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		<title>Megger MPAC208 Acoustic Imaging Camera &#124; Gas Leak, PD &#038; Mechanical Fault Detection</title>
		<link>https://rapid-tech.com.au/megger-mpac208-acoustic-imaging-camera/</link>
					<comments>https://rapid-tech.com.au/megger-mpac208-acoustic-imaging-camera/#respond</comments>
		
		<dc:creator><![CDATA[Sam Hewa]]></dc:creator>
		<pubDate>Tue, 23 Jun 2026 02:41:08 +0000</pubDate>
				<guid isPermaLink="false">https://rapid-tech.com.au/?post_type=product&#038;p=1119349</guid>

					<description><![CDATA[<p><img class="alignnone wp-image-760" src="https://mymeter.com.au/wp-content/uploads/2014/10/Megger-300x75.jpg" alt="Megger" width="180" height="45" /></p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="7:1-7:504;132-635">The Megger MPAC208 is a professional acoustic imaging camera that makes ultrasonic sound visible in real time. With a 208-channel MEMS microphone array, 100 kHz bandwidth, and up to 200 m detection range, it pinpoints compressed air and gas leaks, partial discharge in HV switchgear, and mechanical wear — all without interrupting operations. Built for Australian industrial and utility environments, it quantifies leak costs, visualises PRPD patterns, and operates for 10 hours on dual smart batteries.</p>
<p><img class="alignnone size-full wp-image-6653" src="https://mymeter.com.au/wp-content/uploads/2018/10/PDF-blue.png" alt="PDF download" width="43" height="54" />  <a target="_blank" href="https://www.megger.com/sites/g/files/utfabz201/files/acquiadam/2025-12/MPAC208_DS_EN.pdf?changed=1766980927" rel="noopener">Datasheet</a></p>
<p>The post <a href="https://rapid-tech.com.au/megger-mpac208-acoustic-imaging-camera/">Megger MPAC208 Acoustic Imaging Camera | Gas Leak, PD &#038; Mechanical Fault Detection</a> appeared first on <a href="https://rapid-tech.com.au">rapid-tech</a>.</p>
]]></description>
										<content:encoded><![CDATA[<h3 class="text-text-100 mt-2 -mb-1 text-base font-bold" data-sourcepos="13:1-13:69;663-731">The Problem: Invisible Faults That Drain Budgets and Create Risk</h3>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="15:1-15:385;733-1117">Compressed air systems are among the most energy-intensive infrastructure in Australian industrial facilities — and among the least scrutinised. Studies consistently show that undetected leaks in compressed air networks waste between 20–30% of total compressed air output, translating to thousands of dollars in lost energy every year. Gas distribution networks face similar exposure.</p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="17:1-17:335;1119-1453">On the electrical side, partial discharge in ageing MV and HV switchgear rarely announces itself until something fails catastrophically. Bearing wear in rotating machinery, cavitation in pumps, and valve leakage generate distinctive ultrasonic signatures long before they cause downtime — but only if someone is equipped to hear them.</p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="19:1-19:373;1455-1827">Traditional inspection methods have real limitations: ultrasonic stethoscopes require physical contact or very close range; thermal cameras can miss early-stage PD and most mechanical defects; contact sensors interrupt production. What maintenance teams need is a non-contact, wide-area diagnostic tool that makes the invisible visible — quickly and in quantifiable terms.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<h3 class="text-text-100 mt-2 -mb-1 text-base font-bold" data-sourcepos="23:1-23:59;1834-1892">The Solution: Acoustic Imaging That Lets You See Sound</h3>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="25:1-25:527;1894-2420">The Megger MPAC208 doesn&#8217;t just detect ultrasonic emissions — it maps them onto a live optical image so technicians can see exactly where faults are, at distances up to 200 metres. The instrument fuses data from a 208-channel MEMS (micro-electromechanical system) microphone array with a 13-megapixel optical camera, displaying real-time acoustic overlays on an 8-inch capacitive touchscreen. The result: a colour-coded &#8220;sound cloud&#8221; sitting precisely over the fault source, viewable in bright sunlight at 700 nits brightness.</p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="27:1-27:337;2422-2758">This approach transforms how maintenance teams operate. Instead of methodical physical sweeps with contact instruments, a technician can stand at a safe distance from energised switchgear or elevated pipework and survey an entire zone in minutes. The MPAC208 finds what other instruments miss — and quantifies the cost of what it finds.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<h3 class="text-text-100 mt-2 -mb-1 text-base font-bold" data-sourcepos="31:1-31:43;2765-2807">Three Diagnostic Modes, One Instrument</h3>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="33:1-33:23;2809-2831"><strong>Gas Leak Detection</strong></p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="35:1-35:638;2833-3470">In Gas Leak Mode, the MPAC208 identifies pressurised and vacuum gas leaks by detecting the characteristic ultrasonic signature of escaping gas. The instrument doesn&#8217;t just locate the leak — it calculates the estimated leak rate in both volumetric and monetary terms, giving maintenance coordinators the economic justification needed to prioritise repairs. Minimum detectable leak rates are 0.0019 l/min at 2.5 m (5 bar) and 0.0022 l/min at 6.0 m (5 bar), making it sensitive enough to find even small defects before they compound. Reports can be generated in ISO 50001-compliant format, supporting energy management system documentation.</p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="37:1-37:243;3472-3714">For Australian facilities running large compressed air networks — food manufacturing, mining processing plants, water treatment infrastructure — this translates directly to measurable energy savings and a fast return on instrument investment.</p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="39:1-39:32;3716-3747"><strong>Partial Discharge Detection</strong></p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="41:1-41:416;3749-4164">In PD Mode, the MPAC208 captures ultrasonic emissions associated with partial discharge activity and presents Phase Resolved Partial Discharge (PRPD) visualisation alongside a PD count and Sound Pressure Level (SPL) reading. PRPD patterns allow experienced technicians to classify discharge type — surface tracking, internal void, corona — supporting informed decisions about asset condition and replacement timing.</p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="43:1-43:390;4166-4555">This is particularly relevant for Australian electricity distributors and industrial operators managing ageing MV switchgear, ring main units, and high-voltage cable terminations. Non-contact inspection from safe standoff distances also directly supports compliance with AS 4836 (safe working on or near low voltage electrical installations) and good industry practice around live HV work.</p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="45:1-45:31;4557-4587"><strong>Mechanical Fault Detection</strong></p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="47:1-47:378;4589-4966">In Mechanical Mode, the MPAC208 detects ultrasonic signatures associated with bearing wear, cavitation, valve seat leakage, and vibration-related deterioration. Time-domain waveform display, frequency-domain analysis, and a real-time spectrogram provide three additional diagnostic parameters beyond basic SPL — making it possible to characterise the fault, not just detect it.</p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="49:1-49:252;4968-5219">For reliability engineers managing large fleets of rotating equipment — motors, pumps, compressors, fans — this capability slots naturally into a predictive maintenance workflow, enabling condition-based interventions before unplanned downtime occurs.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<h3 class="text-text-100 mt-2 -mb-1 text-base font-bold" data-sourcepos="53:1-53:49;5226-5274">Designed for Complex Real-World Environments</h3>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="55:1-55:178;5276-5453">Industrial plants are noisy. Substations sit under energised busbars. Gas compression stations require intrinsically safe equipment. The MPAC208 was built to handle all of this.</p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="57:1-57:421;5455-5875">The <strong>Focus function</strong> suppresses background acoustic interference, isolating the target signal in high-ambient-noise environments like compressor rooms or manufacturing floor areas. <strong>SoundScan™ directional guidance</strong> helps technicians track a leak or fault source even when it sits outside the camera&#8217;s optical field of view — an invaluable feature when conducting wide-area surveys of complex pipework or cable trays.</p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="59:1-59:337;5877-6213">For operations in hazardous areas, the <strong>MPAC208-IECEx</strong> variant carries IECEx certification for Class 2 explosive gas and dust atmospheres (Group II 3G Ex ic IIC T5 Gc; Group II Category 3D Ex ic IIIC T100°C), making it suitable for use in gas processing, petrochemical, and mining environments where standard instruments are excluded.</p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="61:1-61:241;6215-6455">Both variants weigh just 1.4 kg, carry an IP54 environmental rating, and are powered by two interchangeable smart Li-Ion battery packs, each delivering 5 hours of runtime. Swap batteries in the field without losing continuity of inspection.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<h3 class="text-text-100 mt-2 -mb-1 text-base font-bold" data-sourcepos="65:1-65:33;6462-6494">Optional Thermal Correlation</h3>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="67:1-67:113;6496-6608">When simultaneous thermal and acoustic data is needed, the MPAC208 accepts two optional thermal imaging modules:</p>
<ul class="[li_&amp;]:mb-0 [li_&amp;]:mt-1 [li_&amp;]:gap-1 [&amp;:not(:last-child)_ul]:pb-1 [&amp;:not(:last-child)_ol]:pb-1 list-disc flex flex-col gap-1 pl-8 mb-3" data-sourcepos="69:1-70:57;6610-6723">
<li class="font-claude-response-body whitespace-normal break-words pl-2" data-sourcepos="69:1-69:57;6610-6666"><strong>MPAC-TM384</strong>: 384 × 288 resolution, 25 Hz frame rate</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2" data-sourcepos="70:1-70:57;6667-6723"><strong>MPAC-TM640</strong>: 640 × 512 resolution, 25 Hz frame rate</li>
</ul>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="72:1-72:353;6725-7077">Both mount directly to the MPAC208 via USB-C 2, enabling side-by-side acoustic and thermal imagery on the same display. Where HV connections are running hot and producing PD simultaneously — a common precursor to insulation failure — the combined view collapses what would otherwise be a two-instrument, two-visit process into a single inspection pass.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<h3 class="text-text-100 mt-2 -mb-1 text-base font-bold" data-sourcepos="76:1-76:32;7084-7115">Field Verification Built In</h3>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="78:1-78:686;7117-7802">Calibration confidence matters. The optional <strong>MPAC-V acoustic camera verifier</strong> is a portable ultrasonic signal generator that connects to a dedicated verification routine built into the MPAC208 firmware. The routine automatically checks frequency response, SPL measurement accuracy, and the operational status of each individual MEMS microphone in the array. Megger recommends recalibration on a two-year cycle, extendable when regular MPAC-V verification is carried out. This is particularly relevant for facilities operating under NATA-accredited maintenance programmes or ISO 55000 asset management frameworks, where documented instrument verification is a compliance requirement.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<h3 class="text-text-100 mt-2 -mb-1 text-base font-bold" data-sourcepos="82:1-82:31;7809-7839">Analysis Software Included</h3>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="84:1-84:436;7841-8276">Every MPAC208 ships with <strong>Megger Analyst</strong> desktop software. The platform enables post-inspection review of acoustic images, thermal images, waveform data, spectrograms, and PRPD records — and generates professional inspection reports in gas/electricity and ISO 50001-compliant formats. Data transfers via Wi-Fi, USB-C flash drive, Bluetooth 5.2, or microSD card. Internal storage is 64 GB, expandable to 128 GB with an external card.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<h3 class="text-text-100 mt-2 -mb-1 text-base font-bold" data-sourcepos="88:1-88:19;8283-8301">PRO Kit Option</h3>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="90:1-90:371;8303-8673">For teams wanting to commission the MPAC208 with full capability from day one, the <strong>MPAC208 PRO Kit (part 1016-922)</strong> bundles the acoustic camera with the MPAC-V verifier and the high-resolution MPAC-TM640 (640 × 512) thermal module at a cost-effective package price. An equivalent <strong>MPAC208-IECEx PRO Kit (part 1016-923)</strong> is available for hazardous-area applications.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<h2 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold" data-sourcepos="94:1-94:28;8680-8707">TECHNICAL SPECIFICATIONS</h2>
<div class="overflow-x-auto w-full px-2 mb-6" data-sourcepos="96:1-120:177;8709-11982">
<table class="min-w-full border-collapse text-sm leading-[1.7] whitespace-normal">
<thead class="text-left">
<tr>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Specification</th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Value</th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Why It Matters</th>
</tr>
</thead>
<tbody>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Microphone Array</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">208-channel MEMS</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">More microphones = better spatial resolution and accuracy in source localisation; outperforms lower-count arrays in cluttered or noisy environments</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Frequency Range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2 kHz – 100 kHz</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Wide bandwidth captures both low-frequency mechanical faults and high-frequency PD and leak events in a single scan</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Detection Range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">0.5 m – 200 m</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Safe standoff from energised HV equipment; enables large-area survey of substations and overhead lines</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Min Leak Detection Rate</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">0.0019 l/min @ 2.5 m / 5 bar</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">High sensitivity catches slow leaks before they become costly; suitable for fine leak surveys in precision compressed-air systems</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">SPL Range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">25.7 dBA – 132.5 dBA</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Wide dynamic range handles both very quiet defects and high-intensity industrial environments</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Optical Camera Resolution</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">13 MP</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">High-resolution overlay image ensures precise fault localisation and clear inspection reports</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Display</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">8&#8243; capacitive touchscreen, 1920 × 1200, 700 nits</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Readable in direct Australian sunlight; touch interface simplifies mode and parameter adjustment</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Field of View</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">66° (H) × 52° (V)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Wide FOV enables efficient area surveys; 6× digital zoom for detailed close inspection</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery Life</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">10 hours (2 × 5 hr smart batteries)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Full shift coverage; hot-swappable packs eliminate charger downtime dependency</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Weight</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">1.4 kg</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">One-hand operable; suitable for extended overhead and elevated inspections</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Environmental Rating</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IP54</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Dust and splash resistant — suitable for industrial plant, outdoor switchyards, and wet-weather inspections</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Internal Storage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">64 GB (+ 64 GB microSD)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Up to 128 GB total storage for large inspection datasets and video records</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Data Transfer</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Wi-Fi / USB-C / Bluetooth 5.2 / microSD</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Flexible export to Analyst software or site reporting systems without cable dependency</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Operating Temperature</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">−20 °C to +50 °C</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Covers the full range of Australian climate zones, from alpine substations to tropical processing facilities</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IECEx Variant</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Group II 3G Ex ic IIC T5 Gc; Cat 3D Ex ic IIIC T100°C</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Required for hazardous-area inspections in gas processing, petrochemical, or mining environments</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Safety Standard</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IEC 61010-1</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Baseline electrical safety compliance for handheld test instruments</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">EMC</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IEC 61326-1 (Portable); CISPR 11 Group 1 Class A</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Suitable for use near sensitive electrical equipment without causing interference</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Drop/Shock</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">1.2 m drop; 25 g shock</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Survives realistic field handling — including minor falls from working height</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Vibration</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2 g per IEC 60068-2-6</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Maintains measurement integrity in vibrating plant environments</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Calibration Interval</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2 years (extendable with MPAC-V verification)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Supports NATA maintenance programmes and AS ISO 55000 asset management documentation</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Software Reports</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Gas/Electricity; ISO 50001-compliant</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Ready-made report formats for energy audits and management system compliance</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Warranty</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2 years</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Standard Megger warranty coverage</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Part Numbers</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPAC208: 1016-917 / MPAC208-IECEx: 1016-918 / PRO Kit: 1016-922 / IECEx PRO Kit: 1016-923</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Multiple configurations available to match application and budget</td>
</tr>
</tbody>
</table>
</div>
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<h2 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold" data-sourcepos="124:1-124:21;11989-12009"></h2>
<blockquote>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="126:1-126:78;12011-12088"><strong>Q: What is an acoustic imaging camera used for in industrial maintenance?</strong></p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="128:1-128:707;12090-12796">An acoustic imaging camera detects and visualises ultrasonic sound emissions that are invisible to the human ear. In industrial maintenance, it is used to locate compressed air and gas leaks, identify partial discharge (PD) in high-voltage electrical equipment, and detect early-stage mechanical faults such as bearing wear and valve leakage. The camera overlays a colour-coded &#8220;sound map&#8221; onto a live optical image, showing technicians exactly where faults are located — from distances up to 200 metres — without interrupting operations or making contact with equipment. The Megger MPAC208 is a professional acoustic imaging camera used in this way across utilities, manufacturing, mining, and renewables.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="132:1-132:61;12803-12863"><strong>Q: How does the Megger MPAC208 detect partial discharge?</strong></p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="134:1-134:636;12865-13500">The Megger MPAC208 detects partial discharge (PD) by sensing the ultrasonic emissions that PD events generate in high-voltage electrical equipment such as switchgear, cable terminations, and busbars. In PD Mode, the camera&#8217;s 208-channel MEMS microphone array captures these emissions and displays the source location as an acoustic overlay on the optical image. It also records Phase Resolved Partial Discharge (PRPD) patterns, which allow technicians to classify the type of discharge — corona, surface tracking, or internal void — supporting informed asset condition assessments without any physical contact with energised equipment.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="138:1-138:55;13507-13561"><strong>Q: Can an acoustic camera quantify gas leak costs?</strong></p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="140:1-140:609;13563-14171">Yes. The Megger MPAC208 includes built-in leak quantification that automatically estimates leak rate in both volumetric (litres per minute) and monetary terms. It calculates cost impact based on the detected sound signature and can produce ISO 50001-compliant energy audit reports. This allows maintenance managers to rank leak repairs by economic priority — targeting the highest-cost leaks first — rather than simply listing leak locations. The minimum detectable leak rate is 0.0019 l/min at 2.5 m (5 bar), making it sensitive enough to identify even small defects before they accumulate significant cost.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="144:1-144:69;14178-14246"><strong>Q: What is the difference between the MPAC208 and MPAC208-IECEx?</strong></p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="146:1-146:585;14248-14832">The Megger MPAC208 and MPAC208-IECEx share identical acoustic performance, operating modes, and specifications. The IECEx variant adds certification for use in Class 2 explosive gas and dust atmospheres — Group II 3G Ex ic IIC T5 Gc and Group II Category 3D Ex ic IIIC T100°C per conformity certificate IECEx TUR 24.0052X. This makes the MPAC208-IECEx suitable for inspection work in gas processing, petrochemical, chemical manufacturing, and underground mining environments where Zone 2/21 area classification applies. The standard MPAC208 is not approved for use in hazardous areas.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="150:1-150:55;14839-14893"><strong>Q: How far away can the MPAC208 detect a gas leak?</strong></p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="152:1-152:485;14895-15379">The Megger MPAC208 has a detection range of 0.5 metres to 200 metres. For compressed air leaks, the practical detection range depends on leak size and ambient noise levels. Under typical conditions, the minimum detectable leak rate is 0.0019 l/min at 2.5 m (5 bar) and 0.0022 l/min at 6.0 m (5 bar). The 200-metre capability is particularly valuable for safe standoff inspection of overhead lines, elevated pipework, and energised HV switchgear where physical proximity is restricted.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="156:1-156:62;15386-15447"><strong>Q: Does the MPAC208 need a thermal camera module to work?</strong></p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="158:1-158:561;15449-16009">No. The MPAC208 is a fully functional acoustic imaging camera without any thermal module. All three operating modes — Gas Leak, Partial Discharge, and Mechanical — operate using the acoustic array and optical camera only. The optional MPAC-TM384 (384 × 288) and MPAC-TM640 (640 × 512) thermal modules attach via USB-C 2 and enable side-by-side thermal and acoustic imagery for root-cause correlation where heat and acoustic anomalies co-occur. The PRO Kit bundles the camera with the MPAC-V verifier and MPAC-TM640 module for teams wanting combined capability.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5" />
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="162:1-162:49;16016-16064"><strong>Q: What is SoundScan™ on the Megger MPAC208?</strong></p>
<p class="font-claude-response-body break-words whitespace-normal" data-sourcepos="164:1-164:527;16066-16592">SoundScan™ is a proprietary directional guidance feature built into the Megger MPAC208. When a leak or fault source is generating ultrasonic emissions outside the camera&#8217;s optical field of view, SoundScan™ provides on-screen directional cues to guide the operator toward the source. This is particularly useful during initial wide-area surveys of large plants or pipework runs where the exact fault location is unknown — it helps technicians navigate to the source efficiently without needing to visually sweep an entire area.</p>
</blockquote>
<p>The post <a href="https://rapid-tech.com.au/megger-mpac208-acoustic-imaging-camera/">Megger MPAC208 Acoustic Imaging Camera | Gas Leak, PD &#038; Mechanical Fault Detection</a> appeared first on <a href="https://rapid-tech.com.au">rapid-tech</a>.</p>
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		<title>Megger MPAC128 &#038; MPAC128-ATEX Acoustic Imager &#124; Detect Partial Discharge &#038; Gas Leaks with 120m Range, 128 Microphones, ATEX-Certified for Zone 2</title>
		<link>https://rapid-tech.com.au/megger-mpac128-mpac128-atex-acoustic-imager/</link>
					<comments>https://rapid-tech.com.au/megger-mpac128-mpac128-atex-acoustic-imager/#respond</comments>
		
		<dc:creator><![CDATA[Sam Hewa]]></dc:creator>
		<pubDate>Tue, 11 Mar 2025 04:42:26 +0000</pubDate>
				<guid isPermaLink="false">https://rapid-tech.com.au/?post_type=product&#038;p=1117870</guid>

					<description><![CDATA[<p><img class="alignnone size-full wp-image-29" src="http://rapid-tech.com.au/wp-content/uploads/2015/12/Megger_Logo_ssml.jpg" alt="Megger_Logo_ssml" width="114" height="30" /></p>
<p class="ai-optimize-13">The Megger MPAC128-ATEX is an intrinsically safe ultrasonic leak detector designed for Zone 2 hazardous areas.</p>
<p class="ai-optimize-14">With 128 microphones, a 120m detection range, and ATEX certification, it accurately detects gas leaks and partial discharge in extreme environments.</p>
<p class="ai-optimize-15">Its robust, non-contact design ensures safety, precision, and efficiency in preventing costly equipment failures and downtime.</p>
<h4 class="ai-optimize-16"><img class="alignnone size-full wp-image-19718" src="https://rapid-tech.com.au/wp-content/uploads/2021/04/PDF-blue.png" alt="PDF Download" width="43" height="54" /> <a target="_blank" href="https://rapid-tech.com.au/wp-content/uploads/2025/03/MPAC128-MPAC128ATEX-Datasheet.pdf" rel="noopener">MPAC128-MPAC128ATEX Datasheet</a></h4>
<p>The post <a href="https://rapid-tech.com.au/megger-mpac128-mpac128-atex-acoustic-imager/">Megger MPAC128 &#038; MPAC128-ATEX Acoustic Imager | Detect Partial Discharge &#038; Gas Leaks with 120m Range, 128 Microphones, ATEX-Certified for Zone 2</a> appeared first on <a href="https://rapid-tech.com.au">rapid-tech</a>.</p>
]]></description>
										<content:encoded><![CDATA[<h2 class="font-bold text-h3 leading-[40px] pt-[21px] pb-[2px] [&amp;_a]:underline-offset-[6px] [&amp;_.underline]:underline-offset-[6px]" dir="ltr">Intrinsically Safe Ultrasonic Leak Detector &#8211; Megger MPAC128 and MPAC128-ATEX Acoustic Imager</h2>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">Prevent costly disruptions, safety hazards, and critical asset failures with the Megger MPAC128 and MPAC128-ATEX Acoustic Imaging camera.</p>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">Designed to detect partial discharge and gas leaks with unmatched precision, these state-of-the-art devices are essential tools for maintaining safety, reliability, and operational efficiency across industrial environments.</p>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">Featuring advanced acoustic imaging technology, they ensure fast, accurate, and safe issue detection, even in hard-to-reach or hazardous areas.</p>
<h3 class="font-bold text-h4 leading-[30px] pt-[15px] pb-[2px] [&amp;_a]:underline-offset-[6px] [&amp;_.underline]:underline-offset-[6px]" dir="ltr">Intrinsically Safe Design for Hazardous Environments</h3>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">The MPAC128-ATEX model is an intrinsically safe ultrasonic leak detector, specifically certified for use in Zone 2 hazardous areas (II 3G Ex ic IIC T5 Gc).</p>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">Ideal for environments with explosive gases or potentially dangerous conditions. This ATEX-certified detector ensures peace of mind while maintaining high performance.</p>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">Its robust design and exceptional safety standards make it the perfect choice for industries like oil and gas, chemical plants, utilities, and more&#8230;</p>
<h3 class="font-bold text-h4 leading-[30px] pt-[15px] pb-[2px] [&amp;_a]:underline-offset-[6px] [&amp;_.underline]:underline-offset-[6px]" dir="ltr">Advanced Detection Technology for Optimal Performance</h3>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">Equipped with 128 high-sensitivity microphones, the MPAC128 and MPAC128-ATEX capture a wide range of sound frequencies (2 to 48 kHz) to deliver precise localisation and analysis of gas leaks and partial discharge.</p>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">This level of accuracy allows technicians to detect and address issues early, preventing unplanned downtime, safety incidents, and regulatory violations.</p>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">With a long detection range of up to 120 metres, you can safely inspect assets without the need to climb, approach energised conductors, or enter hazardous zones.</p>
<h3 class="font-bold text-h4 leading-[30px] pt-[15px] pb-[2px] [&amp;_a]:underline-offset-[6px] [&amp;_.underline]:underline-offset-[6px]" dir="ltr">Work Safely in Extreme Conditions</h3>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">The MPAC128 and its ATEX-certified counterpart are built to perform in harsh environments. Featuring an IP54 rating and an operating temperature range of -20°C to 50°C, they are suited for extreme weather, dusty industrial sites, and wet conditions.</p>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">The MPAC128-ATEX is specifically designed for use in explosive atmospheres, ensuring reliable performance in challenging scenarios. This durability ensures long-term usability while maintaining accuracy and safety.</p>
<h3 class="font-bold text-h4 leading-[30px] pt-[15px] pb-[2px] [&amp;_a]:underline-offset-[6px] [&amp;_.underline]:underline-offset-[6px]" dir="ltr">Save Time and Maximise Efficiency</h3>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">With its advanced acoustic imaging capabilities, the MPAC128 series enables technicians to survey large areas quickly.</p>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">Gas leaks and partial discharge can be detected in minutes, significantly reducing inspection time compared to manual methods. Its non-contact detection also improves safety and minimises human risk, making maintenance more efficient and less time-consuming.</p>
<h3 class="font-bold text-h4 leading-[30px] pt-[15px] pb-[2px] [&amp;_a]:underline-offset-[6px] [&amp;_.underline]:underline-offset-[6px]" dir="ltr">Why Choose the Megger MPAC128 and MPAC128-ATEX?</h3>
<ul class="pt-[9px] pb-[2px] pl-[24px] list-inside list-disc pt-[5px]">
<li class="text-body font-regular leading-[24px] my-[5px] [&amp;&gt;ol]:!pt-0 [&amp;&gt;ol]:!pb-0 [&amp;&gt;ul]:!pt-0 [&amp;&gt;ul]:!pb-0" value="1">Intrinsically safe, ATEX-certified design for Zone 2 hazardous areas</li>
<li class="text-body font-regular leading-[24px] my-[5px] [&amp;&gt;ol]:!pt-0 [&amp;&gt;ol]:!pb-0 [&amp;&gt;ul]:!pt-0 [&amp;&gt;ul]:!pb-0" value="2">Detects gas leaks and partial discharge with precision from up to 120 metres</li>
<li class="text-body font-regular leading-[24px] my-[5px] [&amp;&gt;ol]:!pt-0 [&amp;&gt;ol]:!pb-0 [&amp;&gt;ul]:!pt-0 [&amp;&gt;ul]:!pb-0" value="3">128 microphones for enhanced acoustic imaging clarity</li>
<li class="text-body font-regular leading-[24px] my-[5px] [&amp;&gt;ol]:!pt-0 [&amp;&gt;ol]:!pb-0 [&amp;&gt;ul]:!pt-0 [&amp;&gt;ul]:!pb-0" value="4">IP54 rating and wide operating temperature range for extreme conditions</li>
<li class="text-body font-regular leading-[24px] my-[5px] [&amp;&gt;ol]:!pt-0 [&amp;&gt;ol]:!pb-0 [&amp;&gt;ul]:!pt-0 [&amp;&gt;ul]:!pb-0" value="5">Saves time with fast, non-contact detection</li>
</ul>
<p class="text-body font-regular leading-[24px] pt-[9px] pb-[2px]" dir="ltr">Prevent asset failures and protect your team with the Megger MPAC128 and MPAC128-ATEX Acoustic Imager. Invest in this cutting-edge, intrinsically safe ultrasonic leak detector to ensure reliable performance and safety for your critical operations.</p>
<p>The post <a href="https://rapid-tech.com.au/megger-mpac128-mpac128-atex-acoustic-imager/">Megger MPAC128 &#038; MPAC128-ATEX Acoustic Imager | Detect Partial Discharge &#038; Gas Leaks with 120m Range, 128 Microphones, ATEX-Certified for Zone 2</a> appeared first on <a href="https://rapid-tech.com.au">rapid-tech</a>.</p>
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