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	<title>Microchip &#8211; ICnets | Emergency Electronic Component Procurement | e-Shop</title>
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	<title>Microchip &#8211; ICnets | Emergency Electronic Component Procurement | e-Shop</title>
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		<title>ATMEGA128A-AU</title>
		<link>https://www.icnets.com/product/atmega128a-au/</link>
					<comments>https://www.icnets.com/product/atmega128a-au/#respond</comments>
		
		<dc:creator><![CDATA[Frank C.]]></dc:creator>
		<pubDate>Mon, 19 May 2025 04:47:18 +0000</pubDate>
				<guid isPermaLink="false">http://www.icnets.com/?post_type=product&#038;p=1174</guid>

					<description><![CDATA[<p class="" data-start="0" data-end="112">The <strong data-start="4" data-end="21">ATmega128A-AU</strong> is a high-performance, low-power 8-bit microcontroller from Microchip Technology, based on the AVR® enhanced RISC architecture. It offers a rich set of features suitable for a wide range of embedded applications, including industrial automation, consumer electronics, and IoT devices.</p> 🔧 Key Specifications <ul data-start="146" data-end="982"> <li class="" data-start="146" data-end="195"> <p class="" data-start="148" data-end="195"><strong data-start="148" data-end="156">Core</strong>: AVR® 8-bit RISC</p> </li> <li class="" data-start="196" data-end="262"> <p class="" data-start="198" data-end="262"><strong data-start="198" data-end="221">Operating Frequency</strong>: Up to 16 MHz</p> </li> <li class="" data-start="263" data-end="322"> <p class="" data-start="265" data-end="322"><strong data-start="265" data-end="281">Flash Memory</strong>: 128 KB In-System Programmable Flash with Read-While-Write capabilities</p> </li> <li class="" data-start="323" data-end="341"> <p class="" data-start="325" data-end="341"><strong data-start="325" data-end="335">EEPROM</strong>: 4 KB</p> </li> <li class="" data-start="342" data-end="358"> <p class="" data-start="344" data-end="358"><strong data-start="344" data-end="352">SRAM</strong>: 4 KB</p> </li> <li class="" data-start="359" data-end="414"> <p class="" data-start="361" data-end="414"><strong data-start="361" data-end="373">I/O Pins</strong>: 53 programmable I/O lines</p> </li> <li class="" data-start="415" data-end="525"> <p class="" data-start="417" data-end="437"><strong data-start="417" data-end="436">Timers/Counters</strong>:</p> <ul data-start="440" data-end="525"> <li class="" [...]</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">ATmega128A-AU</strong> is a high-performance, low-power 8-bit microcontroller from Microchip Technology, based on the AVR® enhanced RISC architecture.</span> <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">It offers a rich set of features suitable for a wide range of embedded applications, including industrial automation, consumer electronics, and IoT devices.</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="982">
<li class="" data-start="146" data-end="195">
<p class="" data-start="148" data-end="195"><strong data-start="148" data-end="156">Core</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">AVR® 8-bit RISC</span></p>
</li>
<li class="" data-start="196" data-end="262">
<p class="" data-start="198" data-end="262"><strong data-start="198" data-end="221">Operating Frequency</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Up to 16 MHz</span></p>
</li>
<li class="" data-start="263" data-end="322">
<p class="" data-start="265" data-end="322"><strong data-start="265" data-end="281">Flash Memory</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">128 KB In-System Programmable Flash with Read-While-Write capabilities</span></p>
</li>
<li class="" data-start="323" data-end="341">
<p class="" data-start="325" data-end="341"><strong data-start="325" data-end="335">EEPROM</strong>: 4 KB</p>
</li>
<li class="" data-start="342" data-end="358">
<p class="" data-start="344" data-end="358"><strong data-start="344" data-end="352">SRAM</strong>: 4 KB</p>
</li>
<li class="" data-start="359" data-end="414">
<p class="" data-start="361" data-end="414"><strong data-start="361" data-end="373">I/O Pins</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">53 programmable I/O lines</span></p>
</li>
<li class="" data-start="415" data-end="525">
<p class="" data-start="417" data-end="437"><strong data-start="417" data-end="436">Timers/Counters</strong>:</p>
<ul data-start="440" data-end="525">
<li class="" data-start="440" data-end="481">
<p class="" data-start="442" data-end="481"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Two 8-bit timers</span></p>
</li>
<li class="" data-start="484" data-end="525">
<p class="" data-start="486" data-end="525"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Two 16-bit timers</span></p>
</li>
</ul>
</li>
<li class="" data-start="526" data-end="576">
<p class="" data-start="528" data-end="576"><strong data-start="528" data-end="535">ADC</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">8-channel, 10-bit ADC</span></p>
</li>
<li class="" data-start="577" data-end="748">
<p class="" data-start="579" data-end="608"><strong data-start="579" data-end="607">Communication Interfaces</strong>:</p>
<ul data-start="611" data-end="748">
<li class="" data-start="611" data-end="652">
<p class="" data-start="613" data-end="652"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">2 USARTs</span></p>
</li>
<li class="" data-start="655" data-end="660">
<p class="" data-start="657" data-end="660">SPI</p>
</li>
<li class="" data-start="663" data-end="704">
<p class="" data-start="665" data-end="704"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">I²C (Two-wire Serial Interface)</span></p>
</li>
<li class="" data-start="707" data-end="748">
<p class="" data-start="709" data-end="748"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">JTAG interface for on-chip debugging and programming</span></p>
</li>
</ul>
</li>
<li class="" data-start="749" data-end="813">
<p class="" data-start="751" data-end="813"><strong data-start="751" data-end="772">Operating Voltage</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">2.7 V to 5.5 V</span></p>
</li>
<li class="" data-start="814" data-end="888">
<p class="" data-start="816" data-end="888"><strong data-start="816" data-end="847">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 +85°C</span></p>
</li>
<li class="" data-start="889" data-end="982">
<p class="" data-start="891" data-end="982"><strong data-start="891" data-end="902">Package</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">64-pin TQFP (Thin Quad Flat Package)</span></p>
</li>
</ul>
<hr class="" data-start="984" data-end="987" />
<h3 class="" data-start="989" data-end="1004">⚙️ Features</h3>
<ul data-start="1006" data-end="1392">
<li class="" data-start="1006" data-end="1068">
<p class="" data-start="1008" data-end="1068"><strong data-start="1008" data-end="1027">High Throughput</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Achieves up to 16 MIPS at 16 MHz, enabling efficient execution of complex tasks.</span></p>
</li>
<li class="" data-start="1069" data-end="1137">
<p class="" data-start="1071" data-end="1137"><strong data-start="1071" data-end="1096">Low Power Consumption</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Multiple power-saving modes, including Idle and Power-down, to optimize energy usage.</span></p>
</li>
<li class="" data-start="1138" data-end="1208">
<p class="" data-start="1140" data-end="1208"><strong data-start="1140" data-end="1167">Enhanced Peripheral Set</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Includes PWM channels, analog comparators, and a programmable Watchdog Timer.</span></p>
</li>
<li class="" data-start="1209" data-end="1277">
<p class="" data-start="1211" data-end="1277"><strong data-start="1211" data-end="1236">In-System Programming</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Supports self-programming via bootloader, facilitating firmware updates without external programmers.</span></p>
</li>
<li class="" data-start="1278" data-end="1392">
<p class="" data-start="1280" data-end="1392"><strong data-start="1280" data-end="1312">Robust Development Ecosystem</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Compatible with Microchip&#8217;s development tools, including MPLAB® X IDE and Atmel Studio.</span><span class="ms-1 inline-flex max-w-full items-center relative top-[-0.094rem] animate-[show_150ms_ease-in]"><a class="flex h-4.5 overflow-hidden rounded-xl px-2 text-[0.5625em] font-medium text-token-text-secondary! bg-[#F4F4F4]! dark:bg-[#303030]! transition-colors duration-150 ease-in-out" href="https://ww1.microchip.com/downloads/en/DeviceDoc/Atmel-8151-8-bit-AVR-ATmega128A_Datasheet.pdf?utm_source=chatgpt.com" target="_blank" rel="noopener"><span class="relative start-0 bottom-0 flex h-full w-full items-center"><span class="flex h-4 w-full items-center justify-between overflow-hidden"><span class="max-w-full grow truncate overflow-hidden text-center">Microchip</span></span></span></a></span></p>
</li>
</ul>
<hr class="" data-start="1394" data-end="1397" />
<h3 class="" data-start="1399" data-end="1418">📦 Applications</h3>
<ul data-start="1420" data-end="1668">
<li class="" data-start="1420" data-end="1461">
<p class="" data-start="1422" data-end="1461"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Industrial automation and control systems</span></p>
</li>
<li class="" data-start="1462" data-end="1503">
<p class="" data-start="1464" data-end="1503"><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="1504" data-end="1545">
<p class="" data-start="1506" data-end="1545"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">IoT devices and sensor networks</span></p>
</li>
<li class="" data-start="1546" data-end="1587">
<p class="" data-start="1548" data-end="1587"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Automotive applications</span></p>
</li>
<li class="" data-start="1588" data-end="1668">
<p class="" data-start="1590" data-end="1668"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Educational and prototyping platforms</span></p>
</li>
</ul>
<hr class="" data-start="1670" data-end="1673" />
<h3 class="" data-start="1675" data-end="1702">📚 Additional Resources</h3>
<ul data-start="1704" data-end="1859">
<li class="" data-start="1704" data-end="1763">
<p class="" data-start="1706" data-end="1763"><strong data-start="1706" data-end="1722">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.microchip.com/en-us/product/atmega128a" target="_new" rel="noopener noreferrer" data-start="0" data-end="87" data-is-last-node="" data-is-only-node="">ATmega128A – Microchip Technology</a></span></p>
</li>
<li class="" data-start="1764" data-end="1859">
<p class="" data-start="1766" data-end="1859"><strong data-start="1766" data-end="1779">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://ww1.microchip.com/downloads/en/DeviceDoc/Atmel-8151-8-bit-AVR-ATmega128A_Datasheet.pdf" target="_new" rel="noopener noreferrer" data-start="0" data-end="124" data-is-last-node="" data-is-only-node="">ATmega128A Datasheet (PDF)</a></span></p>
</li>
</ul>
<p class="" data-start="1861" data-end="1999">If you need further assistance with development tools, evaluation boards, or sourcing information for the ATmega128A-AU, feel free to ask!</p>
]]></content:encoded>
					
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			</item>
		<item>
		<title>MCP1631-E/SS</title>
		<link>https://www.icnets.com/product/mcp1631-e-ss/</link>
					<comments>https://www.icnets.com/product/mcp1631-e-ss/#respond</comments>
		
		<dc:creator><![CDATA[Frank C.]]></dc:creator>
		<pubDate>Sun, 18 May 2025 09:50:27 +0000</pubDate>
				<guid isPermaLink="false">http://www.icnets.com/?post_type=product&#038;p=1154</guid>

					<description><![CDATA[<p class="" data-start="0" data-end="112">The <strong data-start="4" data-end="20">MCP1631-E/SS</strong> is a high-speed analog Pulse Width Modulator (PWM) controller from Microchip Technology, designed for intelligent power system applications. It operates in peak current mode and is suitable for various DC-DC converter topologies, including Boost, SEPIC, Flyback, and Cuk converters.</p> Key Features <ul data-start="137" data-end="812"> <li class="" data-start="137" data-end="196"> <p class="" data-start="139" data-end="196"><strong data-start="139" data-end="157">PWM Controller</strong>: High-speed analog PWM controller with peak current mode control.</p> </li> <li class="" data-start="197" data-end="263"> <p class="" data-start="199" data-end="263"><strong data-start="199" data-end="222">Switching Frequency</strong>: Operates up to 2 MHz, allowing for compact power supply designs.</p> </li> <li class="" data-start="264" data-end="324"> <p class="" data-start="266" data-end="324"><strong data-start="266" data-end="283">Voltage Range</strong>: Input voltage range from 3 V to 5.5 V.</p> </li> <li class="" data-start="325" data-end="386"> <p class="" data-start="327" data-end="386"><strong data-start="327" data-end="345">Output Current</strong>: Capable of delivering up to 250 mA.</p> </li> <li class="" data-start="387" data-end="590"> <p class="" data-start="389" data-end="414"><strong data-start="389" data-end="413">Integrated Functions</strong>:</p> <ul data-start="417" data-end="590"> <li class="" data-start="417" data-end="458"> <p class="" [...]</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="20">MCP1631-E/SS</strong> is a high-speed analog Pulse Width Modulator (PWM) controller from Microchip Technology, designed for intelligent power system applications.</span> <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">It operates in peak current mode and is suitable for various DC-DC converter topologies, including Boost, SEPIC, Flyback, and Cuk converters.</span></p>
<hr class="" data-start="114" data-end="117" />
<h3 class="" data-start="119" data-end="135">Key Features</h3>
<ul data-start="137" data-end="812">
<li class="" data-start="137" data-end="196">
<p class="" data-start="139" data-end="196"><strong data-start="139" data-end="157">PWM Controller</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">High-speed analog PWM controller with peak current mode control.</span></p>
</li>
<li class="" data-start="197" data-end="263">
<p class="" data-start="199" data-end="263"><strong data-start="199" data-end="222">Switching Frequency</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Operates up to 2 MHz, allowing for compact power supply designs.</span></p>
</li>
<li class="" data-start="264" data-end="324">
<p class="" data-start="266" data-end="324"><strong data-start="266" data-end="283">Voltage Range</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Input voltage range from 3 V to 5.5 V.</span></p>
</li>
<li class="" data-start="325" data-end="386">
<p class="" data-start="327" data-end="386"><strong data-start="327" data-end="345">Output Current</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Capable of delivering up to 250 mA.</span></p>
</li>
<li class="" data-start="387" data-end="590">
<p class="" data-start="389" data-end="414"><strong data-start="389" data-end="413">Integrated Functions</strong>:</p>
<ul data-start="417" data-end="590">
<li class="" data-start="417" data-end="458">
<p class="" data-start="419" data-end="458"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Error amplifier for voltage regulation.</span></p>
</li>
<li class="" data-start="461" data-end="502">
<p class="" data-start="463" data-end="502"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Current sense amplifier for current regulation.</span></p>
</li>
<li class="" data-start="505" data-end="546">
<p class="" data-start="507" data-end="546"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Overvoltage comparator for protection.</span></p>
</li>
<li class="" data-start="549" data-end="590">
<p class="" data-start="551" data-end="590"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">High-current low-side MOSFET driver (1 A peak).</span></p>
</li>
</ul>
</li>
<li class="" data-start="591" data-end="651">
<p class="" data-start="593" data-end="651"><strong data-start="593" data-end="610">Shutdown Mode</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Reduces quiescent current to 2.4 µA (typical).</span></p>
</li>
<li class="" data-start="652" data-end="718">
<p class="" data-start="654" data-end="718"><strong data-start="654" data-end="677">Protection Features</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Includes undervoltage lockout (UVLO) and overtemperature protection.</span></p>
</li>
<li class="" data-start="719" data-end="812">
<p class="" data-start="721" data-end="812"><strong data-start="721" data-end="732">Package</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">20-lead SSOP, suitable for surface-mount applications.</span></p>
</li>
</ul>
<hr class="" data-start="814" data-end="817" />
<h3 class="" data-start="819" data-end="835">Applications</h3>
<ul data-start="837" data-end="1043">
<li class="" data-start="837" data-end="878">
<p class="" data-start="839" data-end="878"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Programmable switching battery chargers supporting multiple chemistries (Li-Ion, NiMH, NiCd, Pb-Acid).</span></p>
</li>
<li class="" data-start="879" data-end="920">
<p class="" data-start="881" data-end="920"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">LED lighting applications.</span></p>
</li>
<li class="" data-start="921" data-end="962">
<p class="" data-start="923" data-end="962"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Constant current SEPIC power supply designs.</span></p>
</li>
<li class="" data-start="963" data-end="1043">
<p class="" data-start="965" data-end="1043"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">USB input programmable switching battery chargers.</span></p>
</li>
</ul>
<hr class="" data-start="1045" data-end="1048" />
<h3 class="" data-start="1050" data-end="1074">Additional Resources</h3>
<ul data-start="1076" data-end="1231">
<li class="" data-start="1076" data-end="1135">
<p class="" data-start="1078" data-end="1135"><strong data-start="1078" data-end="1094">Product Page</strong>:</p>
</li>
<li class="" data-start="1136" data-end="1231">
<p class="" data-start="1138" data-end="1231"><strong data-start="1138" data-end="1151">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://ww1.microchip.com/downloads/en/DeviceDoc/22063b.pdf" target="_new" rel="noopener noreferrer" data-start="0" data-end="95" data-is-last-node="" data-is-only-node="">MCP1631/HV/V/VHV Datasheet (PDF)</a></span></p>
</li>
</ul>
<p class="" data-start="1233" data-end="1322">If you need assistance with compatible components or evaluation boards, feel free to ask!</p>
]]></content:encoded>
					
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		<title>PIC16F19156T-I/SO</title>
		<link>https://www.icnets.com/product/pic16f19156t-i-so/</link>
					<comments>https://www.icnets.com/product/pic16f19156t-i-so/#respond</comments>
		
		<dc:creator><![CDATA[Frank C.]]></dc:creator>
		<pubDate>Fri, 16 May 2025 07:04:09 +0000</pubDate>
				<guid isPermaLink="false">https://www.icnets.com/?post_type=product&#038;p=1133</guid>

					<description><![CDATA[<p class="" data-start="0" data-end="74">The <strong data-start="4" data-end="25">PIC16F19156T-I/SO</strong> is an 8-bit microcontroller from Microchip Technology, part of the PIC® XLP™ family, designed for ultra-low-power applications with integrated LCD control and analog features.</p> Key Specifications <ul data-start="105" data-end="588"> <li class="" data-start="105" data-end="154"> <p class="" data-start="107" data-end="154"><strong data-start="107" data-end="115">Core</strong>: PIC® 8-bit RISC, operating up to 32 MHz</p> </li> <li class="" data-start="155" data-end="214"> <p class="" data-start="157" data-end="214"><strong data-start="157" data-end="175">Program Memory</strong>: 28 KB Flash (16K x 14)</p> </li> <li class="" data-start="215" data-end="230"> <p class="" data-start="217" data-end="230"><strong data-start="217" data-end="224">RAM</strong>: 2 KB</p> </li> <li class="" data-start="231" data-end="284"> <p class="" data-start="233" data-end="284"><strong data-start="233" data-end="243">EEPROM</strong>: 256 bytes</p> </li> <li class="" data-start="285" data-end="339"> <p class="" data-start="287" data-end="339"><strong data-start="287" data-end="298">Package</strong>: 28-pin SOIC (0.295&#8243;, 7.50 mm width)</p> </li> <li class="" data-start="340" data-end="404"> <p class="" data-start="342" data-end="404"><strong data-start="342" data-end="363">Operating Voltage</strong>: 2.3 V to 5.5 V</p> </li> <li class="" data-start="405" data-end="473"> <p class="" data-start="407" data-end="473"><strong data-start="407" data-end="432">Operating Temperature</strong>: -40°C to +85°C</p> </li> <li class="" data-start="474" data-end="492"> <p class="" data-start="476" [...]</li></ul>]]></description>
										<content:encoded><![CDATA[<p class="" data-start="0" data-end="74"><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="25">PIC16F19156T-I/SO</strong> is an 8-bit microcontroller from Microchip Technology, part of the PIC® XLP™ family, designed for ultra-low-power applications with integrated LCD control and analog features.</span></p>
<hr class="" data-start="76" data-end="79" />
<h3 class="" data-start="81" data-end="103">Key Specifications</h3>
<ul data-start="105" data-end="588">
<li class="" data-start="105" data-end="154">
<p class="" data-start="107" data-end="154"><strong data-start="107" data-end="115">Core</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">PIC® 8-bit RISC, operating up to 32 MHz</span></p>
</li>
<li class="" data-start="155" data-end="214">
<p class="" data-start="157" data-end="214"><strong data-start="157" data-end="175">Program Memory</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">28 KB Flash (16K x 14)</span></p>
</li>
<li class="" data-start="215" data-end="230">
<p class="" data-start="217" data-end="230"><strong data-start="217" data-end="224">RAM</strong>: 2 KB</p>
</li>
<li class="" data-start="231" data-end="284">
<p class="" data-start="233" data-end="284"><strong data-start="233" data-end="243">EEPROM</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">256 bytes</span></p>
</li>
<li class="" data-start="285" data-end="339">
<p class="" data-start="287" data-end="339"><strong data-start="287" data-end="298">Package</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">28-pin SOIC (0.295&#8243;, 7.50 mm width)</span></p>
</li>
<li class="" data-start="340" data-end="404">
<p class="" data-start="342" data-end="404"><strong data-start="342" data-end="363">Operating Voltage</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">2.3 V to 5.5 V</span></p>
</li>
<li class="" data-start="405" data-end="473">
<p class="" data-start="407" data-end="473"><strong data-start="407" data-end="432">Operating Temperature</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 +85°C</span></p>
</li>
<li class="" data-start="474" data-end="492">
<p class="" data-start="476" data-end="492"><strong data-start="476" data-end="488">I/O Pins</strong>: 24</p>
</li>
<li class="" data-start="493" data-end="588">
<p class="" data-start="495" data-end="588"><strong data-start="495" data-end="508">Packaging</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Tape &amp; Reel (T suffix)</span></p>
</li>
</ul>
<hr class="" data-start="590" data-end="593" />
<h3 class="" data-start="595" data-end="607">Features</h3>
<ul data-start="609" data-end="1299">
<li class="" data-start="609" data-end="666">
<p class="" data-start="611" data-end="666"><strong data-start="611" data-end="625">LCD Driver</strong>: <span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Integrated driver supporting up to 192 segments</span></p>
</li>
<li class="" data-start="667" data-end="780">
<p class="" data-start="669" data-end="692"><strong data-start="669" data-end="691">Analog Peripherals</strong>:</p>
<ul data-start="695" data-end="780">
<li class="" data-start="695" data-end="736">
<p class="" data-start="697" data-end="736"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">20-channel 12-bit ADC</span></p>
</li>
<li class="" data-start="739" data-end="780">
<p class="" data-start="741" data-end="780"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">5-bit DAC</span></p>
</li>
</ul>
</li>
<li class="" data-start="781" data-end="916">
<p class="" data-start="783" data-end="812"><strong data-start="783" data-end="811">Communication Interfaces</strong>:</p>
<ul data-start="815" data-end="916">
<li class="" data-start="815" data-end="820">
<p class="" data-start="817" data-end="820">I²C</p>
</li>
<li class="" data-start="823" data-end="828">
<p class="" data-start="825" data-end="828">SPI</p>
</li>
<li class="" data-start="831" data-end="872">
<p class="" data-start="833" data-end="872"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">UART/USART</span></p>
</li>
<li class="" data-start="875" data-end="916">
<p class="" data-start="877" data-end="916"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">LIN bus</span></p>
</li>
</ul>
</li>
<li class="" data-start="917" data-end="1018">
<p class="" data-start="919" data-end="930"><strong data-start="919" data-end="929">Timers</strong>:</p>
<ul data-start="933" data-end="1018">
<li class="" data-start="933" data-end="974">
<p class="" data-start="935" data-end="974"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Multiple 8-bit and 16-bit timers</span></p>
</li>
<li class="" data-start="977" data-end="1018">
<p class="" data-start="979" data-end="1018"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">PWM modules</span></p>
</li>
</ul>
</li>
<li class="" data-start="1019" data-end="1299">
<p class="" data-start="1021" data-end="1040"><strong data-start="1021" data-end="1039">Other Features</strong>:</p>
<ul data-start="1043" data-end="1299">
<li class="" data-start="1043" data-end="1084">
<p class="" data-start="1045" data-end="1084"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Brown-out Reset (BOR)</span></p>
</li>
<li class="" data-start="1087" data-end="1128">
<p class="" data-start="1089" data-end="1128"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Power-on Reset (POR)</span></p>
</li>
<li class="" data-start="1131" data-end="1172">
<p class="" data-start="1133" data-end="1172"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Watchdog Timer (WDT)</span></p>
</li>
<li class="" data-start="1175" data-end="1216">
<p class="" data-start="1177" data-end="1216"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">Core Independent Peripherals (CIPs)</span></p>
</li>
<li class="" data-start="1219" data-end="1299">
<p class="" data-start="1221" data-end="1299"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">eXtreme Low Power (XLP) technology</span></p>
</li>
</ul>
</li>
</ul>
<hr class="" data-start="1301" data-end="1304" />
<p class="" data-start="1306" data-end="1384"><span class="relative -mx-px my-[-0.2rem] rounded px-px py-[0.2rem] transition-colors duration-100 ease-in-out">This microcontroller is well-suited for applications requiring low power consumption and integrated LCD control, such as battery-powered devices, industrial control panels, and consumer electronics.</span></p>
<p class="" data-start="1386" data-end="1581">For detailed technical information, refer to the <a class="cursor-pointer" target="_new" rel="noopener" data-start="1435" data-end="1580">PIC16(L)F19155/56/75/76/85/86 Data Sheet</a>.</p>
]]></content:encoded>
					
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		<title>ATSAMC21J18A-ANT</title>
		<link>https://www.icnets.com/product/atsamc21j18a-ant/</link>
					<comments>https://www.icnets.com/product/atsamc21j18a-ant/#respond</comments>
		
		<dc:creator><![CDATA[Frank C.]]></dc:creator>
		<pubDate>Fri, 16 May 2025 06:47:46 +0000</pubDate>
				<guid isPermaLink="false">https://www.icnets.com/?post_type=product&#038;p=1128</guid>

					<description><![CDATA[<p class="" data-start="135" data-end="438">The <strong data-start="139" data-end="159">ATSAMC21J18A-ANT</strong> is a high-performance, low-power 32-bit microcontroller from Microchip, based on the ARM® Cortex®-M0+ core. It is designed for applications requiring robust communication, analog features, and 5V operation—ideal for industrial control, automotive systems, and connected devices.</p> Key Specifications <ul data-start="469" data-end="754"> <li class="" data-start="469" data-end="511"> <p class="" data-start="471" data-end="511"><strong data-start="471" data-end="479">Core</strong>: ARM Cortex-M0+, up to 48 MHz</p> </li> <li class="" data-start="512" data-end="540"> <p class="" data-start="514" data-end="540"><strong data-start="514" data-end="530">Flash Memory</strong>: 256 KB</p> </li> <li class="" data-start="541" data-end="560"> <p class="" data-start="543" data-end="560"><strong data-start="543" data-end="551">SRAM</strong>: 32 KB</p> </li> <li class="" data-start="561" data-end="600"> <p class="" data-start="563" data-end="600"><strong data-start="563" data-end="584">Operating Voltage</strong>: 2.7V to 5.5V</p> </li> <li class="" data-start="601" data-end="647"> <p class="" data-start="603" data-end="647"><strong data-start="603" data-end="628">Operating Temperature</strong>: -40°C to +105°C</p> </li> <li class="" data-start="648" data-end="668"> <p class="" data-start="650" data-end="668"><strong data-start="650" data-end="662">I/O Pins</strong>: 52</p> </li> <li class="" data-start="669" data-end="710"> <p class="" data-start="671" data-end="710"><strong data-start="671" data-end="682">Package</strong>: 64-pin TQFP (10 × 10 mm)</p> </li> <li class="" data-start="711" data-end="754"> [...]</li></ul>]]></description>
										<content:encoded><![CDATA[<p class="" data-start="135" data-end="438">The <strong data-start="139" data-end="159">ATSAMC21J18A-ANT</strong> is a high-performance, low-power 32-bit microcontroller from Microchip, based on the ARM® Cortex®-M0+ core. It is designed for applications requiring robust communication, analog features, and 5V operation—ideal for industrial control, automotive systems, and connected devices.</p>
<hr class="" data-start="440" data-end="443" />
<h3 class="" data-start="445" data-end="467">Key Specifications</h3>
<ul data-start="469" data-end="754">
<li class="" data-start="469" data-end="511">
<p class="" data-start="471" data-end="511"><strong data-start="471" data-end="479">Core</strong>: ARM Cortex-M0+, up to 48 MHz</p>
</li>
<li class="" data-start="512" data-end="540">
<p class="" data-start="514" data-end="540"><strong data-start="514" data-end="530">Flash Memory</strong>: 256 KB</p>
</li>
<li class="" data-start="541" data-end="560">
<p class="" data-start="543" data-end="560"><strong data-start="543" data-end="551">SRAM</strong>: 32 KB</p>
</li>
<li class="" data-start="561" data-end="600">
<p class="" data-start="563" data-end="600"><strong data-start="563" data-end="584">Operating Voltage</strong>: 2.7V to 5.5V</p>
</li>
<li class="" data-start="601" data-end="647">
<p class="" data-start="603" data-end="647"><strong data-start="603" data-end="628">Operating Temperature</strong>: -40°C to +105°C</p>
</li>
<li class="" data-start="648" data-end="668">
<p class="" data-start="650" data-end="668"><strong data-start="650" data-end="662">I/O Pins</strong>: 52</p>
</li>
<li class="" data-start="669" data-end="710">
<p class="" data-start="671" data-end="710"><strong data-start="671" data-end="682">Package</strong>: 64-pin TQFP (10 × 10 mm)</p>
</li>
<li class="" data-start="711" data-end="754">
<p class="" data-start="713" data-end="754"><strong data-start="713" data-end="726">Packaging</strong>: Tape &amp; Reel (ANT suffix)</p>
</li>
</ul>
<hr class="" data-start="756" data-end="759" />
<h3 class="" data-start="761" data-end="773">Features</h3>
<ul data-start="775" data-end="1386">
<li class="" data-start="775" data-end="868">
<p class="" data-start="777" data-end="808"><strong data-start="777" data-end="805">Communication Interfaces</strong>:</p>
<ul data-start="811" data-end="868">
<li class="" data-start="811" data-end="821">
<p class="" data-start="813" data-end="821">CAN FD</p>
</li>
<li class="" data-start="824" data-end="831">
<p class="" data-start="826" data-end="831">LIN</p>
</li>
<li class="" data-start="834" data-end="848">
<p class="" data-start="836" data-end="848">UART/USART</p>
</li>
<li class="" data-start="851" data-end="858">
<p class="" data-start="853" data-end="858">SPI</p>
</li>
<li class="" data-start="861" data-end="868">
<p class="" data-start="863" data-end="868">I²C</p>
</li>
</ul>
</li>
<li class="" data-start="870" data-end="980">
<p class="" data-start="872" data-end="898"><strong data-start="872" data-end="895">Analog Capabilities</strong>:</p>
<ul data-start="901" data-end="980">
<li class="" data-start="901" data-end="926">
<p class="" data-start="903" data-end="926">20-channel 12-bit ADC</p>
</li>
<li class="" data-start="929" data-end="953">
<p class="" data-start="931" data-end="953">3-channel 16-bit ADC</p>
</li>
<li class="" data-start="956" data-end="980">
<p class="" data-start="958" data-end="980">1-channel 10-bit DAC</p>
</li>
</ul>
</li>
<li class="" data-start="982" data-end="1120">
<p class="" data-start="984" data-end="1013"><strong data-start="984" data-end="1010">Timers and Peripherals</strong>:</p>
<ul data-start="1016" data-end="1120">
<li class="" data-start="1016" data-end="1034">
<p class="" data-start="1018" data-end="1034">DMA Controller</p>
</li>
<li class="" data-start="1037" data-end="1061">
<p class="" data-start="1039" data-end="1061">Watchdog Timer (WDT)</p>
</li>
<li class="" data-start="1064" data-end="1088">
<p class="" data-start="1066" data-end="1088">Power-On Reset (POR)</p>
</li>
<li class="" data-start="1091" data-end="1120">
<p class="" data-start="1093" data-end="1120">Brown-Out Detection (BOD)</p>
</li>
</ul>
</li>
<li class="" data-start="1122" data-end="1255">
<p class="" data-start="1124" data-end="1153"><strong data-start="1124" data-end="1150">Safety and Reliability</strong>:</p>
<ul data-start="1156" data-end="1255">
<li class="" data-start="1156" data-end="1255">
<p class="" data-start="1158" data-end="1255">Designed for functional safety and robust performance in industrial and automotive environments</p>
</li>
</ul>
</li>
<li class="" data-start="1257" data-end="1386">
<p class="" data-start="1259" data-end="1291"><strong data-start="1259" data-end="1288">Development Tools Support</strong>:</p>
<ul data-start="1294" data-end="1386">
<li class="" data-start="1294" data-end="1309">
<p class="" data-start="1296" data-end="1309">MPLAB X IDE</p>
</li>
<li class="" data-start="1312" data-end="1339">
<p class="" data-start="1314" data-end="1339">MPLAB Code Configurator</p>
</li>
<li class="" data-start="1342" data-end="1362">
<p class="" data-start="1344" data-end="1362">MPLAB Xpress IDE</p>
</li>
<li class="" data-start="1365" data-end="1386">
<p class="" data-start="1367" data-end="1386">VS Code Extension</p>
</li>
</ul>
</li>
</ul>
<hr class="" data-start="1388" data-end="1391" />
<p class="" data-start="1393" data-end="1509">This MCU is well-suited for industrial automation, home appliances, automotive networking, and smart energy systems.</p>
<p class="" data-start="1511" data-end="1629">For more information, visit <a class="cursor-pointer" target="_new" rel="noopener" data-start="1539" data-end="1628">Microchip’s official product page</a>.</p>
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