{"id":3847,"date":"2026-09-21T10:40:21","date_gmt":"2026-09-21T10:40:21","guid":{"rendered":"https:\/\/qualitanceindia.com\/?p=3847"},"modified":"2026-09-21T10:40:21","modified_gmt":"2026-09-21T10:40:21","slug":"bis-crs-certification-for-crystalline-silicon-terrestrial-photovoltaic-pv-modules-si-wafer-based-is-14286-part-1-sec-12023-bis-consultancy","status":"publish","type":"post","link":"https:\/\/qualitanceindia.com\/bis-crs-certification-for-crystalline-silicon-terrestrial-photovoltaic-pv-modules-si-wafer-based-is-14286-part-1-sec-12023-bis-consultancy\/","title":{"rendered":"BIS CRS Certification for Crystalline Silicon Terrestrial Photovoltaic (PV) Modules (Si Wafer Based) | IS 14286 (Part 1\/Sec 1):2023 | BIS Consultancy"},"content":{"rendered":"

Introduction<\/h2>\n

Crystalline Silicon Terrestrial Photovoltaic (PV) Modules are widely used in solar power generation systems for residential, commercial, industrial and utility-scale applications. Because these modules operate outdoors for long periods and are exposed to electrical, thermal, mechanical and environmental stresses, compliance with applicable Indian Standards is important for product safety, reliability and performance.<\/p>\n

For manufacturers and importers supplying crystalline silicon terrestrial photovoltaic modules in India, BIS compliance under the applicable solar Quality Control Order is an important regulatory requirement.<\/p>\n

The Bureau of Indian Standards (BIS) lists Crystalline Silicon Terrestrial Photovoltaic (PV) Modules (Si wafer based)<\/strong> under its compulsory registration framework. The applicable standard family includes IS 14286<\/strong>, along with the relevant photovoltaic module safety standards.<\/p>\n

The current third-revision testing framework includes IS 14286 (Part 1):2023<\/strong> and the specific requirements for crystalline silicon modules under IS 14286 (Part 1\/Sec 1):2023<\/strong>. BIS also provides uniform test report formats for these standards through its recognized laboratory system.<\/p>\n

What Is BIS CRS Certification for Solar PV Modules?<\/h2>\n

BIS CRS Certification is a conformity assessment route under which specified products are required to comply with applicable Indian Standards before they are manufactured, imported, stored for sale, sold or distributed in the Indian market, subject to the relevant regulatory order.<\/p>\n

For crystalline silicon terrestrial photovoltaic modules, the BIS Scheme-II listing identifies the product category as:<\/p>\n

Crystalline Silicon Terrestrial Photovoltaic (PV) Modules (Si wafer based)<\/strong><\/p>\n

The BIS listing associates this product category with:<\/p>\n

    \n
  • IS 14286<\/li>\n
  • IS\/IEC 61730-1<\/li>\n
  • IS\/IEC 61730-2<\/li>\n<\/ul>\n

    The original Solar Photovoltaics, Systems, Devices and Components Goods order also specifically included crystalline silicon terrestrial photovoltaic modules (Si wafer based) under IS 14286.<\/p>\n

    Applicable Standard: IS 14286 (Part 1\/Sec 1):2023<\/h2>\n

    IS 14286 (Part 1\/Sec 1):2023<\/strong> covers:<\/p>\n

    Terrestrial Photovoltaic (PV) Modules \u2014 Design Qualification and Type Approval \u2014 Part 1-1: Special Requirements for Testing of Crystalline Silicon Photovoltaic (PV) Modules \u2014 Third Revision.<\/strong><\/p>\n

    The standard is associated with IEC 61215-1-1:2021<\/strong> for the corresponding special requirements for crystalline silicon photovoltaic modules. BIS’s current Uniform Test Report Format page specifically lists IS 14286 (Part 1\/Sec 1):2023 for this product category.<\/p>\n

    The broader IS 14286 Part 1:2023 framework covers test requirements, while Section 1 provides the special requirements applicable to crystalline silicon PV modules.<\/p>\n

    Current QCO Implementation Date<\/h2>\n

    The Ministry of New and Renewable Energy’s Solar Systems, Devices and Components Goods Order, 2025 (Quality Control Order, 2025)<\/strong> was issued on 27 January 2025.<\/p>\n

    BIS’s official circular records the applicable requirements for crystalline silicon terrestrial photovoltaic modules and specifies an implementation date of:<\/p>\n

    27 July 2025<\/strong><\/p>\n

    For crystalline silicon PV modules, the circular specifically identifies:<\/p>\n

    IS 14286 (Part 1):2023 \/ IEC 61215-1:2021<\/strong><\/p>\n

    and<\/p>\n

    IS 14286 (Part 1\/Sec 1):2023 \/ IEC 61215-1-1:2021<\/strong><\/p>\n

    with the implementation date of 27 July 2025.<\/p>\n

    Therefore, manufacturers and importers should ensure that their applicable PV module models comply with the currently notified requirements before placing covered products in the Indian market.<\/p>\n

    What Are Crystalline Silicon Terrestrial Photovoltaic Modules?<\/h2>\n

    Crystalline silicon PV modules are solar modules manufactured using crystalline silicon-based photovoltaic cells. The cells convert sunlight into electrical energy, and multiple cells are interconnected and encapsulated to form a photovoltaic module.<\/p>\n

    Typical module construction can include:<\/p>\n

      \n
    • Crystalline silicon solar cells<\/li>\n
    • Front glass<\/li>\n
    • Encapsulant material<\/li>\n
    • Backsheet or rear glass<\/li>\n
    • Aluminium frame<\/li>\n
    • Junction box<\/li>\n
    • Bypass diodes<\/li>\n
    • Electrical connectors and cables<\/li>\n
    • Mounting and identification components<\/li>\n<\/ul>\n

      The exact construction, materials, electrical characteristics and module design depend on the manufacturer’s product configuration.<\/p>\n

      Products Covered<\/h2>\n

      The applicable BIS category covers Crystalline Silicon Terrestrial Photovoltaic (PV) Modules (Si wafer based)<\/strong>.<\/p>\n

      This may include different commercially manufactured crystalline silicon PV module configurations, subject to the scope and applicability of the relevant standard and QCO.<\/p>\n

      Before beginning certification, the exact product construction, technology, model range and intended application should be reviewed against the current BIS requirements.<\/p>\n

      Thin-film PV technologies such as amorphous silicon, CdTe and other thin-film technologies are addressed separately through corresponding parts or sections of the IS 14286 family. BIS’s current UTRF page separately lists Section 2 for CdTe, Section 3 for amorphous silicon and Section 4 for thin-film Cu(In,Ga)(S,Se)2-based modules.<\/p>\n

      Major Testing Areas for Crystalline Silicon PV Modules<\/h2>\n

      Testing under the current IS 14286:2023 framework is extensive because PV modules are expected to withstand long-term outdoor operation.<\/p>\n

      Depending on the applicable testing program, important test areas include:<\/p>\n

      Visual Inspection<\/h3>\n

      The module is examined for visual defects, construction issues and other conditions that could affect conformity.<\/p>\n

      Maximum Power Determination<\/h3>\n

      The electrical output characteristics of the PV module are evaluated to determine maximum power under specified test conditions.<\/p>\n

      Insulation Test<\/h3>\n

      The insulation system of the module is evaluated to verify electrical safety.<\/p>\n

      Temperature Coefficient Measurement<\/h3>\n

      The module’s electrical performance is evaluated against temperature variations.<\/p>\n

      Performance at Standard Test Conditions<\/h3>\n

      PV module performance is evaluated under specified standard test conditions.<\/p>\n

      Performance at Low Irradiance<\/h3>\n

      The module’s performance under low irradiance conditions is evaluated.<\/p>\n

      Outdoor Exposure Test<\/h3>\n

      The module is subjected to outdoor exposure conditions as specified by the applicable testing requirements.<\/p>\n

      Hot-Spot Endurance Test<\/h3>\n

      The module is evaluated for resistance to hot-spot conditions that can occur due to non-uniform illumination or related operating conditions.<\/p>\n

      UV Preconditioning<\/h3>\n

      The module is evaluated after exposure to specified ultraviolet radiation conditions.<\/p>\n

      Thermal Cycling<\/h3>\n

      The module undergoes temperature cycling to assess its ability to withstand repeated temperature changes.<\/p>\n

      Humidity-Freeze Test<\/h3>\n

      The product is subjected to specified humidity and freezing conditions.<\/p>\n

      Damp Heat Test<\/h3>\n

      The module is exposed to elevated temperature and humidity conditions for the specified test duration.<\/p>\n

      Robustness of Terminations<\/h3>\n

      Electrical terminations are evaluated for their ability to withstand the required mechanical and electrical stresses.<\/p>\n

      Wet Leakage Current Test<\/h3>\n

      The module is tested under wet conditions to evaluate electrical safety.<\/p>\n

      Mechanical Load Test<\/h3>\n

      The module is subjected to specified mechanical loading conditions.<\/p>\n

      Hail Test<\/h3>\n

      The module is evaluated for resistance to specified hail impact conditions.<\/p>\n

      Bypass Diode Testing<\/h3>\n

      The bypass diode arrangement is evaluated according to the applicable test requirements.<\/p>\n

      Stabilization<\/h3>\n

      The module may be subjected to stabilization procedures as specified by the applicable standard.<\/p>\n

      Potential Induced Degradation Test<\/h3>\n

      Where applicable under the current test program, the module is evaluated for potential induced degradation.<\/p>\n

      Bending Test<\/h3>\n

      The applicable testing program may include bending tests for the module.<\/p>\n

      BIS LIMS currently lists these and other MQT test items for IS 14286 (Part 1\/Sec 1):2023.<\/p>\n

      BIS CRS Testing for IS 14286 (Part 1\/Sec 1):2023<\/h2>\n

      Testing for crystalline silicon PV modules is considerably more comprehensive than ordinary product testing because the standard evaluates electrical performance, environmental durability, mechanical strength and long-term reliability.<\/p>\n

      BIS’s current laboratory database shows recognized laboratories offering testing against IS 14286 (Part 1\/Sec 1):2023<\/strong>.<\/p>\n

      For example, current BIS LIMS listings show testing charges of approximately:<\/p>\n