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Experiment workflows

Plan the whole run before the first data point.

Long measurements cannot depend on a researcher manually responding to every state change. Instraxis lets the user encode the sequence, parameters, waits and measurement blocks in advance, then monitor the run as it proceeds.

Live Instraxis measurement figure
Actual long-run data. 28,800 visible rows with several measurement channels plotted on multiple Y axes.
Long-duration measurement

A sequence that runs for days is not just a short loop repeated more times.

The operator needs a readable plan, state visibility, live data, clear file handling and predictable control of all connected instruments. Instraxis is shaped around those practical needs.

  • Environment contextTemperature and field stay attached to the measurement workflow.
  • Device coordinationSeveral readout and source instruments can participate in each step.
  • Visible progressThe operator can follow status, plots and acquired rows during the run.
Current workflow families

Start with the experiments that create the strongest need

The product initially focuses on low-temperature, high-field and transport workflows where generic tools require the most development work.

Transport

R(T) and R(H)

Coordinate temperature or field scans with one or more measurement channels and ongoing data logging.

  1. Set environment
  2. Wait for conditions
  3. Measure selected devices
  4. Append live data
Nested workflow

Linked temperature–current scans

Combine an environment scan with current-source changes and synchronized readout devices.

  1. Scan temperature
  2. Set current
  3. Wait / optimize range
  4. Acquire
Synchronized measurement

Multi-lock-in acquisition

Read several SR830 lock-ins and an MFLI inside one sequence while recording PPMS / DynaCool context.

  1. Configure lock-ins
  2. Set source
  3. Acquire channels
  4. Plot in real time
Advanced workflow

Thermal conductance workflows

Encode heater, sensor, stability, range and trial/final measurement logic into a reusable sequence.

  1. Stabilize
  2. Apply heater power
  3. Read sensors
  4. Store trial / final data
Long duration

Time-dependent measurements

Hold the environment at a selected state and acquire instrument channels over hours or days.

  1. Set conditions
  2. Scan time
  3. Monitor health
  4. Log continuously
Laboratory workflow

Custom experiment recipes

Reuse validated sequences for repeated samples, campaigns and facility users.

  1. Open template
  2. Edit parameters
  3. Run
  4. Save results
Example structure

Readable scientific intent, not only primitive device calls.

A large experiment remains easier to understand when the sequence shows the measurement logic directly.

  • Set temperature and waitRepresent the environment transition explicitly.
  • Configure source and lock-insPrepare the devices before acquisition.
  • Scan and measureRepeat the coordinated measurement across the chosen range.
Example R(T,H) sequencePrepared
  1. Set Temperature
    10 K at 2 K/min
  2. Wait
    Temperature stable + delay 30 s
  3. Scan Field
    -90,000 Oe → +90,000 Oe
  4. Set Current
    Keithley 6221 · 100 µA
  5. Measure
    SR830 × 3 · 2182A · MFLI
  6. Append Data
    Live figure + CSV

Bring an existing sequence or script to the discussion.

It is easier to evaluate value using the workflow your laboratory already struggles to maintain.