Waferpedia

MPI

TS150

Test & Probe6"MPI TS150 family
Research Quality: 50% complete

The MPI TS150 is a probe station designed for electrical testing on wafers or chips. The MPI TS150 supports a maximum of 4 independent terminals plus additional chuck grounding. The MPI TS150 is coupled to an Agilent 4155C Semiconductor Parameter Analyzer for DC characterization and a Zürich Instruments MFIA for AC characterization.[1]

MPITS150
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Wafer size

6"

Power

to the chuck for conductive substrates[1]

Optics

Selectable 4 quadrants LED illumination[1]

What it is

A probe station is a type of semiconductor test equipment used to make electrical contact with devices on a wafer or die for measurement and characterization. The MPI TS150 is a manual probe station designed for electrical testing on wafers or chips. The station supports up to four independent terminals plus additional chuck grounding. The chuck is compatible with wafer sizes up to 6 inches, as well as chip or partial wafers.[1]

How it works

The MPI TS150 uses a fine-glide chuck stage mounted on a highly stable granite base. The chuck stage offers both coarse and fine X-Y travel ranges of 150 mm x 150 mm and 10 mm x 10 mm, respectively. Probe tips are mounted on true X,Y,Z micro-positioners (MPI PM100) with interchangeable tungsten contact tips. Binocular optics with a digital camera and selectable four-quadrant LED illumination allow the operator to center the probe tips on the contact pads. Three-axis movement of the probe tips via manual micro-manipulators enables soft and precise mechanical contact with the pads.[1]

What can it run?

Process applications and technology nodes documented for this tool.

  • Electrical testing on wafers
  • Electrical testing on chips
  • DC characterization of microelectronic devices
  • AC characterization of devices under test
  • Resistance measurements
  • Diode measurements
  • Transistor measurements
  • 2-point measurements
  • 4-point measurements

Why won't it start?

Documented failure modes, common issues, and field considerations.

  • The source warns of shock hazard during measurement.
  • The source states probe needles have very sharp tungsten carbide tips and can be damaged by crash or contamination.
  • The source warns not to use the probes for mechanical testing or machining.

What do the numbers mean?

Power & electrical17

Measurement capability
Designed for electrical testing on wafers or chips[1]
Accurate?
Additional electrical connection
to the chuck for conductive substrates[1]
Accurate?
DC voltage and current capability
+/- 40 Volts and +/- 100 mA measurement unit (SMU)[1]
Accurate?
AC signal frequency
DC to 5 MHz[1]
Accurate?
AC signal voltage
0 to 2.1 V RMS[1]
Accurate?
DC bias (2 probes)
+/- 10 Volts[1]
Accurate?
DC bias (4 probes)
+/- 3 Volts[1]
Accurate?
DC voltage range
+/-40 Volts[1]
Accurate?
AC signal frequency range
DC to 5 MHz[1]
Accurate?
AC signal voltage range
0 to 2.1 V RMS[1]
Accurate?
DC bias range (2 probes)
+/-10 Volts[1]
Accurate?
DC bias range (4 probes)
+/-3 Volts[1]
Accurate?
Use
Electrical testing on wafers or chips[1]
Accurate?
DC measurement voltage
+/- 40 Volts[1]
Accurate?
DC measurement resolution (voltage)
0.2 microvolt[1]
Accurate?
AC DC bias (2 probes)
+/- 10 Volts[1]
Accurate?
AC DC bias (4 probes)
+/- 3 Volts[1]
Accurate?

Wafer handling12

Maximum independent terminals
4 independent terminals plus additional chuck grounding[1]
Accurate?
Wafer size compatibility
up to 6 inch[1]
Accurate?
Chuck stage
Fine-glide chuck stage on highly stable granite base[1]
Accurate?
Maximum terminals
4 independent terminals + additional chuck grounding[1]
Accurate?
Chuck compatibility
wafer sizes up to 6 inch, chip or part of wafers[1]
Accurate?
Stage type
Fine-glide chuck stage on highly stable granite base[1]
Accurate?
Maximum wafer size compatibility
up to 6 inch[1]
Accurate?
Number of independent terminals
maximum 4 plus additional chuck grounding[1]
Accurate?
Maximum wafer size
up to 6 inch[1]
Accurate?
Independent terminals
maximum of 4 independent terminals + additional chuck grounding[1]
Accurate?
Chuck travel range
150 mm x 150 mm coarse and 10 mm x 10 mm fine X-Y travel range[1]
Accurate?
Max independent terminals
4 plus additional chuck grounding[1]
Accurate?

Optics & imaging8

Optics
Binocular optics with oculars or microscope view on monitor[1]
Accurate?
Illumination
Selectable 4 quadrants LED illumination[1]
Accurate?
Optics
Binocular optics with occulars or microscope view on monitor, single objective with zoom option, selectable 4 quadrants LED illumination[1]
Accurate?
DC measurement resolution
10 femtoamp and 0.2 microvolt[1]
Accurate?
SMU measurement resolution
10 femtoamp and 0.2 microvolt[1]
Accurate?
Optics
binocular optics with digital camera and monitor display, selectable 4 quadrant LED illumination[1]
Accurate?
Optics
Binocular optics with digital camera[1]
Accurate?
DC measurement resolution (current)
10 femtoamp[1]
Accurate?

Control & software2

DC software
Desktop EasyEXPERT software for PC-based GUI instrument control[1]
Accurate?
AC software
LabOne software for PC-based GUI instrument control[1]
Accurate?

Configuration & options19

X-Y travel range
150 mm x 150 mm coarse and 10 mm x 10 mm fine[1]
Accurate?
Probe positioners
True X,Y,Z micro-positioners (MPI PM100)[1]
Accurate?
Probe tips
Interchangeable tungsten contact tips; two different diameters available[1]
Accurate?
X-Y travel range (coarse)
150mm x 150mm[1]
Accurate?
X-Y travel range (fine)
10mm x 10mm[1]
Accurate?
Probe micro-positioners
MPI PM100 true X,Y,Z micro-positioners with interchangeable tungsten (W) contact tips (two different diameter available)[1]
Accurate?
DC measurement unit
Agilent 4155C Semiconductor Parameter Analyzer with 4x Medium-power SMU, 2xVSU and 2xVMU[1]
Accurate?
Switching box configurations
6 configuration options for standard applications such as FET, bipolar transistors, diodes, 2-points and 4-points general measurements[1]
Accurate?
AC measurement unit
Zürich Instruments MFIA multi-frequency impedance analyzer[1]
Accurate?
Impedance range
1 mOhm to 1 TOhm[1]
Accurate?
AC test fixture
MFITF can be mounted on the MFIA for rapid testing of wire-bonded surface-mounted devices[1]
Accurate?
DC current range
+/-100 mA[1]
Accurate?
Impedance range (AC)
1 mOhm to 1 TOhm[1]
Accurate?
Probe micro-positioner model
MPI PM100[1]
Accurate?
Probe tip material
tungsten carbide (W)[1]
Accurate?
Type
Probe station[1]
Accurate?
Probe positioning
Three-axis movement of the probe tips with manual micro-manipulators[1]
Accurate?
Probe tips
Interchangeable tungsten contact tips[1]
Accurate?
DC measurement current
+/- 100 mA[1]
Accurate?
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What does it need to run?

Site utility requirements, footprint, and infrastructure needed to install and operate this tool. Sourced from public records.

  • Measurement capabilityDesigned for electrical testing on wafers or chips[1]
  • Additional electrical connectionto the chuck for conductive substrates[1]
  • DC voltage and current capability+/- 40 Volts and +/- 100 mA measurement unit (SMU)[1]
  • AC signal frequencyDC to 5 MHz[1]
  • AC signal voltage0 to 2.1 V RMS[1]
  • DC bias (2 probes)+/- 10 Volts[1]
  • DC bias (4 probes)+/- 3 Volts[1]
  • DC voltage range+/-40 Volts[1]
  • AC signal frequency rangeDC to 5 MHz[1]
  • AC signal voltage range0 to 2.1 V RMS[1]
  • DC bias range (2 probes)+/-10 Volts[1]
  • DC bias range (4 probes)+/-3 Volts[1]
  • UseElectrical testing on wafers or chips[1]
  • DC measurement voltage+/- 40 Volts[1]
  • DC measurement resolution (voltage)0.2 microvolt[1]
  • AC DC bias (2 probes)+/- 10 Volts[1]
  • AC DC bias (4 probes)+/- 3 Volts[1]

Where are the manuals?

Publicly hosted documents referencing this tool, linked at their original location. Hosted by the linked institutions — availability may change.

Generated from public-source data on file. Enter your email to access — nothing is published; details are routed privately.

Not publicly documented

Field notes

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Frequently asked questions

What wafer sizes are compatible with the MPI TS150?

The chuck is compatible with wafer sizes up to 6 inches, as well as chip or part of wafers.[1]

What analyzers are coupled to the MPI TS150?

The probe station is coupled to an Agilent 4155C Semiconductor Parameter Analyzer for DC measurements and a Zürich Instruments MFIA multi-frequency impedance analyzer for AC measurements.[1]

What are the voltage and current limits for the DC measurement system?

The DC measurement system has a maximum voltage of ±40 V and a maximum current of ±100 mA per SMU, with a measurement resolution of 10 femtoamps and 0.2 microvolts.[1]

Not publicly documented

The following facts about the TS150 are absent from this record as of this revision. First-hand knowledge or a citation closes a gap; every submission is reviewed before publication.

  • No publicly documented production dates or lifecycle milestones (introduction, end of production, EOL) for the TS150 are on record.

    Answerable by: OEM historical records or a trade-press announcement

  • No publicly documented variants, configuration options, or revision breakpoints of the TS150 are on record.

    Answerable by: an OEM product catalog or an engineer who ordered or specified the tool

  • The control-system platform and OS era of the TS150 are not on record.

    Answerable by: an engineer who operated it or OEM installation records

  • The process node or technology generation of the TS150 is not on record.

    Answerable by: an OEM datasheet or a fab qualification report

  • No publicly documented compatible parts, consumables, or accessories for the TS150 are on record.

    Answerable by: an OEM parts catalog or a service engineer

Sources & citations

Sources (1)Every fact above is drawn from these public sources
  1. [1]epfl.ch — epfl.chepfl.ch
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Last updated Oct 8, 2026.

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