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	<title>Texas Instruments &#8211; ICnets | Emergency Electronic Component Procurement | e-Shop</title>
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	<description>Massive inventory. Reliable sourcing. Get capacitors to microchips with a stable supply chain — and save up to 80% sourcing time with ICnets.</description>
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	<title>Texas Instruments &#8211; ICnets | Emergency Electronic Component Procurement | e-Shop</title>
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	<item>
		<title>TPS5420DR</title>
		<link>https://www.icnets.com/product/tps5420dr/</link>
					<comments>https://www.icnets.com/product/tps5420dr/#respond</comments>
		
		<dc:creator><![CDATA[Frank C.]]></dc:creator>
		<pubDate>Mon, 19 May 2025 01:17:48 +0000</pubDate>
				<guid isPermaLink="false">http://www.icnets.com/?post_type=product&#038;p=1165</guid>

					<description><![CDATA[<p class="" data-start="0" data-end="112">The <strong data-start="4" data-end="17">TPS5420DR</strong> is a high-efficiency, 2 A step-down (buck) DC-DC converter from Texas Instruments, designed to provide a compact and reliable power solution for a wide range of applications. It integrates a low-resistance, high-side N-channel MOSFET and operates at a fixed 500 kHz switching frequency, enabling efficient power conversion with minimal external components.</p> 🔧 Key Specifications <ul data-start="146" data-end="763"> <li class="" data-start="146" data-end="210"> <p class="" data-start="148" data-end="210"><strong data-start="148" data-end="171">Input Voltage Range</strong>: 5.5 V to 36 V</p> </li> <li class="" data-start="211" data-end="278"> <p class="" data-start="213" data-end="278"><strong data-start="213" data-end="237">Output Voltage Range</strong>: Adjustable from 1.22 V to 31 V</p> </li> <li class="" data-start="279" data-end="340"> <p class="" data-start="281" data-end="340"><strong data-start="281" data-end="299">Output Current</strong>: Up to 2 A continuous (3 A peak)</p> </li> <li class="" data-start="341" data-end="407"> <p class="" data-start="343" data-end="407"><strong data-start="343" data-end="366">Switching Frequency</strong>: 500 kHz</p> </li> <li class="" data-start="408" data-end="465"> <p class="" data-start="410" data-end="465"><strong data-start="410" data-end="424">Efficiency</strong>: Up to 95%</p> </li> <li class="" data-start="466" data-end="530"> <p class="" data-start="468" data-end="530"><strong data-start="468" data-end="489">Quiescent Current</strong>: Typically 3 mA</p> </li> [...]</ul>]]></description>
										<content:encoded><![CDATA[<p class="" data-start="0" data-end="112"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">The <strong data-start="4" data-end="17">TPS5420DR</strong> is a high-efficiency, 2 A step-down (buck) DC-DC converter from Texas Instruments, designed to provide a compact and reliable power solution for a wide range of applications.</span> <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">It integrates a low-resistance, high-side N-channel MOSFET and operates at a fixed 500 kHz switching frequency, enabling efficient power conversion with minimal external components.</span></p>
<hr class="" data-start="114" data-end="117" />
<h3 class="" data-start="119" data-end="144">🔧 Key Specifications</h3>
<ul data-start="146" data-end="763">
<li class="" data-start="146" data-end="210">
<p class="" data-start="148" data-end="210"><strong data-start="148" data-end="171">Input Voltage Range</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">5.5 V to 36 V</span></p>
</li>
<li class="" data-start="211" data-end="278">
<p class="" data-start="213" data-end="278"><strong data-start="213" data-end="237">Output Voltage Range</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Adjustable from 1.22 V to 31 V</span></p>
</li>
<li class="" data-start="279" data-end="340">
<p class="" data-start="281" data-end="340"><strong data-start="281" data-end="299">Output Current</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Up to 2 A continuous (3 A peak)</span></p>
</li>
<li class="" data-start="341" data-end="407">
<p class="" data-start="343" data-end="407"><strong data-start="343" data-end="366">Switching Frequency</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">500 kHz</span></p>
</li>
<li class="" data-start="408" data-end="465">
<p class="" data-start="410" data-end="465"><strong data-start="410" data-end="424">Efficiency</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Up to 95%</span></p>
</li>
<li class="" data-start="466" data-end="530">
<p class="" data-start="468" data-end="530"><strong data-start="468" data-end="489">Quiescent Current</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Typically 3 mA</span></p>
</li>
<li class="" data-start="531" data-end="594">
<p class="" data-start="533" data-end="594"><strong data-start="533" data-end="553">Shutdown Current</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Typically 18 µA</span></p>
</li>
<li class="" data-start="595" data-end="669">
<p class="" data-start="597" data-end="669"><strong data-start="597" data-end="628">Operating Temperature Range</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">−40°C to +125°C</span></p>
</li>
<li class="" data-start="670" data-end="763">
<p class="" data-start="672" data-end="763"><strong data-start="672" data-end="683">Package</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">8-pin SOIC (D)</span></p>
</li>
</ul>
<hr class="" data-start="765" data-end="768" />
<h3 class="" data-start="770" data-end="785">⚙️ Features</h3>
<ul data-start="787" data-end="1304">
<li class="" data-start="787" data-end="861">
<p class="" data-start="789" data-end="861"><strong data-start="789" data-end="820">Integrated High-Side MOSFET</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">110 mΩ resistance for efficient switching.</span></p>
</li>
<li class="" data-start="862" data-end="930">
<p class="" data-start="864" data-end="930"><strong data-start="864" data-end="889">Internal Compensation</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Simplifies design by minimizing external components.</span></p>
</li>
<li class="" data-start="931" data-end="998">
<p class="" data-start="933" data-end="998"><strong data-start="933" data-end="957">Voltage Feed-Forward</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Improves line regulation and transient response.</span></p>
</li>
<li class="" data-start="999" data-end="1201">
<p class="" data-start="1001" data-end="1025"><strong data-start="1001" data-end="1024">Protection Features</strong>:</p>
<ul data-start="1028" data-end="1201">
<li class="" data-start="1028" data-end="1069">
<p class="" data-start="1030" data-end="1069"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Overcurrent limiting</span></p>
</li>
<li class="" data-start="1072" data-end="1113">
<p class="" data-start="1074" data-end="1113"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Overvoltage protection</span></p>
</li>
<li class="" data-start="1116" data-end="1157">
<p class="" data-start="1118" data-end="1157"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Thermal shutdown</span></p>
</li>
<li class="" data-start="1160" data-end="1201">
<p class="" data-start="1162" data-end="1201"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Undervoltage lockout (UVLO)</span></p>
</li>
</ul>
</li>
<li class="" data-start="1202" data-end="1304">
<p class="" data-start="1204" data-end="1304"><strong data-start="1204" data-end="1224">Enable Pin (ENA)</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Allows for shutdown mode to reduce power consumption.</span></p>
</li>
</ul>
<hr class="" data-start="1306" data-end="1309" />
<h3 class="" data-start="1311" data-end="1330">📦 Applications</h3>
<ul data-start="1332" data-end="1580">
<li class="" data-start="1332" data-end="1373">
<p class="" data-start="1334" data-end="1373"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Industrial and automotive power supplies</span></p>
</li>
<li class="" data-start="1374" data-end="1415">
<p class="" data-start="1376" data-end="1415"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Distributed power systems</span></p>
</li>
<li class="" data-start="1416" data-end="1457">
<p class="" data-start="1418" data-end="1457"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Battery-powered equipment</span></p>
</li>
<li class="" data-start="1458" data-end="1499">
<p class="" data-start="1460" data-end="1499"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Consumer electronics</span></p>
</li>
<li class="" data-start="1500" data-end="1580">
<p class="" data-start="1502" data-end="1580"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Point-of-load regulators</span></p>
</li>
</ul>
<hr class="" data-start="1582" data-end="1585" />
<h3 class="" data-start="1587" data-end="1614">📚 Additional Resources</h3>
<ul data-start="1616" data-end="1771">
<li class="" data-start="1616" data-end="1675">
<p class="" data-start="1618" data-end="1675"><strong data-start="1618" data-end="1634">Product Page</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><a href="https://www.ti.com/product/TPS5420" target="_new" rel="noopener noreferrer" data-start="0" data-end="63" data-is-last-node="" data-is-only-node="">Texas Instruments TPS5420</a></span></p>
</li>
<li class="" data-start="1676" data-end="1771">
<p class="" data-start="1678" data-end="1771"><strong data-start="1678" data-end="1691">Datasheet</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><a href="https://www.ti.com/lit/gpn/TPS5420" target="_new" rel="noopener noreferrer" data-start="0" data-end="61" data-is-last-node="" data-is-only-node="">TPS5420 Datasheet (PDF)</a></span></p>
</li>
</ul>
<hr class="" data-start="1773" data-end="1776" />
<p class="" data-start="1778" data-end="1856"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">For design assistance, Texas Instruments offers the <strong data-start="52" data-end="70">TPS5420EVM-175</strong> evaluation module, which provides a platform to evaluate the performance of the TPS5420 in a real-world application.</span></p>
<p class="" data-start="1858" data-end="1968">If you need further information on compatible components, design tools, or sourcing options, feel free to ask!</p>
]]></content:encoded>
					
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			</item>
		<item>
		<title>LMP8481MM-T/NOPB</title>
		<link>https://www.icnets.com/product/lmp8481mm-t-nopb/</link>
					<comments>https://www.icnets.com/product/lmp8481mm-t-nopb/#respond</comments>
		
		<dc:creator><![CDATA[Frank C.]]></dc:creator>
		<pubDate>Sun, 18 May 2025 10:02:22 +0000</pubDate>
				<guid isPermaLink="false">http://www.icnets.com/?post_type=product&#038;p=1156</guid>

					<description><![CDATA[<p class="" data-start="0" data-end="112">The <strong data-start="4" data-end="24">LMP8481MM-T/NOPB</strong> is a precision high-side, bidirectional current sense amplifier from Texas Instruments. It is designed to monitor current through a shunt resistor in systems with high common-mode voltages, making it suitable for various applications such as motor control, power management, and battery monitoring.</p> 🔧 Key Specifications <ul data-start="146" data-end="763"> <li class="" data-start="146" data-end="216"> <p class="" data-start="148" data-end="216"><strong data-start="148" data-end="177">Common-Mode Voltage Range</strong>: 4 V to 76 V</p> </li> <li class="" data-start="217" data-end="276"> <p class="" data-start="219" data-end="276"><strong data-start="219" data-end="235">Gain Options</strong>: 20 V/V, 60 V/V, or 100 V/V (factory-set)</p> </li> <li class="" data-start="277" data-end="333"> <p class="" data-start="279" data-end="333"><strong data-start="279" data-end="292">Bandwidth</strong>: 270 kHz</p> </li> <li class="" data-start="334" data-end="401"> <p class="" data-start="336" data-end="401"><strong data-start="336" data-end="360">Input Offset Voltage</strong>: Typically 80 µV</p> </li> <li class="" data-start="402" data-end="467"> <p class="" data-start="404" data-end="467"><strong data-start="404" data-end="426">Input Offset Drift</strong>: Typically 6 µV/°C</p> </li> <li class="" data-start="468" data-end="529"> <p class="" data-start="470" data-end="529"><strong data-start="470" data-end="488">Supply Voltage</strong>: 4.5 V to 76 V</p> </li> [...]</ul>]]></description>
										<content:encoded><![CDATA[<p class="" data-start="0" data-end="112"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">The <strong data-start="4" data-end="24">LMP8481MM-T/NOPB</strong> is a precision high-side, bidirectional current sense amplifier from Texas Instruments.</span> <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">It is designed to monitor current through a shunt resistor in systems with high common-mode voltages, making it suitable for various applications such as motor control, power management, and battery monitoring.</span></p>
<hr class="" data-start="114" data-end="117" />
<h3 class="" data-start="119" data-end="144">🔧 Key Specifications</h3>
<ul data-start="146" data-end="763">
<li class="" data-start="146" data-end="216">
<p class="" data-start="148" data-end="216"><strong data-start="148" data-end="177">Common-Mode Voltage Range</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">4 V to 76 V</span></p>
</li>
<li class="" data-start="217" data-end="276">
<p class="" data-start="219" data-end="276"><strong data-start="219" data-end="235">Gain Options</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">20 V/V, 60 V/V, or 100 V/V (factory-set)</span></p>
</li>
<li class="" data-start="277" data-end="333">
<p class="" data-start="279" data-end="333"><strong data-start="279" data-end="292">Bandwidth</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">270 kHz</span></p>
</li>
<li class="" data-start="334" data-end="401">
<p class="" data-start="336" data-end="401"><strong data-start="336" data-end="360">Input Offset Voltage</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Typically 80 µV</span></p>
</li>
<li class="" data-start="402" data-end="467">
<p class="" data-start="404" data-end="467"><strong data-start="404" data-end="426">Input Offset Drift</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Typically 6 µV/°C</span></p>
</li>
<li class="" data-start="468" data-end="529">
<p class="" data-start="470" data-end="529"><strong data-start="470" data-end="488">Supply Voltage</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">4.5 V to 76 V</span></p>
</li>
<li class="" data-start="530" data-end="594">
<p class="" data-start="532" data-end="594"><strong data-start="532" data-end="553">Quiescent Current</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Typically 88 µA</span></p>
</li>
<li class="" data-start="595" data-end="669">
<p class="" data-start="597" data-end="669"><strong data-start="597" data-end="628">Operating Temperature Range</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">−40°C to +125°C</span></p>
</li>
<li class="" data-start="670" data-end="763">
<p class="" data-start="672" data-end="763"><strong data-start="672" data-end="683">Package</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">8-pin VSSOP (DGK)</span></p>
</li>
</ul>
<hr class="" data-start="765" data-end="768" />
<h3 class="" data-start="770" data-end="785">⚙️ Features</h3>
<ul data-start="787" data-end="1035">
<li class="" data-start="787" data-end="828">
<p class="" data-start="789" data-end="828"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><strong data-start="0" data-end="33" data-is-only-node="">Bidirectional Current Sensing</strong>: Capable of detecting current flow in both directions.</span></p>
</li>
<li class="" data-start="829" data-end="870">
<p class="" data-start="831" data-end="870"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><strong data-start="0" data-end="38" data-is-only-node="">High Common-Mode Voltage Tolerance</strong>: Suitable for high-side current sensing in systems with voltages up to 76 V.</span></p>
</li>
<li class="" data-start="871" data-end="912">
<p class="" data-start="873" data-end="912"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><strong data-start="0" data-end="24" data-is-only-node="">Low Offset and Drift</strong>: Ensures accurate current measurements over temperature variations.</span></p>
</li>
<li class="" data-start="913" data-end="954">
<p class="" data-start="915" data-end="954"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><strong data-start="0" data-end="18" data-is-only-node="">Wide Bandwidth</strong>: Supports fast transient response in dynamic systems.</span></p>
</li>
<li class="" data-start="955" data-end="1035">
<p class="" data-start="957" data-end="1035"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><strong data-start="0" data-end="25" data-is-only-node="">Low Quiescent Current</strong>: Minimizes power consumption in energy-sensitive applications.</span></p>
</li>
</ul>
<hr class="" data-start="1037" data-end="1040" />
<h3 class="" data-start="1042" data-end="1061">📦 Applications</h3>
<ul data-start="1063" data-end="1311">
<li class="" data-start="1063" data-end="1104">
<p class="" data-start="1065" data-end="1104"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><strong data-start="0" data-end="17" data-is-only-node="">Motor Control</strong>: Monitoring current in motor drivers and actuators.</span></p>
</li>
<li class="" data-start="1105" data-end="1146">
<p class="" data-start="1107" data-end="1146"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><strong data-start="0" data-end="20" data-is-only-node="">Power Management</strong>: Supervising current in power supplies and converters.</span></p>
</li>
<li class="" data-start="1147" data-end="1188">
<p class="" data-start="1149" data-end="1188"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><strong data-start="0" data-end="22" data-is-only-node="">Battery Monitoring</strong>: Tracking charge and discharge currents in battery-powered systems.</span></p>
</li>
<li class="" data-start="1189" data-end="1230">
<p class="" data-start="1191" data-end="1230"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><strong data-start="0" data-end="25" data-is-only-node="">Industrial Automation</strong>: Current sensing in various industrial control systems.</span></p>
</li>
<li class="" data-start="1231" data-end="1311">
<p class="" data-start="1233" data-end="1311"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><strong data-start="0" data-end="22" data-is-only-node="">Telecommunications</strong>: Managing power in telecom equipment.</span></p>
</li>
</ul>
<hr class="" data-start="1313" data-end="1316" />
<h3 class="" data-start="1318" data-end="1334">📚 Resources</h3>
<ul data-start="1336" data-end="1491">
<li class="" data-start="1336" data-end="1395">
<p class="" data-start="1338" data-end="1395"><strong data-start="1338" data-end="1354">Product Page</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><a href="https://www.ti.com/product/LMP8481" target="_new" rel="noopener noreferrer" data-start="0" data-end="63" data-is-last-node="" data-is-only-node="">Texas Instruments LMP8481</a></span></p>
</li>
<li class="" data-start="1396" data-end="1491">
<p class="" data-start="1398" data-end="1491"><strong data-start="1398" data-end="1411">Datasheet</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out"><a href="https://www.ti.com/lit/ds/symlink/lmp8481.pdf" target="_new" rel="noopener noreferrer" data-start="0" data-end="72" data-is-last-node="" data-is-only-node="">LMP8481 Datasheet (PDF)</a></span></p>
</li>
</ul>
<hr class="" data-start="1493" data-end="1496" />
<p class="" data-start="1498" data-end="1619">If you need further assistance with design considerations, evaluation modules, or sourcing information, feel free to ask!</p>
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		<title>DLPC3430CZVBR</title>
		<link>https://www.icnets.com/product/dlpc3430czvbr/</link>
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		<dc:creator><![CDATA[Frank C.]]></dc:creator>
		<pubDate>Fri, 16 May 2025 07:45:53 +0000</pubDate>
				<guid isPermaLink="false">https://www.icnets.com/?post_type=product&#038;p=1140</guid>

					<description><![CDATA[<p class="" data-start="0" data-end="112">The <strong data-start="4" data-end="21">DLPC3430CZVBR</strong> is a digital display controller from Texas Instruments, designed to interface with the <strong data-start="109" data-end="120">DLP2010</strong> (.2&#8243; WVGA) Digital Micromirror Device (DMD). It is a key component in the DLP® Pico™ chipset, enabling compact and low-power projection solutions.</p> Key Specifications <ul data-start="143" data-end="761"> <li class="" data-start="143" data-end="201"> <p class="" data-start="145" data-end="201"><strong data-start="145" data-end="162">Supported DMD</strong>: DLP2010 (0.2&#8243; WVGA)</p> </li> <li class="" data-start="202" data-end="265"> <p class="" data-start="204" data-end="265"><strong data-start="204" data-end="224">Input Resolution</strong>: Up to 720p, scaled to WVGA output</p> </li> <li class="" data-start="266" data-end="323"> <p class="" data-start="268" data-end="323"><strong data-start="268" data-end="282">Frame Rate</strong>: Up to 240 Hz</p> </li> <li class="" data-start="324" data-end="479"> <p class="" data-start="326" data-end="347"><strong data-start="326" data-end="346">Input Interfaces</strong>:</p> <ul data-start="350" data-end="479"> <li class="" data-start="350" data-end="391"> <p class="" data-start="352" data-end="391">24-bit parallel RGB</p> </li> <li class="" data-start="394" data-end="435"> <p class="" data-start="396" data-end="435">BT.656</p> </li> <li class="" data-start="438" data-end="479"> <p class="" data-start="440" data-end="479">MIPI® DSI Type 3 (1–4 lanes, up to 470 Mbps per lane)</p> </li> </ul> [...]</li></ul>]]></description>
										<content:encoded><![CDATA[<p class="" data-start="0" data-end="112"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">The <strong data-start="4" data-end="21">DLPC3430CZVBR</strong> is a digital display controller from Texas Instruments, designed to interface with the <strong data-start="109" data-end="120">DLP2010</strong> (.2&#8243; WVGA) Digital Micromirror Device (DMD).</span> <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">It is a key component in the DLP® Pico™ chipset, enabling compact and low-power projection solutions.</span></p>
<hr class="" data-start="114" data-end="117" />
<h3 class="" data-start="119" data-end="141">Key Specifications</h3>
<ul data-start="143" data-end="761">
<li class="" data-start="143" data-end="201">
<p class="" data-start="145" data-end="201"><strong data-start="145" data-end="162">Supported DMD</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">DLP2010 (0.2&#8243; WVGA)</span></p>
</li>
<li class="" data-start="202" data-end="265">
<p class="" data-start="204" data-end="265"><strong data-start="204" data-end="224">Input Resolution</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Up to 720p, scaled to WVGA output</span></p>
</li>
<li class="" data-start="266" data-end="323">
<p class="" data-start="268" data-end="323"><strong data-start="268" data-end="282">Frame Rate</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Up to 240 Hz</span></p>
</li>
<li class="" data-start="324" data-end="479">
<p class="" data-start="326" data-end="347"><strong data-start="326" data-end="346">Input Interfaces</strong>:</p>
<ul data-start="350" data-end="479">
<li class="" data-start="350" data-end="391">
<p class="" data-start="352" data-end="391"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">24-bit parallel RGB</span></p>
</li>
<li class="" data-start="394" data-end="435">
<p class="" data-start="396" data-end="435"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">BT.656</span></p>
</li>
<li class="" data-start="438" data-end="479">
<p class="" data-start="440" data-end="479"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">MIPI® DSI Type 3 (1–4 lanes, up to 470 Mbps per lane)</span></p>
</li>
</ul>
</li>
<li class="" data-start="480" data-end="538">
<p class="" data-start="482" data-end="538"><strong data-start="482" data-end="497">Pixel Clock</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Up to 155 MHz</span></p>
</li>
<li class="" data-start="539" data-end="593">
<p class="" data-start="541" data-end="593"><strong data-start="541" data-end="552">Package</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">176-ball NFBGA (7 mm × 7 mm)</span></p>
</li>
<li class="" data-start="594" data-end="662">
<p class="" data-start="596" data-end="662"><strong data-start="596" data-end="621">Operating Temperature</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">-30°C to +85°C</span></p>
</li>
<li class="" data-start="663" data-end="761">
<p class="" data-start="665" data-end="761"><strong data-start="665" data-end="681">Power Supply</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">1.1 V</span></p>
</li>
</ul>
<hr class="" data-start="763" data-end="766" />
<h3 class="" data-start="768" data-end="780">Features</h3>
<ul data-start="782" data-end="1422">
<li class="" data-start="782" data-end="1025">
<p class="" data-start="784" data-end="805"><strong data-start="784" data-end="804">Image Processing</strong>:</p>
<ul data-start="808" data-end="1025">
<li class="" data-start="808" data-end="849">
<p class="" data-start="810" data-end="849"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">IntelliBright™ suite for enhanced brightness and contrast</span></p>
</li>
<li class="" data-start="852" data-end="893">
<p class="" data-start="854" data-end="893"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Content Adaptive Illumination Control (CAIC)</span></p>
</li>
<li class="" data-start="896" data-end="937">
<p class="" data-start="898" data-end="937"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Local Area Brightness Boost (LABB)</span></p>
</li>
<li class="" data-start="940" data-end="981">
<p class="" data-start="942" data-end="981"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">1D keystone correction</span></p>
</li>
<li class="" data-start="984" data-end="1025">
<p class="" data-start="986" data-end="1025"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Color space conversion and programmable degamma</span></p>
</li>
</ul>
</li>
<li class="" data-start="1026" data-end="1271">
<p class="" data-start="1028" data-end="1051"><strong data-start="1028" data-end="1050">System Integration</strong>:</p>
<ul data-start="1054" data-end="1271">
<li class="" data-start="1054" data-end="1095">
<p class="" data-start="1056" data-end="1095"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Embedded frame memory (eDRAM)</span></p>
</li>
<li class="" data-start="1098" data-end="1139">
<p class="" data-start="1100" data-end="1139"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">I²C control interface</span></p>
</li>
<li class="" data-start="1142" data-end="1183">
<p class="" data-start="1144" data-end="1183"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Programmable splash screens</span></p>
</li>
<li class="" data-start="1186" data-end="1227">
<p class="" data-start="1188" data-end="1227"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Programmable LED current control</span></p>
</li>
<li class="" data-start="1230" data-end="1271">
<p class="" data-start="1232" data-end="1271"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Auto DMD parking at power down</span></p>
</li>
</ul>
</li>
<li class="" data-start="1272" data-end="1422">
<p class="" data-start="1274" data-end="1295"><strong data-start="1274" data-end="1294">Power Management</strong>:</p>
<ul data-start="1298" data-end="1422">
<li class="" data-start="1298" data-end="1339">
<p class="" data-start="1300" data-end="1339"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Active power management processing</span></p>
</li>
<li class="" data-start="1342" data-end="1422">
<p class="" data-start="1344" data-end="1422"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Compatible with DLPA2000, DLPA2005, or DLPA3000 PMICs and LED drivers</span></p>
</li>
</ul>
</li>
</ul>
<hr class="" data-start="1424" data-end="1427" />
<h3 class="" data-start="1429" data-end="1445">Applications</h3>
<ul data-start="1447" data-end="1695">
<li class="" data-start="1447" data-end="1488">
<p class="" data-start="1449" data-end="1488"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Mobile projectors</span></p>
</li>
<li class="" data-start="1489" data-end="1530">
<p class="" data-start="1491" data-end="1530"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Smart displays</span></p>
</li>
<li class="" data-start="1531" data-end="1572">
<p class="" data-start="1533" data-end="1572"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Augmented reality glasses</span></p>
</li>
<li class="" data-start="1573" data-end="1614">
<p class="" data-start="1575" data-end="1614"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Smart home displays</span></p>
</li>
<li class="" data-start="1615" data-end="1695">
<p class="" data-start="1617" data-end="1695"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Pico projectors</span></p>
</li>
</ul>
<hr class="" data-start="1697" data-end="1700" />
<p class="" data-start="1702" data-end="1780"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">For detailed technical information, refer to the </span></p>
<p class="" data-start="1782" data-end="1871">If you need assistance with compatible components or evaluation boards, feel free to ask!</p>
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