SCOPE OF ACCREDITATION TO ISO/IEC 17025:2005 Attleboro,

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SCOPE OF ACCREDITATION TO ISO/IEC 17025:2005CONTECH RESEARCH INC.67 Mechanic StreetAttleboro, MA 02703Mark Gates 508 226 4800MECHANICALValid to: February 29, 2016Certificate Number: 1478.01In recognition of the successful completion of the A2LA evaluation process, accreditation is granted tothis laboratory to perform the following tests on aerospace, aircraft, automotive, and computercomponents, cable assemblies, connectors and interconnect systems; commercial and military andconsumer product safety testing:TestForce Parameters(.250 to 950) lbsInsertion Force, Withdrawal Force*Crimp Tensile*Mating and Unmating Force*Contact Strength (Bend) *(A2LA Cert. No. 1478.01) 03/27/2014Test Method(s)EIA 364 TP 37;MIL-STD-1344, Method 2014;IEC 512-13-1;IEC 60512-13-1;SAE/USCAR-2EIA 364 TP 08;MIL-STD-1344, Method 2003;IEC 512-16-4;IEC 60512-16-4;SAE/USCAR-21EIA 364 TP13;MIL-STD-1344, Method 2013;IEC 512-13-2;IEC 60512-13-2;USB 2.0, 3.0;SAE/USCAR-2;SAE/USCAR-30;IEEE 1394EIA 364 TP 15;IEC 512-16-3;IEC 60512-16-3;SAE/USCAR-2;MIL-STD-883, Method 2004.5Page 1 of 6

TestForce Parameters (cont.)(.250 to 950) lbsRetention*Term. Conn. Engage/Disengage*Terminal Strength*Actuating Mechanism*Cable Pullout*Vibration Parameters10 Hz to 3 KHzSine 100 G’sRandom 50 GrmsVibration Under Temp. (-75 to 200) CVibration: Sine*Vibration: Random*(A2LA Cert. No. 1478.01) 03/27/2014Test Method(s)EIA 364 TP 29;MIL-STD-1344, Method 2007;IEC 512-15-1;IEC 60512-15-1SAE/USCAR-2EIA 364 TP 62;IEC 512-16-6;IEC 60512-16-6;MIL-STD-883, Method 2025.4EIA 364 TP 68;IEC 512-8-3EIA 364 TP 38;MIL-STD-1344, Method 2009;IEC 512-17-3;IEC 60512-17-3;USB 2.0, 3.0;IEEE 1394EIA 364 TP 28;MIL-STD-1344, Method 2005;MIL-STD-202, Methods 201, 204;IEC 60512-6-4;IEC 60068-2-6;IEEE 1394EIA 364 TP 28;SAE/USCAR-2;MIL-STD-1344, Method 2005;MIL-STD-202, Method 214;IEC 512-6-5;IEC 60512-6-5;IEC 60068-2-64;USB 2.0, 3.0;SAE/USCAR-30Page 2 of 6

TestVibration Parameters (cont.)10 Hz to 3 KHzSine 100 G’sRandom 50 GrmsVibration under Temp. (-75 to 200) CTest Method(s)Mixed Mode Vibration*Gunfire Vibration*MIL-STD-810, Method 514MIL-STD-810, Method 519Mechanical Shock ParametersHalfsine, Sawtooth, TrapezoidUp to 500 GrmsMechanical Shock*Temp / Humidity Parameters(-70 to 300) C, (20 to 98) % RHThermal Shock *Thermal Cycling*Cyclic Humidity*(A2LA Cert. No. 1478.01) 03/27/2014EIA 364 TP 27;MIL-STD-1344, Method 2004;MIL-STD-202, Method 213;IEC 60512-6-3;IEC 60512-6-3;IEC 60068-2-27;USB 2.0, 3.0;SAE/USCAR-2;SAE/USCAR-30;IEEE 1394EIA 364 TP 32;MIL-STD-1344, Method 1003;MIL-STD-202, Method 107;IEC 512-11-4;IEC 60512-11-4;USB 2.0, 3.0;SAE/USCAR-2;SAE/USCAR-30;IEEE 1394;MIL-STD-883, Method 1011.9EIA 364 TP 110EIA 364 TP 31;MIL-STD-1344, Method 1002;MIL-STD-202, Method 106;IEC 512-11-12;IEC 60512-11-12;USB 2.0, 3.0;SAE/USCAR-2;SAE/USCAR-30Page 3 of 6

TestTemp / Humidity Parameters (cont.)(-70 to 300) C, (20 to 98) % RHHumidity Steady State*Temperature Life*Salt Spray*(1 to 5) % SaltNormal Force*(.002 to 2) inches, (2 to 1,000) gramsDustBenign, Portland Cement, Arizona RoadDust, Talc, Silica FlourDurabilityAxial ConcentricityCable FlexCorrosivity, Plastics(A2LA Cert. No. 1478.01) 03/27/2014Test Method(s)EIA 364 TP 31;MIL-STD-202, Method 103;IEC 60512-11-3;IEC 60512-11-3;IEEE 1394EIA 364 TP 17;MIL-STD-1344, Method 1005;MIL-STD-202, Method 108;IEC 512-9-2;USB 2.0;SAE/USCAR-2;SAE/USCAR-30;IEEE 1394EIA 364 TP 26;MIL-STD-1344, Method 1001;MIL-STD-202, Method 101;IEC 512-11-6;IEC 60512-11-6EIA 364 TP 04EIA 364 TP 91EIA 364 TP 09;MIL-STD-1344, Method 2016;IEC 512-9-1;IEC 60512-9-1;USB 2.0;SAE/USCAR-30;IEEE 1394EIA 364 TP 7;MIL-STD-1344, Method 2001;IEC 512-16-7;IEC 60512-116-7EIA 364 TP 41;MIL-STD-1344, Method 2017;USB 2.0;SAE/USCAR-30;IEEE 1394EIA 364 TP 82Page 4 of 6

TestAltitude ImmersionPorosity NitricGas TightAir LeakageSolderabilityResistance to Solder HeatResistance to SolventsFluid ImmersionFluid ResistancePressure/Vacuum LeakSoap ShowerMixed Flowing GasMaintenance AgingFlammability(A2LA Cert. No. 1478.01) 03/27/2014Test Method(s)EIA 364 TP 03;SAE AS1344; MIL-STD-1344, Method 1004;IEC 512-14-5;IEC 60512-14-5EIA 364 TP 53, 60;MIL-STD-1344, Method 1017EIA 364 TP 36EIA 364 TP 02;MIL-STD-1344, Method 1008;IEC 512-14-4;IEC 60512-14-4EIA 364 TP 52;MIL-STD-202, Method 208;IEC 512-12-1;IEC 60512-12-1;USB 2.0, 3.0;US CAR PF-1;MIL-STD-883, Method 2003.8EIA 364 TP 56;MIL-STD-202, Method 210, Methods A, B;IEC 512-12-4;IEC 60512-12-4EIA 364 TP 11;MIL-STD-202, Method 215EIA 364 TP 10;MIL-STD-1344, Method 1016;MIL-STD-202, Method 104;IEC 512-19-3;IEC 60512-19-3SAE/USCAR-2SAE/USCAR-2IEC 529;DIN 40050ASTM B845-97;EIA 364 TP 65;IEC 60512-11-7;IEC 60512-11-7;IEC 68-2-60;GR-63-CORE;GR-1217-CORE;USB 2.0, 3.0;IEEE 1394EIA 364 TP 24;IEC 512-9-4EIA 364 TP 104;MIL-STD-1344, Method 1012Page 5 of 6

TestCross SectionTest Method(s)EIA 364 TP 96;SAE/USCAR-21*Customer specific test methods utilizing any combination of test equipment parameters listed above.(A2LA Cert. No. 1478.01) 03/27/2014Page 6 of 6

A2LA has accreditedCONTECH RESEARCH INC.Attleboro, MAfor technical competence in the field ofMechanical TestingThis laboratory is accredited in accordance with the recognized International Standard ISO/IEC 17025:2005 General requirements forthe competence of testing and calibration laboratories. This accreditation demonstrates technical competence for a defined scope and theoperation of a laboratory quality management system (refer to joint ISO-ILAC-IAF Communiqué dated 8 January 2009).Presented this 27th day of March 2014.President & CEOFor the Accreditation CouncilCertificate Number 1478.01Valid to February 29, 2016For the tests or types of tests to which this accreditation applies, please refer to the laboratory’s Mechanical Scope of Accreditation.

(A2LA Cert. No. 1478.01) 03/27/2014 Page 1 of 6 SCOPE OF ACCREDITATION TO ISO/IEC 17025:2005 CON

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