{"id":162493,"date":"2026-09-02T01:43:38","date_gmt":"2026-09-02T06:43:38","guid":{"rendered":"https:\/\/www.arbin.com\/?page_id=162493"},"modified":"2026-09-07T08:58:46","modified_gmt":"2026-09-07T13:58:46","slug":"battery-cell-testing","status":"publish","type":"page","link":"https:\/\/www.arbin.com\/zh\/battery-testing\/cell-testers.html","title":{"rendered":"Cell Testing Landing Page"},"content":{"rendered":"<p><strong>Cell Testing Systems<\/strong><\/p>\r\n<h1>Battery Cell Testing from 10\u00b5A to 1,600A<\/h1>\r\n<p>From low-current, high-precision materials research on coin cells to high-current testing of large-format cells, Arbin provides battery cyclers for laboratory R&amp;D and industrial-scale testing &#8211; all operated through one software platform.<\/p>\r\n<figure data-animation-delay=\"0\" data-animation-duration=\"1\"><img decoding=\"async\" title=\"arbin product lineup hero web\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/09\/arbin-product-lineup-hero-web-1.png\" alt=\"arbin product lineup hero web\" width=\"1316\" height=\"641\" \/><\/figure>\r\n<p><a href=\"#products\">Explore Cell Testers<\/a> <a href=\"#compare\">Compare All Systems<\/a><\/p>\r\n<h3>Accuracy you can audit<\/h3>\r\n<p>Measurement accuracy is held across all voltage and current ranges, with precision published as a separate specification.<\/p>\r\n<h3>Independently verified<\/h3>\r\n<p>Built under an ISO 9001:2015-certified quality system, with calibration through an ISO\/IEC 17025-accredited laboratory.<\/p>\r\n<p><a href=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/03\/iso9001.pdf\">View Certificate (PDF) \u2192<\/a><\/p>\r\n<h3>35 years of instrumentation<\/h3>\r\n<p>Founded in 1991, reinvesting 30% of profits into R&amp;D, which funds the precision architecture in every test station.<\/p>\r\n<h3>Built for any lab<\/h3>\r\n<p>Scalable channel density in a compact, air-cooled footprint, with open Python and C# APIs for automation you already run.<\/p>\r\n<nav>\r\n<ul>\r\n<li><a href=\"#products\">Arbin\u4ea7\u54c1<\/a><\/li>\r\n<li><a href=\"#fit\">Select Your System<\/a><\/li>\r\n<li><a href=\"#software\">Software &amp; Methods<\/a><\/li>\r\n<li><a href=\"#compare\">Compare<\/a><\/li>\r\n<li><a href=\"#why\">Why Arbin<\/a><\/li>\r\n<li><a href=\"#system\">Complete System<\/a><\/li>\r\n<li><a href=\"#specs\">\u6280\u672f\u89c4\u683c<\/a><\/li>\r\n<li><a href=\"#contact\">\u8054\u7cfbArbin<\/a><\/li>\r\n<\/ul>\r\n<\/nav>\r\n<h2>Find the Right Cell Testing Platform<\/h2>\r\n<p>From \u00b5A research cells to 256-channel production QC &#8211; explore Arbin&#8217;s cell testing systems below.<\/p>\r\n<h2>Cell Testers &#8211; Laboratory &amp; Industrial Scale<\/h2>\r\n<figure><img decoding=\"async\" title=\"arbin lbts cell 1\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/09\/arbin-lbts-cell-1.webp\" alt=\"arbin lbts cell 1\" width=\"480\" height=\"480\" \/><\/figure>\r\n<p>Flagship Product<\/p>\r\n<h3>LBTS-Cell \u7535\u82af\u6d4b\u8bd5<\/h3>\r\n<p>0-5V\/0-10V \u00b7 10\u00b5A-500A<\/p>\r\n<p>Arbin&#8217;s core cell testing platform &#8211; precision cycling for research through high-throughput cell QC, scalable from a single bench to a full cabinet.<\/p>\r\n<p><a href=\"https:\/\/www.arbin.com\/zh\/82-6\/lbts-cell-html\/\">View LBTS-Cell \u2192<\/a><\/p>\r\n<figure><img decoding=\"async\" title=\"arbin rbt4 cell\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/09\/arbin-rbt4-cell.png\" alt=\"arbin rbt4 cell\" width=\"480\" height=\"480\" \/><\/figure>\r\n<p>Regenerative<\/p>\r\n<h3>RBT-Cell \u7535\u82af\u6d4b\u8bd5<\/h3>\r\n<p>0-6V\/0-20V \u00b7 100A-1,600 A<\/p>\r\n<p>High-current cell cycling with energy-regenerative architecture &#8211; built for high capacity cells, from 100A up to 1,600A in parallel.<\/p>\r\n<p><a href=\"https:\/\/www.arbin.com\/zh\/82-6\/rbt-cell.html\/\">View RBT-Cell \u2192<\/a><\/p>\r\n<figure><img decoding=\"async\" title=\"arbin lbts cell 1\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/09\/arbin-lbts-cell-1.webp\" alt=\"arbin lbts cell 1\" width=\"480\" height=\"480\" \/><\/figure>\r\n<p>Incoming QC &amp; Quality Control<\/p>\r\n<h3>LBTS-Cell High Throughput<\/h3>\r\n<p>0-5V \u00b7 1 mA-10 A\/channel \u00b7 256+ ch<\/p>\r\n<p>Built for high-volume incoming inspection &#8211; maximum channel density per chassis, tuned for QC line speed rather than research-grade range coverage.<\/p>\r\n<p><a href=\"https:\/\/www.arbin.com\/zh\/82-6\/lbts-cell-high-volume-html\/\">View High Throughput \u2192<\/a><\/p>\r\n<h2>Benchtop Systems For Small-Scale R&amp;D<\/h2>\r\n<figure><img decoding=\"async\" title=\"hps right min\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/09\/hps-right-min.webp\" alt=\"hps right min\" width=\"1920\" height=\"1080\" \/><\/figure>\r\n<h4>Ultra-High Precision &#8211; Optional Integrated Chamber<\/h4>\r\n<h3>Ultra-High Precision (HPS)<\/h3>\r\n<p>100 \u00b5A-5 A\/channel \u00b7 2 ch per unit<\/p>\r\n<p>Arbin&#8217;s highest-precision benchtop platform &#8211; below 10 ppm precision for research that relies on measurement precision.<\/p>\r\n<p><a href=\"https:\/\/www.arbin.com\/zh\/82-5\/high-precision-tester.html\/\">View HPS \u2192<\/a><\/p>\r\n<figure><img decoding=\"async\" title=\"lbt right min\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/09\/lbt-right-min.webp\" alt=\"lbt right min\" width=\"1920\" height=\"1080\" \/><\/figure>\r\n<p>All-Purpose &#8211; Optional Integrated Chamber<\/p>\r\n<h3>LBT-Benchtop<\/h3>\r\n<p>0-5V\/0-10V \u00b7 5A-10A \u00b7 8-16Ch<\/p>\r\n<p>Arbin&#8217;s workhorse benchtop tester &#8211; portable and rackable, built for small-scale research, capacity grading, and everyday cell characterization.<\/p>\r\n<p><a href=\"https:\/\/www.arbin.com\/zh\/82-5\/lbt-benchtop.html\/\">View LBT-Benchtop \u2192<\/a><\/p>\r\n<figure><img decoding=\"async\" title=\"pdbt right min\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/09\/pdbt-right-min.webp\" alt=\"pdbt right min\" width=\"1920\" height=\"1080\" \/><\/figure>\r\n<p>Parallel Cell Testing<\/p>\r\n<h3>PDBT<\/h3>\r\n<p>0-5V \u00b7 1 mA-10 A\/channel \u00b7 8Ch<\/p>\r\n<p>Parallel-Differential Battery testing is a novel way to use a single cell to test a group of cells in parallel.<\/p>\r\n<p><a href=\"https:\/\/www.arbin.com\/zh\/82-5\/%e5%b8%a6%e9%9b%86%e6%88%90%e8%85%94%e7%9a%84%e5%b9%b6%e8%81%94%e5%b7%ae%e5%88%86%e7%94%b5%e6%b1%a0%e6%b5%8b%e8%af%95%e4%bb%aa-html\/\">View PDBT \u2192<\/a><\/p>\r\n<h2>Battery Cycler with Integrated Temperature Control<\/h2>\r\n<figure><img decoding=\"async\" title=\"lbts mztc 480x480\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/09\/lbts-mztc-480x480-1.png\" alt=\"lbts mztc 480x480\" width=\"480\" height=\"480\" \/><\/figure>\r\n<h4>Turnkey Battery Testing &#8211; Cycler + Chamber<\/h4>\r\n<h3>LBTS-MZTC\u96c6\u6210\u6e29\u7bb1\u7cfb\u5217<\/h3>\r\n<p>5-20 A\/channel \u00b7 32 ch \u00b7 16 chambers<\/p>\r\n<p>LBTS-Cell cycling with a multi-zone thermal chamber built in &#8211; one system, one footprint, no third-party chamber integration required.<\/p>\r\n<p><a href=\"https:\/\/www.arbin.com\/zh\/82-6\/lbts-mztc-html\/\">View LBTS-MZTC \u2192<\/a><\/p>\r\n<figure><img decoding=\"async\" title=\"battery tray 480x480 transparent\" src=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/09\/battery_tray_480x480_transparent.png\" alt=\"battery tray 480x480 transparent\" width=\"480\" height=\"480\" \/><\/figure>\r\n<p>Individual Cell-Level Temperature Control<\/p>\r\n<h3>Smart Battery Tray<\/h3>\r\n<p>30-200 A\/cell \u00b7 4-96 ch<\/p>\r\n<p>Each cell holder integrates an individual thermoelectric cooler and connects directly to its corresponding LBT test channel, enabling fully independent temperature control on every channel-without shared chambers or complex external cabling.<\/p>\r\n<p><a href=\"https:\/\/www.arbin.com\/zh\/82-6\/sbtr.html\/\">View SBTR \u2192<\/a><\/p>\r\n<section id=\"fit\">Making the Choice\r\n<h2>Which cell testing platform fits your work?<\/h2>\r\n<p>Eight systems across three categories. The comparison table below has the full numbers \u2014 this is the reasoning behind which one suits which job.<\/p>\r\n01\r\n<h3>Cell Testers<\/h3>\r\n<p>For labs scaling from research into production. LBTS-Cell covers both ends of a project \u2014 early characterization at 10\u00a0\u00b5A through production QC at up to 256 channels \u2014 without moving cells to a second tester.<\/p>\r\n<p>RBT-Cell answers a different question: when a cell genuinely needs high current, its regenerative architecture returns energy to the grid rather than dissipating it as heat.<\/p>\r\nBest for Cell R&amp;D Lifecycle testing Incoming QC Fast-charge 02\r\n<h3>Benchtop Systems<\/h3>\r\n<p>For labs that need precision before they need scale. HPS is the instrument to reach for when the question is about the cell, not the tester \u2014 coulombic-efficiency work depends on a noise floor below 10\u00a0ppm.<\/p>\r\n<p>LBT-Benchtop is the workhorse for everything else at bench scale, and PDBT handles what neither does well: comparing a group of cells in parallel against a reference.<\/p>\r\nBest for Materials research Coulombic efficiency Capacity grading Cell matching 03\r\n<h3>\u96c6\u6210\u6e29\u5ea6\u63a7\u5236\u5668<\/h3>\r\n<p>For tests where thermal behavior is the result, not a side condition. LBTS-MZTC runs 16 isolated zones against a full cycling schedule, with no third-party chamber to synchronize.<\/p>\r\n<p>SBTR takes the opposite approach \u2014 every cell gets its own thermoelectric control at \u00b12\u00a0\u00b0C, which is what high-rate testing on cylindrical formats actually needs.<\/p>\r\nBest for Electro-thermal Multi-temperature 18650 \/ 21700 \/ 46xx Turnkey\r\n<p><strong>Not sure which applies?<\/strong> Send your cell format, current and voltage requirement, and channel count, and an application engineer will come back with a specific configuration.<\/p>\r\n<\/section>\r\n<section id=\"software\">Software &amp; Test Methods\r\n<h2>One software platform, every test method<\/h2>\r\n<p>A schedule validated on a benchtop LBT runs unchanged on a 256-channel cabinet, because test design, execution, data and automation belong to one platform rather than four tools bolted together. Every channel is an independent potentiostat and galvanostat, so electrochemical characterization and long-run cycling run on the same hardware and land in one time-aligned dataset.<\/p>\r\n<h3>The MITS platform<\/h3>\r\n<p>Four layers, one codebase \u2014 from schedule design through to database and API integration.<\/p>\r\nTest design &amp; control\r\n<h4>MITS Pro<\/h4>\r\n30+ programmable control types and 90+ meta variables Up to 9 nested loops and 127 reusable sub-schedules Adaptive logging raises acquisition rate through transients Test Object profiles set safety thresholds from the cell spec <a href=\"https:\/\/www.arbin.com\/zh\/82-8\/cross-platform-mits.html\/\">Cross Platform MITS \u2192<\/a> Data &amp; analysis\r\n<h4>DataWatcher<\/h4>\r\nQueries the SQL database directly \u2014 no export step Filter by channel, barcode or cycle count Overlay up to 9 plots for side-by-side comparison PostgreSQL, Microsoft SQL Server and Apache Kafka streaming <a href=\"https:\/\/www.arbin.com\/zh\/%e8%bd%af%e4%bb%b6%e8%a7%a3%e5%86%b3%e6%96%b9%e6%a1%88-html\/\">Software solutions \u2192<\/a> Automation &amp; integration\r\n<h4>ArbinCTI &amp; Lua<\/h4>\r\nTCP\/IP API with Python and C# clients Lua scripting for BMS emulation, digital twins and adaptive fast-charge Custom Test Instructions in C#\/.NET for logic beyond standard commands Connect to LIMS, MES or in-house systems for automated data exchange <a href=\"https:\/\/www.arbin.com\/zh\/82-8\/integration-client-solutions.html\/\">Integration solutions \u2192<\/a> Multi-system management\r\n<h4>CDS &amp; CMCS<\/h4>\r\n<strong>CDS<\/strong> \u2014 centralize data from every cycler onto one local or cloud server, with automatic backup <strong>CMCS<\/strong> \u2014 oversee and control networked cyclers from one client PC via ArbinViewer Email and SMS notifications on tester status and test progress User accounts and permission levels across the whole cycler fleet <a href=\"https:\/\/www.arbin.com\/zh\/%e8%bd%af%e4%bb%b6%e8%a7%a3%e5%86%b3%e6%96%b9%e6%a1%88-html\/\">Data &amp; fleet management \u2192<\/a>\r\n<h3>What you can run on these channels<\/h3>\r\n<p>Every method below is built and executed in the same platform above, on any system on this page.<\/p>\r\nElectrochemical GITT \u2014 galvanostatic intermittent titration PITT \u2014 potentiostatic intermittent titration Cyclic and linear sweep voltammetry Chrono-amperometry and potentiometry EIS to 100 kHz \u2014 integrated Gamry Symmetric-cell testing Multi-electrode and reference-electrode work Cycling and lifetime Battery life cycle testing dQ\/dV analysis High-precision coulombic efficiency Self-discharge current measurement DCIR and pulse characterization Constant-power and constant-resistance cycling Real-world drive-cycle simulation Production and QC Incoming quality control Cell-level grading and sorting Formation and cell finishing End-of-line testing Fast-charge optimization Temperature-controlled cycling with chamber sync\r\n<p>Most methods are built through the menu-driven interface, with Lua scripting and ArbinCTI available where a protocol needs external control or adaptive logic. MITS runs on Windows, macOS and Linux from one codebase, and previous generations \u2014 MITS 11, MITS 10 and MITS 8 \u2014 remain supported.<\/p>\r\n<\/section>\r\n<section aria-labelledby=\"arbin-cell-comparison-title\">Side by Side\r\n<h2 id=\"arbin-cell-comparison-title\">Compare Arbin Cell Testing Systems<\/h2>\r\nCompare each platform by application, current range, channel range, and temperature-control capability.\r\n<table><caption>Comparison of Arbin battery cell testing systems<\/caption>\r\n<thead>\r\n<tr>\r\n<th scope=\"col\">\u4ea7\u54c1<\/th>\r\n<th scope=\"col\">Best For<\/th>\r\n<th scope=\"col\">Current Range<\/th>\r\n<th scope=\"col\">Channel Range<\/th>\r\n<th scope=\"col\">\u6e29\u5ea6\u63a7\u5236<\/th>\r\n<\/tr>\r\n<\/thead>\r\n<!-- =====================================================\r\n           CORE CELL CYCLERS\r\n           ===================================================== -->\r\n<tbody>\r\n<tr>\r\n<th colspan=\"5\" scope=\"rowgroup\">Core Cell Cyclers<\/th>\r\n<\/tr>\r\n<!-- LBTS-CELL -->\r\n<tr>\r\n<th scope=\"row\"><a href=\"\/zh\/82-6\/lbts-cell-html\/\"> LBTS-Cell \u7535\u82af\u6d4b\u8bd5 <\/a> All-Purpose High-precision linear cell cycler <a href=\"\/zh\/82-6\/lbts-cell-html\/\" aria-label=\"View the LBTS-Cell product page\"> View Product \u2192 <\/a><\/th>\r\n<td data-label=\"Best for\">General cell R&amp;D, characterization, lifecycle testing, grading, and incoming quality control.<\/td>\r\n<td data-label=\"Current range\">10 \u00b5A\u2013500 A\/channel Wide range of low- and high-current configurations<\/td>\r\n<td data-label=\"Channel range\">4\u2013256 Configuration dependent<\/td>\r\n<td data-label=\"Temperature control\">MZTC or external chamber Temperature setpoints and safety limits can be synchronized with the test.<\/td>\r\n<\/tr>\r\n<!-- RBT-CELL -->\r\n<tr>\r\n<th scope=\"row\"><a href=\"\/zh\/82-6\/rbt-cell.html\/\"> RBT-Cell \u7535\u82af\u6d4b\u8bd5 <\/a> Regenerative High-current regenerative cell cycler <a href=\"\/zh\/82-6\/rbt-cell.html\/\" aria-label=\"View the RBT-Cell product page\"> View Product \u2192 <\/a><\/th>\r\n<td data-label=\"Best for\">High-current cells, fast-charge development, pulse testing, and energy-efficient long-term cycling.<\/td>\r\n<td data-label=\"Current range\">100\u2013400 A\/channel Up to 1,600 A with channel paralleling<\/td>\r\n<td data-label=\"Channel range\">4\u201364 Voltage and current dependent<\/td>\r\n<td data-label=\"Temperature control\">MZTC or external chamber Supports synchronized temperature profiles and temperature-based safety limits.<\/td>\r\n<\/tr>\r\n<!-- LBTS-CELL HIGH THROUGHPUT -->\r\n<tr>\r\n<th scope=\"row\"><a href=\"\/zh\/82-6\/lbts-cell-high-volume-html\/\"> LBTS-Cell High Throughput <\/a> High Throughput High-density cell testing system <a href=\"\/zh\/82-6\/lbts-cell-high-volume-html\/\" aria-label=\"View the LBTS-Cell High Throughput product page\"> View Product \u2192 <\/a><\/th>\r\n<td data-label=\"Best for\">Incoming cell quality control, grading, validation, and large-scale repetitive testing.<\/td>\r\n<td data-label=\"Current range\">1 mA\u20131 A or 10 A\/channel High-density 1 A and 10 A configurations<\/td>\r\n<td data-label=\"Channel range\">192 or 256 Per system<\/td>\r\n<td data-label=\"Temperature control\">External chamber integration Designed for high-density racks, holders, and controlled test environments.<\/td>\r\n<\/tr>\r\n<\/tbody>\r\n<!-- =====================================================\r\n           BENCHTOP AND SPECIALIZED RESEARCH\r\n           ===================================================== -->\r\n<tbody>\r\n<tr>\r\n<th colspan=\"5\" scope=\"rowgroup\">Benchtop &amp; Specialized Research<\/th>\r\n<\/tr>\r\n<!-- LBT -->\r\n<tr>\r\n<th scope=\"row\"><a href=\"\/zh\/82-5\/lbt-benchtop.html\/\"> LBT-Benchtop <\/a> Compact Laboratory Battery Tester <a href=\"\/zh\/82-5\/lbt-benchtop.html\/\" aria-label=\"View the LBT product page\"> View Product \u2192 <\/a><\/th>\r\n<td data-label=\"Best for\">General laboratory research, capacity testing, aging, quality control, impedance, and self-discharge measurement.<\/td>\r\n<td data-label=\"Current range\">100 \u00b5A\u201310 A\/channel 1 A, 5 A, and 10 A models<\/td>\r\n<td data-label=\"Channel range\">8\u201316 8 channels with integrated chamber<\/td>\r\n<td data-label=\"Temperature control\">Benchtop or integrated chamber Available as a standalone cycler or an all-in-one temperature-controlled system.<\/td>\r\n<\/tr>\r\n<!-- HPS -->\r\n<tr>\r\n<th scope=\"row\"><a href=\"\/zh\/82-5\/high-precision-tester.html\/\"> HPS <\/a> Ultra-High Precision High-Precision Battery Tester <a href=\"\/zh\/82-5\/high-precision-tester.html\/\" aria-label=\"View the HPS product page\"> View Product \u2192 <\/a><\/th>\r\n<td data-label=\"Best for\">Coulombic-efficiency testing, materials research, and early detection of small battery degradation trends.<\/td>\r\n<td data-label=\"Current range\">100 \u00b5A\u20135 A\/channel Six automatically selectable current ranges<\/td>\r\n<td data-label=\"Channel range\">2 Per benchtop unit<\/td>\r\n<td data-label=\"Temperature control\">Benchtop or integrated chamber Integrated version provides independent temperature control for both cell positions.<\/td>\r\n<\/tr>\r\n<!-- PDBT -->\r\n<tr>\r\n<th scope=\"row\"><a href=\"\/zh\/82-5\/%e5%b8%a6%e9%9b%86%e6%88%90%e8%85%94%e7%9a%84%e5%b9%b6%e8%81%94%e5%b7%ae%e5%88%86%e7%94%b5%e6%b1%a0%e6%b5%8b%e8%af%95%e4%bb%aa-html\/\"> PDBT <\/a> Parallel Testing Parallel Differential Battery Tester <a href=\"\/zh\/82-5\/%e5%b8%a6%e9%9b%86%e6%88%90%e8%85%94%e7%9a%84%e5%b9%b6%e8%81%94%e5%b7%ae%e5%88%86%e7%94%b5%e6%b1%a0%e6%b5%8b%e8%af%95%e4%bb%aa-html\/\" aria-label=\"View the PDBT product page\"> View Product \u2192 <\/a><\/th>\r\n<td data-label=\"Best for\">Cell-to-cell comparison, parallel current-sharing behavior, cell matching, and self-discharge measurement.<\/td>\r\n<td data-label=\"Current range\">1 mA\u20135 A Four current ranges<\/td>\r\n<td data-label=\"Channel range\">8 Parallel differential channels<\/td>\r\n<td data-label=\"Temperature control\">Integrated chamber One controlled chamber with eight integrated cell fixtures.<\/td>\r\n<\/tr>\r\n<\/tbody>\r\n<!-- =====================================================\r\n           INTEGRATED TEMPERATURE CONTROL\r\n           ===================================================== -->\r\n<tbody>\r\n<tr>\r\n<th colspan=\"5\" scope=\"rowgroup\">Integrated Temperature-Control Systems<\/th>\r\n<\/tr>\r\n<!-- LBTS-MZTC -->\r\n<tr>\r\n<th scope=\"row\"><a href=\"\/zh\/82-6\/lbts-mztc-html\/\"> LBTS-MZTC\u96c6\u6210\u6e29\u7bb1\u7cfb\u5217 <\/a> Turnkey Integrated cycler and multi-zone thermal system <a href=\"\/zh\/82-6\/lbts-mztc-html\/\" aria-label=\"View the LBTS-MZTC product page\"> View Product \u2192 <\/a><\/th>\r\n<td data-label=\"Best for\">Multi-temperature cell development, validation, and electro-thermal characterization in one complete system.<\/td>\r\n<td data-label=\"Current range\">5, 10, or 20 A\/channel Four current ranges per channel<\/td>\r\n<td data-label=\"Channel range\">32 Integrated test channels<\/td>\r\n<td data-label=\"Temperature control\">16 isolated chambers Thirty-two integrated cell fixtures with independently managed temperature setpoints.<\/td>\r\n<\/tr>\r\n<!-- SBTR -->\r\n<tr>\r\n<th scope=\"row\"><a href=\"\/zh\/82-6\/sbtr.html\/\"> SBTR <\/a> Cell-Level Thermal Smart Battery Tray <a href=\"\/zh\/82-6\/sbtr.html\/\" aria-label=\"View the SBTR product page\"> View Product \u2192 <\/a><\/th>\r\n<td data-label=\"Best for\">Fast-charge and high-rate testing of 18650, 21700, and large-format 46xx cylindrical cells.<\/td>\r\n<td data-label=\"Current range\">30\u2013200 A\/cell Configuration and cell-format dependent<\/td>\r\n<td data-label=\"Channel range\">4\u201396 Standalone trays or integrated racks<\/td>\r\n<td data-label=\"Temperature control\">Individual TEC per cell Independent closed-loop heating and cooling for every cell position.<\/td>\r\n<\/tr>\r\n<\/tbody>\r\n<\/table>\r\nProduct-family ranges are summarized for comparison. Available current, channel-count, voltage, and thermal-control combinations depend on the selected system configuration.<\/section>\r\n<section id=\"why\">Why Arbin\r\n<h2>Built on high-precision measurement<\/h2>\r\n<p>A cycler is a metrology instrument, and its value over a test programme depends on whether the specification it was sold on still holds months later. The four points below cover where Arbin&#8217;s measurement architecture comes from, how it is verified, and what it measures to.<\/p>\r\nIndependently recognized\r\n<h3>R&amp;D 100 Award-winning precision<\/h3>\r\n<p>The high-precision architecture in Arbin&#8217;s current systems came out of a three-year ARPA-E programme run with Ford Motor Company and Sandia National Laboratories, aimed specifically at holding precision at high current. The resulting design now runs across the full cell testing range.<\/p>\r\nAccredited\r\n<h3>Accredited calibration<\/h3>\r\n<p>Systems are manufactured under an ISO 9001:2015-certified quality system, and calibration is carried out through an ISO\/IEC 17025-accredited testing and calibration laboratory. Accreditation to that standard means the values on a calibration certificate are traceable to national measurement standards.<\/p>\r\n<a href=\"https:\/\/www.arbin.com\/wp-content\/uploads\/2026\/03\/iso9001.pdf\">View ISO 9001 Certificate (PDF) \u2192<\/a> Since 1991\r\n<h3>35 years, and still R&amp;D-funded<\/h3>\r\n<p>Arbin has built battery cyclers since 1991 and reinvests 30% of profits into R&amp;D, which funds ongoing development of the measurement architecture. Equipment delivered over 30 years ago remains in service, and support for previous software generations continues alongside the current release.<\/p>\r\nOpen by design\r\n<h3>Open interfaces and direct data access<\/h3>\r\n<p>Python and C# APIs, Lua scripting and the ArbinCTI interface allow the tester to be driven from existing lab software, and test data can be queried directly from PostgreSQL or Microsoft SQL Server without an export step.<\/p>\r\nMeasurement specifications \u00b10.02% FSR accuracy, published as its own figure and never merged with precision \u00b10.01% FSR precision \u2014 100\u00a0ppm, specified separately for voltage, current and time 24-bit Resolution on voltage and current alike \u2014 one part in 16,777,216 10\u00a0\u00b5A Lowest controlled current, scaling to 1,600\u00a0A paralleled<\/section>\r\n<p><style>\r\n  .sys-section{\r\n    font-family:'Inter','Noto Sans',-apple-system,BlinkMacSystemFont,'Segoe UI',sans-serif;\r\n    padding:72px 24px;\r\n    background:#f4f7fa;\r\n  }\r\n  .sys-wrap{max-width:1160px;margin:0 auto;}\r\n  .sys-kicker{\r\n    font-size:12px;font-weight:700;letter-spacing:.09em;text-transform:uppercase;\r\n    color:#0064a9;margin-bottom:12px;\r\n  }\r\n  .sys-wrap h2{\r\n    font-size:32px;font-weight:700;margin:0 0 14px;line-height:1.22;color:#1a1a1a;\r\n  }\r\n  .sys-lede{\r\n    font-size:16.5px;color:#5c6773;max-width:840px;margin:0 0 40px;line-height:1.65;\r\n  }\r\n  .sys-grid{\r\n    display:grid;grid-template-columns:repeat(auto-fit,minmax(320px,1fr));gap:22px;\r\n  }\r\n  .layer{\r\n    background:#ffffff;\r\n    border:1px solid #dfe5ea;\r\n    border-radius:10px;\r\n    display:flex;\r\n    flex-direction:column;\r\n    overflow:hidden;\r\n  }\r\n  \/* header strip carries the color and the numbering *\/\r\n  .layer-head{\r\n    display:flex;align-items:center;gap:14px;\r\n    padding:16px 20px;\r\n    background:#eef4f9;\r\n    border-bottom:1px solid #dbe6ef;\r\n  }\r\n  .layer-num{\r\n    width:30px;height:30px;flex-shrink:0;\r\n    background:#0064a9;color:#fff;border-radius:5px;\r\n    display:flex;align-items:center;justify-content:center;\r\n    font-size:13.5px;font-weight:800;letter-spacing:-.02em;\r\n  }\r\n  .layer-head .titles{display:flex;flex-direction:column;gap:1px;}\r\n  .layer-head .cat{\r\n    font-size:10.5px;font-weight:700;text-transform:uppercase;letter-spacing:.07em;\r\n    color:#0064a9;\r\n  }\r\n  .layer-head h3{\r\n    font-size:16px;font-weight:700;color:#1a1a1a;margin:0;line-height:1.3;\r\n  }\r\n  .layer-body{padding:20px;display:flex;flex-direction:column;flex:1;}\r\n  .layer-body p{\r\n    font-size:14.5px;color:#4f5b66;line-height:1.65;margin:0 0 18px;\r\n  }\r\n  \/* spec list, not clickable-looking chips *\/\r\n  .layer-list{\r\n    margin-top:auto;padding-top:16px;border-top:1px solid #edf1f4;\r\n    display:flex;flex-direction:column;gap:7px;\r\n  }\r\n  .layer-list div{\r\n    font-size:13px;color:#5c6773;padding-left:14px;position:relative;line-height:1.45;\r\n  }\r\n  .layer-list div:before{\r\n    content:\"\";position:absolute;left:0;top:7px;\r\n    width:5px;height:5px;border-radius:1px;background:#ffd601;\r\n  }\r\n  .sys-close{\r\n    margin-top:36px;padding:22px 26px;\r\n    background:#0064a9;border-radius:10px;\r\n    display:flex;align-items:center;justify-content:space-between;gap:24px;flex-wrap:wrap;\r\n  }\r\n  .sys-close p{\r\n    margin:0;font-size:15.5px;color:#e4f0f8;line-height:1.6;max-width:720px;\r\n  }\r\n  .sys-close p strong{color:#fff;}\r\n  .sys-close a{\r\n    flex-shrink:0;\r\n    background:#ffd601;color:#00385e;\r\n    font-size:14.5px;font-weight:700;text-decoration:none;\r\n    padding:12px 22px;border-radius:6px;\r\n  }\r\n  .sys-close a:hover{background:#ffdf33;}\r\n<\/style><\/p>\r\n<section id=\"system\">Beyond the Channel\r\n<h2>A complete test system, not just a cycler<\/h2>\r\n<p>A cycler on its own rarely produces a usable result, because the quality of the data depends as much on how the cell is held, cooled and measured as it does on the channel driving it. Arbin specifies all six layers together against your cell format and test plan, so the connections, thermal control, auxiliary measurement and software are matched to the electrical configuration rather than assembled around it afterward.<\/p>\r\n01 Electrical\r\n<h3>Battery cycler &amp; test channels<\/h3>\r\n<p>Channel selection follows the cell rather than the catalogue, since the voltage window, peak current, pulse requirements and measurement resolution together determine which channel architecture applies and how many will fit in a chassis.<\/p>\r\nVoltage window and peak current per channel Pulse profile and minimum step time Channel count per chassis, and paralleling headroom 02 Connection\r\n<h3>Cell holders &amp; cabling<\/h3>\r\n<p>Contact resistance enters the measurement directly, which is why every connection is 4-wire Kelvin and why holders, trays and racks are matched to the cell geometry and the test current rather than adapted from a general-purpose fixture.<\/p>\r\nCoin, cylindrical, pouch and prismatic formats High-current contact design and cable routing Modular racks for scalable test density 03 Thermal\r\n<h3>Temperature control<\/h3>\r\n<p>Temperature is either a controlled variable or an uncontrolled source of error, so the approach depends on how tightly the study needs it held &#8211; a synchronized external chamber, multi-zone MZTC chambers, or independent thermoelectric control at each cell position.<\/p>\r\nThird-party chamber synchronization and logging MZTC multi-zone chambers, independently controlled Individual TEC per cell with SBTR 04 Measurement\r\n<h3>Auxiliary measurements &amp; EIS<\/h3>\r\n<p>Signals recorded on separate instruments are difficult to reconcile afterward, so auxiliary temperature, reference-electrode measurements and integrated Gamry EIS are captured on the same timebase as voltage and current in a single dataset.<\/p>\r\nAuxiliary temperature and voltage inputs Reference and multi-electrode measurement Gamry EIS to 100 kHz, plus native DCIM 05 Software\r\n<h3>Test software, data &amp; automation<\/h3>\r\n<p>The same platform runs from a benchtop unit to a 256-channel cabinet, so a validated schedule transfers without rework, and the resulting data is queried directly from the database rather than exported and reassembled.<\/p>\r\nMITS Pro schedule design and execution DataWatcher queries against SQL, no export step ArbinCTI, Lua scripting, and LIMS or MES integration 06 Confidence\r\n<h3>Calibration &amp; technical support<\/h3>\r\n<p>A specification only means something if it still holds months into a study, which is why calibration is handled through Arbin&#8217;s ISO\/IEC 17025-accredited laboratory and supported by engineers who work on the test programmes themselves.<\/p>\r\nISO\/IEC 17025-accredited calibration laboratory Annual system and auxiliary calibration Installation, training and long-term support\r\n<p><strong>Every layer is specified against your cells, not sold as a bundle.<\/strong> Send us what you are testing and an application engineer will come back with a configuration matched to it.<\/p>\r\n<a href=\"https:\/\/www.arbin.com\/zh\/%e8%81%94%e7%b3%bb%e6%88%91%e4%bb%ac-html\/\">\u8054\u7cfb\u6211\u4eec<\/a><\/section>\r\n<p><style>\r\n  .specs-section{\r\n    font-family:'Inter','Noto Sans',-apple-system,BlinkMacSystemFont,'Segoe UI',sans-serif;\r\n    padding:72px 24px;\r\n    background:#ffffff;\r\n  }\r\n  .specs-wrap{max-width:1160px;margin:0 auto;}\r\n  .specs-kicker{\r\n    font-size:12px;font-weight:700;letter-spacing:.09em;text-transform:uppercase;\r\n    color:#0064a9;margin-bottom:12px;\r\n  }\r\n  .specs-wrap h2{\r\n    font-size:32px;font-weight:700;margin:0 0 14px;line-height:1.22;color:#1a1a1a;\r\n  }\r\n  .specs-lede{\r\n    font-size:16.5px;color:#5c6773;max-width:820px;margin:0 0 36px;line-height:1.6;\r\n  }\r\n  .specs-tbl-wrap{\r\n    overflow-x:auto;border:1px solid #e2e6ea;border-radius:10px;background:#fff;\r\n  }\r\n  .specs-tbl-wrap table{\r\n    border-collapse:collapse;width:100%;min-width:860px;font-size:14px;\r\n  }\r\n  \/* ---- header row: neutral for context columns, blue for Arbin, gold for the challenge ---- *\/\r\n  .specs-tbl-wrap thead th{\r\n    text-align:left;padding:15px 18px;font-weight:700;font-size:12px;\r\n    text-transform:uppercase;letter-spacing:.05em;\r\n    background:#f1f4f7;color:#5c6773;\r\n    border-bottom:1px solid #e2e6ea;\r\n  }\r\n  .specs-tbl-wrap thead th.col-arbin{\r\n    background:#0064a9;color:#ffffff;border-bottom-color:#0064a9;\r\n  }\r\n  .specs-tbl-wrap thead th.col-ask{\r\n    background:#ffd601;color:#4a3900;border-bottom-color:#ffd601;\r\n  }\r\n  \/* ---- body ---- *\/\r\n  .specs-tbl-wrap tbody td{\r\n    padding:18px;border-top:1px solid #e8ecef;vertical-align:top;\r\n    color:#5c6773;line-height:1.55;\r\n  }\r\n  .specs-tbl-wrap tbody td.col-param{\r\n    font-weight:700;color:#1a1a1a;font-size:14.5px;white-space:nowrap;\r\n  }\r\n  \/* Arbin column - tinted, with the figure doing the talking *\/\r\n  .specs-tbl-wrap tbody td.col-arbin{\r\n    background:#eef4f9;\r\n    border-left:3px solid #0064a9;\r\n    border-right:3px solid #0064a9;\r\n    color:#3a4450;\r\n  }\r\n  .specs-tbl-wrap tbody td.col-arbin .fig{\r\n    display:block;font-size:19px;font-weight:800;color:#0064a9;\r\n    letter-spacing:-.01em;margin-bottom:4px;line-height:1.2;\r\n  }\r\n  .specs-tbl-wrap tbody td.col-arbin .sub{\r\n    display:block;font-size:12.5px;color:#6a7683;line-height:1.45;\r\n  }\r\n  \/* Ask-any-vendor column - gold-tinted, italic, reads as a prompt not a spec *\/\r\n  .specs-tbl-wrap tbody td.col-ask{\r\n    background:#fffbe9;\r\n    color:#5c4a00;\r\n    font-style:italic;\r\n    font-size:13.5px;\r\n  }\r\n  \/* close the colored columns cleanly at the bottom *\/\r\n  .specs-tbl-wrap tbody tr:last-child td.col-arbin{\r\n    border-bottom:3px solid #0064a9;\r\n  }\r\n  .specs-note{\r\n    margin-top:26px;padding-left:16px;border-left:3px solid #ffd601;\r\n    font-size:14.5px;color:#5c6773;max-width:880px;line-height:1.6;\r\n  }\r\n<\/style><\/p>\r\n<section id=\"specs\">\u6280\u672f\u89c4\u683c\r\n<h2>The six parameters, and where we land on each<\/h2>\r\n<p>These six parameters decide whether the numbers a cycler returns are good enough to draw a conclusion from, six months into a test. The right-hand column is the question worth putting to every vendor on your shortlist.<\/p>\r\n<table>\r\n<thead>\r\n<tr>\r\n<th>Parameter<\/th>\r\n<th>What it decides<\/th>\r\n<th>Arbin cell systems<\/th>\r\n<th>Ask any vendor<\/th>\r\n<\/tr>\r\n<\/thead>\r\n<tbody>\r\n<tr>\r\n<td>\u5206\u8fa8\u7387<\/td>\r\n<td>The smallest change the circuitry can represent at all. Below it, an effect is simply absent from the data.<\/td>\r\n<td>24-bit One part in 16,777,216, on voltage and current alike, on every system on this page.<\/td>\r\n<td>How many bits? 16-bit is the common industry standard, and it is 256 times coarser.<\/td>\r\n<\/tr>\r\n<tr>\r\n<td>\u6d4b\u91cf\u4e0e\u63a7\u5236\u7cbe\u786e\u5ea6\uff08Precision\uff09<\/td>\r\n<td>The noise floor. It sets whether a small real difference is visible or buried.<\/td>\r\n<td>\u00b10.01% FSR 100 ppm, specified separately for voltage, current and time.<\/td>\r\n<td>Is precision a hardware specification, or derived from averaged calculations and slow logging?<\/td>\r\n<\/tr>\r\n<tr>\r\n<td>\u6d4b\u91cf\u548c\u63a7\u5236\u51c6\u786e\u5ea6\uff08Accuracy\uff09<\/td>\r\n<td>Whether the value is correct, not merely repeatable. An instrument can be precisely wrong.<\/td>\r\n<td>\u00b10.02% FSR Published as its own figure, never merged with precision.<\/td>\r\n<td>Can you give accuracy and precision as two separate numbers?<\/td>\r\n<\/tr>\r\n<tr>\r\n<td>Timebase<\/td>\r\n<td>Capacity is a time integral, so clock error is capacity error. Rarely published.<\/td>\r\n<td>5 ms minimum step Time accuracy under 20 ppm, with accumulated error held in check.<\/td>\r\n<td>What is your time accuracy, and the accumulated error over a long test?<\/td>\r\n<\/tr>\r\n<tr>\r\n<td>Stability<\/td>\r\n<td>Whether the rated specification still holds after months, and as lab temperature shifts.<\/td>\r\n<td>~0.000185% \/ \u00b0C Patented shunt design, developed with Sandia&#8217;s metrology group.<\/td>\r\n<td>What is the temperature coefficient of your accuracy specification?<\/td>\r\n<\/tr>\r\n<tr>\r\n<td>Range switching<\/td>\r\n<td>Whether one channel covers microamps and full-rate current while keeping its specification.<\/td>\r\n<td>2 or 4 ranges Per channel, auto-selecting, including during constant-voltage control.<\/td>\r\n<td>Does the accuracy specification still apply on the lowest range?<\/td>\r\n<\/tr>\r\n<\/tbody>\r\n<\/table>\r\n<p>Arbin has built cell cyclers to these parameters since 1991, including a three-year ARPA-E program with Ford Motor Company and Sandia National Laboratories aimed specifically at high-precision, high-current testing.<\/p>\r\n<\/section>\r\n<section id=\"contact\">Next Step\r\n<h2>Tell us what you are testing<\/h2>\r\n<p>Most configurations are settled in a single conversation, because the four things below narrow the options far faster than a catalogue does. Send them across and a sales engineer will come back with the system that fits, the channel count it takes, and what it needs from your facility.<\/p>\r\n01\r\n<h3>Cell format<\/h3>\r\n<p>Coin, pouch, prismatic or cylindrical, along with the cell capacity and the voltage window it operates across.<\/p>\r\n02\r\n<h3>Current and voltage<\/h3>\r\n<p>The highest rate you need to run, since peak current determines the channel architecture more than anything else on this list.<\/p>\r\n03\r\n<h3>\u901a\u9053\u6570<\/h3>\r\n<p>How many cells run at once today, and how that number is expected to grow over the next three years.<\/p>\r\n04\r\n<h3>\u6e29\u5ea6<\/h3>\r\n<p>Whether the cells can share a chamber or each position needs its own setpoint held independently.<\/p>\r\n<a href=\"https:\/\/www.arbin.com\/zh\/%e8%af%a2%e4%bb%b7-html\/\">\u83b7\u53d6\u62a5\u4ef7<\/a> <a href=\"https:\/\/www.arbin.com\/zh\/%e8%81%94%e7%b3%bb%e6%88%91%e4%bb%ac-html\/\">Talk to a Sales Engineer<\/a><\/section>","protected":false},"excerpt":{"rendered":"<p>Cell Testing Systems Battery Cell Testing from 10\u00b5A to 1,600A From low-current, high-precision materials research on coin cells to high-current testing of large-format cells, Arbin provides battery cyclers for laboratory R&amp;D and industrial-scale testing &#8211; all operated through one software platform. Explore Cell Testers Compare All Systems Accuracy you can audit Measurement accuracy is held [&hellip;]<\/p>\n","protected":false},"author":21,"featured_media":162695,"parent":22207,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"_seopress_titles_title":"Battery Cell Testers & Cyclers | Arbin Instruments","_seopress_titles_desc":"Battery cell testers for lab R&D and production \u2014 from 10\u00b5A precision research to 1,600A regenerative cycling. 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