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No. 75 Shishan Road, Suzhou High tech Zone
Suzhou Shengguang Instrument Co., Ltd
No. 75 Shishan Road, Suzhou High tech Zone
Fischer eddy current conductivity meter/Fischer non-magnetic conductivity meter/Copper aluminum conductivity meter/Metal current conductivity testerFischer SIGMASCOPE® SMP350It is a compact handheld instrument used to measure the conductivity of non-ferrous metals. It can quickly and accurately measure the conductivity of aluminum or copper. From the conductivity value, you can draw further conclusions about the hardness and strength of the heat-treated material. This allows you to monitor the material stability of components exposed to large temperature fluctuations, and the degree of thermal damage and material fatigue can also be easily determined using this method. Applications include the evaluation of hardness and strength of heat-treated materials, inspection of thermal damage, material fatigue and cracking, estimation of phosphorus content in copper alloys or copper containing materials, tracking of precipitation processes such as copper chromium alloys, verification of alloy uniformity, waste sorting, and solutions for measuring conductivity.
Fischer eddy current conductivity meter/Fischer non-magnetic conductivity meter/Copper aluminum conductivity meter/Metal current conductivity testerFischer SIGMASCOPE® SMP350Overview of Technical Features:
1summary:
Non destructive, ground measurement of electrical conductivity of non-ferrous metals
conform toDIN EN 2004-1andASTM E1004standard
andFS40Use probes together to meet Boeing specificationsBAC 5651
High resolution touch screen displays virtual keyboard and user-friendly graphical user interface
The measurement frequency for different sensing depths varies depending on the probe15 kHzto2 MHznot equal
Operating temperature0– 40 °C
Accuracy at room temperature:±0.5 %measured value
Built in temperature coefficient of multiple materials
Automatic curvature compensation(small diameter6millimeter)
Manually input temperature and monitor temperature changes over time(ΔT /ΔT)
Sufficient memory for thousands of applications and tens of thousands of readings
Certified reference standard block(MS/m,% IACS) -Traceable and recognized calibration standard blocks
2TheSIGMASCOPE® SMP350Technical specifications
• conform toASTM E 1004andDIN EN 2004– 1 standard
• According to different probes, measure the frequency from15KHzto1MHzoptional
• Measuring range:0.5 - 65 MS/mor1 - 112%IACS
• Measurement accuracy at ambient temperature:± of reading0.5%
• distance compensation 500 Mm
• Diameter of small measurement areas without significant impact: 13 mm
• Probe with built-in or optional external temperature sensor
•USBInterface and printer ports
3TheSIGMASCOPE® SMP350feature
• Equipped with a large-sized touch screen and a display keyboardWindows™CEoperating system
• User friendly customizable interface
• Perform very simple calibration through prompts
• Simple application and user-defined folder structure
• Can store thousands of applications and nearly a million readings
• Can input the temperature coefficient of the material for temperature compensation
• Automatic measurement is possible in both continuous measurement and external triggering modes
• Graphic display upper and lower limits
• A large number of items with dates/Statistical evaluation function of time For example, calculationCp, CpkAnd display it with a bar chart
• Temperature can be manually entered
• Monitor temperature changes(∆T/∆t)
• in 20Used at ℃ 8 A standard block has undergone factory calibration
• Measure acceptance and exceeding of up and down * with sound signals
• Multiple language options available
4Hardware
SIGMASCOPE® SMP350equipped withWindows™CEoperating system And an intuitive high-resolution graphical user interface operated with fingers or a stylus. The corresponding probe can adapt to different measurement frequencies. Equipped with automatic temperature compensation function,The temperature of the environment or standard sample can be directly obtained from the integrated temperature sensor(Or optional external temperature sensor)obtain
5Regarding the calibration standard block of conductivity meter
As eddy current method is a comparative measurement method, the instrument must be calibrated with a standard block to obtain the measurement value. The certification standard block covers the entire range of conductivity.

The certification standard block is used forSIGMASCOPE® SMP350,Traceable to recognized calibration standards.
Order Information
product Order Number
SIGMASCOPE® SMP350* 605-219
Measurement probeFS40 605-209
Measurement probeFS40HF 605-210
Measurement probeFS40LF 605-211
Optional accessories
temperature sensorTF100 603-237
External rechargeable battery pack604-144
charger603-233
Standard configuration:
SIGMASCOPE® SMP350The host contains: instruments, charger, external rechargeable battery pack, instrument strap and protective cover, copper standard block.
Fischer SIGMASCOPE® SMP350Calibration standard block for conductivity meter (calibration certificate needs to be purchased separately):
name-content-Order Number
KAL-N SMP Al 2024/T3511about17,0 MS/m 29,3% 600-373
KAL-N SMP Al 7175/T7351about22,0 MS/m 37,9% 600-374
KAL-N SMP Al 99.5about34,2 MS/m 58,6% 600-376
KAL-N SMP AlMgSi F32about28,0 MS/m 48,3% 600-375
Kal-n SMP bronce RG 7about9,0 Mm 15,5% IACS 600-380
KAL-N SMP Cu 58 Ms/mabout58,0 MS/m 600-377
KAL-N SMP Manganinabout2,3 MS/m 4,0% IACS 603-558
KAL-N SMP Brassabout15,0 MS/m 25,9% 600-381
KAL-N SMP Nickel Silverabout5,0 MS/m 8,6% IACS 600-379
KAL-N SMP NORDIC GOLDabout9,6 MS/m 16,5% IACS 602-603
KAL-N SMP Titanium LT31about0,6 MS/m 1,0% IACS 600-378
Fischer eddy current conductivity testerFischer SIGMASCOPE® SMP350Application:
SMP350It can measure the conductivity of any non-magnetic metal. In addition, conductivity provides data on other material properties and is effectively applicable to a wide range of application fields, including:
• Conduct conductivity testing, quality assurance, and raw material classification on raw materials;
• Identification of coins, inspection of alloys in currency(For example: Euro coins with specific conductivity)
• Determine the hardness and strength of the heat treatment material, and evaluate the hardness and strength of the heat treatment material;
• Check for thermal damage, material fatigue, and cracks;
• Determination of phosphorus content in copper materials;
• Track the precipitation process, such as copper chromium alloys;
• Test the uniformity of alloys, sort waste materials, and classify scrap metals.