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      <video:title>MIG/MAG Short-arc — Carbon Steel S235JR, 1.8 mm, 100A</video:title>
      <video:description>Low-current MIG on thin carbon steel is common in automotive and sheet metal fabrication. At 100A the arc is dim enough that most cameras lose the pool entirely between transfer cycles. This recording proves Rocket Retina maintains a usable image even at the low end of the MIG current range.</video:description>
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      <video:title>MIG/MAG Short-arc — Carbon Steel S235JR, 2.3 mm, 130A</video:title>
      <video:description>This mid-range short-arc setting is the workhorse of light structural and general fabrication on carbon steel. The recording lets you compare pool behavior between 100A and 130A on the same S235JR material — useful for training welders and validating WPS parameters.</video:description>
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      <video:description>MIG short-arc on thin stainless is used in food processing equipment and light chemical plant work. The reflective stainless surface creates glare that blinds most cameras. This recording shows that the dual-exposure approach handles the stainless reflectivity while keeping the pool border visible.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/50_150_130A_stainless_synergic_hdr_logo.mp4</video:content_loc>
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      <video:title>MIG/MAG Pulse — Carbon Steel S235JR, 3.7 mm, 130A</video:title>
      <video:description>Pulse MIG on medium-thickness carbon steel reduces spatter and gives better control of heat input compared to short-arc. The pulsed arc creates dark phases that cause image flicker on standard cameras. This recording shows that the dual-exposure merge eliminates that flicker entirely.</video:description>
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      <video:title>MIG/MAG Pulse — Stainless 304, 3.7 mm, 130A</video:title>
      <video:description>Pulse MIG on stainless is the preferred process for food-grade, pharmaceutical, and chemical equipment. The combination of pulse arc flicker and stainless reflectivity makes this one of the hardest scenarios for welding cameras. This recording demonstrates stable imaging under both challenges simultaneously.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/50_150_130A_pulse_stainless_hdr_logo.mp4</video:content_loc>
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    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/mig-pulse-stainless-160a-5.0mm</loc>
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      <video:title>MIG/MAG Pulse — Stainless 304, 5.0 mm, 160A</video:title>
      <video:description>Medium-thickness stainless at 160A pulse is typical for pressure vessel and piping work. The higher current produces a brighter arc that overwhelms most cameras during pulse peaks. This recording shows that the camera handles the full 160A brightness range while maintaining pool detail.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/50_150_160A_pulse_stainless_hdr_logo.mp4</video:content_loc>
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  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/mig-short-arc-carbon-180a-3.8mm</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
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      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/50_150_180A_Synergic_hdr_logo.thumb.jpg</video:thumbnail_loc>
      <video:title>MIG/MAG Short-arc — Carbon Steel S235JR, 3.8 mm, 180A</video:title>
      <video:description>High-current short-arc is used when pulse capability is not available or when maximum deposition rate is needed on carbon steel. At 180A the arc brightness is substantial. This recording demonstrates clear pool imaging even near the short-arc to globular transition zone.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/50_150_180A_Synergic_hdr_logo.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/mig-short-arc-carbon-180a-3.8mm" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/mig-short-arc-carbon-180a-3.8mm" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/mig-short-arc-carbon-180a-3.8mm" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/mig-short-arc-carbon-180a-3.8mm" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/mig-pulse-carbon-180a-6.5mm</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/50_150_180A_pulse_hdr_logo.thumb.jpg</video:thumbnail_loc>
      <video:title>MIG/MAG Pulse — Carbon Steel S235JR, 6.5 mm, 180A</video:title>
      <video:description>Pulse MIG at 180A on thick carbon steel is a high-deposition scenario used in heavy structural and shipbuilding. The intense arc and large pool make camera observation challenging. This recording shows that both the pool shape and the surrounding joint are visible throughout the pulse cycle.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/50_150_180A_pulse_hdr_logo.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/mig-pulse-carbon-180a-6.5mm" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/mig-pulse-carbon-180a-6.5mm" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/mig-pulse-carbon-180a-6.5mm" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/mig-pulse-carbon-180a-6.5mm" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/mig-short-arc-carbon-200a-4.5mm-a</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/50_150_200A_org2_hdr_logo.thumb.jpg</video:thumbnail_loc>
      <video:title>MIG/MAG Short-arc — Carbon Steel S235JR, 4.5 mm, 200A (Recording A)</video:title>
      <video:description>200A on carbon steel is a common production setting for structural work. At this current, the arc is bright and the pool is large. Having two recordings at the same parameters lets you verify both camera consistency and welding process repeatability.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/50_150_200A_org2_hdr_logo.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/mig-short-arc-carbon-200a-4.5mm-a" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/mig-short-arc-carbon-200a-4.5mm-a" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/mig-short-arc-carbon-200a-4.5mm-a" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/mig-short-arc-carbon-200a-4.5mm-a" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/mig-short-arc-carbon-200a-4.5mm-b</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/50_150_200A_org3_hdr_logo.thumb.jpg</video:thumbnail_loc>
      <video:title>MIG/MAG Short-arc — Carbon Steel S235JR, 4.5 mm, 200A (Recording B)</video:title>
      <video:description>Process repeatability is a key requirement for ISO 3834 and EN 1090 compliance. Two recordings at identical parameters demonstrate that both the welding process and the camera system produce consistent results across separate weld runs.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/50_150_200A_org3_hdr_logo.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/mig-short-arc-carbon-200a-4.5mm-b" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/mig-short-arc-carbon-200a-4.5mm-b" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/mig-short-arc-carbon-200a-4.5mm-b" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/mig-short-arc-carbon-200a-4.5mm-b" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-stainless</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/TigDW2Logo.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG — Stainless Steel</video:title>
      <video:description>TIG on stainless is one of the most demanding camera scenarios due to the dim arc and reflective surface. This recording demonstrates that the dual-exposure system handles TIG imaging on stainless effectively.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/TigDW2Logo.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-stainless" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-stainless" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-stainless" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-stainless" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-si-wire</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ac-aluminium-butt-160a-si-wire.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG Pulse AC — Aluminium, Butt, 160A, Silicon Wire</video:title>
      <video:description>Aluminium TIG with silicon wire is used in automotive and aerospace fabrication. The reflective aluminium surface challenges most cameras — this recording shows stable imaging on highly reflective material.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ac-aluminium-butt-160a-si-wire.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-si-wire" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-si-wire" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-si-wire" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-si-wire" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-surfacing</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ac-aluminium-butt-160a-surfacing.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG Pulse AC — Aluminium, Butt, 160A, Surfacing</video:title>
      <video:description>Surfacing (overlay welding) on aluminium requires precise heat control to avoid burn-through. This recording shows the pool dynamics during surfacing with AC pulse.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ac-aluminium-butt-160a-surfacing.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-surfacing" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-surfacing" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-surfacing" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-surfacing" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-mg-wire</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ac-aluminium-butt-160a-mg-wire.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG Pulse AC — Aluminium, Butt, 160A, Mg Wire</video:title>
      <video:description>Comparing magnesium vs silicon filler wire on the same aluminium base at identical current shows how filler composition affects pool shape and wetting.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ac-aluminium-butt-160a-mg-wire.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-mg-wire" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-mg-wire" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-mg-wire" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-butt-160a-mg-wire" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-overhead-160a-mg-wire</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ac-aluminium-overhead-160a-mg-wire.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG Pulse AC — Aluminium, Overhead, 160A, Mg Wire</video:title>
      <video:description>Overhead aluminium TIG is rare in camera recordings. The inverted pool behavior and the challenge of maintaining fusion against gravity are clearly visible.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ac-aluminium-overhead-160a-mg-wire.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-overhead-160a-mg-wire" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-pulse-ac-aluminium-overhead-160a-mg-wire" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-pulse-ac-aluminium-overhead-160a-mg-wire" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-overhead-160a-mg-wire" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-160a-04hz-mg-wire</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ac-aluminium-160a-04hz-mg-wire.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG Pulse AC — Aluminium, 160A, 0.4Hz Pulse, Mg Wire</video:title>
      <video:description>Low-frequency pulse TIG on aluminium creates a distinctive 'walking the cup' pattern. The slow pulse rate makes individual heat cycles observable.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ac-aluminium-160a-04hz-mg-wire.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-160a-04hz-mg-wire" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-pulse-ac-aluminium-160a-04hz-mg-wire" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-pulse-ac-aluminium-160a-04hz-mg-wire" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ac-aluminium-160a-04hz-mg-wire" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-aluminium-fillet-180a-mg-wire</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-aluminium-fillet-180a-mg-wire.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG — Aluminium, Fillet, 180A, Mg Wire</video:title>
      <video:description>Aluminium fillet welds require precise torch angle and heat input. At 180A the pool is large and mobile — the camera captures the wetting behavior on both legs of the fillet.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-aluminium-fillet-180a-mg-wire.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-aluminium-fillet-180a-mg-wire" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-aluminium-fillet-180a-mg-wire" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-aluminium-fillet-180a-mg-wire" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-aluminium-fillet-180a-mg-wire" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-aluminium-overhead-160a-mg-wire</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-aluminium-overhead-160a-mg-wire.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG — Aluminium, Overhead, 160A, Mg Wire</video:title>
      <video:description>Overhead aluminium TIG welding with filler wire is a high-skill position. This recording shows the pool behavior when gravity works against the welder.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-aluminium-overhead-160a-mg-wire.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-aluminium-overhead-160a-mg-wire" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-aluminium-overhead-160a-mg-wire" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-aluminium-overhead-160a-mg-wire" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-aluminium-overhead-160a-mg-wire" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-stainless-fillet-105a-wire</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-stainless-fillet-105a-wire.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG — Stainless, Fillet, 105A, with Wire</video:title>
      <video:description>Stainless fillet welds are common in food processing and chemical equipment. The reflective surface and fillet geometry are captured clearly.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-stainless-fillet-105a-wire.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-stainless-fillet-105a-wire" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-stainless-fillet-105a-wire" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-stainless-fillet-105a-wire" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-stainless-fillet-105a-wire" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-stainless-fillet-90a</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-stainless-fillet-90a.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG — Stainless, Fillet, 90A</video:title>
      <video:description>At 90A the arc is dimmer than at 105A, testing the camera's low-current imaging capability on a reflective surface.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-stainless-fillet-90a.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-stainless-fillet-90a" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-stainless-fillet-90a" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-stainless-fillet-90a" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-stainless-fillet-90a" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-stainless-fillet-90a-wire-36hz</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-pulse-stainless-fillet-90a-wire-36hz.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG Pulse — Stainless, Fillet, 90A, Wire, 36Hz</video:title>
      <video:description>Pulse TIG reduces heat input on stainless, minimizing distortion and heat tint. The 36 Hz pulse creates visible pool oscillation.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-pulse-stainless-fillet-90a-wire-36hz.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-stainless-fillet-90a-wire-36hz" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-pulse-stainless-fillet-90a-wire-36hz" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-pulse-stainless-fillet-90a-wire-36hz" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-stainless-fillet-90a-wire-36hz" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-stainless-fillet-120a-wire-36hz</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-pulse-stainless-fillet-120a-wire-36hz.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG Pulse — Stainless, Fillet, 120A, Wire, 36Hz</video:title>
      <video:description>At 120A the pool is significantly larger than at 90A with the same 36 Hz pulse. Useful for comparing heat input effects.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-pulse-stainless-fillet-120a-wire-36hz.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-stainless-fillet-120a-wire-36hz" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-pulse-stainless-fillet-120a-wire-36hz" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-pulse-stainless-fillet-120a-wire-36hz" rel="alternate" hreflang="de" />
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  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ss304-overhead-80a-no-wire-36hz</loc>
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      <video:title>TIG Pulse — SS 304, Overhead, 80A, No Wire, 36Hz</video:title>
      <video:description>Autogenous overhead TIG on stainless 304 is demanding — the pool must be kept small to prevent dripping. Low current + pulse controls heat input.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ss304-overhead-80a-no-wire-36hz.mp4</video:content_loc>
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  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ss304-overhead-80a-no-wire-120hz</loc>
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      <video:title>TIG Pulse — SS 304, Overhead, 80A, No Wire, 120Hz</video:title>
      <video:description>Higher pulse frequency (120 Hz vs 36 Hz) at the same current produces a smoother pool with less visible oscillation. Direct comparison available.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ss304-overhead-80a-no-wire-120hz.mp4</video:content_loc>
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  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ss307-overhead-115a-no-wire-36hz</loc>
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      <video:title>TIG Pulse — SS 307, Overhead, 115A, No Wire, 36Hz</video:title>
      <video:description>Stainless 307 has different solidification behavior than 304. At 115A overhead the larger pool tests both the welder and the camera.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ss307-overhead-115a-no-wire-36hz.mp4</video:content_loc>
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  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-pulse-ss307-overhead-90a-no-wire-36hz</loc>
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    <priority>0.7</priority>
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      <video:title>TIG Pulse — SS 307, Overhead, 90A, No Wire, 36Hz</video:title>
      <video:description>At 90A the pool is smaller and more controllable than at 115A. Useful for comparing how current affects overhead TIG on the same material.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-pulse-ss307-overhead-90a-no-wire-36hz.mp4</video:content_loc>
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  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-ss316-overhead-70a</loc>
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      <video:description>316 stainless is used in marine and chemical applications. At 70A the arc is very dim — this recording demonstrates camera capability at the low end of the TIG current range.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-ss316-overhead-70a.mp4</video:content_loc>
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    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-carbon-steel-butt-150a-wire-root</loc>
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    <priority>0.7</priority>
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      <video:title>TIG — Carbon Steel, Butt, 150A, Root Side</video:title>
      <video:description>Root pass visibility is critical for quality — the camera captures the root formation and penetration profile.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-carbon-steel-butt-150a-wire-root.mp4</video:content_loc>
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  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-carbon-steel-butt-150a-wire-face</loc>
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      <video:title>TIG — Carbon Steel, Butt, 150A, Face Side</video:title>
      <video:description>Seeing both root and face side of the same weld demonstrates how the camera captures different perspectives of the same joint.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-carbon-steel-butt-150a-wire-face.mp4</video:content_loc>
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  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-95a-root-pass</loc>
    <changefreq>monthly</changefreq>
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      <video:title>TIG — 95A, Root Pass</video:title>
      <video:description>Root pass quality determines the integrity of the entire weld. This low-current root pass shows the keyhole and penetration dynamics.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-95a-root-pass.mp4</video:content_loc>
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    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-95a-root-pass" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-95a-root-pass" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-95a-root-pass" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-95a-root-pass" rel="alternate" hreflang="x-default" />
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  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-100a-root-pass</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-100a-root-pass.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG — 100A, Root Pass</video:title>
      <video:description>Small current differences in root passes significantly affect penetration. Side-by-side comparison with the 95A recording is instructive.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-100a-root-pass.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-100a-root-pass" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-100a-root-pass" rel="alternate" hreflang="pl" />
    <xhtml:link href="https://www.rocketwelder.com/de/welding-camera/gallery/tig-100a-root-pass" rel="alternate" hreflang="de" />
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-100a-root-pass" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-130a-fill-pass-1</loc>
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    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-130a-fill-pass-1.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG — 130A, Fill Pass 1</video:title>
      <video:description>Multi-pass TIG welding requires different technique per pass. This first fill pass shows how the pool behavior changes from root to fill.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-130a-fill-pass-1.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-130a-fill-pass-1" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-130a-fill-pass-1" rel="alternate" hreflang="pl" />
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    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-130a-fill-pass-1" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-130a-fill-pass-2</loc>
    <changefreq>monthly</changefreq>
    <priority>0.7</priority>
    <video:video>
      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-130a-fill-pass-2.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG — 130A, Fill Pass 2</video:title>
      <video:description>Each successive fill pass has a different groove profile. This recording shows how pool width and depth change as the groove fills.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-130a-fill-pass-2.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-130a-fill-pass-2" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-130a-fill-pass-2" rel="alternate" hreflang="pl" />
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    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-130a-fill-pass-2" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/welding-camera/gallery/tig-130a-fill-pass-3</loc>
    <changefreq>monthly</changefreq>
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      <video:thumbnail_loc>https://media.rocketwelder.com/media/videos/tig-130a-fill-pass-3.thumb.jpg</video:thumbnail_loc>
      <video:title>TIG — 130A, Fill Pass 3 (Cap)</video:title>
      <video:description>The cap pass determines the final weld appearance. This completes a full root-to-cap multi-pass TIG sequence captured by the camera.</video:description>
      <video:content_loc>https://media.rocketwelder.com/media/videos/tig-130a-fill-pass-3.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-130a-fill-pass-3" rel="alternate" hreflang="en" />
    <xhtml:link href="https://www.rocketwelder.com/pl/welding-camera/gallery/tig-130a-fill-pass-3" rel="alternate" hreflang="pl" />
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    <xhtml:link href="https://www.rocketwelder.com/en/welding-camera/gallery/tig-130a-fill-pass-3" rel="alternate" hreflang="x-default" />
  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/blog/beleuchtungssystem-bald-verfuegbar</loc>
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    <priority>0.6</priority>
    <video:video>
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      <video:title>Bald verfügbar: RocketWelder Beleuchtungssystem — DIN-Schiene &amp; Desktop</video:title>
      <video:description>Ein neues RocketWelder Beleuchtungssystem ist unterwegs — in zwei Ausführungen. DIN-Schiene zur Schaltschrank-Integration, Desktop für die Werkbank. Entwickelt, um Schmelzbad und Lichtbogen für GMAW und GTAW auszuleuchten.</video:description>
      <video:content_loc>https://media.rocketwelder.com/blog/https://media.rocketwelder.com/media/videos/50_150_200A_org2_hdr_logo.mp4</video:content_loc>
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  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/blog/illumination-system-coming-soon</loc>
    <lastmod>2026-04-11T00:00:00Z</lastmod>
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    <priority>0.6</priority>
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      <video:title>Coming Soon: RocketWelder Illumination System — DIN Rail &amp; Desktop</video:title>
      <video:description>A new RocketWelder Illumination System is on its way — in two form factors. DIN rail for cabinet integration, desktop for the bench. Built to light the pool and arc for both GMAW and GTAW.</video:description>
      <video:content_loc>https://media.rocketwelder.com/blog/https://media.rocketwelder.com/media/videos/50_150_200A_org2_hdr_logo.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/en/blog/illumination-system-coming-soon" rel="alternate" hreflang="en" />
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  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/blog/system-oswietlenia-juz-wkrotce</loc>
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      <video:title>Już wkrótce: System oświetlenia RocketWelder — wersja na szynę DIN i biurkowa</video:title>
      <video:description>Nowy system oświetlenia RocketWelder już w drodze — w dwóch wariantach. Na szynę DIN do szafy sterowniczej i biurkowy na stanowisko. Stworzony, by oświetlać jeziorko i łuk zarówno przy GMAW, jak i GTAW.</video:description>
      <video:content_loc>https://media.rocketwelder.com/blog/https://media.rocketwelder.com/media/videos/50_150_200A_org2_hdr_logo.mp4</video:content_loc>
    </video:video>
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  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/blog/doppelkamera-mag-schweisszelle</loc>
    <lastmod>2026-02-15T00:00:00Z</lastmod>
    <changefreq>monthly</changefreq>
    <priority>0.6</priority>
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      <video:thumbnail_loc>https://media.rocketwelder.com/blog/media/images/rocketwelder-vision-system-poster.webp</video:thumbnail_loc>
      <video:title>Doppelkamera-Setup an einer MAG-Schweißzelle: Dünnwandige Materialien in der Produktion</video:title>
      <video:description>Zwei Rocket Retina Kameras an einer Doppelbrenner-MAG-135-Schweißzelle. Dünnwandige Materialien, zwei Monitore, echte Produktion.</video:description>
      <video:content_loc>https://media.rocketwelder.com/blog/media/videos/rocketwelder-vision-system.mp4</video:content_loc>
    </video:video>
    <xhtml:link href="https://www.rocketwelder.com/de/blog/doppelkamera-mag-schweisszelle" rel="alternate" hreflang="de" />
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  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/blog/dual-camera-mag-welding-cell</loc>
    <lastmod>2026-02-15T00:00:00Z</lastmod>
    <changefreq>monthly</changefreq>
    <priority>0.6</priority>
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      <video:title>Dual Camera Setup on a MAG Welding Cell: Thin-Wall Materials in Production</video:title>
      <video:description>Two Rocket Retina cameras deployed on a dual-torch MAG 135 welding cell. Thin-wall materials, two monitors, real production.</video:description>
      <video:content_loc>https://media.rocketwelder.com/blog/media/videos/rocketwelder-vision-system.mp4</video:content_loc>
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    <loc>https://www.rocketwelder.com/en/blog/podwojna-kamera-stanowisko-mag</loc>
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      <video:title>Podwójna kamera na stanowisku MAG: materiały cienkościenne w produkcji</video:title>
      <video:description>Dwie kamery Rocket Retina wdrożone na podwójnym stanowisku MAG 135. Materiały cienkościenne, dwa monitory, prawdziwa produkcja.</video:description>
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      <image:caption>When AMAZEMET needed to automate plasma torch control for their revolutionary metal powder production system, they faced a challenge familiar to many manufacturers.</image:caption>
      <image:title>From Welding to Metal Powder: How AMAZEMET Automated Their Plasma Torch with AI Vision</image:title>
    </image:image>
    <xhtml:link href="https://www.rocketwelder.com/en/blog/amazemet-case-study" rel="alternate" hreflang="en" />
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      <image:loc>https://media.rocketwelder.com/blog/media/images/retrainable-ai.webp</image:loc>
      <image:caption>In Branchen wie Luft- und Raumfahrt, Raumfahrt, Verteidigung und fortschrittlicher Fertigung ist Schweißen nicht nur ein mechanischer Vorgang — es ist ein zentraler Bestandteil Ihres proprietären Prozesses.</image:caption>
      <image:title>Das Modell besitzen, den Vorsprung sichern: Warum neu trainierbare KI die Zukunft der Schweißautomatisierung ist</image:title>
    </image:image>
    <xhtml:link href="https://www.rocketwelder.com/en/blog/retrainable-ai-future" rel="alternate" hreflang="en" />
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    <lastmod>2025-06-09T00:00:00Z</lastmod>
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      <video:title>AI-Powered Welding Training: Real Welding Meets Digital Insights</video:title>
      <video:description>Welding is a hands-on skill. Real arc, real torch, real metal. While VR simulators offer virtual practice, they can't fully replicate the complexity of live welding.</video:description>
      <video:content_loc>https://media.rocketwelder.com/blog/media/videos/rocketwelder-welding-training-station-with-ai.mp4</video:content_loc>
    </video:video>
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  </url>
  <url>
    <loc>https://www.rocketwelder.com/en/blog/new-website-launch</loc>
    <lastmod>2025-05-20T00:00:00Z</lastmod>
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    <image:image>
      <image:loc>https://media.rocketwelder.com/blog/media/images/new-website-launch.webp</image:loc>
      <image:caption>We're excited to announce the launch of our updated RocketWelder.com! The new site highlights real-world solutions built with our AI platform.</image:caption>
      <image:title>Introducing the New RocketWelder Website: Solutions in Focus</image:title>
    </image:image>
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