{"id":4610,"date":"2026-05-26T09:30:10","date_gmt":"2026-05-26T01:30:10","guid":{"rendered":"https:\/\/www.corvelanmag.com\/?post_type=product&#038;p=4610"},"modified":"2026-09-27T18:25:46","modified_gmt":"2026-09-27T10:25:46","slug":"rcdfq-forced-oil-cooled-electromagnetic-separator","status":"publish","type":"product","link":"https:\/\/www.corvelanmag.com\/de\/products\/rcdfq-forced-oil-cooled-electromagnetic-separator\/","title":{"rendered":"RCDFQ Elektromagnetabscheider mit Zwangs\u00f6lk\u00fchlung"},"content":{"rendered":"\t\t<div data-elementor-type=\"wp-post\" data-elementor-id=\"4610\" class=\"elementor elementor-4610\" data-elementor-post-type=\"product\">\n\t\t\t\t<div class=\"elementor-element elementor-element-6700d59 e-con e-atomic-element e-div-block-base e-default-div e-6700d59-db50582 \" data-id=\"6700d59\" data-element_type=\"e-div-block\" data-e-type=\"e-div-block\" data-interaction-id=\"6700d59\" data-e-type=\"e-div-block\" data-id=\"6700d59\">\n    \t\t<div 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strong{display:block;color:var(--cl-blue);margin-bottom:4px}\r\n@media (max-width:1024px){.coverlan-pdp .cl-proof-flow{grid-template-columns:1fr}.coverlan-pdp .cl-proof-arrow{transform:rotate(90deg)}.coverlan-pdp .cl-method{grid-template-columns:repeat(2,minmax(0,1fr))}.coverlan-pdp .cl-inner{padding:58px 24px}.coverlan-pdp .cl-hero-grid{grid-template-columns:1fr;gap:30px}.coverlan-pdp .cl-hero-media{max-width:760px}.coverlan-pdp .cl-grid-4,.coverlan-pdp .cl-steps{grid-template-columns:repeat(2,minmax(0,1fr))}.coverlan-pdp .cl-rfq{grid-template-columns:1fr}}\r\n@media (max-width:767px){.coverlan-pdp .cl-method,.coverlan-pdp .cl-figure-grid,.coverlan-pdp .cl-reference-list{grid-template-columns:1fr}.coverlan-pdp .cl-priority-flow{display:grid;grid-template-columns:1fr}.coverlan-pdp .cl-priority-item{justify-content:space-between}.coverlan-pdp .cl-priority-item:not(:last-child):after{content:'\u2193'}.coverlan-pdp .cl-inner{padding:46px 16px}.coverlan-pdp .cl-hero .cl-inner{padding-top:34px;padding-bottom:40px}.coverlan-pdp h1{font-size:30px}.coverlan-pdp h2{font-size:24px}.coverlan-pdp .cl-lead{font-size:17px}.coverlan-pdp .cl-decision-snapshot,.coverlan-pdp .cl-grid-2,.coverlan-pdp .cl-grid-3,.coverlan-pdp .cl-grid-4,.coverlan-pdp .cl-steps,.coverlan-pdp .cl-gallery,.coverlan-pdp .cl-rfq-list{grid-template-columns:1fr}.coverlan-pdp .cl-actions{align-items:stretch}.coverlan-pdp .cl-btn{width:100%}.coverlan-pdp .cl-card{padding:20px}.coverlan-pdp table{min-width:820px}}\r\n@media (prefers-reduced-motion:reduce){.coverlan-pdp *{scroll-behavior:auto!important;transition:none!important;animation:none!important}}\r\n<\/style>\r\n<section class=\"coverlan-pdp\">\r\n<section class=\"cl-band cl-hero\" id=\"top\">\r\n<div class=\"cl-inner cl-hero-grid\">\r\n<div>\r\n<div class=\"cl-kicker\">Self-Cleaning Conveyor Tramp-Iron Removal<\/div>\r\n<h1>RCDFQ Forced-Oil-Cooled Electromagnetic Separator<\/h1>\r\n<p class=\"cl-lead\">Corvelan RCDFQ removes unwanted iron and steel from bulk material moving on a conveyor. It is a suspended electromagnetic separator with automatic belt cleaning and forced oil cooling. The cleaning belt carries captured metal away automatically, helping protect downstream equipment without routine manual magnet cleaning.<\/p>\r\n<div aria-label=\"Quick product fit\" class=\"cl-decision-snapshot\">\r\n<div class=\"cl-snap\"><strong>Best For<\/strong>Crusher, screen, mill and conveyor protection where ferrous tramp must be removed continuously.<\/div>\r\n<div class=\"cl-snap\"><strong>Target<\/strong>Responsive ferrous tramp such as steel pieces, bolts, rods and wire.<\/div>\r\n<div class=\"cl-snap\"><strong>Installation<\/strong>Suspended above a conveyor with a self-cleaning reject belt.<\/div>\r\n<div class=\"cl-snap\"><strong>We Select From<\/strong>Belt width, burden depth, working distance, belt speed, target iron, installation space and project utilities.<\/div>\r\n<\/div>\r\n<div class=\"cl-actions\">\r\n<a class=\"cl-btn primary\" data-cta=\"hero\" href=\"https:\/\/www.corvelanmag.com\/contact-us\/\">Request a Configuration Review<\/a>\r\n<a class=\"cl-btn secondary\" href=\"#series-data\">View RCDFQ Series Data<\/a>\r\n<\/div>\r\n<\/div>\r\n<div class=\"cl-hero-media\"><img fetchpriority=\"high\" alt=\"Coverlan RCDFQ forced oil-cooled electromagnetic separator with self-cleaning belt and cooling-related assembly in a workshop\" decoding=\"async\" fetchpriority=\"high\" height=\"900\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-electromagnetic-separator-hero-v2.webp\" width=\"1200\"><\/div>\r\n<\/div>\r\n<\/section><section aria-label=\"RCDFQ page navigation\" class=\"cl-band cl-jump-band\"><div class=\"cl-inner\"><nav aria-label=\"Quick navigation\" class=\"cl-jump\"><strong>Jump to:<\/strong><a href=\"#quick-fit\">Fit<\/a><a href=\"#working-principle\">How It Works<\/a><a href=\"#design-features\">Design Features<\/a><a href=\"#performance\">Performance Factors<\/a><a href=\"#comparison\">RCDFQ vs Permanent<\/a><a href=\"#configuration\">Selection<\/a><a href=\"#series-data\">Models &amp; Specs<\/a><a href=\"#installation\">Installation<\/a><a href=\"#electrical-control\">Electrical &amp; Control<\/a><a href=\"#validation\">Validation<\/a><a href=\"#engineering-evidence\">Performance Testing<\/a><a href=\"#faq\">FAQ<\/a><\/nav><\/div><\/section>\r\n<section class=\"cl-band is-soft\" id=\"quick-fit\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">Quick Fit<\/div><h2>Is RCDFQ the right type of separator for your process?<\/h2>\r\n<p class=\"cl-answer\">We recommend RCDFQ when bulk material moves on a conveyor, the target is iron or steel, and captured metal needs to discharge automatically. We recommend another separator type when the target is non-ferrous, the process is not conveyor-based, or the installation cannot provide a safe suspended position.<\/p>\r\n<div class=\"cl-grid-2\">\r\n<div class=\"cl-card\"><h3>RCDFQ is a good fit when<\/h3><ul class=\"cl-check\">\r\n<li>Unwanted iron or steel must be removed before a crusher, screen, mill or other equipment that could be damaged or jammed.<\/li>\r\n<li>There is enough space and structural support to suspend the separator safely above the conveyor.<\/li>\r\n<li>Captured metal needs to discharge automatically and often enough to keep the line running.<\/li>\r\n<li>The site can support the required electrical supply and the selected cooling arrangement.<\/li>\r\n<\/ul><\/div>\r\n<div class=\"cl-card\"><h3>We recommend another type of separator when<\/h3><ul class=\"cl-limit\">\r\n<li>The main target is aluminum, copper or another non-ferrous metal.<\/li>\r\n<li>The main job is weakly magnetic mineral separation or a wet\/slurry process.<\/li>\r\n<li>There is no safe place to discharge captured metal, no service space, or no suitable support above the conveyor.<\/li>\r\n<li>Oil cooling, electrical equipment or site rules do not suit the installation.<\/li>\r\n<\/ul><\/div>\r\n<\/div>\r\n<\/div><\/section>\r\n<section class=\"cl-band\" id=\"application-fit\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">Application Fit<\/div><h2>Where is RCDFQ commonly used?<\/h2>\r\n<p class=\"cl-answer\">We install RCDFQ above conveyors carrying bulk material. Its job is to remove recurring iron or steel before that metal reaches equipment that could be damaged, jammed or contaminated.<\/p>\r\n<div class=\"cl-grid-4\">\r\n<div class=\"cl-card\"><h3>Crusher &amp; mill protection<\/h3><p>Remove bolts, rods, plate fragments, wire and other magnetic iron or steel before crushing, milling or screening equipment.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Coal &amp; mineral handling<\/h3><p>Use RCDFQ where the material layer on the conveyor can be deep or uneven. This material layer is often called the burden, and its depth changes how far the magnet must reach.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Aggregate &amp; cement raw material<\/h3><p>Protect downstream equipment when mixed bulk material can carry unwanted iron or steel through transfer conveyors.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Heavy bulk-transfer lines<\/h3><p>Use automatic overband discharge when tramp iron appears often enough that stopping to clean a magnet by hand would interrupt operation.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>RCDFQ or a permanent overband magnet?<\/strong> We normally consider RCDFQ when the conveyor needs an energized electromagnetic system and the site can support electrical power and cooling. A permanent overband magnet may be simpler when that level of magnetic duty is not needed. We compare both options using the same working distance, material depth and target-iron data.<\/div>\r\n<\/div><\/section>\r\n<section class=\"cl-band is-soft\" id=\"working-principle\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">Working Principle<\/div><h2>How does the RCDFQ electromagnetic separator remove tramp iron?<\/h2>\r\n<p class=\"cl-answer\">RCDFQ creates a magnetic field above the conveyor. Iron and steel that respond to the field are lifted from the moving material layer. The separator belt carries the captured metal out of the magnetic zone and drops it at the planned reject point.<\/p>\r\n<div class=\"cl-steps\">\r\n<div class=\"cl-step\"><h3>Material enters the separation zone<\/h3><p>Bulk material passes below the suspended separator at the actual belt speed and material depth.<\/p><\/div>\r\n<div class=\"cl-step\"><h3>Ferrous tramp responds to the field<\/h3><p>Iron becomes harder to capture when it is farther from the magnet, buried deeper in the material, smaller, or held down by surrounding material.<\/p><\/div>\r\n<div class=\"cl-step\"><h3>Captured metal transfers to the cleaning belt<\/h3><p>The cleaning belt holds and carries the captured iron away while the main conveyor keeps running.<\/p><\/div>\r\n<div class=\"cl-step\"><h3>Reject leaves the magnetic zone<\/h3><p>After the captured metal leaves the magnetic zone, it drops into the planned side or end collection point.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>Forced oil-cooled design:<\/strong> RCDFQ uses oil cooling to help manage heat while the electromagnet is energized. For the selected model, we confirm the oil circuit, cooling equipment, electrical scope and controls in the quotation and approved drawing.<\/div>\r\n<\/div><\/section>\r\n<section class=\"cl-band\" id=\"design-features\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">RCDFQ Design Features<\/div>\r\n<h2>What is built into the Corvelan RCDFQ series?<\/h2>\r\n<p class=\"cl-answer\">Our RCDFQ product documentation identifies the magnetic-circuit design, coil insulation treatment, automatic iron discharge, belt-tracking functions and rectifier\/control equipment as part of the series design.<\/p>\r\n<div class=\"cl-grid-3\">\r\n<div class=\"cl-card\"><h3>Computer-simulated magnetic circuit<\/h3><p>The RCDFQ magnetic circuit is designed using computer simulation. We use the design together with the listed model and T-level data when reviewing the required magnetic duty.<\/p><p class=\"cl-fine\">Simulation supports design work; it is not a measured field test or a separation-efficiency result.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Coil insulation and curing treatment<\/h3><p>The coil uses a dip-insulation and curing process intended to improve insulation protection against dust and harmful gases during industrial service.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Automatic iron discharge<\/h3><p>The self-cleaning belt carries captured iron away from the magnetic zone so the separator does not rely on routine manual removal of captured metal.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Automatic belt-tracking correction<\/h3><p>The product documentation lists an automatic belt-correction function for the cleaning belt. We still include alignment, pulley and discharge checks in routine maintenance.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Sealed bearing housings<\/h3><p>The cleaning-belt assembly uses sealed bearing housings as part of the mechanical design. Bearing condition and access remain part of the service review.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Rectifier and control functions<\/h3><p>The RCDFQ documentation includes rectifier equipment with manual and centralized control functions. We confirm the final control interface and site electrical scope for each project.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-grid-2\" style=\"margin-top:28px\">\r\n<figure class=\"cl-figure\"><img loading=\"lazy\" alt=\"Complete Coverlan RCDFQ self-cleaning electromagnetic separator assembly in the workshop\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-complete-assembly.webp\" width=\"1200\"><figcaption><strong>Complete separator assembly<\/strong>Shows the suspended frame, electromagnet body, self-cleaning belt, drive and external assemblies as one integrated unit.<\/figcaption><\/figure>\r\n<figure class=\"cl-figure\"><img loading=\"lazy\" alt=\"Coverlan RCDFQ self-cleaning belt drive and electromagnetic separator structure in the workshop\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-self-cleaning-structure.webp\" width=\"1200\"><figcaption><strong>Self-cleaning structure<\/strong>Shows the cleaning-belt path, drive-side components, frame and service areas used in the mechanical review.<\/figcaption><\/figure>\r\n<\/div>\r\n<\/div><\/section>\r\n<section class=\"cl-band\" id=\"performance\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">Performance Factors<\/div><h2>What affects electromagnetic separation performance on a conveyor?<\/h2>\r\n<p class=\"cl-answer\">We do not choose an electromagnetic separator from one magnetic number or belt width alone. Magnetic flux density is often shown in millitesla (mT). We start with the hardest iron or steel piece you need to remove. Then we check working distance, material depth, belt speed and the installation position.<\/p><div aria-label=\"RCDFQ selection priority\" class=\"cl-priority-flow\"><div class=\"cl-priority-item\">Target Iron<\/div><div class=\"cl-priority-item\">Working Distance<\/div><div class=\"cl-priority-item\">Burden Depth<\/div><div class=\"cl-priority-item\">Belt Speed<\/div><div class=\"cl-priority-item\">Installation<\/div><div class=\"cl-priority-item\">Model \/ T-Level<\/div><\/div>\r\n<div class=\"cl-grid-3\">\r\n<div class=\"cl-card\"><h3>How far is the iron from the magnet?<\/h3><p>The farther the iron is from the magnet, the harder it is to capture. We call this working distance. Measure from the magnetic face to the iron you need to remove. Include both the air gap and the depth of the iron inside the material layer.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>What iron or steel do you need to remove?<\/h3><p>Tell us the hardest piece you need to capture. Its size, shape, weight, position and how often it appears all affect selection.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>How fast is your conveyor running?<\/h3><p>A faster belt gives the magnet less time to lift the target. Send us the normal and maximum belt speed when available.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>How deep is the material on the belt?<\/h3><p>A deeper material layer makes buried iron harder to lift. Engineers often call this burden depth. Bulk density, moisture, large lumps and tangled material can also make capture harder.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Where will the separator be installed?<\/h3><p>Cross-belt or in-line position, nearby steel, the conveyor trough and discharge space all affect how the separator can work and be serviced.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>How will we confirm the required result?<\/h3><p>If the project needs a specific test or pass\/fail result, tell us before model approval. We can then define the test piece, operating condition, measurement point and acceptance method.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>Magnetic intensity is not the same as separation efficiency.<\/strong> The RCDFQ table lists magnetic flux density in mT, but a higher mT value does not by itself guarantee better iron removal. Working distance, material depth, belt speed and the target iron also matter.<\/div>\r\n<\/div><\/section><section class=\"cl-band\" id=\"comparison\"><div class=\"cl-inner\"><div class=\"cl-kicker\">Separator Type Decision<\/div><h2>RCDFQ electromagnetic separator or permanent overband magnet?<\/h2><p class=\"cl-answer\">Both can remove ferrous tramp from conveyor-fed material. The right choice depends on the required magnetic duty, working distance, material depth, target iron, utilities, installation space and how the separator will be operated and maintained.<\/p><div aria-label=\"RCDFQ electromagnetic separator versus permanent overband magnet\" class=\"cl-table-wrap\" role=\"region\" tabindex=\"0\"><table class=\"cl-compare\"><thead><tr><th>Selection Question<\/th><th>RCDFQ Electromagnetic<\/th><th>Permanent Overband<\/th><\/tr><\/thead><tbody><tr><td>How is the magnetic field produced?<\/td><td>An energized electromagnet produces the magnetic field.<\/td><td>Permanent magnets produce the magnetic field without excitation power.<\/td><\/tr><tr><td>Does the magnet itself need excitation power?<\/td><td>Yes. Electrical excitation is part of the RCDFQ system.<\/td><td>No excitation power is needed to create the magnetic field. A self-cleaning belt can still require its own drive.<\/td><\/tr><tr><td>Is an electromagnet cooling system required?<\/td><td>Yes. RCDFQ uses a forced oil-cooling arrangement that must be included in the project review.<\/td><td>No electromagnet cooling circuit is required because there is no energized coil.<\/td><\/tr><tr><td>What process inputs still matter?<\/td><td>Target iron, working distance, burden depth, belt speed, conveyor width and installation geometry.<\/td><td>The same process inputs still matter. Magnet type alone does not determine capture performance.<\/td><\/tr><tr><td>How do we make the final choice?<\/td><td colspan=\"2\">We compare both options from the same conveyor and target data instead of choosing from magnet type or one magnetic value alone.<\/td><\/tr><\/tbody><\/table><\/div><div class=\"cl-callout\"><strong>Need help choosing?<\/strong> Send us the conveyor condition and target iron. We can first confirm whether RCDFQ is the right separator type before narrowing the model.<\/div><\/div><\/section>\r\n<section class=\"cl-band is-soft\" id=\"configuration\"><div class=\"cl-inner\"><div class=\"cl-kicker\">Corvelan Selection Method<\/div><h2>How does Corvelan select an RCDFQ model and T-level?<\/h2><p class=\"cl-answer\">We do not start from mT alone. We move from your conveyor and target iron to a candidate base model, T-level and installation check, then confirm what still needs drawing or test validation.<\/p><div class=\"cl-steps\"><div class=\"cl-step\"><h3>Start with belt width<\/h3><p>Belt width narrows the RCDFQ base-model range and gives us the first equipment size check.<\/p><\/div><div class=\"cl-step\"><h3>Check magnetic reach<\/h3><p>We review the real working distance and material depth to see how far the magnetic field must act into the burden.<\/p><\/div><div class=\"cl-step\"><h3>Define the target iron<\/h3><p>We use the hardest piece that matters: its type, size, shape, approximate weight and likely position in the material layer.<\/p><\/div><div class=\"cl-step\"><h3>Check operating conditions<\/h3><p>Belt speed, throughput, lumping, moisture and material behavior affect the time and difficulty of capture.<\/p><\/div><div class=\"cl-step\"><h3>Compare T-levels<\/h3><p>We use the series data to compare candidate T-levels after the process conditions are defined. We do not treat mT as a separation-efficiency number.<\/p><\/div><div class=\"cl-step\"><h3>Check mechanical and electrical fit<\/h3><p>We review dimensions, equipment weight, support, excitation power, cooling auxiliaries, reject direction and service access.<\/p><\/div><div class=\"cl-step\"><h3>Confirm the selected configuration<\/h3><p>We close the remaining questions with the installation drawing, defined magnetic readings or a representative capture check when the project requires it.<\/p><\/div><\/div><div class=\"cl-actions\"><a class=\"cl-btn primary\" data-cta=\"mid\" href=\"https:\/\/www.corvelanmag.com\/contact-us\/\">Send Conveyor Data for Model Selection<\/a><\/div><\/div><\/section>\r\n<section class=\"cl-band\" id=\"selection-workflow\"><div class=\"cl-inner\"><div class=\"cl-kicker\">Selection Inputs<\/div><h2>What do we need from you to select RCDFQ?<\/h2><p class=\"cl-answer\">Start with what you already know. The four groups below are enough for an initial engineering review, and a conveyor photo or drawing can answer several installation questions at once.<\/p><div class=\"cl-grid-4\"><div class=\"cl-card\"><h3>Target Iron<\/h3><p>Tell us the critical iron or steel piece: type, approximate size, shape, weight if known and where it may sit inside the material.<\/p><\/div><div class=\"cl-card\"><h3>Conveyor &amp; Material<\/h3><p>Provide belt width, belt speed, material depth, throughput and the material condition that makes the target hardest to capture.<\/p><\/div><div class=\"cl-card\"><h3>Installation Space<\/h3><p>Show the available headroom, suspension structure, working distance, nearby steel and required reject direction.<\/p><\/div><div class=\"cl-card\"><h3>Required Confirmation<\/h3><p>Tell us if approval depends on dimensions, magnetic readings, a representative capture check or another project requirement.<\/p><\/div><\/div><div class=\"cl-callout\"><strong>Useful but not required for the first review:<\/strong> bulk density, moisture, temperature, trough profile, destination power supply, cleaning preference and any site-specific acceptance requirement.<\/div><\/div><\/section>\r\n<section class=\"cl-band is-soft\" id=\"series-data\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">RCDFQ Series Data<\/div><h2>Which RCDFQ electromagnetic separator models are available?<\/h2>\r\n<p class=\"cl-answer\">Use the table below to narrow the RCDFQ base model. We make the final selection from your material, material depth, target iron, working distance, conveyor speed and installation conditions.<\/p>\r\n<div class=\"cl-callout\">\r\n<h3 style=\"margin-bottom:12px\">RCDFQ series at a glance<\/h3>\r\n<div class=\"cl-grid-4\">\r\n<div class=\"cl-card\"><h3>1000\u20132400 mm<\/h3><p>Listed conveyor belt-width classes across the RCDFQ series.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>300\u2013650 mm<\/h3><p>Listed rated lifting-height references across the series.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>90\u2013250 mT<\/h3><p>Listed magnetic-intensity references across different models and T-levels.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>T1\u2013T7<\/h3><p>Tier availability depends on the RCDFQ base model.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>6.5\u2013200 kW<\/h3><p>Listed excitation-power range across all tabled configurations.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>\u22645.8 m\/s<\/h3><p>Listed maximum belt-speed reference in the current RCDFQ specifications.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>2620\u201335000 kg<\/h3><p>Listed equipment-weight range across the current RCDFQ configurations.<\/p><\/div>\r\n<\/div>\r\n<p class=\"cl-spec-note\"><strong>Series-range note:<\/strong> these values come from different RCDFQ models and T-levels. They are not one machine specification and should not be combined as if they describe a single separator.<\/p>\r\n<\/div>\r\n<div class=\"cl-callout\">\r\n<strong>Tier availability by base model:<\/strong> RCDFQ-10, RCDFQ-12 and RCDFQ-14 are listed with T1\u2013T3 configurations. RCDFQ-16, RCDFQ-18, RCDFQ-20, RCDFQ-22 and RCDFQ-24 are listed with T1\u2013T7 configurations.\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>How to use this table<\/strong><ul class=\"cl-check\" style=\"margin-top:12px\">\r\n<li><strong>Start with belt width.<\/strong> This narrows the RCDFQ base model.<\/li>\r\n<li><strong>Check rated lifting height.<\/strong> Rated lifting height is a preliminary model reference. Final operating distance depends on material depth, belt speed, target-metal size and installation conditions.<\/li>\r\n<li><strong>Compare T-levels.<\/strong> Higher tiers change magnetic intensity and can also change power, size and weight.<\/li>\r\n<li><strong>Do not choose from mT alone.<\/strong> Send us the working distance and target iron before final selection.<\/li>\r\n<\/ul><\/div>\r\n<div aria-label=\"RCDFQ series summary table\" class=\"cl-table-wrap\" role=\"region\" tabindex=\"0\"><table>\r\n<thead><tr><th>Base Model<\/th><th>Belt Width (mm)<\/th><th>Rated Lifting Height (mm)<\/th><th>Tiers<\/th><th>Listed Magnetic Intensity (\u2248mT)<\/th><th>Excitation Power Range (kW)<\/th><th>Weight Range (kg)<\/th><\/tr><\/thead>\r\n<tbody><tr><td>RCDFQ-10<\/td><td>1000<\/td><td>300<\/td><td>T1\u2013T3<\/td><td>90\u2013150<\/td><td>6.5\u201315<\/td><td>2620\u20133900<\/td><\/tr>\r\n<tr><td>RCDFQ-12<\/td><td>1200<\/td><td>350<\/td><td>T1\u2013T3<\/td><td>90\u2013150<\/td><td>9\u201320<\/td><td>3700\u20136000<\/td><\/tr>\r\n<tr><td>RCDFQ-14<\/td><td>1400<\/td><td>400<\/td><td>T1\u2013T3<\/td><td>90\u2013150<\/td><td>14\u201329<\/td><td>4450\u20137450<\/td><\/tr>\r\n<tr><td>RCDFQ-16<\/td><td>1600<\/td><td>450<\/td><td>T1\u2013T7<\/td><td>90\u2013250<\/td><td>18\u2013104<\/td><td>6500\u201317650<\/td><\/tr>\r\n<tr><td>RCDFQ-18<\/td><td>1800<\/td><td>500<\/td><td>T1\u2013T7<\/td><td>90\u2013250<\/td><td>26\u2013107<\/td><td>8800\u201323000<\/td><\/tr>\r\n<tr><td>RCDFQ-20<\/td><td>2000<\/td><td>550<\/td><td>T1\u2013T7<\/td><td>90\u2013250<\/td><td>30\u2013125<\/td><td>9950\u201325600<\/td><\/tr>\r\n<tr><td>RCDFQ-22<\/td><td>2200<\/td><td>600<\/td><td>T1\u2013T7<\/td><td>90\u2013250<\/td><td>39\u2013176<\/td><td>12440\u201327000<\/td><\/tr>\r\n<tr><td>RCDFQ-24<\/td><td>2400<\/td><td>650<\/td><td>T1\u2013T7<\/td><td>90\u2013250<\/td><td>40\u2013200<\/td><td>16000\u201335000<\/td><\/tr><\/tbody>\r\n<\/table><\/div>\r\n<p class=\"cl-spec-note\"><strong>How to read the magnetic data:<\/strong> mT means millitesla, a unit of magnetic flux density. The listed mT values and rated lifting heights are series selection references. They are not a universal field-at-distance guarantee and they are not a separation-efficiency percentage.<\/p><div class=\"cl-callout\"><h3 style=\"margin-bottom:12px\">How should you read the RCDFQ specifications?<\/h3><div aria-label=\"How to read RCDFQ specifications\" class=\"cl-table-wrap\" role=\"region\" tabindex=\"0\"><table class=\"cl-data-guide\"><thead><tr><th>Specification<\/th><th>What it helps us check<\/th><th>What it does not prove by itself<\/th><\/tr><\/thead><tbody><tr><td>Belt Width<\/td><td>Base-model matching to the conveyor class.<\/td><td>Final magnetic capture performance.<\/td><\/tr><tr><td>Rated Lifting Height<\/td><td>A series reference for narrowing the model range.<\/td><td>A guaranteed capture distance for every iron piece.<\/td><\/tr><tr><td>Magnetic Intensity (mT)<\/td><td>A listed magnetic-field reference for comparing the series.<\/td><td>Separation efficiency or guaranteed removal rate.<\/td><\/tr><tr><td>Excitation \/ Auxiliary Power<\/td><td>Electrical load and project utility planning.<\/td><td>Capture performance by itself.<\/td><\/tr><tr><td>Overall Dimensions &amp; Weight<\/td><td>Support, lifting, access and installation fit.<\/td><td>Magnetic reach or separation efficiency.<\/td><\/tr><tr><td>Maximum Belt Speed<\/td><td>A listed equipment reference that must be checked against the conveyor duty.<\/td><td>A guarantee that every target will be captured at that speed.<\/td><\/tr><\/tbody><\/table><\/div><\/div>\r\n<details><summary>View detailed RCDFQ model data (all listed variants)<\/summary>\r\n<div aria-label=\"Complete RCDFQ model table\" class=\"cl-table-wrap\" role=\"region\" tabindex=\"0\"><table class=\"cl-detailed\">\r\n<thead><tr><th>Model<\/th><th>Tier<\/th><th>Belt Width mm<\/th><th>Rated Lifting Height mm<\/th><th>Magnetic Intensity \u2248mT<\/th><th>Excitation Power kW<\/th><th>Fan Power kW<\/th><th>L mm<\/th><th>W mm<\/th><th>H mm<\/th><th>Max Belt Speed m\/s<\/th><th>Weight kg<\/th><\/tr><\/thead>\r\n<tbody><tr><td>RCDFQ-10<\/td><td>T1<\/td><td>1000<\/td><td>300<\/td><td>90<\/td><td>6.5<\/td><td>0.25<\/td><td>2960<\/td><td>1620<\/td><td>1480<\/td><td>5.8<\/td><td>2620<\/td><\/tr>\r\n<tr><td>RCDFQ-10<\/td><td>T2<\/td><td>1000<\/td><td>300<\/td><td>120<\/td><td>9.5<\/td><td>0.25<\/td><td>2960<\/td><td>1620<\/td><td>1520<\/td><td>5.8<\/td><td>3220<\/td><\/tr>\r\n<tr><td>RCDFQ-10<\/td><td>T3<\/td><td>1000<\/td><td>300<\/td><td>150<\/td><td>15<\/td><td>0.25<\/td><td>3000<\/td><td>1620<\/td><td>1550<\/td><td>5.8<\/td><td>3900<\/td><\/tr>\r\n<tr><td>RCDFQ-12<\/td><td>T1<\/td><td>1200<\/td><td>350<\/td><td>90<\/td><td>9<\/td><td>0.25<\/td><td>3250<\/td><td>1770<\/td><td>1520<\/td><td>5.8<\/td><td>3700<\/td><\/tr>\r\n<tr><td>RCDFQ-12<\/td><td>T2<\/td><td>1200<\/td><td>350<\/td><td>120<\/td><td>14<\/td><td>0.25<\/td><td>3350<\/td><td>1770<\/td><td>1550<\/td><td>5.8<\/td><td>4000<\/td><\/tr>\r\n<tr><td>RCDFQ-12<\/td><td>T3<\/td><td>1200<\/td><td>350<\/td><td>150<\/td><td>20<\/td><td>0.25<\/td><td>3520<\/td><td>1770<\/td><td>1590<\/td><td>5.8<\/td><td>6000<\/td><\/tr>\r\n<tr><td>RCDFQ-14<\/td><td>T1<\/td><td>1400<\/td><td>400<\/td><td>90<\/td><td>14<\/td><td>0.25<\/td><td>3350<\/td><td>1750<\/td><td>1550<\/td><td>5.8<\/td><td>4450<\/td><\/tr>\r\n<tr><td>RCDFQ-14<\/td><td>T2<\/td><td>1400<\/td><td>400<\/td><td>120<\/td><td>20<\/td><td>0.25<\/td><td>3520<\/td><td>1860<\/td><td>1590<\/td><td>5.8<\/td><td>6500<\/td><\/tr>\r\n<tr><td>RCDFQ-14<\/td><td>T3<\/td><td>1400<\/td><td>400<\/td><td>150<\/td><td>29<\/td><td>0.25<\/td><td>3630<\/td><td>1860<\/td><td>1620<\/td><td>5.8<\/td><td>7450<\/td><\/tr>\r\n<tr><td>RCDFQ-16<\/td><td>T1<\/td><td>1600<\/td><td>450<\/td><td>90<\/td><td>18<\/td><td>0.25<\/td><td>3520<\/td><td>1850<\/td><td>1590<\/td><td>5.8<\/td><td>6500<\/td><\/tr>\r\n<tr><td>RCDFQ-16<\/td><td>T2<\/td><td>1600<\/td><td>450<\/td><td>120<\/td><td>28<\/td><td>0.25<\/td><td>3750<\/td><td>2250<\/td><td>1620<\/td><td>5.8<\/td><td>8300<\/td><\/tr>\r\n<tr><td>RCDFQ-16<\/td><td>T3<\/td><td>1600<\/td><td>450<\/td><td>150<\/td><td>32<\/td><td>0.25<\/td><td>3950<\/td><td>2250<\/td><td>1630<\/td><td>5.8<\/td><td>9600<\/td><\/tr>\r\n<tr><td>RCDFQ-16<\/td><td>T4<\/td><td>1600<\/td><td>450<\/td><td>175<\/td><td>52<\/td><td>0.75<\/td><td>4120<\/td><td>2470<\/td><td>1750<\/td><td>5.8<\/td><td>11700<\/td><\/tr>\r\n<tr><td>RCDFQ-16<\/td><td>T5<\/td><td>1600<\/td><td>450<\/td><td>200<\/td><td>70<\/td><td>0.75<\/td><td>4170<\/td><td>2470<\/td><td>1750<\/td><td>5.8<\/td><td>13755<\/td><\/tr>\r\n<tr><td>RCDFQ-16<\/td><td>T6<\/td><td>1600<\/td><td>450<\/td><td>225<\/td><td>85<\/td><td>1.1<\/td><td>4230<\/td><td>2490<\/td><td>1800<\/td><td>5.8<\/td><td>16130<\/td><\/tr>\r\n<tr><td>RCDFQ-16<\/td><td>T7<\/td><td>1600<\/td><td>450<\/td><td>250<\/td><td>104<\/td><td>2x0.55<\/td><td>4350<\/td><td>2530<\/td><td>1860<\/td><td>5.8<\/td><td>17650<\/td><\/tr>\r\n<tr><td>RCDFQ-18<\/td><td>T1<\/td><td>1800<\/td><td>500<\/td><td>90<\/td><td>26<\/td><td>0.75<\/td><td>3950<\/td><td>2250<\/td><td>1630<\/td><td>5.8<\/td><td>8800<\/td><\/tr>\r\n<tr><td>RCDFQ-18<\/td><td>T2<\/td><td>1800<\/td><td>500<\/td><td>120<\/td><td>32<\/td><td>0.75<\/td><td>3900<\/td><td>2450<\/td><td>1650<\/td><td>5.8<\/td><td>11500<\/td><\/tr>\r\n<tr><td>RCDFQ-18<\/td><td>T3<\/td><td>1800<\/td><td>500<\/td><td>150<\/td><td>40<\/td><td>0.75<\/td><td>4000<\/td><td>2450<\/td><td>1670<\/td><td>5.8<\/td><td>13380<\/td><\/tr>\r\n<tr><td>RCDFQ-18<\/td><td>T4<\/td><td>1800<\/td><td>500<\/td><td>175<\/td><td>56<\/td><td>0.75<\/td><td>4240<\/td><td>2500<\/td><td>1800<\/td><td>5.8<\/td><td>16560<\/td><\/tr>\r\n<tr><td>RCDFQ-18<\/td><td>T5<\/td><td>1800<\/td><td>500<\/td><td>200<\/td><td>75<\/td><td>0.75<\/td><td>4300<\/td><td>2520<\/td><td>1850<\/td><td>5.8<\/td><td>20254<\/td><\/tr>\r\n<tr><td>RCDFQ-18<\/td><td>T6<\/td><td>1800<\/td><td>500<\/td><td>225<\/td><td>90<\/td><td>1.1<\/td><td>4300<\/td><td>2580<\/td><td>1900<\/td><td>5.8<\/td><td>22000<\/td><\/tr>\r\n<tr><td>RCDFQ-18<\/td><td>T7<\/td><td>1800<\/td><td>500<\/td><td>250<\/td><td>107<\/td><td>2x0.55<\/td><td>4400<\/td><td>2650<\/td><td>1950<\/td><td>5.8<\/td><td>23000<\/td><\/tr>\r\n<tr><td>RCDFQ-20<\/td><td>T1<\/td><td>2000<\/td><td>550<\/td><td>90<\/td><td>30<\/td><td>0.75<\/td><td>3950<\/td><td>2450<\/td><td>1650<\/td><td>5.8<\/td><td>9950<\/td><\/tr>\r\n<tr><td>RCDFQ-20<\/td><td>T2<\/td><td>2000<\/td><td>550<\/td><td>120<\/td><td>39<\/td><td>0.75<\/td><td>4100<\/td><td>2680<\/td><td>1670<\/td><td>5.8<\/td><td>11800<\/td><\/tr>\r\n<tr><td>RCDFQ-20<\/td><td>T3<\/td><td>2000<\/td><td>550<\/td><td>150<\/td><td>41<\/td><td>0.75<\/td><td>4260<\/td><td>2680<\/td><td>1670<\/td><td>5.8<\/td><td>13500<\/td><\/tr>\r\n<tr><td>RCDFQ-20<\/td><td>T4<\/td><td>2000<\/td><td>550<\/td><td>175<\/td><td>70<\/td><td>2x0.55<\/td><td>4400<\/td><td>2680<\/td><td>1830<\/td><td>5.8<\/td><td>21560<\/td><\/tr>\r\n<tr><td>RCDFQ-20<\/td><td>T5<\/td><td>2000<\/td><td>550<\/td><td>200<\/td><td>83<\/td><td>2x0.55<\/td><td>4470<\/td><td>2700<\/td><td>1900<\/td><td>5.8<\/td><td>21580<\/td><\/tr>\r\n<tr><td>RCDFQ-20<\/td><td>T6<\/td><td>2000<\/td><td>550<\/td><td>225<\/td><td>104<\/td><td>2x0.55<\/td><td>4520<\/td><td>2730<\/td><td>2150<\/td><td>5.8<\/td><td>24890<\/td><\/tr>\r\n<tr><td>RCDFQ-20<\/td><td>T7<\/td><td>2000<\/td><td>550<\/td><td>250<\/td><td>125<\/td><td>2x0.55<\/td><td>4600<\/td><td>2800<\/td><td>2250<\/td><td>5.8<\/td><td>25600<\/td><\/tr>\r\n<tr><td>RCDFQ-22<\/td><td>T1<\/td><td>2200<\/td><td>600<\/td><td>90<\/td><td>39<\/td><td>0.75<\/td><td>4100<\/td><td>2680<\/td><td>1670<\/td><td>5.8<\/td><td>12440<\/td><\/tr>\r\n<tr><td>RCDFQ-22<\/td><td>T2<\/td><td>2200<\/td><td>600<\/td><td>120<\/td><td>42<\/td><td>0.75<\/td><td>4260<\/td><td>2750<\/td><td>1690<\/td><td>5.8<\/td><td>15700<\/td><\/tr>\r\n<tr><td>RCDFQ-22<\/td><td>T3<\/td><td>2200<\/td><td>600<\/td><td>150<\/td><td>45<\/td><td>0.75<\/td><td>4500<\/td><td>2750<\/td><td>1690<\/td><td>5.8<\/td><td>16500<\/td><\/tr>\r\n<tr><td>RCDFQ-22<\/td><td>T4<\/td><td>2200<\/td><td>600<\/td><td>175<\/td><td>100<\/td><td>2x0.55<\/td><td>4650<\/td><td>2850<\/td><td>2200<\/td><td>5.8<\/td><td>18500<\/td><\/tr>\r\n<tr><td>RCDFQ-22<\/td><td>T5<\/td><td>2200<\/td><td>600<\/td><td>200<\/td><td>121<\/td><td>2x0.55<\/td><td>4700<\/td><td>2900<\/td><td>2300<\/td><td>5.8<\/td><td>21000<\/td><\/tr>\r\n<tr><td>RCDFQ-22<\/td><td>T6<\/td><td>2200<\/td><td>600<\/td><td>225<\/td><td>153<\/td><td>2x0.55<\/td><td>4780<\/td><td>2900<\/td><td>2300<\/td><td>5.8<\/td><td>23000<\/td><\/tr>\r\n<tr><td>RCDFQ-22<\/td><td>T7<\/td><td>2200<\/td><td>600<\/td><td>250<\/td><td>176<\/td><td>2x0.55<\/td><td>4830<\/td><td>2950<\/td><td>2370<\/td><td>5.8<\/td><td>27000<\/td><\/tr>\r\n<tr><td>RCDFQ-24<\/td><td>T1<\/td><td>2400<\/td><td>650<\/td><td>90<\/td><td>40<\/td><td>0.75<\/td><td>4260<\/td><td>2750<\/td><td>1690<\/td><td>5.8<\/td><td>16000<\/td><\/tr>\r\n<tr><td>RCDFQ-24<\/td><td>T2<\/td><td>2400<\/td><td>650<\/td><td>120<\/td><td>46<\/td><td>0.75<\/td><td>4500<\/td><td>2750<\/td><td>1690<\/td><td>5.8<\/td><td>18000<\/td><\/tr>\r\n<tr><td>RCDFQ-24<\/td><td>T3<\/td><td>2400<\/td><td>650<\/td><td>150<\/td><td>54<\/td><td>0.75<\/td><td>4800<\/td><td>2950<\/td><td>1720<\/td><td>5.8<\/td><td>20700<\/td><\/tr>\r\n<tr><td>RCDFQ-24<\/td><td>T4<\/td><td>2400<\/td><td>650<\/td><td>175<\/td><td>120<\/td><td>2x0.55<\/td><td>4600<\/td><td>2850<\/td><td>2100<\/td><td>5.8<\/td><td>24000<\/td><\/tr>\r\n<tr><td>RCDFQ-24<\/td><td>T5<\/td><td>2400<\/td><td>650<\/td><td>200<\/td><td>150<\/td><td>2x0.55<\/td><td>4700<\/td><td>2950<\/td><td>2280<\/td><td>5.8<\/td><td>28000<\/td><\/tr>\r\n<tr><td>RCDFQ-24<\/td><td>T6<\/td><td>2400<\/td><td>650<\/td><td>225<\/td><td>180<\/td><td>2x0.75<\/td><td>4850<\/td><td>3000<\/td><td>2430<\/td><td>5.8<\/td><td>31000<\/td><\/tr>\r\n<tr><td>RCDFQ-24<\/td><td>T7<\/td><td>2400<\/td><td>650<\/td><td>250<\/td><td>200<\/td><td>2x1.1<\/td><td>4950<\/td><td>3100<\/td><td>2560<\/td><td>5.8<\/td><td>35000<\/td><\/tr><\/tbody>\r\n<\/table><\/div>\r\n<\/details>\r\n<\/div><\/section>\r\n<section class=\"cl-band\" id=\"installation\"><div class=\"cl-inner cl-grid-2\">\r\n<div><div class=\"cl-kicker\">Installation &amp; Interfaces<\/div><h2>What do we check before RCDFQ is installed above the conveyor?<\/h2>\r\n<p class=\"cl-answer\">We check two things together: whether the magnet can reach the target iron and whether there is enough space to install and maintain the separator. Matching conveyor width is not enough if the support, reject path, nearby steel or service access does not work.<\/p>\r\n<ul class=\"cl-check\">\r\n<li>Conveyor belt width, speed, trough profile and normal\/maximum material depth.<\/li>\r\n<li>Available headroom, suspension points, support loads and lifting access.<\/li>\r\n<li>Target position inside the material layer and nearby steelwork around the magnetic zone.<\/li>\r\n<li>Reject direction, collection bin\/chute and clearance for the largest expected captured piece.<\/li>\r\n<li>Cleaning-belt drive, pulley\/bearing access, guarding and lockout access.<\/li>\r\n<li>Electrical supply, controls, cooling arrangement, ambient conditions and site requirements.<\/li>\r\n<\/ul><div class=\"cl-callout\"><strong>On the installation drawing, we review:<\/strong> suspension points, conveyor clearance, magnetic working distance, reject direction, cleaning-belt clearance, maintenance access and nearby steel structure.<\/div>\r\n<p class=\"cl-fine\">This general-arrangement image is a series reference. We confirm the selected model dimensions, connection points and installation details in the quotation and approved project drawing.<\/p>\r\n<\/div>\r\n<div class=\"cl-media\"><img loading=\"lazy\" alt=\"RCDFQ series general arrangement reference showing side and top views with L, W and H dimensions\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-general-arrangement-drawing.webp\" width=\"1200\"><\/div>\r\n<\/div><\/section>\r\n<section class=\"cl-band is-soft\" id=\"electrical-control\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">Electrical &amp; Control<\/div>\r\n<h2>How is the RCDFQ powered and controlled?<\/h2>\r\n<p class=\"cl-answer\">RCDFQ is an energized electromagnetic separator, so excitation power, auxiliary fan power, rectifier equipment and control interfaces are part of the project review. The exact electrical scope depends on the selected model and T-level.<\/p>\r\n<div class=\"cl-grid-3\">\r\n<div class=\"cl-card\"><h3>Rectifier equipment<\/h3><p>Our RCDFQ product documentation includes rectifier equipment as part of the electrical system. We confirm the selected project scope in the quotation and approved drawing.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Manual and centralized control<\/h3><p>The product documentation lists both manual and centralized control functions. We confirm the final control interface, interlocks and site connections for the project.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Model-specific electrical load<\/h3><p>Excitation power and fan power are listed by configuration in the RCDFQ table. We use the selected row for electrical planning rather than applying one value to the whole series.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-grid-2\" style=\"margin-top:28px\">\r\n<figure class=\"cl-figure\"><img loading=\"lazy\" alt=\"Side view of a Coverlan RCDFQ electromagnet and cooling-related assembly with external electrical enclosure\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-cooling-assembly-side.webp\" width=\"1200\"><figcaption><strong>Electromagnet and auxiliary assembly<\/strong>Shows the electromagnet body, external assembly components and electrical enclosure used for equipment-identity and interface review.<\/figcaption><\/figure>\r\n<figure class=\"cl-figure\"><img loading=\"lazy\" alt=\"Front view of a Coverlan RCDFQ electromagnet and cooling-related assembly in the workshop\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-cooling-assembly-front.webp\" width=\"1200\"><figcaption><strong>Front assembly view<\/strong>Helps review external component location, clearance and the physical arrangement around the electromagnet body.<\/figcaption><\/figure>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>Cooling-data boundary:<\/strong> the RCDFQ product identity is forced oil-cooled and the series table lists fan power by configuration. We confirm the selected cooling equipment and auxiliary arrangement in project documentation rather than inferring one cooling layout for every model.<\/div>\r\n<\/div><\/section>\r\n<section class=\"cl-band\" id=\"maintenance\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">Cleaning, Maintenance &amp; Safety<\/div><h2>What should be isolated and checked before RCDFQ maintenance?<\/h2>\r\n<p class=\"cl-answer\">RCDFQ has three main service hazards: electrical power, the moving cleaning belt and the suspended machine itself. Isolate all three before maintenance and follow the approved site lockout procedure.<\/p>\r\n<div class=\"cl-grid-3\">\r\n<div class=\"cl-card\"><h3>Cleaning belt and tracking<\/h3><p>The RCDFQ product documentation lists automatic belt-tracking correction and sealed bearing housings. During routine inspection, check belt alignment, pulley condition, bearing condition, drive access and the reject path.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Electrical and magnetic isolation<\/h3><p>Use the project-approved isolation and lockout procedure before service. We confirm the electrical scope and required protection in the quotation. We do not assume a site certification that has not been verified.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Cooling circuit<\/h3><p>For the selected model, we define the oil-cooling components and auxiliary equipment. Follow the inspection points and operating limits in the approved project documentation.<\/p><\/div>\r\n<\/div>\r\n<\/div><\/section>\r\n<section class=\"cl-band\" id=\"validation\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">Validation Before Order<\/div>\r\n<h2>How do we confirm the selected RCDFQ before you order?<\/h2>\r\n<p class=\"cl-answer\">We confirm the installation first, then define any magnetic reading or capture check that the project needs. One catalog mT value is not enough to prove performance on a real conveyor.<\/p>\r\n<div class=\"cl-grid-3\">\r\n<div class=\"cl-card\"><h3>Check the installation drawing<\/h3><p>We confirm dimensions, suspension points, conveyor clearance, reject route, service space and nearby steelwork before the equipment layout is closed.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Define the magnetic reading<\/h3><p>If a magnetic reading is required, we agree on the instrument, probe direction, measurement point, distance and energized condition before comparing results.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Define the capture check<\/h3><p>If the project needs a capture test, we define the test piece, material condition, belt speed, working distance, number of passes and pass\/fail rule before testing.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>Why this matters:<\/strong> Gauss or mT describes magnetic flux density at a defined point. It does not, by itself, prove separation efficiency or guarantee capture of every iron piece.<\/div>\r\n<\/div><\/section><section class=\"cl-band is-soft\" id=\"validation-method\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">Measurement &amp; Capture Method<\/div>\r\n<h2>How should magnetic performance be checked on an RCDFQ project?<\/h2>\r\n<p class=\"cl-answer\">A useful check starts by defining the test condition. We do not compare magnetic readings or capture results until the measurement point, distance and operating condition are clear.<\/p>\r\n<div class=\"cl-method\">\r\n<div class=\"cl-method-item\"><strong>1. Define the point<\/strong><p>State where the reading will be taken on the magnetic face or in the working zone.<\/p><\/div>\r\n<div class=\"cl-method-item\"><strong>2. Define the distance<\/strong><p>Record the distance between the magnetic face and the measurement point or target iron.<\/p><\/div>\r\n<div class=\"cl-method-item\"><strong>3. Define the condition<\/strong><p>Record the energized state, conveyor condition and any other project condition that can change the result.<\/p><\/div>\r\n<div class=\"cl-method-item\"><strong>4. Define acceptance<\/strong><p>Agree on the reading, capture result or drawing condition that must be confirmed before approval.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-grid-2\">\r\n<div class=\"cl-card\"><h3>When is a magnetic reading useful?<\/h3><p>Use a magnetic reading when the project needs a field value at a defined location. Keep the instrument, probe direction and distance consistent so different readings can be compared.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>When is a capture check more useful?<\/h3><p>Use a representative capture check when the real question is whether a specific piece of iron can be removed under the project working distance, material condition and belt speed.<\/p><\/div>\r\n<\/div>\r\n<div aria-label=\"Representative capture check inputs\" class=\"cl-formula\"><span>Representative Material<\/span><b>+<\/b><span>Representative Iron<\/span><b>+<\/b><span>Working Distance<\/span><b>+<\/b><span>Belt Speed<\/span><b>=<\/b><span>More Useful Capture Check<\/span><\/div>\r\n<p class=\"cl-spec-note\">Simulation, catalog data, magnetic measurement and capture testing answer different questions. We keep them separate when we review an RCDFQ application.<\/p>\r\n<\/div><\/section>\r\n<section class=\"cl-band is-soft\" id=\"review-output\"><div class=\"cl-inner\"><div class=\"cl-kicker\">Configuration Review Output<\/div><h2>What will Corvelan return after the RCDFQ configuration review?<\/h2><p class=\"cl-answer\">The purpose of the first review is to turn your process data into a practical equipment direction. We return the model recommendation together with the points that still need engineering confirmation.<\/p><div aria-label=\"RCDFQ configuration review flow\" class=\"cl-proof-flow\">\r\n<div class=\"cl-proof-box\"><strong>You send<\/strong><p>Material, target iron, throughput, conveyor width and speed, burden depth, working distance and available installation space.<\/p><\/div>\r\n<div aria-hidden=\"true\" class=\"cl-proof-arrow\">\u2192<\/div>\r\n<div class=\"cl-proof-box\"><strong>Corvelan returns<\/strong><p>Candidate base model, candidate T-level, electrical checks, installation checks, drawing items and any validation items still required.<\/p><\/div>\r\n<\/div><div class=\"cl-grid-3\"><div class=\"cl-card\"><h3>Recommended Base Model<\/h3><p>We narrow the RCDFQ size from conveyor width, working distance, material depth and installation fit.<\/p><\/div><div class=\"cl-card\"><h3>Candidate T-Level<\/h3><p>We recommend the T-level from the target iron and the difficulty of the capture duty, not from mT alone.<\/p><\/div><div class=\"cl-card\"><h3>Electrical Checks<\/h3><p>We identify the listed excitation and auxiliary loads that apply to the candidate model and what site information still needs confirmation.<\/p><\/div><div class=\"cl-card\"><h3>Installation Checks<\/h3><p>We identify the support, clearance, reject route, nearby steel and service-access items that must fit the actual conveyor.<\/p><\/div><div class=\"cl-card\"><h3>Drawing Items<\/h3><p>We list the dimensions, suspension points and interface details that need to be closed on the project drawing.<\/p><\/div><div class=\"cl-card\"><h3>Checks to Agree Before Ordering<\/h3><p>If the project requires measurement or capture testing, we define what needs to be measured, tested and accepted before final approval.<\/p><\/div><\/div><\/div><\/section><section class=\"cl-band\" id=\"engineering-evidence\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">RCDFQ Specifications, Drawings and Testing<\/div>\r\n<h2>What evidence supports the RCDFQ selection on this page?<\/h2>\r\n<p class=\"cl-answer\">Use the RCDFQ specifications to compare models and the general arrangement drawing to check installation space. We confirm the selected configuration in your quotation. Project-specific validation is added where the application still needs proof.<\/p>\r\n<div class=\"cl-grid-4\">\r\n<div class=\"cl-card cl-evidence-card\"><span class=\"cl-evidence-tag\">Exact Series Data<\/span><h3>RCDFQ Series Data<\/h3><p>Our RCDFQ table lists belt-width classes, rated lifting height, T-level, magnetic intensity, excitation power, fan power, dimensions, belt-speed reference and weight.<\/p><p><a href=\"#series-data\">Review RCDFQ model data<\/a><\/p><\/div>\r\n<div class=\"cl-card cl-evidence-card\"><span class=\"cl-evidence-tag\">Installation Drawing<\/span><h3>RCDFQ General Arrangement<\/h3><p>Our series drawing supports review of overall dimensions, orientation, suspension, conveyor clearance and service access. Final project interfaces still need selected-model confirmation.<\/p><p><a href=\"#installation\">Review installation checks<\/a><\/p><\/div>\r\n<div class=\"cl-card cl-evidence-card\"><span class=\"cl-evidence-tag\">Real Product Views<\/span><h3>Product Documentation &amp; Workshop Views<\/h3><p>Our RCDFQ documentation and workshop images support product identity, self-cleaning structure, electromagnet assemblies, belt-tracking features and control-equipment discussion.<\/p><p><a href=\"#real-views\">View RCDFQ product angles<\/a><\/p><\/div>\r\n<div class=\"cl-card cl-evidence-card\"><span class=\"cl-evidence-tag\">How the Equipment Will Be Checked<\/span><h3>Project Validation<\/h3><p>When the project needs proof beyond series data, we define the drawing check, magnetic measurement condition or representative capture check before approval.<\/p><p><a href=\"#validation-method\">Review validation method<\/a><\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\">Rated lifting height helps compare models. The listed magnetic-field value does not guarantee iron capture at every installation height; confirm the required test conditions for your conveyor.<\/div>\r\n<div id=\"real-views\">\r\n<h3>What do the Corvelan RCDFQ workshop views help us check?<\/h3>\r\n<p>These Corvelan RCDFQ workshop views show the equipment construction, cooling arrangement and service access. Magnetic and separation performance are evaluated against the agreed test conditions.<\/p>\r\n<div class=\"cl-figure-grid\">\r\n<figure class=\"cl-figure\"><img loading=\"lazy\" alt=\"Front view of a Coverlan RCDFQ self-cleaning electromagnetic separator assembly\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-front-view-v2.webp\" width=\"1200\"><figcaption><strong>Front geometry<\/strong>Helps review frame width, belt path and conveyor-side clearance.<\/figcaption><\/figure>\r\n<figure class=\"cl-figure\"><img loading=\"lazy\" alt=\"Drive-side view of a Coverlan RCDFQ self-cleaning electromagnetic separator\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-drive-side-v2.webp\" width=\"1200\"><figcaption><strong>Drive side<\/strong>Shows the self-cleaning belt drive area and service access around the mechanical system.<\/figcaption><\/figure>\r\n<figure class=\"cl-figure\"><img loading=\"lazy\" alt=\"Multiple Coverlan self-cleaning electromagnetic separator assemblies in the workshop\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-workshop-lineup.webp\" width=\"1200\"><figcaption><strong>Workshop lineup<\/strong>Shows multiple self-cleaning separator assemblies during workshop preparation.<\/figcaption><\/figure>\r\n<\/div>\r\n<div class=\"cl-grid-2\" style=\"margin-top:28px;align-items:center\">\r\n<div class=\"cl-media\"><img loading=\"lazy\" alt=\"Multiple Coverlan electromagnet and cooling-related assemblies in the workshop\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-electromagnet-assemblies.webp\" width=\"1200\"><\/div>\r\n<div>\r\n<h3>What does the electromagnet-assembly view add?<\/h3>\r\n<p>The workshop photo shows the electromagnet bodies, cooling components and mechanical assemblies. Specifications for the quoted unit are confirmed separately.<\/p>\r\n<p class=\"cl-fine\">We use drawings, model data and project-specific checks\u2014not image appearance alone\u2014to close a final configuration.<\/p>\r\n<\/div>\r\n<\/div>\r\n<\/div>\r\n<div class=\"cl-reference-list\">\r\n<div class=\"cl-reference-item\"><strong>Series Data Reference<\/strong>Use this for the published RCDFQ model range and listed dimensions or electrical values.<\/div>\r\n<div class=\"cl-reference-item\"><strong>Project Drawing<\/strong>Use this to close selected-model dimensions, suspension points and site interfaces before manufacturing or installation approval.<\/div>\r\n<div class=\"cl-reference-item\"><strong>Magnetic Measurement Plan<\/strong>Use this when a field reading must be checked at a defined point and distance.<\/div>\r\n<div class=\"cl-reference-item\"><strong>Representative Capture Check<\/strong>Use this when the real acceptance question is capture of a defined iron piece under defined process conditions.<\/div>\r\n<\/div>\r\n<\/div><\/section><section class=\"cl-band is-soft\" id=\"why-coverlan\"><div class=\"cl-inner\"><div class=\"cl-kicker\">Why Corvelan<\/div><h2>What does Corvelan check before recommending an RCDFQ configuration?<\/h2><p class=\"cl-answer\">We do more than match one catalog value to one model row. We check process fit, magnetic duty, installation fit and the proof still required before we recommend a configuration.<\/p><div class=\"cl-grid-4\"><div class=\"cl-card\"><h3>Application Review<\/h3><p>We first check whether RCDFQ is the right separator type for the material flow and target iron.<\/p><\/div><div class=\"cl-card\"><h3>Model Review<\/h3><p>We compare belt width, working distance, target iron, material depth and operating condition before narrowing the base model and T-level.<\/p><\/div><div class=\"cl-card\"><h3>Installation Review<\/h3><p>We check suspension space, reject direction, service clearance and the interfaces that can change the final installation.<\/p><\/div><div class=\"cl-card\"><h3>Plan the Required Tests<\/h3><p>Where the project needs proof beyond catalog data, we define the drawing, measurement or capture check that must be completed.<\/p><\/div><\/div><\/div><\/section>\r\n<section class=\"cl-band\" id=\"faq\"><div class=\"cl-inner\">\r\n<div class=\"cl-kicker\">FAQ<\/div><h2>RCDFQ electromagnetic separator FAQ<\/h2>\r\n<details open=\"\"><summary>What is an RCDFQ electromagnetic separator?<\/summary><p>RCDFQ removes iron and steel from bulk material moving on a conveyor. It is a suspended electromagnetic separator with automatic belt cleaning and forced oil cooling. The cleaning belt carries captured metal away from the main material stream.<\/p><\/details>\r\n<details><summary>Why use a forced oil-cooled electromagnetic separator?<\/summary><p>We use forced oil cooling to help manage heat while the electromagnet is energized. For the selected RCDFQ model, we confirm the cooling circuit, auxiliary equipment and operating conditions in the project specification.<\/p><\/details>\r\n<details><summary>Is the RCDFQ series self-cleaning?<\/summary><p>Yes. RCDFQ uses a moving cleaning belt to carry captured iron or steel out of the magnetic zone. The belt then discharges the metal away from the main material stream.<\/p><\/details>\r\n<details><summary>How do I choose between T1, T2, T3 and higher T-levels?<\/summary><p>We first choose the base model from your conveyor width and working distance. We then match the T-level to the target iron and how difficult it is to capture. Higher T-levels can also change power, cooling equipment, dimensions and weight, so we do not choose from the mT value alone.<\/p><\/details>\r\n<details><summary>Does a higher mT value guarantee better iron removal?<\/summary><p>No. Magnetic flux density in mT is not the same as separation efficiency. Material depth, working distance, target size and shape, belt speed, material behavior and installation position also affect capture.<\/p><\/details>\r\n<details><summary>What conveyor belt widths are listed for the RCDFQ series?<\/summary><p>Our current RCDFQ series data covers conveyor-width classes from 1000 to 2400 mm. We still check the conveyor profile, material depth, support structure and available clearance before final model selection.<\/p><\/details>\r\n<details><summary>Can this separator remove aluminum or copper?<\/summary><p>No, not as the main separation method. RCDFQ is designed for iron and steel that respond strongly to a magnet. Aluminum, copper and other non-ferrous metals usually need a different separation technology.<\/p><\/details>\r\n<details><summary>Is RCDFQ an overband electromagnetic separator?<\/summary><p>Yes. RCDFQ is a suspended, self-cleaning electromagnetic <a href=\"\/product\/overband-magnetic-separator\/\">overband separator<\/a>. It is installed above the main conveyor, and its cleaning belt carries captured iron or steel away for automatic discharge.<\/p><\/details>\r\n<details><summary>Should the separator be installed cross-belt or in-line?<\/summary><p>Both layouts can be used in suspended overband applications. The right choice depends on conveyor geometry, material flow, reject direction, available headroom and service access. Send us the conveyor drawing or photos and we will review the installation position.<\/p><\/details>\r\n<details><summary>What should I send for RCDFQ selection and quotation?<\/summary><p>Send us the material, target iron or steel, throughput, belt width and speed, and material depth or working distance. Also send a photo or line drawing, available space, site requirements and any required test. We use these inputs to recommend the RCDFQ base model and T-level.<\/p><\/details>\r\n<\/div><\/section>\r\n<section class=\"cl-band is-dark\" id=\"rfq\"><div class=\"cl-inner cl-rfq\">\r\n<div><div class=\"cl-kicker\" style=\"color:#9ed1f0\">Initial RFQ<\/div><h2>Send four inputs to start your RCDFQ configuration review<\/h2>\r\n<p>Start with what you already know. A conveyor photo or drawing can answer several installation questions at once.<\/p>\r\n<div class=\"cl-rfq-list\">\r\n<div class=\"cl-rfq-item\"><strong>Material<\/strong>Material name, physical form and particle or lump size if known.<\/div>\r\n<div class=\"cl-rfq-item\"><strong>Target Iron \/ Steel<\/strong>Piece type, approximate size, shape and how often it appears.<\/div>\r\n<div class=\"cl-rfq-item\"><strong>Throughput<\/strong>Normal and peak feed rate when available.<\/div>\r\n<div class=\"cl-rfq-item\"><strong>Installation \/ Process Condition<\/strong>Belt width, speed, material depth, photos or drawing and available space.<\/div>\r\n<\/div>\r\n<p class=\"cl-fine\" style=\"margin-top:16px\">Useful extras: bulk density, moisture, temperature, nearby steelwork, discharge side, electrical\/control requirements and any required test or acceptance condition.<\/p>\r\n<\/div>\r\n<div class=\"cl-card\" style=\"color:#16263a\"><h3>What happens next?<\/h3><p>We first check product fit, then recommend the base model and candidate T-level. We also define the remaining installation, drawing and validation requirements needed for quotation.<\/p>\r\n<div class=\"cl-actions\"><a class=\"cl-btn on-dark\" data-cta=\"final\" href=\"https:\/\/www.corvelanmag.com\/contact-us\/\">Send Your Separation Requirement<\/a><\/div>\r\n<\/div>\r\n<\/div><\/section>\r\n<\/section>\r\n<script type=\"application\/ld+json\">{\"@context\":\"https:\/\/schema.org\",\"@type\":\"Product\",\"name\":\"RCDFQ Forced Oil-Cooled Electromagnetic Separator\",\"description\":\"Coverlan RCDFQ is a forced oil-cooled, self-cleaning suspended electromagnetic separator for conveyor tramp-iron removal. The RCDFQ series includes exact model and T-level data, automatic iron discharge, belt-tracking functions, rectifier\/control equipment and project-specific selection by working distance, material depth, belt speed and target iron.\",\"brand\":{\"@type\":\"Brand\",\"name\":\"Coverlan\"},\"category\":\"Suspended self-cleaning electromagnetic separator\",\"image\":[\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-electromagnetic-separator-hero-v2.webp\",\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-complete-assembly.webp\",\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-self-cleaning-structure.webp\",\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-front-view-v2.webp\",\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-drive-side-v2.webp\",\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-workshop-lineup.webp\",\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-electromagnet-assemblies.webp\",\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-cooling-assembly-side.webp\",\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-rcdfq-cooling-assembly-front.webp\"]}<\/script>\r\n<script type=\"application\/ld+json\">{\"@context\":\"https:\/\/schema.org\",\"@type\":\"FAQPage\",\"mainEntity\":[{\"@type\":\"Question\",\"name\":\"What is an RCDFQ electromagnetic separator?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"RCDFQ removes iron and steel from bulk material moving on a conveyor. 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Best ForCrusher, [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":4246,"parent":0,"menu_order":23,"comment_status":"open","ping_status":"open","template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"product-category":[41],"class_list":["post-4610","product","type-product","status-publish","format-standard","has-post-thumbnail","hentry","product-category-magnetic-separation-equipment"],"acf":[],"_links":{"self":[{"href":"https:\/\/www.corvelanmag.com\/de\/wp-json\/wp\/v2\/product\/4610","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.corvelanmag.com\/de\/wp-json\/wp\/v2\/product"}],"about":[{"href":"https:\/\/www.corvelanmag.com\/de\/wp-json\/wp\/v2\/types\/product"}],"author":[{"embeddable":true,"href":"https:\/\/www.corvelanmag.com\/de\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/www.corvelanmag.com\/de\/wp-json\/wp\/v2\/comments?post=4610"}],"version-history":[{"count":5,"href":"https:\/\/www.corvelanmag.com\/de\/wp-json\/wp\/v2\/product\/4610\/revisions"}],"predecessor-version":[{"id":5278,"href":"https:\/\/www.corvelanmag.com\/de\/wp-json\/wp\/v2\/product\/4610\/revisions\/5278"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.corvelanmag.com\/de\/wp-json\/wp\/v2\/media\/4246"}],"wp:attachment":[{"href":"https:\/\/www.corvelanmag.com\/de\/wp-json\/wp\/v2\/media?parent=4610"}],"wp:term":[{"taxonomy":"product-category","embeddable":true,"href":"https:\/\/www.corvelanmag.com\/de\/wp-json\/wp\/v2\/product-category?post=4610"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}