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Spreading resistance profiling (SRP), also known as spreading resistance analysis (SRA), is a technique used to analyze
resistivity Electrical resistivity (also called specific electrical resistance or volume resistivity) is a fundamental property of a material that measures how strongly it resists electric current. A low resistivity indicates a material that readily allows ...
versus depth in
semiconductor A semiconductor is a material which has an electrical conductivity value falling between that of a conductor, such as copper, and an insulator, such as glass. Its resistivity falls as its temperature rises; metals behave in the opposite way. ...
s.
Semiconductor device A semiconductor device is an electronic component that relies on the electronic properties of a semiconductor material (primarily silicon, germanium, and gallium arsenide, as well as organic semiconductors) for its function. Its conductivity ...
s depend on the distribution of carriers (
electron The electron ( or ) is a subatomic particle with a negative one elementary electric charge. Electrons belong to the first generation of the lepton particle family, and are generally thought to be elementary particles because they have no kno ...
s or
holes A hole is an opening in or through a particular medium, usually a solid body. Holes occur through natural and artificial processes, and may be useful for various purposes, or may represent a problem needing to be addressed in many fields of en ...
) within their structures to provide the desired performance. The carrier concentration (which can vary by up to ten
orders of magnitude An order of magnitude is an approximation of the logarithm of a value relative to some contextually understood reference value, usually 10, interpreted as the base of the logarithm and the representative of values of magnitude one. Logarithmic dis ...
) can be inferred from the resistivity profile provided by SRP.


History

The fundamental relationship is usually attributed to
James Clerk Maxwell James Clerk Maxwell (13 June 1831 – 5 November 1879) was a Scottish mathematician and scientist responsible for the classical theory of electromagnetic radiation, which was the first theory to describe electricity, magnetism and light ...
(1831–1879). In 1962, Robert Mazur (US Patent 3,628,137) and Dickey developed a practical 2-probe system using a pair of weighted
osmium Osmium (from Greek grc, ὀσμή, osme, smell, label=none) is a chemical element with the symbol Os and atomic number 76. It is a hard, brittle, bluish-white transition metal in the platinum group that is found as a trace element in alloys, mos ...
needles. In 1970, Solid State Measurements was founded to manufacture spreading resistance profiling tools and in 1974, Solecon Labs was founded to provide spreading resistance profiling services. In 1980, Dickey developed a practical method of determining p- or n-type using the spreading resistance tool. Improvements have continued but have been challenged by the ever-shrinking dimensions of state-of-the-art digital devices. For shallow structures (<1 um deep), the data reduction is complex. Some of the contributors to the data reduction are Dickey, Schumann and Gardner, Choo ''et al.'', Berkowitz and Lux, Evans and Donovan, Peissens ''et al.'', Hu, Albers, and Casel and Jorke.


Theory of operation

If a voltage is applied between two probe tips providing electrical contact to an infinite slab, the resistance encountered within the slab is R\frac, where: *R is the measured resistance in ohms, *\rho (rho) is the resistivity of the slab in ohm-cm, and *a is the radius of the contact area in cm. Most of the resistance occurs very close to the electrical contact allowing the local resistivity to be determined. The probes produce a negligible probe to silicon resistance (nearly
ohmic contact An ohmic contact is a non- rectifying electrical junction: a junction between two conductors that has a linear current–voltage (I–V) curve as with Ohm's law. Low-resistance ohmic contacts are used to allow charge to flow easily in both direc ...
) over the entire
resistivity Electrical resistivity (also called specific electrical resistance or volume resistivity) is a fundamental property of a material that measures how strongly it resists electric current. A low resistivity indicates a material that readily allows ...
range for both p-type and n-type (rich in holes and rich in electrons respectively). Keeping the resistance of wiring and the spreading resistance within the probe tips to a minimum, the measured resistance is almost exclusively from R\frac for silicon samples at least 2a thick. With the aid of calibration resistivity standards, \rho can be determined at each probing by the probe pair.


Instrumentation

A bias of 5mV is applied across the probe tips. The measured resistance can range from 1-ohm to one billion ohms. A "log R" amplifier or electrometer is used to measure the resistance.


Mechanical

The modern SRP has two
tungsten carbide Tungsten carbide ( chemical formula: WC) is a chemical compound (specifically, a carbide) containing equal parts of tungsten and carbon atoms. In its most basic form, tungsten carbide is a fine gray powder, but it can be pressed and formed int ...
probe tips placed about 20 um apart. Each tip is mounted on a kinematic bearing to minimize "scrubbing". The probes are lowered very gently onto a beveled piece of silicon or germanium. Although the loading of the probe tips may be as little as 2 g., the pressure is in excess of one million pounds per sq inch (or ~ 10G pascals) causing a localized phase transformation in the silicon to "beta-tin" producing a nearly
ohmic contact An ohmic contact is a non- rectifying electrical junction: a junction between two conductors that has a linear current–voltage (I–V) curve as with Ohm's law. Low-resistance ohmic contacts are used to allow charge to flow easily in both direc ...
.J. C. Jamieson, ''Crystal Structures at High Pressures of Metallic Modification of Silicon and Germanium'', Science, 139 (1963) Between each measurement, the probes are raised and indexed a pre-determined distance down the bevel. Bevels are produced by mounting the sample on an angle block and grinding the bevel with typically a 0.1- or 0.05-micrometre diamond paste. Bevel angles, chosen to fit the depth of interest, can range from ~ 0.001 to 0.2 radians. Care must be used to produce a smooth, flat bevel with minimum rounding of the bevel edge. (See Figure 1.)


Detection limits

The instrument range is typically from one ohm to one billion ohms. This is adequate for the entire resistivity range in single-crystal silicon.


Calibration

Calibration standards have been produced by
NIST The National Institute of Standards and Technology (NIST) is an agency of the United States Department of Commerce whose mission is to promote American innovation and industrial competitiveness. NIST's activities are organized into physical sc ...
. A set of 16 standards ranging from about 0.0006 ohm-cm to 200 ohm-cm have been produced for both n- and p-type and for both (100) and (111) crystal orientations. For high resistivity (above 200 ohm-cm and perhaps above 40,000 ohm-cm) the resistivity value must extrapolated from the calibration curve.


Applications

The tool is used primarily for determining doping structures in silicon semiconductors. Deep and shallow profiles are shown in Figure 2.


Alternative processes

Secondary ion mass spectrometry Secondary-ion mass spectrometry (SIMS) is a technique used to analyze the composition of solid surfaces and thin films by sputtering the surface of the specimen with a focused primary ion beam and collecting and analyzing ejected secondary ions. ...
(SIMS) is also very useful for dopant profiling. SIMS can provide the atomic concentration over three decades or in some cases, four decades of dynamic range. SRP can determine the carrier concentration (electrically active dopant) in more than eight or nine decades of dynamic range. Often, the techniques are complementary although sometimes competitive. The equipment for SIMS tends to be considerably more expensive to manufacture and operate. While spreading resistance is limited to silicon, germanium and a few other semiconductors, SIMS can profile the atomic concentration of almost anything in anything. SIMS has greater spatial resolution useful for ultra-shallow profiles (< 0.1-micrometre) but SRP is more convenient for deeper structures.


References

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Bibliography

R. G. Mazur and D. H. Dickey, '' A Spreading Resistance Technique for Resistivity Measurements on Silicon '', J. Electrochem. Soc., 113, 255 (1966) D. H. Dickey, ''History and Status of the Data Reduction Problem in SRA'', Proceedings of the Third International Conference on Solid State and Integrated Circuit Technology, Ellwanger ''et al.'', Eds., Publishing House of Electronics Industry M.W. Denhoff, ''An Accurate Calculation of Spreading Resistance'', Journal of Physics D: Applied Physics, Volume 39, Number 9


External links


Spreading_Resistance_ProfilingSemilabSolecon LabsTutorial on SRA processAn Accurate Calculation of Spreading Resistance
Semiconductor analysis Semiconductor device fabrication