Schap Laboratory Services
17309 Taft Road, Unit 5, 49456, Spring Lake, MI, United States
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Register record
- A2LARefreshed
- 3611.01Active
Accredited standards
12Our reading of the A2LA scope: each standard once, with its official name where we have checked it. Click a standard to see the scope line it comes from, word for word.
ISO
ISO 105-X12Textiles - Tests for colour fastness - Part X12: Colour fastness to rubbing
ASTM D4157; GM9082P; SAE J948; SAE J1530; TSL 5101G; ISO 11640; GMW 3208; MS 300-31; NES M0602; 8102Z-TLA-G100; AATCC 8; ISO 105-X12; ASTM D3776; GMW 3182; MS 300-31; NES M0602; TSL 5101G; GM 2756M; TL 52064; TSL 5101G; NES M0602; 8102Z-SZN-G100; ASTM D523; AATCC-1; ISO-105-A02; TL 52064; PV 1200; WSS-M99P43-E1; WSS-M99P43-E2; Nissan M0602; GMW3262; GMW14124; TL 52064; SAE J1756; GMW3235; LP-463DB-12-01; TSM0503; PV 3010; DIN 75201; DIN EN ISO 17071; MS 300-54; NES M0161; HES D6508; ISO 6452
ISO 5402Leather - Physical and mechanical tests - Determination of flex resistance by flexometer method
ASTM D6182; ISO 5402; ISO 32100; TSL 5101G; ASTM D2097; Ford FLTM BN 102-02; JIS L0849; L1084; Nissan M0154; M0155; M0602; TSL 5100G; 5101G; HONDA 8102Z-TLA-G100 B 6-2-3
ISO 6452Rubber- or plastics-coated fabrics - Determination of fogging characteristics of trim materials in the interior of automobiles
ASTM D4157; GM9082P; SAE J948; SAE J1530; TSL 5101G; ISO 11640; GMW 3208; MS 300-31; NES M0602; 8102Z-TLA-G100; AATCC 8; ISO 105-X12; ASTM D3776; GMW 3182; MS 300-31; NES M0602; TSL 5101G; GM 2756M; TL 52064; TSL 5101G; NES M0602; 8102Z-SZN-G100; ASTM D523; AATCC-1; ISO-105-A02; TL 52064; PV 1200; WSS-M99P43-E1; WSS-M99P43-E2; Nissan M0602; GMW3262; GMW14124; TL 52064; SAE J1756; GMW3235; LP-463DB-12-01; TSM0503; PV 3010; DIN 75201; DIN EN ISO 17071; MS 300-54; NES M0161; HES D6508; ISO 6452
ISO 11640Leather - Tests for colour fastness - Colour fastness to cycles of to-and-fro rubbing
ASTM D4157; GM9082P; SAE J948; SAE J1530; TSL 5101G; ISO 11640; GMW 3208; MS 300-31; NES M0602; 8102Z-TLA-G100; AATCC 8; ISO 105-X12; ASTM D3776; GMW 3182; MS 300-31; NES M0602; TSL 5101G; GM 2756M; TL 52064; TSL 5101G; NES M0602; 8102Z-SZN-G100; ASTM D523; AATCC-1; ISO-105-A02; TL 52064; PV 1200; WSS-M99P43-E1; WSS-M99P43-E2; Nissan M0602; GMW3262; GMW14124; TL 52064; SAE J1756; GMW3235; LP-463DB-12-01; TSM0503; PV 3010; DIN 75201; DIN EN ISO 17071; MS 300-54; NES M0161; HES D6508; ISO 6452
ISO 17071Leather - Physical and mechanical tests - Determination of fogging characteristics
ASTM D4157; GM9082P; SAE J948; SAE J1530; TSL 5101G; ISO 11640; GMW 3208; MS 300-31; NES M0602; 8102Z-TLA-G100; AATCC 8; ISO 105-X12; ASTM D3776; GMW 3182; MS 300-31; NES M0602; TSL 5101G; GM 2756M; TL 52064; TSL 5101G; NES M0602; 8102Z-SZN-G100; ASTM D523; AATCC-1; ISO-105-A02; TL 52064; PV 1200; WSS-M99P43-E1; WSS-M99P43-E2; Nissan M0602; GMW3262; GMW14124; TL 52064; SAE J1756; GMW3235; LP-463DB-12-01; TSM0503; PV 3010; DIN 75201; DIN EN ISO 17071; MS 300-54; NES M0161; HES D6508; ISO 6452
ISO 32100Rubber- or plastics-coated fabrics - Physical and mechanical tests - Determination of flex resistance by the flexometer method
ASTM D6182; ISO 5402; ISO 32100; TSL 5101G; ASTM D2097; Ford FLTM BN 102-02; JIS L0849; L1084; Nissan M0154; M0155; M0602; TSL 5100G; 5101G; HONDA 8102Z-TLA-G100 B 6-2-3
ASTM
ASTM D523Standard Test Method for Specular Gloss
ASTM D4157; GM9082P; SAE J948; SAE J1530; TSL 5101G; ISO 11640; GMW 3208; MS 300-31; NES M0602; 8102Z-TLA-G100; AATCC 8; ISO 105-X12; ASTM D3776; GMW 3182; MS 300-31; NES M0602; TSL 5101G; GM 2756M; TL 52064; TSL 5101G; NES M0602; 8102Z-SZN-G100; ASTM D523; AATCC-1; ISO-105-A02; TL 52064; PV 1200; WSS-M99P43-E1; WSS-M99P43-E2; Nissan M0602; GMW3262; GMW14124; TL 52064; SAE J1756; GMW3235; LP-463DB-12-01; TSM0503; PV 3010; DIN 75201; DIN EN ISO 17071; MS 300-54; NES M0161; HES D6508; ISO 6452
ASTM D2097Name not checked yet
ASTM D6182; ISO 5402; ISO 32100; TSL 5101G; ASTM D2097; Ford FLTM BN 102-02; JIS L0849; L1084; Nissan M0154; M0155; M0602; TSL 5100G; 5101G; HONDA 8102Z-TLA-G100 B 6-2-3
ASTM D3776Name not checked yet
ASTM D4157; GM9082P; SAE J948; SAE J1530; TSL 5101G; ISO 11640; GMW 3208; MS 300-31; NES M0602; 8102Z-TLA-G100; AATCC 8; ISO 105-X12; ASTM D3776; GMW 3182; MS 300-31; NES M0602; TSL 5101G; GM 2756M; TL 52064; TSL 5101G; NES M0602; 8102Z-SZN-G100; ASTM D523; AATCC-1; ISO-105-A02; TL 52064; PV 1200; WSS-M99P43-E1; WSS-M99P43-E2; Nissan M0602; GMW3262; GMW14124; TL 52064; SAE J1756; GMW3235; LP-463DB-12-01; TSM0503; PV 3010; DIN 75201; DIN EN ISO 17071; MS 300-54; NES M0161; HES D6508; ISO 6452
ASTM D4157Name not checked yet
ASTM D4157; GM9082P; SAE J948; SAE J1530; TSL 5101G; ISO 11640; GMW 3208; MS 300-31; NES M0602; 8102Z-TLA-G100; AATCC 8; ISO 105-X12; ASTM D3776; GMW 3182; MS 300-31; NES M0602; TSL 5101G; GM 2756M; TL 52064; TSL 5101G; NES M0602; 8102Z-SZN-G100; ASTM D523; AATCC-1; ISO-105-A02; TL 52064; PV 1200; WSS-M99P43-E1; WSS-M99P43-E2; Nissan M0602; GMW3262; GMW14124; TL 52064; SAE J1756; GMW3235; LP-463DB-12-01; TSM0503; PV 3010; DIN 75201; DIN EN ISO 17071; MS 300-54; NES M0161; HES D6508; ISO 6452
ASTM D6182Name not checked yet
ASTM D6182; ISO 5402; ISO 32100; TSL 5101G; ASTM D2097; Ford FLTM BN 102-02; JIS L0849; L1084; Nissan M0154; M0155; M0602; TSL 5100G; 5101G; HONDA 8102Z-TLA-G100 B 6-2-3
Other standards
AATCC 8Name not checked yet
ASTM D4157; GM9082P; SAE J948; SAE J1530; TSL 5101G; ISO 11640; GMW 3208; MS 300-31; NES M0602; 8102Z-TLA-G100; AATCC 8; ISO 105-X12; ASTM D3776; GMW 3182; MS 300-31; NES M0602; TSL 5101G; GM 2756M; TL 52064; TSL 5101G; NES M0602; 8102Z-SZN-G100; ASTM D523; AATCC-1; ISO-105-A02; TL 52064; PV 1200; WSS-M99P43-E1; WSS-M99P43-E2; Nissan M0602; GMW3262; GMW14124; TL 52064; SAE J1756; GMW3235; LP-463DB-12-01; TSM0503; PV 3010; DIN 75201; DIN EN ISO 17071; MS 300-54; NES M0161; HES D6508; ISO 6452
Scope as published by A2LA
5 lines
ISO/IEC 17025
Active3611.01
The scope document we hold says it was valid until 2026-06-30. That date has passed, so our copy may be out of date. We downloaded it from the A2LA register on 2026-03-14. Check the A2LA register for the current scope.
Accredited scope, certificate 3611.01
| Line | Discipline | Method | Matrix | Range |
|---|---|---|---|---|
| 1 | mechanical | ASTM D6182; ISO 5402; ISO 32100; TSL 5101G; ASTM D2097; Ford FLTM BN 102-02; JIS L0849; L1084; Nissan M0154; M0155; M0602; TSL 5100G; 5101G; HONDA 8102Z-TLA-G100 B 6-2-3 | Textile | - |
| 2 | materials | ASTM D4157; GM9082P; SAE J948; SAE J1530; TSL 5101G; ISO 11640; GMW 3208; MS 300-31; NES M0602; 8102Z-TLA-G100; AATCC 8; ISO 105-X12; ASTM D3776; GMW 3182; MS 300-31; NES M0602; TSL 5101G; GM 2756M; TL 52064; TSL 5101G; NES M0602; 8102Z-SZN-G100; ASTM D523; AATCC-1; ISO-105-A02; TL 52064; PV 1200; WSS-M99P43-E1; WSS-M99P43-E2; Nissan M0602; GMW3262; GMW14124; TL 52064; SAE J1756; GMW3235; LP-463DB-12-01; TSM0503; PV 3010; DIN 75201; DIN EN ISO 17071; MS 300-54; NES M0161; HES D6508; ISO 6452 | - | - |
| 3 | dimensional; mechanical; thermodynamic | - | - | 0 to 99999 °C; RPM; kg |
| 4 | dimensional | (A2LA Cert. No. 3611.01) 07/16/2024 Page 4 of 4
1 The laboratory is only accredited for the test methods listed. The accredited test methods are used in
determining compliance with the material specifications listed below. The inclusion of these material
specifications on this Scope does not confer labor atory accreditation to the material specifications nor
does it confer accreditation for the method(s) embedded within the specifications.
2 This laboratory’s scope contains withdrawn or superseded methods. As a clarifier, this indicates that the
applicable method itself has been withdrawn or is now considered “historical” and not that the
laboratory’s accreditation for the method has been withdrawn.
3 Calibration and Measurement Capability Uncertainty (CMC) is the smallest uncertainty of measurement
that a laboratory can achieve within its scope of accreditation when performing more or less routine
calibrations of nearly ideal measurement standards or nearly ideal measuring equipment. CMCs represent
expanded uncertainties expressed at approximately the 95 % level of confidence, usually using a coverage
factor of k = 2. The actual measurement uncertainty of a specific calibration performed by the laboratory
may be greater than the CMC due to the behavior of the customer’s device and to influences from the
circumstances of the specific calibration.
4 Field calibration service is available for this calibration. Please note the actual measurement
uncertainties achievable on a customer's site can normally be expected to be larger than the CMC found
on the A2LA Scope. Allowance must be made for aspects su ch as the environment at the place of
calibration and for other possible adverse effects such as those caused by transportation of the calibration
equipment. The usual allowance for the actual uncertainty introduced by the item being calibrated, (e.g.
resolution) must also be considered and this, on its own, could result in the actual measurement
uncertainty achievable on a customer’s site being larger than the CMC.
5 This laboratory meets R205 – Specific Requirements: Calibration Laboratory Accreditation Program
for the types of dimensional tests listed above and is considered equivalent to that of a calibration
certificate.
6 The type of instrument or material being calibrated is defined by the parameter. This indicates the
laboratory is capable of calibrating instruments that measure or generate the values in the ranges indicated
for the listed measurement parameter.
7 This scope meets A2LA’s P112 Flexible Scope Policy.
8 This laboratory offers commercial dimensional testing and commercial and field calibration services
where noted. | ||
| 5 | mechanical | For the types of tests and calibrations to which this accreditation applies, please refer to the laboratory’s Mechanical Scope of Accreditation.
Accredited Laboratory
A2LA has accredited
SCHAP LABORATORY SERVICES, LLC
Spring Lake, MI
for technical competence in the field of
Mechanical Testing
This laboratory is accredited in accordance with the recognized International Standard ISO/IEC 17025:2017
General requirements for the competence of testing and calibration laboratories. This accreditation demonstrates
technical competence for a defined scope and the operation of a laboratory quality management system
(refer to joint ISO-ILAC-IAF Communiqué dated April 2017).
Presented this 16th day of July 2024.
_______________________
Mr. Trace McInturff, Vice President, Accreditation Services
For the Accreditation Council
Certificate Number 3611.01
Valid to June 30, 2026 | ||
Ranges are reproduced from the accredited scope document as published. An absent range means the register did not state one. Line numbers are ours, for cross-reference; they follow the order of the scope document.
Location
Labs with overlapping accredited scope in United States
- Michigan Testing InstituteSterling Heights, MI · ~264 kmA2LAShares 2 accredited methods and materialsASTM D523Textile
- Atlas Weathering Services GroupMiami, FL · ~2,000 kmA2LAShares 2 accredited methods and materialsASTM D523Textile
- Touchstone Systems & ServicesWyoming, MI · ~44 kmA2LAShares 1 accredited materialTextile
- AppliedByron Center, MI · ~48 kmA2LAShares 1 accredited materialTextile
- ICC Evaluation ServiceElkhart, IN · ~151 kmA2LAShares 1 accredited test methodASTM D523
Accreditation data refreshed from the A2LA register on .
This page mirrors a public register. For a purchasing, audit or regulatory decision, confirm against the A2LA entry linked above.