{"id":14629,"date":"2026-07-10T09:00:00","date_gmt":"2026-07-10T07:00:00","guid":{"rendered":"https:\/\/tps-elektronik.com\/?p=14629"},"modified":"2026-06-16T10:25:24","modified_gmt":"2026-06-16T08:25:24","slug":"what-is-tps-high-power-bidirectional-programmable-power-supply-for-high-density-ate-systems-and-why-it-is-ideal-for-space-saving-and-energy-efficient-test-labs","status":"publish","type":"post","link":"https:\/\/tps-elektronik.com\/en\/what-is-tps-high-power-bidirectional-programmable-power-supply-for-high-density-ate-systems-and-why-it-is-ideal-for-space-saving-and-energy-efficient-test-labs\/","title":{"rendered":"What Is TPS High Power Bidirectional Programmable Power Supply for High Density ATE Systems and Why It Is Ideal for Space Saving and Energy Efficient Test Labs?"},"content":{"rendered":"<article class=\"product-blog\" lang=\"en\"><header>\n<p>For system integrators, panel builders, and engineering\u2011driven procurement teams, which selecting a power supply for an automated test system is not only about voltage and current ratings. It also involves rack density, energy efficiency, thermal management, and whether the system can simulate real\u2011world load conditions. Such as a battery charging and discharging \u2014 without needing separate instrumentation. When a test lab allocates 42U of rack space for power supplies that could have been accommodated in 16U, it wastes valuable floor area and increases cooling costs.<\/p>\n<p>The <a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-14\" target=\"_blank\" rel=\"noopener noreferrer nofollow\"><strong>TPS high power bidirectional programmable power supply<\/strong><\/a>, based on the EA\u2011PSBE 10000 series and exemplified by the EA\u2011PSBE 10360\u2011240 4U, addresses these challenges directly. It delivers up to 30\u202fkW of regenerative DC power in a single 4U chassis. Which operates as both a source and an electronic load, and returns absorbed energy to the grid with up to 95.8\u202f% efficiency. For high\u2011density ATE systems, battery test labs, and EV charger test benches. Which means fewer racks, lower electricity bills, and a single instrument that replaces two.<\/p>\n<\/header><nav class=\"toc\" aria-label=\"Table of Contents\">\n<h2 id=\"toc-en\">Table of Contents<\/h2>\n<ol>\n<li><a href=\"#en-what-it-is\">What a bidirectional programmable power supply is and why ATE systems need it<\/a><\/li>\n<li><a href=\"#en-power-density\">Power density and space savings: 30\u202fkW in 4U<\/a><\/li>\n<li><a href=\"#en-bidirectional\">Bidirectional and regenerative operation: how it saves energy<\/a><\/li>\n<li><a href=\"#en-autoranging\">Autoranging output: flexible voltage and current in one unit<\/a><\/li>\n<li><a href=\"#en-scalability\">Scalability: master\u2011slave parallel operation up to 1,920\u202fkW<\/a><\/li>\n<li><a href=\"#en-control\">Control, interfaces, and software<\/a><\/li>\n<li><a href=\"#en-compliance\">Compliance and safety<\/a><\/li>\n<li><a href=\"#en-applications\">Application scenarios: battery test, EV charger, fuel cell<\/a><\/li>\n<li><a href=\"#en-rfq\">RFQ checklist<\/a><\/li>\n<li><a href=\"#en-faq\">Frequently Asked Questions<\/a><\/li>\n<\/ol>\n<\/nav>\n<section>\n<h2 id=\"en-what-it-is\">What a bidirectional programmable power supply is and why ATE systems need it<\/h2>\n<p>A conventional DC power supply sources current to a device under test. When the test requires the device to discharge energy. Such as a battery during a capacity test. A separate electronic load must dissipate that energy as heat. This configuration consumes rack space, generates waste heat, and discards usable electrical energy. A <strong>bidirectional programmable power supply<\/strong> consolidates both functions into a single instrument. It can source power (act as a power supply) or sink power (act as a regenerative electronic load). Which returning the absorbed energy to the grid instead of converting it to heat.<\/p>\n<p>In an ATE system testing electric vehicle batteries, on\u2011board chargers, or fuel cells, this capability is transformative. The same instrument that charges a battery during one test sequence can discharge it during the next, with the discharge energy recovered and reused within the facility. This reduces the total electrical energy consumed by the test system, lowers the air\u2011conditioning load in the lab, and eliminates the cost of purchasing and maintaining separate loads. For a deeper look at how programmable power supplies used across test environments, refer to the TPS guide on <a href=\"https:\/\/tps-elektronik.com\/en\/top-programmable-power-supply-options-for-every-need\/\">top programmable power supply options for every need<\/a>.<\/p>\n<p><img decoding=\"async\" class=\"alignnone size-full wp-image-14769\" src=\"https:\/\/tps-elektronik.com\/wp-content\/uploads\/2026\/06\/0710-Programmable-Bidirectional-DC-Power-Supply-1.jpg\" alt=\"bidirectional programmable power supply\" width=\"700\" height=\"394\" \/><\/p>\n<\/section>\n<section>\n<h2 id=\"en-power-density\">Power density and space savings: 30\u202fkW in 4U<\/h2>\n<p>Rack space in a test laboratory is a fixed asset. A 42U rack filled with 5\u202fkW single\u2011function power supplies might deliver 60\u202fkW total. Which leaving no room for the equipment under test. The TPS EA\u2011PSBE 10360\u2011240 delivers 30\u202fkW from a single 4U chassis. Six such units in a 42U rack provide up to 180\u202fkW, effectively tripling the power available from the same footprint. This high power density achieved through a combination of advanced switching technology, efficient thermal design with forced\u2011air cooling. And a compact mechanical layout that fits the power electronics, control circuitry, and front\u2011panel interface into a standard 19\u2011inch rack\u2011mount form factor.<\/p>\n<p>For laboratories building new ATE installations or retrofitting existing ones, the space savings translate directly into capital cost avoidance \u2014 fewer racks, less cabling, and reduced floor area. The 4U form factor is one of several rack\u2011mount options available from TPS. Which complementing the <a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-3u-programmable-dc-power-188\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">3U programmable DC power supplies<\/a> and <a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-2u-programmable-dc-power-187\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">2U programmable DC power supplies<\/a> for lower\u2011power channels.<\/p>\n<\/section>\n<section>\n<h2 id=\"en-bidirectional\">Bidirectional and regenerative operation: how it saves energy<\/h2>\n<p>The energy efficiency of a bidirectional power supply measured not only by its conversion efficiency when sourcing power, but also by its ability to recover energy when sinking. The EA\u2011PSBE 10360\u2011240 achieves up to 95.8\u202f% efficiency in sink mode.\u00a0 Which meaning that over 95\u202f% of the energy absorbed from the device under test converted back to AC and returned to the grid. The remaining losses dissipated as heat within the instrument and removed by the cooling system.<\/p>\n<p>This contrasts with a conventional electronic load. Which converts 100\u202f% of the absorbed energy into heat and then requires additional air conditioning to remove that heat from the lab. The total cost of ownership improvement is substantial: a 30\u202fkW test running continuously at full sink power saves approximately 262,800\u202fkWh per year compared to a resistive load, assuming 8,760 hours of operation. At typical industrial electricity rates, this represents a significant operating cost reduction that often recovers the price difference between a unidirectional and bidirectional power supply within the first year of operation.<\/p>\n<p><img decoding=\"async\" class=\"alignnone size-full wp-image-14779\" src=\"https:\/\/tps-elektronik.com\/wp-content\/uploads\/2026\/06\/Energy-Recovery-Bidirectional-Power-Supply-Test-Laboratory-Efficiency-Savings-Graph-\u2013-TPS-Elektronik-2.jpg\" alt=\"Energy Recovery Bidirectional Power Supply Test Laboratory Efficiency Savings Graph \u2013 TPS Elektronik Energier\u00fcckgewinnung Bidirektionales Netzteil Testlabor Effizienz\u2011Einsparungsdiagramm \u2013 TPS Elektronik\" width=\"1920\" height=\"1078\" \/><\/p>\n<\/section>\n<section>\n<h2 id=\"en-autoranging\">Autoranging output: flexible voltage and current in one unit<\/h2>\n<p>Conventional power supplies have a fixed maximum voltage and a fixed maximum current. To deliver full power, the load must draw exactly the maximum rated voltage at the maximum rated current. In practice, most test applications never operate at this exact point. A traditional 360\u202fV, 80\u202fA supply can deliver 28.8\u202fkW only at 360\u202fV. At lower voltages \u2014 for example, 200\u202fV \u2014 the maximum current remains 80\u202fA, limiting the output power to 16\u202fkW.<\/p>\n<p>The EA\u2011PSBE 10360\u2011240 uses an autoranging output stage that delivers full power (30\u202fkW) over a wide voltage range \u2014 approximately 125\u202fV to 360\u202fV in this model \u2014 by increasing the available current as the voltage decreases. At 125\u202fV, the instrument can source or sink up to 240\u202fA, maintaining the full 30\u202fkW rating. This flexibility means a single instrument can replace multiple fixed\u2011range power supplies. Which covering applications from low\u2011voltage, high\u2011current battery testing to high\u2011voltage, moderate\u2011current inverter testing. For additional details on space\u2011saving form factors, see the guide on <a href=\"https:\/\/tps-elektronik.com\/en\/1u-programmable-dc-power-supply-space-saving-compact-setups\/\">1U programmable DC power supply space\u2011saving setups<\/a>.<\/p>\n<\/section>\n<section>\n<h2 id=\"en-scalability\">Scalability: master\u2011slave parallel operation up to 1,920\u202fkW<\/h2>\n<p>Individual test systems rarely stop at 30\u202fkW. Electric vehicle battery pack testing, grid\u2011tied inverter validation, and large\u2011scale fuel cell characterization all require hundreds of kilowatts. The EA\u2011PSBE 10360\u2011240 supports master\u2011slave parallel operation of up to 64 units. Which creating a single synchronized system capable of delivering up to 1,920\u202fkW (1.92\u202fMW). The master unit controls the entire array, presenting a single interface to the operator and ensuring balanced current sharing across all units.<\/p>\n<p>This scalability is particularly valuable for system integrators designing modular ATE architectures. A baseline system can start with two units providing 60\u202fkW and expand incrementally as test requirements grow, without replacing existing hardware. The TPS <a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-6u-programmable-dc-power-193\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">6U programmable DC power supplies<\/a> also support this parallel configuration for applications where even higher power density per chassis is preferred.<\/p>\n<p><img decoding=\"async\" class=\"alignnone size-full wp-image-14784\" src=\"https:\/\/tps-elektronik.com\/wp-content\/uploads\/2026\/06\/Multi\u2011Unit-Parallel-Bidirectional-Power-Supply-System-1920-kW-ATE-Rack-Configuration-\u2013-TPS-Elektronik-1.jpg\" alt=\"Multi\u2011Unit Parallel Bidirectional Power Supply System 1920 kW ATE Rack Configuration \u2013 TPS Elektronik Parallel\u2011Bidirektionales\u2011Netzteil\u2011System 1920 kW ATE Rack\u2011Konfiguration \u2013 TPS Elektronik\" width=\"1920\" height=\"1004\" \/><\/p>\n<\/section>\n<section>\n<h2 id=\"en-control\">Control, interfaces, and software<\/h2>\n<p>Integration into an ATE environment requires more than raw power. The EA\u2011PSBE 10360\u2011240 provides built\u2011in USB and Ethernet interfaces as standard, along with an isolated analog interface (DB15) for direct connection to PLCs or data acquisition systems. The digital regulation loop uses 16\u2011bit ADCs and DACs, providing precise voltage and current control with selectable regulation speed (Normal, Fast, Slow) to match the dynamic requirements of different test profiles.<\/p>\n<p>For battery testing, TPS offers the EA\u2011Battery Simulator software, which enables the power supply to emulate the electrical behavior of different battery chemistries. For general ATE control, the EA\u2011Power Control software provides a comprehensive programming environment. Both packages support SCPI commands, enabling integration with LabVIEW, Python, MATLAB, and other test automation platforms. Optional interfaces include CAN, CANopen, Profibus, Profinet, EtherCAT, and Modbus TCP.<\/p>\n<\/section>\n<section>\n<h2 id=\"en-compliance\">Compliance and safety<\/h2>\n<p>Safety and EMC compliance are critical for equipment installed in industrial and laboratory environments. The EA\u2011PSBE 10360\u2011240 is designed to meet the requirements of <a href=\"https:\/\/webstore.iec.ch\/en\/publication\/69308\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">IEC\u202f62368\u20111<\/a> for audio\/video, information, and communication technology equipment \u2014 the hazard\u2011based safety standard that has replaced IEC\u202f60950\u20111. EMC compliance is demonstrated against EN\u202f55032 Class\u202fA (CISPR\u202f32) for conducted and radiated emissions, and against the IEC\u202f61000\u20114\u2011x series for immunity. The active power factor correction circuit maintains a typical power factor of 0.99, complying with harmonic current emission limits defined in IEC\u202f61000\u20113\u20112.<\/p>\n<p>Protection functions include adjustable over\u2011voltage, over\u2011current, and over\u2011power protection, as well as over\u2011temperature shutdown. The instrument is eligible for CE marking, supporting the integrator\u2019s own regulatory documentation. For the desktop form factor equivalent of this technology, see the <a href=\"https:\/\/tps-elektronik.com\/en\/ea-psi-9000-dt-desktop-programmable-dc-power-supply\/\">EA\u2011PSI\u202f9000\u202fDT desktop programmable DC power supply<\/a>.<\/p>\n<\/section>\n<section>\n<h2 id=\"en-applications\">Application scenarios: battery test, EV charger, fuel cell<\/h2>\n<p>The EA\u2011PSBE 10360\u2011240 is applied across several high\u2011growth test sectors:<\/p>\n<ul>\n<li><strong>Battery testing and simulation<\/strong>: Charge\/discharge cycling for cell, module, and pack testing, with energy recovery during discharge cycles. The autoranging output covers the wide voltage ranges needed for different pack configurations.<\/li>\n<li><strong>Electric vehicle on\u2011board charger (OBC) test<\/strong>: Simulates the battery while testing the OBC, sinking the charger\u2019s output power and regenerating it to the grid. Bidirectional capability also allows testing of vehicle\u2011to\u2011grid (V2G) functionality.<\/li>\n<li><strong>Fuel cell characterization<\/strong>: Provides a controlled load for fuel cell stacks, measuring performance under varying load conditions while recovering the generated energy.<\/li>\n<li><strong>Power supply and converter burn\u2011in<\/strong>: Applies a bidirectional load to a device under test, cycling between sourcing and sinking to stress\u2011test power electronics.<\/li>\n<\/ul>\n<p><img decoding=\"async\" class=\"alignnone size-full wp-image-14774\" src=\"https:\/\/tps-elektronik.com\/wp-content\/uploads\/2026\/06\/TPS-Bidirectional-Power-Supply-Battery-Simulation-On\u2011Board-Charger-Test-Application-\u2013-TPS-Elektronik-3.jpg\" alt=\"TPS Bidirectional Power Supply Battery Simulation On\u2011Board Charger Test Application \u2013 TPS Elektronik TPS Bidirektionales Netzteil Batteriesimulation On\u2011Board\u2011Ladeger\u00e4t\u2011Test Anwendung \u2013 TPS Elektronik\" width=\"1920\" height=\"1078\" \/><\/p>\n<\/section>\n<section>\n<h2 id=\"en-rfq\">RFQ checklist<\/h2>\n<ul>\n<li><strong>Power and voltage requirements<\/strong>: Maximum power (kW), voltage range, and current range needed.<\/li>\n<li><strong>Form factor<\/strong>: Desktop, 1U, 2U, 3U, 4U, or 6U rack\u2011mount.<\/li>\n<li><strong>Bidirectional requirement<\/strong>: Is regenerative sinking required, or is sourcing only sufficient?<\/li>\n<li><strong>Number of channels<\/strong>: Single channel or multi\u2011channel, with any parallel operation requirement.<\/li>\n<li><strong>Interfaces<\/strong>: USB, Ethernet, CAN, Profibus, EtherCAT, or other.<\/li>\n<li><strong>Software<\/strong>: EA\u2011Power Control, EA\u2011Battery Simulator, or custom integration.<\/li>\n<li><strong>Quantities and schedule<\/strong>: Prototype, pilot, and series volumes.<\/li>\n<\/ul>\n<p><a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-14\" target=\"_blank\" rel=\"noopener noreferrer nofollow\"><strong>Browse TPS programmable power supplies \u2192<\/strong><\/a><\/p>\n<\/section>\n<section>\n<h2 id=\"en-faq\">Frequently Asked Questions<\/h2>\n<p><strong>What is the difference between a bidirectional and a unidirectional programmable power supply?<\/strong><br \/>A unidirectional supply can only source power. A bidirectional supply can both source and sink power, acting as an electronic load that regenerates energy back to the grid instead of dissipating it as heat.<\/p>\n<p><strong>How much energy can a bidirectional power supply save compared to a traditional setup?<\/strong><br \/>In sink mode, up to 95.8\u202f% of the absorbed energy is returned to the grid. A 30\u202fkW system operating continuously at full sink power can save over 260,000\u202fkWh per year compared to a resistive load, significantly reducing operating costs.<\/p>\n<p><strong>Can multiple TPS bidirectional power supplies be paralleled for higher power?<\/strong><br \/>Yes. Up to 64 units of the EA\u2011PSBE 10360\u2011240 can be connected in a master\u2011slave configuration, providing up to 1,920\u202fkW from a single synchronized system.<\/p>\n<p><strong>What communication interfaces are available?<\/strong><br \/>Built\u2011in interfaces include USB and Ethernet. Optional fieldbus interfaces include CAN, CANopen, Profibus, Profinet, EtherCAT, and Modbus TCP. The isolated analog interface (DB15) allows direct analog control.<\/p>\n<p><strong>Where can I find the complete product range?<\/strong><br \/>Visit the <a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-14\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">TPS programmable power supply category<\/a>, which includes <a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-desktop-programmable-dc-power-192\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">desktop<\/a>, <a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-1u-programmable-dc-power-186\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">1U<\/a>, <a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-2u-programmable-dc-power-187\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">2U<\/a>, <a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-3u-programmable-dc-power-188\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">3U<\/a>, <a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-4u-programmable-dc-power-189\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">4U<\/a>, and <a href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-6u-programmable-dc-power-193\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">6U<\/a> models.<\/p>\n<\/section>\n<footer style=\"background: #2d5797; padding: 30px; border-radius: 14px; margin-top: 40px;\">\n<p style=\"color: #ffffff; font-size: 16px; line-height: 1.6; margin: 0;\"><strong>Next step:<\/strong> Equip your test lab with a high\u2011power, bidirectional power supply that saves space and recovers energy. <a style=\"color: #ffffff; font-weight: 600; text-decoration: underline; display: block; margin-top: 10px;\" href=\"https:\/\/www.shop-tps.com\/shop\/category\/programmable-power-14\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">Browse TPS programmable power supplies 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-->","protected":false},"excerpt":{"rendered":"<p>For system integrators, panel builders, and engineering\u2011driven procurement teams, which selecting a power supply for an automated test system is not only about voltage and current ratings. It also involves rack density, energy efficiency, thermal management, and whether the system can simulate real\u2011world load conditions. Such as a battery charging and discharging \u2014 without needing\u2026 <a href=\"https:\/\/tps-elektronik.com\/en\/what-is-tps-high-power-bidirectional-programmable-power-supply-for-high-density-ate-systems-and-why-it-is-ideal-for-space-saving-and-energy-efficient-test-labs\/\">Read More &raquo;<\/a><\/p>\n","protected":false},"author":9,"featured_media":14769,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[53],"tags":[],"class_list":["post-14629","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-production"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.0 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>What Is TPS High Power Bidirectional Programmable Power Supply for High Density ATE Systems and Why It Is Ideal for Space Saving and Energy Efficient Test Labs? - TPS<\/title>\n<meta name=\"description\" content=\"TPS high power bidirectional programmable DC power supply delivers 30\u202fkW in 4U for ATE. 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