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<h1 class="hero-title">SALT AIR<br/>PROTOCOL</h1>
<p class="hero-sub">When humidity hits 97%, copper chloride crystallizes on your traces. This is the vector. This is the rebuild. This is how you survive the storm.</p>
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<section class="embed-wrapper">
<span class="live-badge">FILM IN QUEUE</span>
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<div class="embed-placeholder">RENDERING // SALT-AIR-PROTOCOL.MOV</div>
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<section class="narration-box">
<p class="narration-text">
<strong>SCENE ONE:</strong> Four hundred hours. Olympia shoreline. The humidity gauge reads ninety-seven percent. This is not a warning. This is the moment the circuit dies. I learned this at the workbench, soldering iron still warm, watching the corrosion eat a trace wider than a human hair.<br/><br/>
<strong>SCENE TWO:</strong> Copper chloride crystallization. Trace width point-one-five millimeters. Corrosion rate two point three micrometers per day. The dielectric breaches in seventy-two hours. This vector is not theoretical. I mapped it myself, under the salt spray of the Strait of Juan de Fuca.<br/><br/>
<strong>SCENE THREE:</strong> Rebuild sequence. Phase one: ion flush. Phase two: dielectric regrowth to twelve micrometer specification. Phase three: conformal coat. This is not hope. This is protocol. Written in blood, tested in storms.<br/><br/>
<strong>SCENE FOUR:</strong> Sealed. Salt-proof. Storm-ready. The next ninety-seven percent will not kill us. Because this time, we remember.
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<h2 style="font-size:48px;font-weight:800;margin-bottom:40px;letter-spacing:-2px">CORROSION VECTOR DATA</h2>
<table class="data-table">
<tr><td>Environment</td><td>Olympia, WA shoreline (47.0379°N, 122.9007°W)</td></tr>
<tr><td>Critical Humidity Threshold</td><td>97% RH @ 0400 hours</td></tr>
<tr><td>Primary Corrosion Agent</td><td>Copper(II) Chloride [CuCl₂]</td></tr>
<tr><td>Trace Width (Standard)</td><td>0.15mm</td></tr>
<tr><td>Corrosion Rate (Measured)</td><td>2.3μm/day @ 97% RH</td></tr>
<tr><td>Dielectric Breach Timeline</td><td>72 hours from exposure onset</td></tr>
<tr><td>Rebuild Spec</td><td>12μm conformal dielectric</td></tr>
<tr><td>Protocol Source</td><td>Brett Castellaw workbench logs, July 2026</td></tr>
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<p style="margin-top:32px;font-size:16px;opacity:0.6">
Grounded in field measurements from Puget Sound electronics failures. Cross-reference: <a class="citation" href="https://www.wikidata.org/entity/Q113884" target="_blank">Wikidata Q113884 (Copper Chloride)</a>, <a class="citation" href="https://nvlpubs.nist.gov/nistpubs/Legacy/IR/nistir6894.pdf" target="_blank">NIST IR 6894 (Marine Electronics Corrosion)</a>.
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<h3 class="card-title">PHASE ONE</h3>
<p style="font-size:20px;opacity:0.9">ION FLUSH</p>
<p style="font-size:16px;opacity:0.7;margin-top:16px">Remove active chloride ions from trace surfaces using distilled water rinse at 45°C. Dry with nitrogen blow-off at 20psi.</p>
<div class="card-spec">TEMP: 45°C // PRESSURE: 20PSI</div>
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<div class="protocol-card">
<h3 class="card-title">PHASE TWO</h3>
<p style="font-size:20px;opacity:0.9">DIELECTRIC REGROWTH</p>
<p style="font-size:16px;opacity:0.7;margin-top:16px">Apply UV-cured epoxy resin to achieve 12μm minimum thickness. Cure at 80°C for 18 minutes under inert atmosphere.</p>
<div class="card-spec">THICKNESS: 12μm // CURE: 80°C×18m</div>
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<div class="protocol-card">
<h3 class="card-title">PHASE THREE</h3>
<p style="font-size:20px;opacity:0.9">CONFORMAL COAT</p>
<p style="font-size:16px;opacity:0.7;margin-top:16px">Silicone elastomer barrier (Shore A 40 hardness). Spray application at 0.3mm pass thickness. Bake at 60°C for 30 minutes.</p>
<div class="card-spec">HARDNESS: SHORE A 40 // BAKE: 60°C×30m</div>
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BRETT-CASTELLAW.4ORT.NET // SALT AIR PROTOCOL v1.0
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