Certificate of Accreditation

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1 PERRY JOHNSON LABORATORYACCREDITATION, INC. Certificate of Accreditation Perry Johnson Laboratory Accreditation, Inc. has assessed the Laboratory of: Reynosa, Tamaulipas, México CP (Hereinafter called the Organization) and hereby declares that Organization is accredited in accordance with the recognized International Standard: ISO/IEC 17025:2005 This accreditation demonstrates technical competence for a defined scope and the operation of a laboratory quality management system (as outlined by the joint ISO-ILAC-IAF Communiqué dated January 2009): Mechanical, Force and Weighing Devices and Dimensional Calibration (As detailed in the supplement) Accreditation claims for such testing and/or calibration services shall only be made from addresses referenced within this certificate. This Accreditation is granted subject to the system rules governing the Accreditation referred to above, and the Organization hereby covenants with the Accreditation body s duty to observe and comply with the said rules. For PJLA: Initial Accreditation Date: Issue Date: Expiration Date: Tracy Szerszen President/Operations Manager Perry Johnson Laboratory Accreditation, Inc. (PJLA) 755 W. Big Beaver, Suite 1325 Troy, Michigan August 6, 2013 May 08, 2017 August 31, 2019 Accreditation No.: Certificate No.: L The validity of this certificate is maintained through ongoing assessments based on a continuous accreditation cycle. The validity of this certificate should be confirmed through the PJLA website: Page 1 of 5

2 Dimensional Height Gage Caliper Indicator Micrometer Depth Micrometer RANGE OR NOMINAL DEVICE SIZE AS APPROPRIATE 1.27 mm to mm (0.05 in to 4 in) AND ( L) µm [( L) µin] ( L) µm [( L) µin] ( L) µm [( L) µin] ( L) µm [( L) µin] ( L) µm [( L) µin] Mitutoyo BM1-F112/1-1 (M0008) Starret SS81A1 (M0018) Mitutoyo BM1-F112/1-1 (M0008) StarretSS81A1 (M0018) Mitutoyo BM1-F112/1-1 (M0008) StarretSS81A1 (M0018) Surface Plate Flatness 8.5 in D to 40 in D ( L) µin RAHN Granite 48 in (M0010) 40 in D to 107 in D ( L) µin Planekator Straight Edge MAHR " Dial Indicator (M0023) Mechanical Vacuum Gage Manovacuometer Multi- Air Tester FO Pressure Gage - Multi-Air Tester FO Torque Wrench, Torque Drive FO RANGE OR NOMINAL DEVICE SIZE AS APPROPRIATE AND -12 psi to psi psi Druck UPMP psig to 30 psig psig 0.1 psig to 300 psig psig Druck DPI psig to 500 psig psig Druck DPG psig to psig 0.1 psig Druck PDCR psig to psig 1.1 psig Druck Omega DPG K psig to psig 1.6 psig Druck Omega DPG K 0.5 ozf in to 2.5 ozf in ozf in Torque Watch ( N m to N m) ( x 10-4 ) N m Calibrator Waters 6500-T2 2 ozf in to 10 ozf in 0.1 ozf in M0021 ( N m to N m) 6 ozf in to 40 ozf in ( N m to N m) (7.062 x 10-4 ) N m 0.4 ozf in (2.825 x 10-3 ) N m Issue: 05/2017 This supplement is in conjunction with certificate #L Page 2 of 5

3 Mechanical Torque Wrench, Torque Drive FO Torque Tester, Torque Analyzer FO RANGE OR NOMINAL DEVICE SIZE AS APPROPRIATE 10 lbf in to 100 lbf in (1.129 N m to N m) 10 lbf ft to 100 lbf ft ( N m to N m) 100 lbf ft to lbf ft ( N m to N m) 0.25 lbf in to 10 lbf in ( N m to N m) 2 lbf in to 200 lbf in (0.226 N m to N m) 5 lbf ft to 100 lbf ft (6.779 N m to N m) AND CAPABILITY EXPRESSED AS AN UNCERTAINTY (±) 0.58 lbf in Digital Torque Meter Hios ( N m) HP % of reading Torque Wrench Calibrator Advance Witness QCF % of reading Torque Wrench Calibrator AWS QCM % of reading Torque Wheel Arm (M ") 0.16 % of reading Torque Wheel Arm (M ") 0.17 % of reading Torque Wheel Arm (M ") Mass, Force, and Weighing Devices Analytic Balance O Scales FO RANGE OR NOMINAL DEVICE SIZE AS APPROPRIATE 1 g to 200 g (Res.= 1 mg) 200 g to 6 kg (Res.= 0.5 g) 2 kg to 165 kg (Res.= 20 g) lb to 10 lb (Res.= lb) 10 lb to 50 lb (Res.= lb) 50 lb to 750 lb (Res.= 0.2 lb) AND 1.4 mg Master Weights ASTM E Class E g/ 200 g (M0011 / M0079 / M0080 / M0168) 1.2 g Master Weights Class M1 (M0153) 25 g Master (M0056/ M0093/ M0116) lb Master Weight Class F (M0014/M0015) lb 0.17 lb Master Weight Class F (M0015, M0117, M0121, M0147, M0160) 0.5 g to 5 lbf 0.12 % of reading Master (M0014) Issue: 05/2017 This supplement is in conjunction with certificate #L Page 3 of 5

4 Mass, Force, and Weighing Devices RANGE OR NOMINAL DEVICE SIZE AS APPROPRIATE AND 5 lbf to 50 lbf % of reading Master (M0014 / M lbf to 300 lbf ( N to kn) Force Gages FO 300 lbf to lbf (1.334 kn to kn) 500 lbf to lbf (2.2 kn a 22 kn) 10 lbf to 50 lbf (44.48 N to N) 50 lbf to 500 lbf ( N to kn) 300 lbf to lbf (1.334 kn to kn) 500 lbf to lbf (2.2 kn a 22 kn) % of reading Master (M0014, M0015, M0117, M0121, M0147 y M0160) Direct Method 0.19 % of reading Load Cell Omega LC101-3K 0.17 % of reading Load Cell Omega LC101-5K 0.01 lbf Master (M0014, M0015, M0117, 0.05 lbf M0121, M0147 y M0160) Direct Method 0.3 % of reading Load Cell Omega LC101-3K 0.3 % of reading Load Cell Omega LC101-5K 1. The CMC (Calibration and Measurement Capability) stated for calibrations included on this scope of accreditation represents the smallest measurement uncertainty attainable by the laboratory when performing a more or less routine calibration of a nearly ideal device under nearly ideal conditions. It is typically expressed at a confidence level of 95 % using a coverage factor k (usually equal to 2). The actual measurement uncertainty associated with a specific calibration performed by the laboratory will typically be larger than the CMC for the same calibration since capability and performance of the device being calibrated and the conditions related to the calibration may reasonably be expected to deviate from ideal to some degree. 2. The laboratories range of calibration capability for all disciplines for which they are accredited is the interval from the smallest calibrated standard to the largest calibrated standard used in performing the calibration. The low end of this range must be an attainable value for which the laboratory has or has access to the standard referenced. Verification of an indicated value of zero in the absence of a standard is common practice in the procedure for many calibrations but by its definition it does not constitute calibration of zero capacity. 3. The presence of a superscript O means that the laboratory performs calibration of the indicated parameter onsite at customer locations. Example: Outside Micrometer O would mean that the laboratory performs this calibration onsite at the customer s location. Issue: 05/2017 This supplement is in conjunction with certificate #L Page 4 of 5

5 4. The presence of a superscript FO means that the laboratory performs calibration of the indicated parameter both at its fixed location and onsite at customer locations. Example: Outside Micrometer FO would mean that the laboratory performs this calibration at its fixed location and onsite at customer locations. 5. Measurement uncertainties obtained for calibrations performed at customer sites can be expected to be larger than the measurement uncertainties obtained at the laboratories fixed location for similar calibrations. This is due to the effects of transportation of the standards and equipment and upon environmental conditions at the customer site which are typically not controlled as closely as at the laboratories fixed location. 6. The term L represents length in inches or millimeters as appropriate to the uncertainty statement. Issue: 05/2017 This supplement is in conjunction with certificate #L Page 5 of 5

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