="center" id="video_31361"&gt;&lt;br /&gt;(897 Views, 0 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31361" width="1" height="1"&gt;</content><author><name>Analog Devices</name><uri>http://engineeringtv.com/members/Analog-Devices.aspx</uri></author><category term="Medical" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Medical/default.aspx" /><category term="Analog Devices" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Devices/default.aspx" /><category term="Converter" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Converter/default.aspx" /><category term="CT Scanners" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/CT+Scanners/default.aspx" /></entry><entry><title>AD8275: 16 Bit Attenuating ADC Driver</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/24/ad8275-16-bit-attenuating-adc-driver.aspx" /><link rel="enclosure" type="image/jpeg" length="4137" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31306.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/24/ad8275-16-bit-attenuating-adc-driver.aspx</id><published>2009-06-24T20:00:00Z</published><updated>2009-06-24T20:00:00Z</updated><content type="html">Learn how to simplify design and reduce cost by using a single IC to interface +/-10V industrial signals to a +5V single-supply ADC. 
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&lt;p align="center" id="video_31306"&gt;&lt;br /&gt;(1045 Views, 0 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31306" width="1" height="1"&gt;</content><author><name>Analog Devices</name><uri>http://engineeringtv.com/members/Analog-Devices.aspx</uri></author><category term="Medical" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Medical/default.aspx" /><category term="Industrial Design" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Industrial+Design/default.aspx" /><category term="Instrumentation" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Instrumentation/default.aspx" /><category term="Analog Devices" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Devices/default.aspx" /></entry><entry><title>ADuM4160: Integrated USB Isolator</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/24/adum4160-integrated-usb-isolator.aspx" /><link rel="enclosure" type="image/jpeg" length="5091" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31307.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/24/adum4160-integrated-usb-isolator.aspx</id><published>2009-06-24T20:00:00Z</published><updated>2009-06-24T20:00:00Z</updated><content type="html">The ADuM4160 is an integrated single chip USB isolator. It is designed to provide isolation in the D+/D- lines and works with existing USB ports. Based on Analog Devices&amp;#39; patented iCoupler technology, the ADuM4160 combines the ease of use of an off-the-shelf isolated USB module with the integration capability of a stand alone Serial Interface Engine.
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&lt;a href="http://www.addthis.com/feed.php?pub=ETVProducer&amp;amp;h1=http%3A%2F%2Fengineeringtv.com%2Fblogs%2FMainFeed.aspx&amp;amp;t1=" title="Subscribe using any feed reader!"&gt;&lt;img src="http://s9.addthis.com/button1-rss.gif" width="125" height="16" border="0" alt="AddThis Feed Button" /&gt;&lt;/a&gt;
&lt;p align="center" id="video_31307"&gt;&lt;br /&gt;(1195 Views, 2 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31307" width="1" height="1"&gt;</content><author><name>Analog Devices</name><uri>http://engineeringtv.com/members/Analog-Devices.aspx</uri></author><category term="Medical" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Medical/default.aspx" /><category term="Industrial Design" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Industrial+Design/default.aspx" /><category term="Instrumentation" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Instrumentation/default.aspx" /><category term="Analog Devices" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Devices/default.aspx" /><category term="USB" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/USB/default.aspx" /></entry><entry><title>Whiteboard Wizard "Hybrid Voice &amp; Data Switches for Smart Phones"</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/whiteboard-wizard-quot-hybrid-voice-amp-data-switches-for-smart-phones.aspx" /><link rel="enclosure" type="image/gif" length="11367" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31304.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/whiteboard-wizard-quot-hybrid-voice-amp-data-switches-for-smart-phones.aspx</id><published>2009-06-23T22:00:00Z</published><updated>2009-06-23T22:00:00Z</updated><content type="html">In this Whiteboard Wizard, Intersil Senior Marketing Manager Chris Ludeman discusses the advantages of using Intersil&amp;#39;s ISL54214 USB 2.0 High-Speed x 2Channels/Stereo Audio Dual in smart phones.
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&lt;a href="http://www.addthis.com/feed.php?pub=ETVProducer&amp;amp;h1=http%3A%2F%2Fengineeringtv.com%2Fblogs%2FMainFeed.aspx&amp;amp;t1=" title="Subscribe using any feed reader!"&gt;&lt;img src="http://s9.addthis.com/button1-rss.gif" width="125" height="16" border="0" alt="AddThis Feed Button" /&gt;&lt;/a&gt;
&lt;p align="center" id="video_31304"&gt;&lt;br /&gt;(1323 Views, 1 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31304" width="1" height="1"&gt;</content><author><name>Intersil</name><uri>http://engineeringtv.com/members/Intersil.aspx</uri></author><category term="Consumer" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Consumer/default.aspx" /><category term="Audio" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Audio/default.aspx" /><category term="Analog Semiconductors" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Semiconductors/default.aspx" /><category term="Semiconductor ICs" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Semiconductor+ICs/default.aspx" /><category term="Intersil" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Intersil/default.aspx" /></entry><entry><title>Whiteboard Wizard "Low Power Pressure Sensor"</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/whiteboard-wizard-quot-low-power-pressure-sensor-quot.aspx" /><link rel="enclosure" type="image/gif" length="8443" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31298.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/whiteboard-wizard-quot-low-power-pressure-sensor-quot.aspx</id><published>2009-06-23T22:00:00Z</published><updated>2009-06-23T22:00:00Z</updated><content type="html">Whiteboard Wizard about Low Power Pressure Sensor solutions presented by Tony Ochoa of Intersil.  This video demonstrates the use of Intersil parts ISL21060, ISL28133, and ISL8171/2 to make a 5V Low Power Pressure Sensor.
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&lt;a href="http://www.addthis.com/feed.php?pub=ETVProducer&amp;amp;h1=http%3A%2F%2Fengineeringtv.com%2Fblogs%2FMainFeed.aspx&amp;amp;t1=" title="Subscribe using any feed reader!"&gt;&lt;img src="http://s9.addthis.com/button1-rss.gif" width="125" height="16" border="0" alt="AddThis Feed Button" /&gt;&lt;/a&gt;
&lt;p align="center" id="video_31298"&gt;&lt;br /&gt;(1641 Views, 2 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31298" width="1" height="1"&gt;</content><author><name>Intersil</name><uri>http://engineeringtv.com/members/Intersil.aspx</uri></author><category term="Analog Semiconductors" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Semiconductors/default.aspx" /><category term="Semiconductor ICs" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Semiconductor+ICs/default.aspx" /><category term="Intersil" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Intersil/default.aspx" /></entry><entry><title>Whiteboard Wizard "DCPs, part 1"</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/whiteboard-wizard-quot-dcps-part-1-quot.aspx" /><link rel="enclosure" type="image/gif" length="12479" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31300.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/whiteboard-wizard-quot-dcps-part-1-quot.aspx</id><published>2009-06-23T22:00:00Z</published><updated>2009-06-23T22:00:00Z</updated><content type="html">Whiteboard Wizard about DCPs presented by Heather Babcock of Intersil in two parts.  In this part, we compare DCPs (Digitally Controlled Potentiometers) to mechanical potentiometers.
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&lt;p align="center" id="video_31300"&gt;&lt;br /&gt;(1827 Views, 3 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31300" width="1" height="1"&gt;</content><author><name>Intersil</name><uri>http://engineeringtv.com/members/Intersil.aspx</uri></author><category term="Analog Semiconductors" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Semiconductors/default.aspx" /><category term="Semiconductor ICs" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Semiconductor+ICs/default.aspx" /><category term="Intersil" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Intersil/default.aspx" /></entry><entry><title>Whiteboard Wizard "Measuring Your Circuit’s Susceptibility to RF Signals"</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/whiteboard-wizard-quot-measuring-your-circuit-s-susceptibility-to-rf-signals-quot.aspx" /><link rel="enclosure" type="image/gif" length="12767" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31314.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/whiteboard-wizard-quot-measuring-your-circuit-s-susceptibility-to-rf-signals-quot.aspx</id><published>2009-06-23T22:00:00Z</published><updated>2009-06-23T22:00:00Z</updated><content type="html">A test design idea that enables the quantitative measure of the circuit’s susceptibility  to RF signals using standard equipment found in any analog high speed lab presented by Don LaFontaine.
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&lt;p align="center" id="video_31314"&gt;&lt;br /&gt;(1717 Views, 2 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31314" width="1" height="1"&gt;</content><author><name>Intersil</name><uri>http://engineeringtv.com/members/Intersil.aspx</uri></author><category term="Audio" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Audio/default.aspx" /><category term="Analog Semiconductors" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Semiconductors/default.aspx" /><category term="Semiconductor ICs" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Semiconductor+ICs/default.aspx" /><category term="Intersil" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Intersil/default.aspx" /></entry><entry><title>Analoger "Clarke versus Clarke"</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/analoger-quot-clarke-versus-clarke-quot.aspx" /><link rel="enclosure" type="image/gif" length="9867" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31301.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/analoger-quot-clarke-versus-clarke-quot.aspx</id><published>2009-06-23T21:00:00Z</published><updated>2009-06-23T21:00:00Z</updated><content type="html">Arthur C. Clarke debates himself about the benefits of Intersil&amp;#39;s pinPOINT Precision Operational Amplifiers over ice cold Analogers.
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&lt;p align="center" id="video_31301"&gt;&lt;br /&gt;(835 Views, 0 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31301" width="1" height="1"&gt;</content><author><name>Intersil</name><uri>http://engineeringtv.com/members/Intersil.aspx</uri></author><category term="Analog Semiconductors" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Semiconductors/default.aspx" /><category term="Semiconductor ICs" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Semiconductor+ICs/default.aspx" /><category term="Intersil" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Intersil/default.aspx" /></entry><entry><title>Analoger “Miss versus Miss”</title><link rel="alternate" type="text/html" href="http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/analoger-miss-versus-miss.aspx" /><link rel="enclosure" type="image/gif" length="11573" href="http://engineeringtv.com/blogs/vendor-submitted/attachment/31302.ashx" /><id>http://engineeringtv.com/blogs/vendor-submitted/archive/2009/06/23/analoger-miss-versus-miss.aspx</id><published>2009-06-23T21:00:00Z</published><updated>2009-06-23T21:00:00Z</updated><content type="html">Miss Klingon Empire debates Miss World (joined by Miss America, Miss U.S.A., Miss Outdoors, and other beauty queens) about the benefits of Intersil&amp;#39;s pinPOINT Precision Operational Amplifiers over ice cold Analogers.
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&lt;p align="center" id="video_31302"&gt;&lt;br /&gt;(2047 Views, 0 Comments)&lt;/p&gt;&lt;img src="http://engineeringtv.com/aggbug.aspx?PostID=31302" width="1" height="1"&gt;</content><author><name>Intersil</name><uri>http://engineeringtv.com/members/Intersil.aspx</uri></author><category term="Analog Semiconductors" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Analog+Semiconductors/default.aspx" /><category term="Semiconductor ICs" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Semiconductor+ICs/default.aspx" /><category term="Intersil" scheme="http://engineeringtv.com/blogs/vendor-submitted/archive/tags/Intersil/default.aspx" /></entry></feed>