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Safety precautions

The following safety precautions should be observed before using this product and any 
associated instrumentation. Although some instruments and accessories would normally 
be used with nonhazardous voltages, there are situations where hazardous conditions may 
be present.

This product is intended for use by qualifi ed personnel who recognize shock hazards and 
are familiar with the safety precautions required to avoid possible injury. Read and follow 
all installation, operation, and maintenance information carefully before using the product. 
Refer to the user documentation for complete product specifi cations.

If the product is used in a manner not specifi ed, the protection provided by the product 
warranty may be impaired.

The types of product users are:

Responsible body 

is the individual or group responsible for the use and maintenance 

of equipment, for ensuring that the equipment is operated within its specifi cations and 
operating limits, and for ensuring that operators are adequately trained.

Operators

 use the product for its intended function. They must be trained in electrical safety 

procedures and proper use of the instrument. They must be protected from electric shock 
and contact with hazardous live circuits.

Maintenance personnel 

perform routine procedures on the product to keep it operating 

properly, for example, setting the line voltage or replacing consumable materials. 
Maintenance procedures are described in the user documentation. The procedures 
explicitly state if the operator may perform them. Otherwise, they should be performed only 
by service personnel.

Service personnel 

are trained to work on live circuits, perform safe installations, and repair 

products. Only properly trained service personnel may perform installation and service 
procedures.

Keithley Instruments products are designed for use with electrical signals that are 
measurement, control, and data I/O connections, with low transient overvoltages, and 
must not be directly connected to mains voltage or to voltage sources with high transient 

overvoltages. Measurement Category II (as referenced in IEC 60664) connections require 
protection for high transient overvoltages often associated with local AC mains connections. 
Certain Keithley measuring instruments may be connected to mains. These instruments will be 
marked as category II or higher.

Unless explicitly allowed in the specifi cations, operating manual, and instrument labels, do not 
connect any instrument to mains.

Exercise extreme caution when a shock hazard is present. Lethal voltage may be present on 
cable connector jacks or test fi xtures. The American National Standards Institute (ANSI) states 
that a shock hazard exists when voltage levels greater than 30 V 

RMS

, 42.4 V peak, or 

60 VDC are present. A good safety practice is to expect that hazardous voltage is present in 
any unknown circuit before measuring. 

Operators of this product must be protected from electric shock at all times. The responsible 
body must ensure that operators are prevented access and/or insulated from every connection 
point. In some cases, connections must be exposed to potential human contact. Product 
operators in these circumstances must be trained to protect themselves from the risk of electric 
shock. If the circuit is capable of operating at or above 1000 V, no conductive part of the circuit 
may be exposed.

Do not connect switching cards directly to unlimited power circuits. They are intended to be 
used with impedance-limited sources. NEVER connect switching cards directly to AC mains. 
When connecting sources to switching cards, install protective devices to limit fault current and 
voltage to the card. 

Before operating an instrument, ensure that the line cord is connected to a properly-grounded 
power receptacle. Inspect the connecting cables, test leads, and jumpers for possible wear, 
cracks, or breaks before each use.

When installing equipment where access to the main power cord is restricted, such as rack 
mounting, a separate main input power disconnect device must be provided in close proximity 
to the equipment and within easy reach of the operator.

For maximum safety, do not touch the product, test cables, or any other instruments while 
power is applied to the circuit under test. ALWAYS remove power from the entire test system 
and discharge any capacitors before: connecting or disconnecting cables or jumpers, installing 
or removing switching cards, or making internal changes, such as installing or removing 
jumpers.

Summary of Contents for 4200A-SCS-PK1

Page 1: ...Model 4200A SCS Parameter Analyzer Quick Start Guide 4200A SCS PK1...

Page 2: ...otection for high transient overvoltages often associated with localAC mains connections Certain Keithley measuring instruments may be connected to mains These instruments will be marked as category I...

Page 3: ...RNING heading in the user documentation explains dangers that might result in personal injury or death Always read the associated information very carefully before performing the indicated procedure T...

Page 4: ...80 relative humidity non condensing Storage temperature 15 C to 60 C 5 F to 140 F 5 to 90 relative humidity non condensing Carefully consider and configure the appropriate output off state source lev...

Page 5: ...complete embedded computer with a Microsoft Windows operating system and mass storage When running a test sequence you can view results and plots for completed tests while the sequence is still runnin...

Page 6: ...signs of physical damage Report any damage to the shipping agent immediately The 4200A SCS is heavy and requires a two person lift since it weighs approximately 27 kilograms 60 pounds Do not lift the...

Page 7: ...xial cables two 4 236 ILC 3 safety interlock cable 5 4200 PA remote preamplifier 6 4200 TRX 2 ultra low noise triaxial cables two 7 CAP 31 protective caps with triaxial connectors two 4200A SCS PK1 Qu...

Page 8: ...instrument Important test system safety information This system contains instruments that can produce hazardous voltages It is the responsibility of the test system installer maintenance personnel an...

Page 9: ...l safety warnings provided with each of the instruments in your system If you need voltages greater than 40 V you must also connect the exterior of the test fixture enclosure to protective earth safet...

Page 10: ...d and SMU 200 V ranges are enabled Conversely the interlock circuit is open de asserted when the lid is open and the SMU 200 V ranges are disabled High voltage test fixtures require extra precaution t...

Page 11: ...discrete devices you need a test fixture that is equipped with 3 lug triaxial connectors The 8101 PIV test fixture that is included with the 4200A SCS PK1 allows the 4200A SCS to be connected to a dis...

Page 12: ...tlets When proper connections are made the instrument chassis is connected to power line ground through the ground wire in the power cord In addition a redundant protective earth connection is provide...

Page 13: ...ower on the 4200A SCS 1 Make sure the power is off The power switch on the front panel in the lower right corner is not lit when power is off 2 Plug the male end of the line cord into a properly groun...

Page 14: ...Configuration Navigator The left pane is the Configuration Navigator 4 Change the Powerline Frequency as needed 5 Select Save The default powerline frequency is set to 60 Hz If the setting is wrong th...

Page 15: ...Safety Connect I V test Introduction FAQs Next steps...

Page 16: ...Make connections for the I V test If you are using the supplied test fixture connect the MOSFET and test fixture as shown in this diagram...

Page 17: ...ier Triaxial Cables 2 Triaxial to triaxial cable that connects 4200 PA to a test fixture 3 4200 MTRX 1 Ultra low noise SMU triaxial cable mini triaxial connects 4200 SMU units to a test fixture 4 TG 4...

Page 18: ...on a MOSFET The first time Clarius opens the project tree is displayed and the default project is loaded The next graphic shows the tests in this project To work with a test 1 Select vds id located un...

Page 19: ...different gate voltages 2 V 3 V 4 V and 5 V SMU2 Perform a 51 point sweep of drain voltage 0 V to 5 V at each gate voltage A current measurement is made at each voltage sweep point 3 Change the setti...

Page 20: ...that test will run For example in the following graphic when you select only the vds id test will run In the following example only one test is run To run the vds id test 1 In the project tree select...

Page 21: ...steps To run a sequence of tests check the tests you want to run then check and select the device subsite or project item that contains the tests For example in the following graphic when you click a...

Page 22: ...can use the Analyze sheet which is similar to a Microsoft Excel spreadsheet and the graph To view vds id test results 1 Select Analyze 2 Select an icon next to View to choose the type of information...

Page 23: ...nding on your needs Note that the graph output is determined by the Graph Defaults setting in My Settings you can choose jpg or bmp format To save your test data 1 Select the Save Data button 2 On the...

Page 24: ...h Settings button To customize a graph 1 Select Graph Settings 2 To include a Legend and Title select those options from the Graph Settings menu 3 To use different colors for the graph series select G...

Page 25: ...Safety Connect I V test Introduction FAQs Next steps...

Page 26: ...the mini triaxial cable 4200A MTRX from the SMU What should I do The mini triaxial connector is a locking connector To remove it pull the knurled part of the connector back A configuration error has b...

Page 27: ...u with the instrument 4200A SCS User Manual Contains basic information about using the system plus application based examples that will help familiarize you with the instrument 4200A SCS Reference Man...

Page 28: ...1 800 1601 0077 Poland 41 52 675 3777 Portugal 80 08 12370 Republic of Korea 82 2 6917 5000 Russia CIS 7 495 6647564 Singapore 800 6011 473 South Africa 41 52 675 3777 Spain 00800 2255 4835 Sweden 008...

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