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Tramea Base Configuration

Nanonis Tramea is the new multi-channel, distributed and synchronous system designed for transport measurements at low temperatures.

Nanonis Tramea base configuration offers a fully featured, modular measurement platform with 8 inputs and 8 outputs. Additional signal moduls can be added for up to 64 inputs and 64 outputs.

All channels are synchronous, accessible in real-time, designed for DC and AC measurements and with sampling rates up to 200 MS/s.

Base configuration: real-time controller, signal conversion and software

KEY FEATURES

  • Powerful, ultrafast measurement solution
  • A new standard in signal quality for data acquisition and signal generation
  • Optimal performance with any sample
  • Advanced high-speed data processing architecture
  • Optimal I/O placement capability via galvanically isolated optical interconnects

The only instrument you will need. Connect, measure, deliver.

• Upgradeable to 128 inputs/outputs
• From DC to 25 MHz
• Optical fiber data transfer
• FPGA- and real-time based data generation and acquisition
• Fully featured software

High performance data acquisition in any experimental situation

• 1 ×, 10 ×, 100 × selectable input gain
• True differential inputs, high impedance, low input bias current
• 2 MS/s sampling rate, 200 kHz bandwidth
• < 7 nV/sqrt(Hz) input spectral noise
• 25-bit effective input resolution (with
oversampling)

Ultrastable, ultra low-noise and fully monitored signal generation

• ±10 V or ±2.5 V voltage output range, leakage current detection
• ±25 mA or ±12.5 μA current output range
• Selectable 250 kHz, 100 kHz, 20 kHz or 350 Hz
bandwidth
• 31-bit DAC architecture
• 24-bit effective resolution at full sampling rate
• < 11 nV/sqrt(Hz) output noise density (±10 V),
< 4 nV output noise density (±2.5 V)

State-of-the-art AC measurements

• Over 120 dB Linearity, low THD
• 200 kHz AC frequency range
• Multifrequency and multi-demodulator
capable

Advanced digitizer and signal generator

• 25 MHz bandwidth
• Very high input impedance and low input bias current
• < 4 nV/sqrt(Hz) input noise, with low 1/f
noise corner
• < 6 nV/sqrt(Hz) output noise in low-current
mode
• Up to 4 independent lock-ins, up to 8
dual-phase demodulators
• Arithmetic unit for flexible frequency
combinations and modulations

Designed for high speed and big data

• Access and monitoring of all raw signals in real-time
• Up to 200 MS/s sampling rate
• Over 200 simultaneous measurement
signals, over 250 monitoring signals

Software and GUI

• Fully modular and upgradable software-
based solution
• Easy to use, powerful, safe, provides
shorter time to results
• Dedicated control modules for external
instruments

APIs, scripting and QD simulator

• Dedicated Python and LabVIEW APIs, QCoDeS drivers
• Real-time scripting option
• Simulation mode for API-code testing

MADE FOR THESE METHODS

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