BH GSO IEC/TS 62647-21:2016
IEC TS 62647-21:2013
Bahraini Standard
Current Edition
·
Approved on
08 February 2016
Process management for avionics - Aerospace and defence electronic systems containing lead-free solder - Part 21: Program management - Systems engineering guidelines for managing the transition to lead-free electronics
BH GSO IEC/TS 62647-21:2016 Files
English
34 Pages
Current Edition
Reference Language
Obtaining this standard through the store is currently unavailable. You can acquire it directly from its source.
BH GSO IEC/TS 62647-21:2016 Scope
This part of IEC 62647 is designed to assist program management and/or systems
engineering management in managing the transition to lead-free (Pb-free) electronics to
assure product reliability and performance.
Manufacturers of Aerospace, Defence and High Performance (ADHP) electronics may
inadvertently introduce Pb-free elements (including piece part finish, printed wiring board
(PWB) or printed circuit board (PCB) finish, or assembly solder) if careful coordination
between buyer and supplier is not exercised. For example, piece part manufacturers may not
always change part numbers to identify Pb-free finishes, especially if the previous tin-lead
(Sn-Pb) finished piece part has been discontinued. Detailed examination of piece parts and
documents at receiving inspection, while crucial, may not be sufficient to identify Pb-free
piece parts.
NOTE 1 Pb-free technology can impact any program regardless of whether the program itself is exempt or bound
by environmental regulations. The industry conversion to Pb-free solder technology may affect an ADHP program
in one or both of the following ways:
1) if the program is required to implement Pb-free technology (contract requirement, environmental regulation,
etc), then the program manager/lead systems engineer will need to assess the impact of in-house transition
with respect to design (performance of products using Pb-free) and process (processes to build Pb-free
products);
2) if the program purchases COTS (commercial-off-the-shelf) items for its products/systems, then there is a very
good chance that these items will contain Pb-free solder or Pb-free finishes on parts, printed wiring boards
(PWBs), printed circuit boards (PCB), or circuit cards assemblies (CCA).
The basic principles delineated in this document can be used for program management and/or
systems engineering management of any aerospace and/or high performance program. The
annexes in the document describe tools that can be used in conjunction with this document.
1) Annex A describes a matrix of product tier level versus associated risks with respect to a
Pb-free transition.
2) Annex B contains links to the European Union Directives and Executive Order 13148.
3) Annex C contains a general program manager checklist for dealing with Pb-free issues
that summarizes the content of this document.
4) Annex D contains a general manufacturing process assessment checklist to assess
supplier compliance to IEC/TS 62647-1.
5) Annex E describes a recommended program language to assure performance, reliability,
airworthiness, safety, and certifiability of Pb-free product(s).
This document is designed to assist a program in assuring the performance, reliability,
airworthiness, safety, and certifiability of product(s), in accordance with IEC/TS 62647-1.
Please note that the program manager and systems engineer (along with their respective
organizations), and the appropriate enterprise authority work together in ensuring that all
impacts of Pb-free technology insertion are understood and risks mitigated accordingly.
For the purposes of this document, “program management (or manager) and/or systems
engineering management (or manager) and/or the appropriate enterprise authority” are
defined as “program manager”.
NOTE 2 The implications are that the program manager and systems engineering manager (along with their
respective organizations) and the appropriate enterprise authority work together in ensuring that all impacts of Pbfree
technology insertion are understood and risks mitigated accordingly.
This document may be used by other high performance and high reliability industries at their
discretion.
Best Sellers From Electrical Sector
GSO 2530:2016
Gulf Standard
Energy Labelling And Minimum Energy Performance Requirements For Air-Conditioners
GSO 34:2007
Gulf Technical Regulation
LEAD-ACID STARTER BATTERIES USED FOR
MOTOR VEHICLES AND INTERNAL
COMBUSTION ENGINES
BH GSO 34:2015
GSO 34:2007
Bahraini Technical Regulation
LEAD-ACID STARTER BATTERIES USED FOR
MOTOR VEHICLES AND INTERNAL
COMBUSTION ENGINES
GSO 35:2007
Gulf Standard
Methods of test
for lead-acid starter batteries used for motor vehicles
and internal combustion engines
Recently Published from Electrical Sector
GSO CEN/TR 16999:2026
CEN/TR 16999:2019
Gulf Standard
Solar energy systems for roofs - Requirements for structural connections to solar panels
GSO ISO 20816-21:2026
ISO 20816-21:2025
Gulf Standard
Mechanical vibration — Measurement and evaluation of machine vibration — Part 21: Horizontal axis wind turbines
GSO IEC 61362:2026
IEC 61362:2024
Gulf Standard
Guidelines to specification of hydraulic turbine governing systems
GSO IEC TS 62271-313:2026
IEC TS 62271-313:2025
Gulf Standard
High-voltage switchgear and controlgear - Part 313: Direct current circuit-breakers