DECAQ
DIFFERENT GENERATIONS.
ONE MEASUREMENT SYSTEM.
PAK connects DecaQ and PAK MKII in a single, continuous measurement system. Existing PAK MKII 42 Series G2 hardware can, following consultation with your responsible sales contact, remain in use in an upward-compatible manner and be combined with the DecaQ 45 Series. This allows existing measurement technology to be expanded step by step – for a seamless migration without system disruption.
DECAQ. SCALABLE FROM A SINGLE DEVICE TO A MULTI-CHANNEL SYSTEM.
DecaQ adapts flexibly to the measurement task and channel count. Different device classes and signal conditioning modules can be combined – from a compact standalone system to a distributed, high-channel-count measurement system – for mobile NVH measurements, laboratory, and test bench applications.
FACTS ABOUT DecaQ
- 4 Mainframes2-, 3-, 4-, 6-slot
- Up to 120channels per frontend
- WLAN(IEEE 802.11n)
- GigabitEthernet
- 128 | 256 GBInternal SSD
- RobustConduction-cooled + compact
- EconomicalLow power consumption
- Synchronizedvia PTP (IEEE1588v2), GPS
For every challenge
DecaQ frontends can be operated via a smart device with the PAK Capture App or in connection with the measurement computer and PAK 6.xsoftware. DecaQ delivers unique signal quality wherever you are.
DecaQ hardware can be seamlessly integrated into existing test environments. System configurations that generate dynamic data have appropriate input/output interfaces and buffered outputs. Measurement configuration support via a smart device and/or a PC is built in.
Structured and modular
DecaQ offers a variety of signal conditioning modules for different dynamic and static parametersin any combination and in any mainframe. 204.8 kHz sampling, TEDS support, internal calibration, 50 V galvanic isolation, EMC shielding, anti-aliasing protection are just a few of the features that enable the high signal quality of these modules.
DecaQ can be synchronized via IEEE 1588v2 or GPS. All channels can be recorded phase-synchronously and offer a high dynamic range with optimized noise and distortion performance. The frontends also include TEDS detection, allowing sensor information to be read directly from the sensors when required.