{"id":161605,"date":"2026-08-28T03:26:01","date_gmt":"2026-08-28T08:26:01","guid":{"rendered":"https:\/\/www.arbin.com\/?page_id=161605"},"modified":"2026-08-28T05:05:44","modified_gmt":"2026-08-28T10:05:44","slug":"rbt-high-power","status":"publish","type":"page","link":"https:\/\/www.arbin.com\/de\/battery-testing\/rbt-high-power.html","title":{"rendered":"RBT-Hochleistung"},"content":{"rendered":"<a href=\"\/de\/\">Startseite<\/a> > \n<a href=\"\/de\/battery-testing.html\/\"> Batteriepr\u00fcfung<\/a> > \nRBT-High Power\n\n\t<p>Regenerative Battery Testing System<\/p>\n<h1>\n\t\t\tRBT-Pack Series\t<\/h1>\n\t<p>High-power, fully digital battery pack testing from 300\u00a0V to 1,500\u00a0V &#8211; built on\u00a0<strong>Gen3 SiC regenerative circuitry<\/strong>\u00a0that returns up to\u00a0<strong>92% of discharge energy<\/strong>\u00a0to your facility, with\u00a0<strong>\u00b10.02% FSR accuracy<\/strong>\u00a0and true bipolar switching for seamless charge-discharge transitions.<\/p>\n\t\t\t<a href=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/08\/arbin-pack_brochure.pdf\"  target=\"_blank\" rel=\"noopener\">\n\t\t\t\t\t\t\tDownload der Brosch\u00fcre\n\t\t\t\t\t<\/a>\n\t\t\t<a href=\"https:\/\/www.arbin.com\/de\/anfrage-angebot-html\/\"  target=\"_self\">\n\t\t\t\t\t\t\tAngebot einholen\n\t\t\t\t\t<\/a>\n<h2>\n\t\t\t20 &#8211; 1,500V\t<\/h2>\n\t<p>Voltage range across the series<\/p>\n<h2>\n\t\t\tUp to 1.4 MW\t<\/h2>\n\t<p>360kW per Chassis, up to 4 Chassis Array<\/p>\n<h2>\n\t\t\tUp to 1,200A\t<\/h2>\n\t<p>Per chassis, parallel channel operation<\/p>\n<h2>\n\t\t\t\u00b10,02% FSR\t<\/h2>\n\t<p>Voltage &amp; current accuracy<\/p>\n<h6>\n\t\t\tAccuracy you can audit\t<\/h6>\n\t<p>Accuracy and precision are published as two separate numbers, never blended into one, so you can verify the spec yourself instead of taking a vendor&#8217;s word for it.<\/p>\n<h6>\n\t\t\tIndependently verified\t<\/h6>\n\t<p>Designed and manufactured under an ISO 9001:2015-certified quality system, supported by an ISO\/IEC 17025-accredited testing and calibration laboratory.<\/p>\n<h6>\n\t\t\t35 years of instrumentation\t<\/h6>\n\t<p>Founded 1991. Arbin reinvests 30% of profits into R&amp;D, funding the precision architecture provided with every Arbin test station.<\/p>\n<h6>\n\t\t\tBuilt for any lab\t<\/h6>\n\t<p>Scalable channel density in a compact, air-cooled footprint, with open Python and C# API for the automation you already run.<\/p>\n<h2>\n\t\t\tHighlights of the RBT-Pack Series\t<\/h2>\n\t<p>Four hardware decisions that separate the RBT-Pack from a conventional high-power cycler.<\/p>\n<h2>\n\t\t\tRegenerative Energy Recovery\t<\/h2>\n\t<p>up to 92% returned to the grid<\/p>\n<h2>\n\t\t\tCut the energy cost of pack cycling\t<\/h2>\n\t<p>Gen3 SiC power stages return up to <strong>92% of discharge energy<\/strong> to the facility grid, at 94% charge efficiency. Channels share a common DC link, so energy leaving a discharging pack is reused directly by a charging channel before anything is drawn from the mains.<\/p>\n<p>At up to 360 kW per chassis, both the recovered energy and the HVAC load it avoids are measured in tens of kilowatts.<\/p>\n<h2>\n\t\t\tSeries and Parallel Scaling\t<\/h2>\n\t<p>voltage, current, or power<\/p>\n<h2>\n\t\t\tBuild the channel around the pack\t<\/h2>\n\t<p>Channels combine in series to raise voltage, or in parallel to raise current and power, reaching <strong>1,500 V, 3,000 A, and 1.8 MW<\/strong>. One chassis carries up to 6 channels and up to 360 kW, specified in 45 kW increments.<\/p>\n<p>Paralleled channels gain a combined full-scale current range while keeping their lower native ranges for measurement accuracy.<\/p>\n<h2>\n\t\t\tDual Voltage Ranges\t<\/h2>\n\t<p>auto-selecting, every channel<\/p>\n<h2>\n\t\t\tFull accuracy on lower-voltage packs\t<\/h2>\n\t<p>Every channel carries two voltage ranges and up to two current ranges. The voltage range is selected from the maximum voltage in the test object file, and the current range from what the test step actually draws.<\/p>\n<p>A 1,000 V channel tests a 400 V pack on its 500 V range, so the rated specification follows the DUT.<\/p>\n<h2>\n\t\t\tBuilt-In Safety Features\t<\/h2>\n\t<p>safety monitoring for every channel<\/p>\n<h2>\n\t\t\tEngineered for high-voltage packs\t<\/h2>\n\t<p>Precharge circuitry matches the DC bus to pack voltage under digital control before the main contactor closes, preventing inrush. Anti-islanding disconnects the regenerative stage within roughly 40 ms if line voltage or frequency leaves its limits.<\/p>\n<p>A channel-level interlock responds in about 20 \u00b5s, backed by integrated breakers, fuses, and isolation contactor relays.<\/p>\n<h1>\n\t\t\tApplications and Test Methods\t<\/h1>\n\t<p>From incoming QC through end-of-line, the RBT-Pack Series is purpose-built for full-pack test programs &#8211; not a module tester scaled up.<\/p>\n<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/08\/rbt-pack-card1-pack-lifecycle.png\" alt=\"rbt pack card1 pack lifecycle\" height=\"1200\" width=\"1600\" title=\"rbt pack card1 pack lifecycle\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t<\/figure>\n<h5>\n\t\t\tPack and module life cycle testing\t<\/h5>\n\t<p>Cycle full packs and modules at up to 200 A and 100 kW per channel. Two auto-selecting voltage ranges keep the rated specification matched to the pack under test across long-duration programs.<\/p>\n<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/08\/rbt-pack-card2-eol-qc-1.png\" alt=\"rbt pack card2 eol qc (1)\" height=\"1200\" width=\"1600\" title=\"rbt pack card2 eol qc (1)\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t<\/figure>\n<h5>\n\t\t\tEnd-of-line and incoming QC\t<\/h5>\n\t<p>Capacity, resistance, and voltage verification on incoming or finished packs. Precharge circuitry matches the DC bus to pack voltage before the contactor closes, and every channel enforces its own safety limits.<\/p>\n<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/08\/rbt-pack-card3-drivecycle-bms-2-1.png\" alt=\"rbt pack card3 drivecycle bms (2) (1)\" height=\"1200\" width=\"1600\" title=\"rbt pack card3 drivecycle bms (2) (1)\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t<\/figure>\n<h5>\n\t\t\tDrive cycles and BMS validation\t<\/h5>\n\t<p>Run FUDS, HPPC, DST, and WLTP profiles with set points down to 10 ms, uploaded or streamed over CAN. Rint-model battery simulation supports closed-loop HIL work and BMS validation.<\/p>\n<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/08\/04-automated-adaptive-testing.jpg\" alt=\"04 automated adaptive testing\" height=\"1200\" width=\"1600\" title=\"04 automated adaptive testing\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t<\/figure>\n<h5>\n\t\t\tAutomated and adaptive testing\t<\/h5>\n\t<p>Drive the tester from your own software. ArbinCTI over TCP\/IP plus Lua scripting support BMS emulation, digital twins, and adaptive fast-charge strategies.<\/p>\n<p>&nbsp;<\/p>\n<h3>\n\t\t\tSupported Test Methods\t<\/h3>\n<h5>\n\t\t\tDRIVE-CYCLE &#038; PROFILE SIMULATION\t<\/h5>\n\t<ul>\n<li>FUDS (Federal Urban Driving Schedule)<\/li>\n<li>HPPC (Hybrid Pulse Power Characterization)<\/li>\n<li>DST (Dynamic Stress Test)<\/li>\n<li>WLTP and custom drive-cycle files<\/li>\n<li>Time vs. Current \/ Power \/ Load profiles<\/li>\n<\/ul>\n<h5>\n\t\t\tCycling and lifetime\t<\/h5>\n\t<ul>\n<li>Battery life cycle testing<\/li>\n<li>Battery Simulation (Rint model-based)<\/li>\n<li>Closed-loop HIL testing of external devices<\/li>\n<li>Dynamic fast-charging optimization<\/li>\n<\/ul>\n<h5>\n\t\t\tProduction and Validation\t<\/h5>\n\t<ul>\n<li>Incoming quality control<\/li>\n<li>Battery Pack End-of-Line (EOL)<\/li>\n<li>BMS validation over CAN 2.0 \/ CAN-FD<\/li>\n<li>Battery Pack R&amp;D<\/li>\n<\/ul>\n<h2>\n\t\t\tVoltage, Current, and Power Configurations\t<\/h2>\n\t<p>One measurement specification, one software platform, across the full current span Arbin builds for module and pack testing &#8211; up to 1,200 A high-current cycling.<\/p>\n      <table>\n        <thead>\n          <tr>\n            <th>Model<\/th>\n            <th>Spannungsbereich<\/th>\n            <th>Current Ranges per Channel (&plusmn;)<\/th>\n            <th>Channels per Chassis<\/th>\n            <th>Chassis Power<\/th>\n          <\/tr>\n        <\/thead>\n        <tbody>\n          <tr>\n            <td>RBT43012<\/td>\n            <td>20&ndash;500 V<\/td>\n            <td>200 A, 100 A<\/td>\n            <td>Up to 6<\/td>\n            <td>45&ndash;360 kW<\/td>\n          <\/tr>\n          <tr>\n            <td>RBT44012<\/td>\n            <td>30&ndash;750 V<\/td>\n            <td>150 A, 75 A<\/td>\n            <td>Up to 6<\/td>\n            <td>45&ndash;360 kW<\/td>\n          <\/tr>\n          <tr>\n            <td>RBT45012<\/td>\n            <td>40&ndash;1,000 V<\/td>\n            <td>100 A, 50 A<\/td>\n            <td>Up to 6<\/td>\n            <td>100&ndash;360 kW<\/td>\n          <\/tr>\n          <tr>\n            <td>RBT46012<\/td>\n            <td>60&ndash;1,500 V<\/td>\n            <td>150 A<\/td>\n            <td>Up to 2<\/td>\n            <td>100&ndash;360 kW<\/td>\n          <\/tr>\n        <\/tbody>\n      <\/table>\n    Chassis power is customizable in ~45&nbsp;kW increments. Four chassis in parallel scale to 1.44&nbsp;MW. Each channel has two voltage ranges, auto-selected from the connected Test Object&rsquo;s max voltage.\n      <table>\n        <thead>\n          <tr>\n            <th>Parameter<\/th>\n            <th colspan=\"2\">Spannung<\/th>\n            <th colspan=\"2\">Aktuell<\/th>\n          <\/tr>\n        <\/thead>\n        <tbody>\n          <tr>\n            <td>Measurement \/ Control Resolution<\/td>\n            <td colspan=\"2\">16-bit<\/td>\n            <td colspan=\"2\">16-bit<\/td>\n          <\/tr>\n          <tr>\n            <td>Pr\u00e4zision<\/td>\n            <td colspan=\"2\">&plusmn;0.02% FSR<\/td>\n            <td colspan=\"2\">&plusmn;0.02% FSR<\/td>\n          <\/tr>\n          <tr>\n            <td>Genauigkeit<\/td>\n            <td colspan=\"2\">&plusmn;0.02% FSR<\/td>\n            <td colspan=\"2\">&plusmn;0.02% FSR<\/td>\n          <\/tr>\n          <tr>\n            <td>Rise \/ Fall Time<\/td>\n            <td colspan=\"2\">&mdash;<\/td>\n            <td colspan=\"2\">&le;2 ms (&le;1,200 V), &le;3 ms (&gt;1,200 V)<\/td>\n          <\/tr>\n          <tr>\n            <td>Eingangsimpedanz<\/td>\n            <td colspan=\"2\">10 M&Omega;<\/td>\n            <td colspan=\"2\">&mdash;<\/td>\n          <\/tr>\n          <tr>\n            <td>Measurement Type<\/td>\n            <td colspan=\"4\">4-wire Kelvin, up to 1 kHz data acquisition (10 kHz \/ 100&nbsp;&micro;s burst)<\/td>\n          <\/tr>\n        <\/tbody>\n      <\/table>\n    Time resolution 50&nbsp;&micro;s &middot; minimum step time 5&nbsp;ms &middot; time accuracy &lt;20&nbsp;ppm, accumulated error under 1.7 seconds.\n<h2>\n\t\t\tComparing systems?\t<\/h2>\n\t<p>Four hardware parameters decide whether test data is suitable to draw a conclusion from. Here is where the RBT-Pack lands on each, and the question worth putting to every vendor on your shortlist.<\/p>\n      <table>\n        <thead>\n          <tr>\n            <th>Parameter<\/th>\n            <th>Why it decides your data<\/th>\n            <th>RBT-Pack Series<\/th>\n            <th>Ask any vendor<\/th>\n          <\/tr>\n        <\/thead>\n        <tbody>\n          <tr>\n            <td>\n              <strong>Pr\u00e4zision<\/strong>\n              Repeatability, not just accuracy\n            <\/td>\n            <td>Determines whether two identical tests on the same pack actually agree.<\/td>\n            <td>&plusmn;0.02% FSR, specified separately from accuracy across voltage and current<\/td>\n            <td>Usually one blended &plusmn;0.1% FSR spec, if stated at all<\/td>\n          <\/tr>\n          <tr>\n            <td>\n              <strong>Regenerative technology<\/strong>\n              What&#8217;s actually inside the box\n            <\/td>\n            <td>SiC switches faster and runs cooler than IGBT &mdash; that&#8217;s where the efficiency number comes from.<\/td>\n            <td>Gen3 SiC-based, up to 92% discharge energy returned<\/td>\n            <td>Efficiency % published; underlying technology rarely named<\/td>\n          <\/tr>\n          <tr>\n            <td>\n              <strong>Charge\/discharge transition<\/strong>\n              Dead time between modes\n            <\/td>\n            <td>Switching delay shows up directly as distorted drive-cycle and pulse-test data.<\/td>\n            <td>True bipolar circuitry &mdash; zero switching time<\/td>\n            <td>Transition times of several ms are common and rarely disclosed<\/td>\n          <\/tr>\n          <tr>\n            <td>\n              <strong>Safety response<\/strong>\n              How fast a fault is contained\n            <\/td>\n            <td>A quantified response time is the difference between a safety spec and a safety claim.<\/td>\n            <td>Channel-level interlock ~20&nbsp;&micro;s; anti-islanding trip &lt;40&nbsp;ms<\/td>\n            <td>Safety features listed; response times rarely quantified<\/td>\n          <\/tr>\n          <tr>\n            <td>\n              <strong>Certification<\/strong>\n              What&#8217;s actually been evaluated\n            <\/td>\n            <td>Third-party recognition speeds facility approval and electrical inspection.<\/td>\n            <td>UL-recognized bidirectional power modules (UL&nbsp;62368-1 \/ CSA&nbsp;C22.2&nbsp;No.&nbsp;62368-1); CE Declaration of Conformity<\/td>\n            <td>Certifications frequently unstated on the product page<\/td>\n          <\/tr>\n          <tr>\n            <td>\n              <strong>Automation access<\/strong>\n              How deep you can integrate\n            <\/td>\n            <td>Determines whether the tester fits your existing lab automation, or you fit it.<\/td>\n            <td>ArbinCTI &amp; ArbinClient (Python, C#, Web Services), plus a low-level ArbinDriver DLL<\/td>\n            <td>Closed software, or a single vendor-specific API<\/td>\n          <\/tr>\n        <\/tbody>\n      <\/table>\n<h2>\n\t\t\tSoftware and Safety\t<\/h2>\n\t<p>The two questions a lab asks after the specifications check out: can my team actually drive it, and what happens when a cell misbehaves.<\/p>\n<h2>\n\t\t\tMITS-Software\t<\/h2>\n<p>MITS scales from basic charge-discharge cycling to complex protocols with nested conditions. Most tests can be built through the menu-driven interface, while Lua scripting and ArbinCTI are available for advanced automation and external control<\/p>\n<ul>\n<li>\u2713 30+ programmable control types, 90+ meta variables, and up to 9 nested loops<\/li>\n<li>\u2713Up to 127 reusable sub-schedules, so a validated procedure gets called rather than rebuilt<\/li>\n<li>\u2713Adaptive logging raises acquisition rate during transients and state transitions<\/li>\n<li>\u2713DataWatcher queries the SQL database directly &#8211; filter by channel, barcode, or cycle count, overlay up to 9 plots<\/li>\n<li>\u2713PostgreSQL, Microsoft SQL Server, and Apache Kafka streaming<\/li>\n<li>\u2713ArbinCTI TCP\/IP API plus Lua scripting for BMS emulation and adaptive control<\/li>\n<\/ul>\n<p><a href=\"https:\/\/www.arbin.com\/de\/mits-10-software.html\/\">Explore MITS Software \u2192<\/a><\/p>\n<p>&nbsp;<\/p>\n<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2025\/01\/Arbin-MITS10-Manage-Test-1-1024x519.png\" alt=\"Arbin-MITS10-Manage-Test-1\" height=\"519\" width=\"1024\" title=\"Arbin-MITS10-Manage-Test-1\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t<\/figure>\n<h2>\n\t\t\tSafety Architecture\t<\/h2>\n<p>Protection is distributed across channel hardware, an independent controller, and step-level software limits. Critical safeguards remain active independently of the test sequence.<\/p>\n<ul>\n<li>\n<ul>\n<li>\u2713Hardware E-Stop with all-pole disconnection, plus a 2-pin dry-contact trip circuit<\/li>\n<li>\u2713Channel-level safety interlock (~20us) independently disables a faulted channel<\/li>\n<li>\u2713Built-in circuit breakers, protective fuses, and software current\/power clamps on every channel.<\/li>\n<li>\u2713Test Object profiles auto-set thresholds from the cell spec and block a test on reverse polarity<\/li>\n<li>\u2713Anti-islanding protection disconnects the regenerative stage within ~40\u00a0ms of abnormal grid conditions.<\/li>\n<\/ul>\n<\/li>\n<\/ul>\n<ul>\n<li>\u2713Behavioral checks flag abnormal rates, voltage excursions, and capacity anomalies<\/li>\n<li>\u2713Tri-color light tower, audible alarms, thermoswitches, variable-speed ventilation<\/li>\n<\/ul>\n<ul>\n\n<\/ul>\n<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/08\/mits10_safetywindow.png\" alt=\"mits10 safetywindow\" height=\"661\" width=\"1042\" title=\"mits10 safetywindow\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t<\/figure>\n<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/plugins\/bb-plugin\/img\/pixel.png\" alt=\"\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t<\/figure>\n<h2>\n\t\t\tHilfsmittel und optionales Zubeh\u00f6r zur Verbesserung der Pr\u00fcfung verf\u00fcgbar\t<\/h2>\n<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/08\/auxcard-productpage-thermalmztc-1.png\" alt=\"auxcard productpage thermalmztc 1\" height=\"760\" width=\"1200\" title=\"auxcard productpage thermalmztc 1\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t<\/figure>\n<h2>\n\t\t\tThermal and Environmental\t<\/h2>\n\t<ul>\n<li>Seamlessly communicate and control third-party temperature chambers in real-time<\/li>\n<li>Synchronized multi-channel test logic; temperature-driven step control and automated standby modes<\/li>\n<li>Chamber temperature and humidity logged alongside electrical measurements for complete test traceability<\/li>\n<\/ul>\n<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2022\/07\/ELECTRIC-VEHICLE-BATTERY-TESTING_CAN-diagram.jpg\" alt=\"ELEKTRISCHES FAHRZEUG BATTERIEPR\u00dcFUNG CAN-Diagramm\" height=\"550\" width=\"1000\" title=\"ELEKTRISCHES FAHRZEUG BATTERIEPR\u00dcFUNG CAN-Diagramm\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t<\/figure>\n<h2>\n\t\t\tCAN &#038; SMBus \/ BMS Integration\t<\/h2>\n\t<ul>\n<li>CAN 2.0 \/ CAN-FD support &#8211; communicate with battery management systems and third-party controllers over standard or flexible-data-rate CAN networks<\/li>\n<li>Custom CAN message transmission &#8211; send scheduled or triggered frames to simulate BMS commands or vehicle network traffic<\/li>\n<li>Real-time BMS signal logging &#8211; capture and timestamp CAN\/BMS signals alongside voltage, current, and temperature in a single synchronized dataset<\/li>\n<li>SMBus 2.0 \/ I2C support &#8211; read and write smart battery registers directly from the test schedule<\/li>\n<\/ul>\n<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/08\/auxcard-productpage-aux-2.png\" alt=\"auxcard productpage aux 2\" height=\"760\" width=\"1200\" title=\"auxcard productpage aux 2\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t<\/figure>\n<h2>\n\t\t\tHilfskr\u00e4fte\t<\/h2>\n\t<ul>\n<li>Temperature sensing &#8211; real-time thermal monitoring for chambers and cell surfaces<\/li>\n<li>Auxiliary voltage inputs &#8211; monitor individual cell voltages or reference electrodes within packs<\/li>\n<li>Analog &amp; Digital I\/O &#8211; control external devices like pumps, fans, valves, and safety interlocks<\/li>\n<li>Uninterruptible Power Supply (UPS) &#8211; detect power loss and safely pause or resume tests<\/li>\n<\/ul>\n<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/08\/aux-cti-card.png\" alt=\"aux cti card\" height=\"760\" width=\"1200\" title=\"aux cti card\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t<\/figure>\n<h2>\n\t\t\tCTI &#038; External Controls\t<\/h2>\n\t<ul>\n<li>Custom Test Instructions (CTI) &#8211; script test logic beyond standard commands, written in C#\/.NET<\/li>\n<li>Application Programming Interface (API) &#8211; connect MITS Pro to LIMS, MES, or in-house systems for automated data exchange<\/li>\n<li>External device control &#8211; drive third-party power supplies, DAQs, or lab instruments directly from the test schedule<\/li>\n<li>Custom hardware drivers &#8211; integrate vendor-specific communication protocols not natively supported out of the box<\/li>\n<\/ul>\n<h2>\n\t\t\tTell us what you&#8217;re testing\t<\/h2>\n\t<p>Share your cell format, voltage and current requirements, channel count, and test objectives. An Arbin sales engineer will recommend the appropriate system configuration and supporting options.<\/p>\n\t\t\t<a href=\"https:\/\/www.arbin.com\/de\/anfrage-angebot-html\/\"  target=\"_self\">\n\t\t\t\t\t\t\tGet Quote for RBT-Pack\n\t\t\t\t\t<\/a>\n\t\t\t<a href=\"https:\/\/www.arbin.com\/de\/kontakt-html\/\"  target=\"_self\">\n\t\t\t\t\t\t\tContact Us To Learn More\n\t\t\t\t\t<\/a>\n<h2>\n\t\t<a href=\"\/de\/batterieprufung\/\" title=\"Related Battery Testing Solutions\"  target=\"_self\">\n\t\t\tRelated Battery Testing Solutions\t\t<\/a>\n\t<\/h2>\n\t\t<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<a href=\"\/de\/batterieprufung\/lbts-mztc-html\/\"  target=\"_self\" itemprop=\"url\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2024\/12\/LBTS21324-TC-Right-1920.png\" alt=\"LBTS21324-TC-Right-1920\" height=\"3300\" width=\"1920\" title=\"LBTS21324-TC-Right-1920\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t\t\t\t<\/a>\n\t<\/figure>\n<h3><a href=\"\/de\/batterieprufung\/lbts-mztc-html\/\" target=\"_self\">LBTS-MZTC<\/a><\/h3><p>Turn-key high-precision cell testing solution integrated with Arbin&#8217;s patented Cell-Isolating Thermal Chamber<\/p>\n\t\t<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<a href=\"\/de\/batterieprufung\/lbts-cell-high-volume.html\/\"  target=\"_self\" itemprop=\"url\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/dev.arbin.com\/wp-content\/uploads\/2024\/09\/ARBIN-LBTS-Cell-High-Volume.png\" alt=\"\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t\t\t\t<\/a>\n\t<\/figure>\n<h3><a href=\"\/de\/batterieprufung\/lbts-cell-high-volume.html\/\" target=\"_self\">LBTS-Zelle hohes Volumen<\/a><\/h3><p>Die perfekte L\u00f6sung f\u00fcr die Pr\u00fcfung gro\u00dfer Mengen. Ideal f\u00fcr die eingehende Qualit\u00e4tskontrolle und gro\u00df angelegte Tests.<\/p>\n\t\t<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<a href=\"\/de\/batterieprufung\/rbt4-cell.html\/\"  target=\"_self\" itemprop=\"url\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/dev.arbin.com\/wp-content\/uploads\/2024\/09\/ARBIN-RBT4-Cell.png\" alt=\"\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t\t\t\t<\/a>\n\t<\/figure>\n<h3><a href=\"\/de\/batterieprufung\/rbt4-cell.html\/\" target=\"_self\">RBT-Zelle<\/a><\/h3><p>High current cell testing solutions utilizing Arbin&#8217;s\u00a0regenerative technology for efficient and reliable\u00a0testing.<\/p>\n\t\t<figure itemscope itemtype=\"https:\/\/schema.org\/ImageObject\">\n\t\t\t\t<a href=\"\/de\/batterieprufung\/rbt4-module.html\/\"  target=\"_self\" itemprop=\"url\">\n\t\t\t\t<img decoding=\"async\" src=\"https:\/\/dev.arbin.com\/wp-content\/uploads\/2024\/09\/ARBIN-RBT4-ModulePack-Series.png\" alt=\"\" onerror=\"this.style.display='none'\" loading=\"lazy\" \/>\n\t\t\t\t<\/a>\n\t<\/figure>\n<h3><a href=\"\/de\/batterieprufung\/rbt4-module.html\/\" target=\"_self\">RBT-Module Baureihe<\/a><\/h3><p>Das RBT-System gew\u00e4hrleistet eine hohe Leistungsdichte und einen hohen Wirkungsgrad, w\u00e4hrend die R\u00fcckspeisung in das Netz die Pr\u00fcfung wirtschaftlich macht.<\/p>","protected":false},"excerpt":{"rendered":"<p>Home > Battery Testing > RBT-High Power Regenerative Battery Testing System RBT-Pack Series High-power, fully digital battery pack testing from 300\u00a0V to 1,500\u00a0V &#8211; built on\u00a0Gen3 SiC regenerative circuitry\u00a0that returns up to\u00a092% of discharge energy\u00a0to your facility, with\u00a0\u00b10.02% FSR accuracy\u00a0and true bipolar switching for seamless charge-discharge transitions. Download the Brochure Get Quote 20 &#8211; 1,500V [&hellip;]<\/p>\n","protected":false},"author":21,"featured_media":0,"parent":22207,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"_seopress_titles_title":"RBT-High\u00a0Power\u200b | Arbin Instruments","_seopress_titles_desc":"Arbin's RBT High Power: regenerative testing for battery modules and packs up to 1,500V - CAN integration, safety monitoring, and API 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