Materials Development Corporation
MDC continues to improve both the hardware and software for C-V measurements and analyses of semiconductor devices. Taking full advantage of the latest C-V measuring instruments and more powerful computers, MDC offers the widest variety of C-V and I-V measurement systems available.
- 818.700.8290
- (775) 854-2585
- info@mdc4cv.com
- 21541 Nordhoff St.
B
Chatsworth, CA 91311
United States of America
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Copper Diffusion TestSystems
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Materials Development Corporation
MDC announces the addition of software and hardware for copper diffusion studies to its CSM/Win suite of semiconductor test systems and software. This new CSM/Win feature plays an important part in the development of processes and materials for the next advance in integrated circuit technology that employscopper as a conductor. Special Current-Voltage Bias-Temperature Stress (IV-BTS) software can measure the degradation of insulator quality due to copper diffusion.Multiple test sites can be stressed with a constant voltage while the current through each site is measured and recorded. The Current-Voltage Bias-Temperature Stress test supplements conventional MOS C-V measurements and Triangular Voltage Measurements (TVS) that are also employed in copper diffusion studies.
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Customized Software
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Materials Development Corporation
If the software packages offered do not meet your specific needs,special software can be written for custom applications.The engineers and programmers at MDC candevelop or modify applications to fit your requirements. Examples include: *Customer specific measurements *Interfacing with required meters *Production versions of measurements *Interfacing with probers and other measurement platforms *Specialized requirements
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Software
MOS Doping Profile Analysis
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Materials Development Corporation
MDC uses the comprehensive Ziegler algorithm toconvert pulsed MOS C-V data to a doping profile. The doping profile is accurate from the oxide semiconductor interface to the maximum depletion depth and is therefore useful for low dose ion implant monitoring. Peak doping, range, and total active dose are computed. The technique is sensitive enough to resolve changes in the substrate doping profile due to redistribution during oxidation.
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Semiconductor CharacterizationSystem
Keithley 4200
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Materials Development Corporation
The MDC CSM/Win-4200 System integrates the extraordinary power of the CSM/Win softwarewith the power of the new Keithley 4200-SCS. Measure capacitance, voltage, and current down to sub-femtoamp levels.
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Dielectric Constant
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Materials Development Corporation
The Dielectric Constant option allows the user to measure the dielectric constant of a wide range of materials. Simply input a test voltage (in accumulation), the area (or diameter), and stray capacitance to determine the relative dielectric constant.
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Production C-V Measurement
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Materials Development Corporation
The production software offers a streamlined C-V plotting and bias-temperature stress program with minimumoperator input. A single keystroke begins the measurement.
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Software
Triangular Voltage Sweep (TVS) Option
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Materials Development Corporation
The TVS method measures the current-voltage characteristics of an MOS device at high temperature. This technique, which allows direct measurement of mobile ionmovement, has higher sensitivity and is much faster than the conventional CVBT measurement.
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Software
Gate Oxide Integrity Option
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Materials Development Corporation
Oxide integrity of MOS devices can be evaluated by various techniques such as Time Dependent DielectricBreakdown, Charge to Breakdown, or ramped voltage. When used with a prober, map distribution of breakdown fields. Output the data using histograms, cumulativefailure, or Weibull plots.
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Mercury Probes
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Materials Development Corporation
MERCURY PROBES are precision instruments that enable rapid, convenient, and non-destructive measurements of semiconductor samples by probing wafers with mercury to form contacts of well-defined area.
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Cryogenic Probe Station
CryoPro
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Materials Development Corporation
The MDC Model 441 Cryogenic Probe Station is a cost effective alternative to high-priced vacuum based cryogenic probe stations. With up to five probes available and sample diameters up to six inches, the MDC Cryogenic Probe Station allows for electrical measurements at temperatures near liquid nitrogen levels (77K).
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C-V Plotters
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Materials Development Corporation
MDC will tailor your CSM/Win Semiconductor Measurement System for your exact requirements. Choose the best capacitance meter, output device, and probe station for your needs. All CSM/Win C-V plotters feature the latest Dell Computers. The computer and capacitance meters are rackmounted in one compact enclosure. When ordered with a hot chuck or probe station, MDC can deliver a turnkey system of unparalleled performance.
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Quasi-Static Measurements
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Materials Development Corporation
The Quasi-static measurement ompares a high frequency capacitance-voltage plot to a C-V plot measured near zero Hertz (quasi-static). By analyzing the difference in the depletion region of the curves, the interface trap density (Dit) can be determined in the sample under test.
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Solar Cells/ Photovoltaic Devices
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Materials Development Corporation
MDC offers a comprehensive array of current-voltage, capacitance-voltage, and resistivity measurements to characterize solar cells and PV devices. CSM/Win systems and software can help to fine tune your process for maximum efficiency. Critical values such as series and shunt resistances, maximum power point (both actual and theoretical), and fill factor are automatically determined.
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Four-Point Probe
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Materials Development Corporation
Materials Development Corporation offers the complete line of Four Point Probe systems from AIT. Systems are available to measue up to 12" diameter (300 mm) wafers as well as specialty systems for Photovoltaic wafers and substrates. For more information on these systems, contact MDC.
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Software
Electrochemistry Tests
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Materials Development Corporation
CyclicVoltammetry and Galvanostatic Charging are tests used throughout the industrial and scientific communities to study chemical reactions and behavior of electronic structures. They are extremely helpful in the monitoring of nano based dielectrics, used in super /ultra capacitors or self-assembled monolayers (SAMs). The Cyclic Voltammetry test applies a ramping voltage to a device and measures the resulting current. In acapacitor-like structure the current reveals loss in the dielectric as well as degradation over time. CyclicVoltammetry is used to characterize the performance of supercapacitors and ultracapacitors formed using various nano-technologies. It is also useful in the studies of self-assembled monolayers used for sensors.















