Series 6000
Battery Test System
Next-Generation R&D Platform
Built for researchers who push batteries to their limits. The Series 6000 combines microsecond-level pulse control, 20 kHz acquisition, and AMLP waveform profiling into a single platform that keeps pace with the most demanding battery R&D workflows.
Engineered for the Edge of Battery Science
Most battery test systems were designed for production. The Series 6000 was designed for discovery — with the speed, resolution, and programmability that advanced R&D demands.
Microsecond-Level Control
Test steps as short as 500 μs with setpoint stabilization in just 1 ms — ideal for pulse characterization and impedance work where timing is everything.
AMLP Waveform Profiling
Advanced Multi-Level Pulse technology supports waveforms with up to 15,000 programmable levels — reproduce real-world battery loads with precision.
High-Fidelity Data Capture
Simultaneous 1 kHz data logging across all channels, with 20 kHz burst sampling to catch critical transient events as they happen.
Chemistry-Agnostic Platform
From lithium-ion and solid-state to sodium-ion and next-generation chemistries — the Series 6000 adapts to your research, not the other way around.
// Accuracy at a Glance
The Numbers Behind the Platform
Key performance specifications for the Series 6000. Contact our team for full datasheets and configuration options tailored to your application.
Built for How Researchers Actually Work
Every feature of the Series 6000 was designed in response to real R&D bottlenecks — the moments where other systems forced a compromise.
Advanced Multi-Level Pulse (AMLP) Profiling
AMLP lets you define waveforms with up to 15,000 individual levels — the most complex programmable pulse sequences available in any commercial battery cycler. Reproduce EV drive cycles, grid discharge profiles, and custom impedance stimuli with precision that generic step-based testers simply can't match.
Pair AMLP with the 1 μs pulse resolution and 1 ms setpoint stabilization and you get a system where the waveform you program is the waveform the battery actually sees.
20 kHz Transient Capture
High-rate burst sampling catches fast voltage drops, contact resistance spikes, and other transient events invisible to conventional 10–100 Hz loggers.
Simultaneous 1 kHz Multi-Channel Logging
Every channel logs at full 1 kHz rate simultaneously — no round-robin polling, no dropped events, no data gaps across large channel counts.
Integrated Temperature & Pressure Monitoring
Optional T&P integration enables correlated electrochemical and mechanical measurements in a single synchronized test record.
MacTest64 Test Software
Drag-and-drop test creation, real-time monitoring, advanced plotting — all in the same MacTest64 environment your team already knows.
Where the Series 6000 Excels
From materials research to pre-production validation, the Series 6000 is purpose-built for R&D environments where data quality and test flexibility are non-negotiable.
Next-Generation Cell Chemistry Research
Characterize solid-state, sodium-ion, lithium-sulfur, and other emerging chemistries with the accuracy and temporal resolution needed to study fast electrochemical phenomena.
Materials R&DEV Drive Cycle Simulation
Replay UDDS, HWFET, WLTP, and custom drive profiles with AMLP waveforms that capture regenerative braking, acceleration bursts, and thermal stress cycles with fidelity.
Automotive R&DPulse Power & Impedance Testing
Perform hybrid pulse power characterization (HPPC), electrochemical impedance stimulation, and fast-pulse discharge studies that demand sub-millisecond timing control.
ElectrochemistryAerospace & Defense Battery Qualification
Meet rigorous mission-critical testing standards with a platform that delivers traceable accuracy, synchronized multi-channel data, and comprehensive audit trails.
Aerospace / Defense// Ready When You Are
See the Series 6000 in Action
Schedule a live demo with a Maccor applications engineer — we'll walk through your specific testing challenges and show you exactly how the Series 6000 addresses them.
No commitment required·Speak directly with an applications engineer·Made in the USA