<?xml version="1.0" encoding="UTF-8"?><rss version="2.0"
	xmlns:content="http://purl.org/rss/1.0/modules/content/"
	xmlns:wfw="http://wellformedweb.org/CommentAPI/"
	xmlns:dc="http://purl.org/dc/elements/1.1/"
	xmlns:atom="http://www.w3.org/2005/Atom"
	xmlns:sy="http://purl.org/rss/1.0/modules/syndication/"
	xmlns:slash="http://purl.org/rss/1.0/modules/slash/"
	>

<channel>
	<title>Válvula 12AV5GA &#8211; Hobbytools &#8211; Ferramentas para hobbistas</title>
	<atom:link href="https://www.hobbytools.com.br/produto-tag/valvula-12av5ga/feed/" rel="self" type="application/rss+xml" />
	<link>https://www.hobbytools.com.br</link>
	<description>Ferramentas para Hobbistas</description>
	<lastBuildDate>Thu, 18 Dec 2025 20:05:56 +0000</lastBuildDate>
	<language>pt-BR</language>
	<sy:updatePeriod>
	hourly	</sy:updatePeriod>
	<sy:updateFrequency>
	1	</sy:updateFrequency>
	<generator>https://wordpress.org/?v=6.9.4</generator>

<image>
	<url>https://www.hobbytools.com.br/wp-content/uploads/2020/12/favicon.ico</url>
	<title>Válvula 12AV5GA &#8211; Hobbytools &#8211; Ferramentas para hobbistas</title>
	<link>https://www.hobbytools.com.br</link>
	<width>32</width>
	<height>32</height>
</image> 
	<item>
		<title>Válvula 12AV5GA</title>
		<link>https://www.hobbytools.com.br/produto/valvula-12av5ga/</link>
					<comments>https://www.hobbytools.com.br/produto/valvula-12av5ga/#respond</comments>
		
		<dc:creator><![CDATA[natali Montanhini]]></dc:creator>
		<pubDate>Mon, 13 Oct 2025 14:51:31 +0000</pubDate>
				<guid isPermaLink="false">https://www.hobbytools.com.br/?post_type=product&#038;p=4161</guid>

					<description><![CDATA[<p data-start="285" data-end="610">A <strong data-start="287" data-end="298">12AV5GA</strong> é uma <strong data-start="305" data-end="337">tetrodo de feixe de potência</strong> (beam power tetrode) de média-alta dissipação, originalmente projetada para <strong data-start="414" data-end="457">estágios de deflexão horizontal (linha)</strong> em televisores de 525 linhas, mas também amplamente utilizada em <strong data-start="523" data-end="561">amplificadores de áudio valvulados</strong> devido à sua excelente linearidade e robustez.</p>
<p data-start="612" data-end="883">É da mesma família das válvulas <strong data-start="644" data-end="654">6AV5GA</strong> e <strong data-start="657" data-end="668">17AV5GA</strong>, diferenciando-se apenas pela tensão de filamento.<br data-start="719" data-end="722" />A versão “GA” indica o invólucro de vidro alongado (“Glass A”) com melhor isolamento térmico e dissipação aprimorada, suportando picos de corrente mais elevados.</p>]]></description>
										<content:encoded><![CDATA[<h2 data-start="228" data-end="265">🧩 Ficha Técnica – Válvula 12AV5GA</h2>
<h3 data-start="267" data-end="284">📘 Introdução</h3>
<p data-start="285" data-end="610">A <strong data-start="287" data-end="298">12AV5GA</strong> é uma <strong data-start="305" data-end="337">tetrodo de feixe de potência</strong> (beam power tetrode) de média-alta dissipação, originalmente projetada para <strong data-start="414" data-end="457">estágios de deflexão horizontal (linha)</strong> em televisores de 525 linhas, mas também amplamente utilizada em <strong data-start="523" data-end="561">amplificadores de áudio valvulados</strong> devido à sua excelente linearidade e robustez.</p>
<p data-start="612" data-end="883">É da mesma família das válvulas <strong data-start="644" data-end="654">6AV5GA</strong> e <strong data-start="657" data-end="668">17AV5GA</strong>, diferenciando-se apenas pela tensão de filamento.<br data-start="719" data-end="722" />A versão “GA” indica o invólucro de vidro alongado (“Glass A”) com melhor isolamento térmico e dissipação aprimorada, suportando picos de corrente mais elevados.</p>
<hr data-start="885" data-end="888" />
<h3 data-start="890" data-end="914">⚙️ Estrutura Interna</h3>
<ul data-start="915" data-end="1212">
<li data-start="915" data-end="975">
<p data-start="917" data-end="975">Tipo: <strong data-start="923" data-end="973">Tetrodo de feixe direcionado (Beam Power Tube)</strong></p>
</li>
<li data-start="976" data-end="1046">
<p data-start="978" data-end="1046">Função: Estágio de deflexão horizontal ou amplificação de potência</p>
</li>
<li data-start="1047" data-end="1143">
<p data-start="1049" data-end="1143">Elementos: Placa, Grade de Controle (G1), Grade de Tela (G2), Cátodo e Feixes direcionadores</p>
</li>
<li data-start="1144" data-end="1191">
<p data-start="1146" data-end="1191">Aquecimento indireto, com filamento isolado</p>
</li>
<li data-start="1192" data-end="1212">
<p data-start="1194" data-end="1212">Base Octal (B8G)</p>
</li>
</ul>
<hr data-start="1214" data-end="1217" />
<h3 data-start="1219" data-end="1248">⚙️ Características Gerais</h3>
<div class="_tableContainer_1rjym_1">
<div class="group _tableWrapper_1rjym_13 flex w-fit flex-col-reverse" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1249" data-end="1871">
<thead data-start="1249" data-end="1270">
<tr data-start="1249" data-end="1270">
<th data-start="1249" data-end="1261" data-col-size="sm">Parâmetro</th>
<th data-start="1261" data-end="1270" data-col-size="md">Valor</th>
</tr>
</thead>
<tbody data-start="1294" data-end="1871">
<tr data-start="1294" data-end="1333">
<td data-start="1294" data-end="1301" data-col-size="sm">Tipo</td>
<td data-start="1301" data-end="1333" data-col-size="md">Tetrodo de feixe de potência</td>
</tr>
<tr data-start="1334" data-end="1403">
<td data-start="1334" data-end="1353" data-col-size="sm">Aplicação típica</td>
<td data-start="1353" data-end="1403" data-col-size="md">Deflexão horizontal / amplificador de potência</td>
</tr>
<tr data-start="1404" data-end="1439">
<td data-start="1404" data-end="1417" data-col-size="sm">Envoltório</td>
<td data-start="1417" data-end="1439" data-col-size="md">Vidro – Base Octal</td>
</tr>
<tr data-start="1440" data-end="1479">
<td data-start="1440" data-end="1469" data-col-size="sm">Tensão de aquecimento (Uf)</td>
<td data-start="1469" data-end="1479" data-col-size="md">12,6 V</td>
</tr>
<tr data-start="1480" data-end="1521">
<td data-start="1480" data-end="1511" data-col-size="sm">Corrente de aquecimento (If)</td>
<td data-start="1511" data-end="1521" data-col-size="md">0,45 A</td>
</tr>
<tr data-start="1522" data-end="1593">
<td data-start="1522" data-end="1556" data-col-size="sm">Tensão máxima de placa (Va máx)</td>
<td data-start="1556" data-end="1593" data-col-size="md">550 V contínuos / 6 000 V de pico</td>
</tr>
<tr data-start="1594" data-end="1672">
<td data-start="1594" data-end="1637" data-col-size="sm">Tensão máxima de grade de tela (Vg2 máx)</td>
<td data-start="1637" data-end="1672" data-col-size="md">250 V contínuos / 500 V de pico</td>
</tr>
<tr data-start="1673" data-end="1708">
<td data-start="1673" data-end="1699" data-col-size="sm">Corrente média de placa</td>
<td data-start="1699" data-end="1708" data-col-size="md">70 mA</td>
</tr>
<tr data-start="1709" data-end="1747">
<td data-start="1709" data-end="1737" data-col-size="sm">Corrente de pico de placa</td>
<td data-start="1737" data-end="1747" data-col-size="md">500 mA</td>
</tr>
<tr data-start="1748" data-end="1785">
<td data-start="1748" data-end="1777" data-col-size="sm">Dissipação máxima da placa</td>
<td data-start="1777" data-end="1785" data-col-size="md">11 W</td>
</tr>
<tr data-start="1786" data-end="1821">
<td data-start="1786" data-end="1814" data-col-size="sm">Dissipação máxima da tela</td>
<td data-start="1814" data-end="1821" data-col-size="md">2 W</td>
</tr>
<tr data-start="1822" data-end="1844">
<td data-start="1822" data-end="1829" data-col-size="sm">Base</td>
<td data-start="1829" data-end="1844" data-col-size="md">Octal (B8G)</td>
</tr>
<tr data-start="1845" data-end="1871">
<td data-start="1845" data-end="1863" data-col-size="sm">Peso aproximado</td>
<td data-start="1863" data-end="1871" data-col-size="md">23 g</td>
</tr>
</tbody>
</table>
</div>
</div>
<hr data-start="1873" data-end="1876" />
<h3 data-start="1878" data-end="1920">⚡ Dados de Operação – Classe A (Áudio)</h3>
<div class="_tableContainer_1rjym_1">
<div class="group _tableWrapper_1rjym_13 flex w-fit flex-col-reverse" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1921" data-end="2331">
<thead data-start="1921" data-end="1942">
<tr data-start="1921" data-end="1942">
<th data-start="1921" data-end="1933" data-col-size="sm">Parâmetro</th>
<th data-start="1933" data-end="1942" data-col-size="sm">Valor</th>
</tr>
</thead>
<tbody data-start="1966" data-end="2331">
<tr data-start="1966" data-end="1998">
<td data-start="1966" data-end="1989" data-col-size="sm">Tensão de placa (Va)</td>
<td data-start="1989" data-end="1998" data-col-size="sm">250 V</td>
</tr>
<tr data-start="1999" data-end="2031">
<td data-start="1999" data-end="2022" data-col-size="sm">Tensão de tela (Vg2)</td>
<td data-start="2022" data-end="2031" data-col-size="sm">250 V</td>
</tr>
<tr data-start="2032" data-end="2065">
<td data-start="2032" data-end="2056" data-col-size="sm">Tensão de grade (Vg1)</td>
<td data-start="2056" data-end="2065" data-col-size="sm">–15 V</td>
</tr>
<tr data-start="2066" data-end="2100">
<td data-start="2066" data-end="2091" data-col-size="sm">Corrente de placa (Ia)</td>
<td data-start="2091" data-end="2100" data-col-size="sm">60 mA</td>
</tr>
<tr data-start="2101" data-end="2134">
<td data-start="2101" data-end="2126" data-col-size="sm">Corrente de tela (Ig2)</td>
<td data-start="2126" data-end="2134" data-col-size="sm">5 mA</td>
</tr>
<tr data-start="2135" data-end="2173">
<td data-start="2135" data-end="2166" data-col-size="sm">Potência de saída (Classe A)</td>
<td data-start="2166" data-end="2173" data-col-size="sm">6 W</td>
</tr>
<tr data-start="2174" data-end="2209">
<td data-start="2174" data-end="2202" data-col-size="sm">Distorção harmônica total</td>
<td data-start="2202" data-end="2209" data-col-size="sm">7 %</td>
</tr>
<tr data-start="2210" data-end="2248">
<td data-start="2210" data-end="2234" data-col-size="sm">Transcondutância (gm)</td>
<td data-start="2234" data-end="2248" data-col-size="sm">7 000 µmho</td>
</tr>
<tr data-start="2249" data-end="2285">
<td data-start="2249" data-end="2277" data-col-size="sm">Impedância de carga ótima</td>
<td data-start="2277" data-end="2285" data-col-size="sm">5 kΩ</td>
</tr>
<tr data-start="2286" data-end="2331">
<td data-start="2286" data-end="2325" data-col-size="sm">Fator de amplificação aproximado (µ)</td>
<td data-start="2325" data-end="2331" data-col-size="sm">12</td>
</tr>
</tbody>
</table>
</div>
</div>
<hr data-start="2333" data-end="2336" />
<h3 data-start="2338" data-end="2388">⚡ Dados de Operação – Deflexão Horizontal (TV)</h3>
<div class="_tableContainer_1rjym_1">
<div class="group _tableWrapper_1rjym_13 flex w-fit flex-col-reverse" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="2389" data-end="2631">
<thead data-start="2389" data-end="2410">
<tr data-start="2389" data-end="2410">
<th data-start="2389" data-end="2401" data-col-size="sm">Parâmetro</th>
<th data-start="2401" data-end="2410" data-col-size="sm">Valor</th>
</tr>
</thead>
<tbody data-start="2434" data-end="2631">
<tr data-start="2434" data-end="2470">
<td data-start="2434" data-end="2459" data-col-size="sm">Tensão de placa (pico)</td>
<td data-start="2459" data-end="2470" data-col-size="sm">6 000 V</td>
</tr>
<tr data-start="2471" data-end="2499">
<td data-start="2471" data-end="2490" data-col-size="sm">Corrente de pico</td>
<td data-start="2490" data-end="2499" data-col-size="sm">0,5 A</td>
</tr>
<tr data-start="2500" data-end="2526">
<td data-start="2500" data-end="2517" data-col-size="sm">Corrente média</td>
<td data-start="2517" data-end="2526" data-col-size="sm">70 mA</td>
</tr>
<tr data-start="2527" data-end="2560">
<td data-start="2527" data-end="2551" data-col-size="sm">Tensão de tela (pico)</td>
<td data-start="2551" data-end="2560" data-col-size="sm">450 V</td>
</tr>
<tr data-start="2561" data-end="2594">
<td data-start="2561" data-end="2581" data-col-size="sm">Frequência típica</td>
<td data-start="2581" data-end="2594" data-col-size="sm">15,75 kHz</td>
</tr>
<tr data-start="2595" data-end="2631">
<td data-start="2595" data-end="2623" data-col-size="sm">Dissipação média da placa</td>
<td data-start="2623" data-end="2631" data-col-size="sm">10 W</td>
</tr>
</tbody>
</table>
</div>
</div>
<hr data-start="2633" data-end="2636" />
<h3 data-start="2638" data-end="2671">🔌 Pinagem – Base Octal (B8G)</h3>
<div class="_tableContainer_1rjym_1">
<div class="group _tableWrapper_1rjym_13 flex w-fit flex-col-reverse" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="2672" data-end="2897">
<thead data-start="2672" data-end="2690">
<tr data-start="2672" data-end="2690">
<th data-start="2672" data-end="2679" data-col-size="sm">Pino</th>
<th data-start="2679" data-end="2690" data-col-size="sm">Conexão</th>
</tr>
</thead>
<tbody data-start="2711" data-end="2897">
<tr data-start="2711" data-end="2730">
<td data-start="2711" data-end="2715" data-col-size="sm">1</td>
<td data-start="2715" data-end="2730" data-col-size="sm">Sem conexão</td>
</tr>
<tr data-start="2731" data-end="2748">
<td data-start="2731" data-end="2735" data-col-size="sm">2</td>
<td data-start="2735" data-end="2748" data-col-size="sm">Filamento</td>
</tr>
<tr data-start="2749" data-end="2762">
<td data-start="2749" data-end="2753" data-col-size="sm">3</td>
<td data-start="2753" data-end="2762" data-col-size="sm">Placa</td>
</tr>
<tr data-start="2763" data-end="2789">
<td data-start="2763" data-end="2767" data-col-size="sm">4</td>
<td data-start="2767" data-end="2789" data-col-size="sm">Grade de tela (G2)</td>
</tr>
<tr data-start="2790" data-end="2820">
<td data-start="2790" data-end="2794" data-col-size="sm">5</td>
<td data-start="2794" data-end="2820" data-col-size="sm">Grade de controle (G1)</td>
</tr>
<tr data-start="2821" data-end="2859">
<td data-start="2821" data-end="2825" data-col-size="sm">6</td>
<td data-start="2825" data-end="2859" data-col-size="sm">Cátodo + Feixes direcionadores</td>
</tr>
<tr data-start="2860" data-end="2877">
<td data-start="2860" data-end="2864" data-col-size="sm">7</td>
<td data-start="2864" data-end="2877" data-col-size="sm">Filamento</td>
</tr>
<tr data-start="2878" data-end="2897">
<td data-start="2878" data-end="2882" data-col-size="sm">8</td>
<td data-start="2882" data-end="2897" data-col-size="sm">Sem conexão</td>
</tr>
</tbody>
</table>
</div>
</div>
<blockquote data-start="2899" data-end="3031">
<p data-start="2901" data-end="3031"><em data-start="2901" data-end="2908">Nota:</em> O filamento é alimentado entre <strong data-start="2940" data-end="2955">pinos 2 e 7</strong>.<br data-start="2956" data-end="2959" />Polarização negativa em G1 (–12 a –18 V) controla a corrente de placa.</p>
</blockquote>
<hr data-start="3033" data-end="3036" />
<h3 data-start="3038" data-end="3063">🧠 Aplicações Típicas</h3>
<ul data-start="3064" data-end="3355">
<li data-start="3064" data-end="3123">
<p data-start="3066" data-end="3123"><strong data-start="3066" data-end="3089">Deflexão horizontal</strong> em televisores e monitores CRT.</p>
</li>
<li data-start="3124" data-end="3202">
<p data-start="3126" data-end="3202"><strong data-start="3126" data-end="3153">Amplificadores de áudio</strong> (classe A ou AB), com timbre quente e natural.</p>
</li>
<li data-start="3203" data-end="3263">
<p data-start="3205" data-end="3263"><strong data-start="3205" data-end="3230">Fontes de alta tensão</strong> e <strong data-start="3233" data-end="3260">osciladores de potência</strong>.</p>
</li>
<li data-start="3264" data-end="3355">
<p data-start="3266" data-end="3355"><strong data-start="3266" data-end="3288">Projetos DIY Hi-Fi</strong>, substituindo válvulas como 6L6 GC ou EL36 em circuitos adaptados.</p>
</li>
</ul>
<hr data-start="3357" data-end="3360" />
<h3 data-start="3362" data-end="3397">🔁 Equivalentes e Substituições</h3>
<div class="_tableContainer_1rjym_1">
<div class="group _tableWrapper_1rjym_13 flex w-fit flex-col-reverse" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="3398" data-end="3820">
<thead data-start="3398" data-end="3433">
<tr data-start="3398" data-end="3433">
<th data-start="3398" data-end="3407" data-col-size="sm">Modelo</th>
<th data-start="3407" data-end="3433" data-col-size="sm">Diferença / Observação</th>
</tr>
</thead>
<tbody data-start="3470" data-end="3820">
<tr data-start="3470" data-end="3515">
<td data-start="3470" data-end="3479" data-col-size="sm">6AV5GA</td>
<td data-start="3479" data-end="3515" data-col-size="sm">Mesma estrutura, filamento 6,3 V</td>
</tr>
<tr data-start="3516" data-end="3560">
<td data-start="3516" data-end="3526" data-col-size="sm">17AV5GA</td>
<td data-start="3526" data-end="3560" data-col-size="sm">Filamento 17 V (para série TV)</td>
</tr>
<tr data-start="3561" data-end="3609">
<td data-start="3561" data-end="3570" data-col-size="sm">12AV5G</td>
<td data-start="3570" data-end="3609" data-col-size="sm">Versão mais antiga, invólucro curto</td>
</tr>
<tr data-start="3610" data-end="3660">
<td data-start="3610" data-end="3618" data-col-size="sm">6DQ6B</td>
<td data-start="3618" data-end="3660" data-col-size="sm">Similar em potência, diferente soquete</td>
</tr>
<tr data-start="3661" data-end="3713">
<td data-start="3661" data-end="3675" data-col-size="sm">EL36 / 6CM5</td>
<td data-start="3675" data-end="3713" data-col-size="sm">Parâmetros próximos, base distinta</td>
</tr>
<tr data-start="3714" data-end="3762">
<td data-start="3714" data-end="3722" data-col-size="sm">PL504</td>
<td data-start="3722" data-end="3762" data-col-size="sm">Equivalente europeu (pino diferente)</td>
</tr>
<tr data-start="3763" data-end="3820">
<td data-start="3763" data-end="3779" data-col-size="sm">6P31S (russa)</td>
<td data-start="3779" data-end="3820" data-col-size="sm">Equivalente aproximada em performance</td>
</tr>
</tbody>
</table>
</div>
</div>
<hr data-start="3822" data-end="3825" />
<h3 data-start="3827" data-end="3854">⚠️ Cuidados de Operação</h3>
<ul data-start="3855" data-end="4221">
<li data-start="3855" data-end="3934">
<p data-start="3857" data-end="3934">Trabalha com <strong data-start="3870" data-end="3887">altas tensões</strong>; use isolamento adequado e soquete cerâmico.</p>
</li>
<li data-start="3935" data-end="4002">
<p data-start="3937" data-end="4002">Evite ligar a válvula sem carga (sem transformador ou flyback).</p>
</li>
<li data-start="4003" data-end="4091">
<p data-start="4005" data-end="4057">Utilizar resistores limitadores (“grid stoppers”):</p>
<ul data-start="4060" data-end="4091">
<li data-start="4060" data-end="4075">
<p data-start="4062" data-end="4075">G1 → 4,7 kΩ</p>
</li>
<li data-start="4078" data-end="4091">
<p data-start="4080" data-end="4091">G2 → 1 kΩ</p>
</li>
</ul>
</li>
<li data-start="4092" data-end="4163">
<p data-start="4094" data-end="4163">Assegurar ventilação do chassi; dissipação térmica é significativa.</p>
</li>
<li data-start="4164" data-end="4221">
<p data-start="4166" data-end="4221">Tempo de aquecimento mínimo antes da carga: <strong data-start="4210" data-end="4218">15 s</strong>.</p>
</li>
</ul>
<hr data-start="4223" data-end="4226" />
<h3 data-start="4228" data-end="4269">📈 Curvas Características (descrição)</h3>
<ul data-start="4270" data-end="4507">
<li data-start="4270" data-end="4356">
<p data-start="4272" data-end="4356"><strong data-start="4272" data-end="4299">Ia × Va (G2 constante):</strong> linear até 300 V, saturando suavemente acima de 400 V.</p>
</li>
<li data-start="4357" data-end="4440">
<p data-start="4359" data-end="4440"><strong data-start="4359" data-end="4372">Ia × Vg1:</strong> corte próximo de –22 V; faixa útil de operação entre –10 e –18 V.</p>
</li>
<li data-start="4441" data-end="4507">
<p data-start="4443" data-end="4507"><strong data-start="4443" data-end="4461">Curva de pico:</strong> suporta pulsos até 500 mA sem arco interno.</p>
</li>
</ul>
<hr data-start="4509" data-end="4512" />
<h3 data-start="4514" data-end="4543">🧾 Observações Históricas</h3>
<p data-start="4544" data-end="4979">A <strong data-start="4546" data-end="4557">12AV5GA</strong> foi produzida por <strong data-start="4576" data-end="4583">RCA</strong>, <strong data-start="4585" data-end="4597">Sylvania</strong>, <strong data-start="4599" data-end="4605">GE</strong>, <strong data-start="4607" data-end="4619">Tung-Sol</strong> e <strong data-start="4622" data-end="4632">Philco</strong>, a partir do final dos anos 1950.<br data-start="4666" data-end="4669" />Destinada à deflexão horizontal de TVs com deflexão de 90°, destacou-se por sua <strong data-start="4749" data-end="4796">robustez, baixo custo e alta confiabilidade</strong>.<br data-start="4797" data-end="4800" />Com o tempo, tornou-se muito popular em <strong data-start="4840" data-end="4889">amplificadores de guitarra e Hi-Fi artesanais</strong>, pois combina potência, linearidade e timbre semelhante à 6L6 GC, mas a um custo menor.</p>
<p data-start="4981" data-end="5150">Hoje, a 12AV5GA é valorizada por entusiastas e restauradores de áudio vintage por sua sonoridade <strong data-start="5078" data-end="5108">cheia, aveludada e potente</strong>, ideal para projetos push-pull compactos.</p>
<p data-start="4981" data-end="5150"><a href="https://www.hobbytools.com.br/wp-content/uploads/2025/10/DATASHEET-Valvula-12AV5GA.pdf">DATASHEET Válvula 12AV5GA</a></p>
<p data-start="4981" data-end="5150"><a href="https://www.hobbytools.com.br/wp-content/uploads/2025/10/DATASHEET-VALVULA-12AV5GA.pdf">DATASHEET VALVULA 12AV5GA</a></p>
]]></content:encoded>
					
					<wfw:commentRss>https://www.hobbytools.com.br/produto/valvula-12av5ga/feed/</wfw:commentRss>
			<slash:comments>0</slash:comments>
		
		
			</item>
	</channel>
</rss>
