UDP5040-40 400W 40V/40A Programmable DC Switching Power Supply

UDP5040-40 400W 40V/40A Programmable DC Switching Power Supply

Brand: UNI-T
SKU: 181400100343X
1189.00 USD Out of stock Buy at Merchant

UNI-T UDP5040-40 400W Programmable DC Switching Power Supply (40V, 40A) Overview The UNI-T UDP5040-40 is a single-channel 400W programmable DC switching power supply delivering 0–40V and 0–40A with auto-ranging across the rated power envelope. It pairs a wide output range with the regulation accuracy, source-emulation and remote control expected of a professional programmable supply. Voltage accuracy is ±(0.05% of set + 0.05% of rated) and current accuracy ±(0.5% of set + 0.1% of rated); ripple is held to 50mV p-p with a 100 ppm/°C temperature coefficient. A 2.4-inch TFT-LCD shows voltage, current and power together, and full SCPI control over USB and LAN drops the UDP5040-40 straight into LabVIEW, Python-VISA or any ATE framework. Choosing Your Model — UDP5000 Series The UDP5000 name spans 20 models built on one platform: five voltage classes (40 V / 80 V / 160 V / 250 V / 800 V) across four power classes (400 W / 800 W / 1200 W / 2000 W). They differ only in output range and chassis size — control, accuracy, protection and interface are otherwise identical. Compare the full series before selecting: Rated Power 40 V 80 V 160 V 250 V 800 V 400W UDP5040-40 0–40A UDP5080-20 0–20A UDP5160-8 0–8A UDP5250-6 0–6A UDP5800-2 0–2A 800W UDP5040-80 0–80A UDP5080-40 0–40A UDP5160-16 0–16A UDP5250-12 0–12A UDP5800-4 0–4A 1200W UDP5040-120 0–120A UDP5080-60 0–60A UDP5160-24 0–24A UDP5250-18 0–18A UDP5800-6 0–6A 2000W UDP5040-200 0–200A UDP5080-100 0–100A UDP5160-40 0–40A UDP5250-30 0–30A UDP5800-10 0–10A Every model shares the same chassis architecture, control system, regulation accuracy, protection suite, and interface set. The 800 V UDP5800 tier does not support series connection; all other tiers support series and parallel combining. Choose by the voltage class that covers your rail and the power class that covers your load — output range and chassis height scale with power, the instrument does not change. Key Features 400W / 0–40V / 0–40A — auto-ranging across the rated power envelope Voltage accuracy ±(0.05% of set + 0.05% of rated); current accuracy ±(0.5% of set + 0.1% of rated) Low ripple — 50mV p-p voltage, 80mA rms current (20 MHz BW) CC/CV priority slope modes — choose voltage-first or current-first turn-on for DUT safety Adjustable internal resistance to 1.000Ω — emulate batteries, fuel cells and solar sources List Mode — 128 programmable V/I/dwell steps, 1 to 9,999, infinite cycles, stand-alone Front and rear output terminals (front limited to 10 A) Multi-unit series/parallel — up to 4 parallel / 4 series USB + LAN with full SCPI 1999.0 / IEEE-488.2; 2.4-inch TFT-LCD Discharge-load control for rapid output bleed-down UNI-T UDP5040-40 Details CC/CV priority mode transition behaviour CC/CV Priority — Protect the Device, Not Just the Supply Most bench supplies treat the CC/CV crossover as a fixed hardware behaviour. The UDP5000 lets you choose which parameter takes priority at turn-on and during mode transitions. CV-priority establishes the target voltage first — the right choice for microcontrollers, FPGAs and analog rails. CC-priority brings current up under control — the safer choice for LEDs, laser diodes and battery charging where inrush must be bounded. ×CC/CV priority mode transition behaviour Adjustable Slew Rate — Control How Fast Power Arrives Voltage and current slew rates are independently settable. A slower ramp prevents inrush into capacitive loads, reduces mechanical stress on motor windings at start-up and gives sensitive analog circuits time to settle; the high-speed default mode is there when fast settling is what the test needs. Adjustable voltage and current slew rate ×Adjustable voltage and current slew rate Internal variable resistance source emulation Internal Resistance — Simulate Real Power Sources The internal variable-resistance function (set in CV mode, up to 1.000Ω in 1 mΩ steps) makes the terminal voltage droop with load current exactly as a battery, fuel cell or solar panel would — no physical resistor, no thermal risk, value changeable instantly from the panel or over SCPI. ×Internal variable resistance source emulation Front & Rear Outputs — Bench-Ready and Rack-Ready Output terminals are provided on both panels. Front terminals are there for quick prototype hookup; rear terminals keep permanent rack wiring clean. Both are the same single output — front-panel draw is limited to 10 A, so high-current loads belong on the rear. Front and rear output terminals ×Front and rear output terminals List Mode programmable output sequencing List Mode & Discharge Control — Automate Output Sequences List Mode runs up to 128 programmed V/I/dwell steps for 1 to 9,999, infinite cycles or continuously, stored locally or exported, executing with no PC attached — built for overnight burn-in, charge-profile runs and production routines. The internal discharge load bleeds output capacitance down rapidly when output is switched off. ×List Mode programmable output sequencing Multi-Unit Operation — Scale When You Need More Up to 4 identical units parallel for more current, or up to 4 series for more voltage, coordinated over the rear CAN / LS_BUS interface from the master unit or a single SCPI connection; unit-to-unit balance stays within ~5% of rated. Multi-unit series and parallel operation ×Multi-unit series and parallel operation UDP5000 front panel — 2.4-inch TFT-LCD with multifunction keypad Display and Control A 2.4-inch TFT-LCD presents voltage, current and power simultaneously with a concise multifunction keypad; external analog control (0–10 V setpoint plus digital ON/OFF) is available on the rear analog interface for closed-loop and HIL setups. ×UDP5000 front panel — 2.4-inch TFT-LCD with multifunction keypad Applications Battery and Energy-Storage Test The wide 0–40 V range covers 12 V to 36 V lithium-ion and LFP packs used in e-bike, power-tool and light-EV work. Internal-resistance emulation and List Mode let you reproduce charge profiles and varying pack states without cycling real cells. New-Energy and Automotive Electronics DC/DC converter input stages, inverter front ends and sub-40 V automotive ECUs benefit from the tight regulation, low ripple and CC/CV priority control. Automated Test and Production SCPI over USB or LAN plus stored List Mode sequences make the UDP5000 a clean fit for unattended characterisation, burn-in and end-of-line test. Accessories and Family Options In the box: power cord (destination-country standard, 1.8 m), four-conductor analog-interface flat cable (3.5 m), USB cable (1.5 m), M3 mounting screws, output-terminal protection cover, and rack distribution bracket. The UDP5000 series spans 16 models on one platform — see Choosing Your Model above for the full voltage × power matrix if a different rail or load fits your application better. Frequently Asked Questions Can I use the front and rear output terminals at the same time? Both terminal sets are parallel connections to the same single output. You can wire both, but the front terminals are limited to 10 A maximum — route high-current loads to the rear panel. What is the difference between the VHS/IHS and VSR/ISR slope modes? VHS (CV high-speed) and IHS (CC high-speed) use the supply's default fast rise and fall rates. VSR (CV slope) and ISR (CC slope) let you set the rise and fall rate so output ramps in controlled fashion — useful for capacitive and motor loads, and for sensitive analog circuits that need settling time. Does the internal-resistance function need an external resistor? No. The internal variable-resistance function electronically emulates source impedance (set in CV mode, up to 1.000Ω in 1 mΩ steps), so the supply behaves like a battery, fuel cell or solar source with no physical resistor and no added thermal risk. Can multiple units be combined for more power? Yes. Identical models combine for more current (parallel, up to 4 units) or more voltage (series, up to 4 units), controlled from the master unit or a single SCPI connection; unit-to-unit balance stays within ~5% of rated. How does it integrate with automated test? USB and LAN with full SCPI 1999.0 / IEEE-488.2 support LabVIEW, Python-VISA and any standard ATE framework; List Mode runs stored sequences stand-alone without a connected PC.

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