ISO 14644-7:2004(EN)
ISO 14644-7 is a part of the ISO 14644 series that provides guidelines for the selection and use of test methods in cleanrooms and controlled environments. This standard focuses on the appropriate procedures and techniques for testing the performance of cleanrooms to assess air cleanliness levels and other environmental factors. ISO 14644-7 helps organizations choose the correct test methods based on the specific requirements of the cleanroom, such as measuring airborne particle concentrations, airflow patterns, or air change rates. It outlines the types of equipment needed for testing (such as particle counters, air velocity meters, and pressure sensors) and the calibration and verification processes for these instruments. The standard aims to ensure that cleanrooms are tested effectively, with consistent and reliable methods, to verify that they maintain the required cleanliness levels and meet industry standards for contamination control. This is particularly important in industries such as pharmaceuticals, biotechnology, and electronics, where strict cleanliness and environmental control are critical.
Foreword
International Standards are drafted in accordance with the rules given in the ISO/IEC Directives, Part 2.
The main task of technical committees is to prepare International Standards. Draft International Standards adopted by the technical committees are circulated to the member bodies for voting. Publication as an International Standard requires approval by at least 75 % of the member bodies casting a vote.
Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. ISO shall not be held responsible for identifying any or all such patent rights.
ISO 14644-7 was prepared by Technical Committee ISO/TC 209, Cleanrooms and associated controlled environments.
ISO 14644 consists of the following parts, under the general title Cleanrooms and associated controlled environments:
Part 1: Classification of air cleanliness
Part 2: Specifications for testing and monitoring to prove continued compliance with ISO 14644-1
Part 4: Design, construction and start-up
Part 5: Operations
Part 6: Vocabulary
Part 7: Separative devices (clean air hoods, gloveboxes, isolators and mini-environments)
The following parts are under preparation:
Part 3: Test methods
Part 8: Classification of airborne molecular contamination
Introduction
In the spirit of the generic requirements of an International Standard, the term “separative devices” was developed by Technical Committee ISO/TC 209 to encompass the wide continuum of configurations from open unrestricted air overspill to wholly contained systems. Common terms-of-trade, such as clean air hoods, gloveboxes, isolators and mini-environments, have different meanings depending on the specific industry.
Difficulties experienced in the manufacture and handling of certain products or materials have driven the development of separative devices. These difficulties include product sensitivity to particles, chemicals, gases or microorganisms; operator sensitivity to the process materials or byproducts; and both product and operator sensitivity.
Separative devices provide assured protection in varying levels by utilising physical or dynamic barriers, or both, to create separation between operation and operator. Certain processes may require special atmospheres to prevent degradation or explosions. Some systems may be capable of providing 100 % recirculation of the contained atmosphere to allow inert gas operation or biodecontamination with reactive gases.
Usually people do not work directly inside the separative-device environment during production. These separative devices may be movable or fixed, and used for transport, transfer and process. The product or process, or both, are manipulated remotely with access devices either manually, with protection by barrier technology such as wall-integrated personal interface systems (e.g. gloves, gauntlets, half-suits), or mechanically with robotic handling systems.
Air cleanliness definitions and test methods covered in ISO 14644-1, 14644-2 and 14644-3 generally apply within separative devices. In applications with biological contamination requirements, ISO 14698-1 and 14698-2 will apply. However, some applications can have special requirements for monitoring because of extreme conditions that may be encountered. These unique conditions are covered in this part of ISO 14644.
Transfer devices to move material in and out of separative devices form an important portion of this part of ISO 14644. In addition, material can be moved from one fixed separative device to another in transport containers.
Design and construction of cleanrooms, including generic aspects of clean zones, are covered in ISO 14644-4. ISO 14644-4:2001, Figure A.4, illustrates aerodynamic measures or air overspill often used in industry-specific separative devices called clean air hoods and mini-environments. Mini-environments are often used in the electronics industry with transport containers, called boxes or pods, to provide very clean process conditions. The application of barrier technology used in industry-specific separative devices called isolators is shown in ISO 14644-4:2001, Figure A.5. Separative devices, often called gloveboxes, containment enclosures or isolators, are used in the medical products and nuclear industries to provide protection to the operator as well as the process. Isolators may be rigid- or soft-walled depending on the application. The Bibliography contains industry-specific references. However, from a unifying conceptual standpoint, a continuum of separation exists between the operation and the operator, ranging from totally open to totally enclosed systems depending on the application. Similarly, a continuum exists for containment.
The concept of separative devices is not limited to one specific industry, as many industries use these technologies for different requirements. In that light, this part of ISO 14644 provides a generic overview of the requirements involved.
FAQ
Q: What does ISO 14644-7 mean?
A: The ISO 14644-7 is an integral section of the ISO 14644 chain of standards that lists the requisites of using the testing methods utilized in cleanrooms and other suitable spaces, and presents summaries that describe the technical aspects of the environment. The standard includes details on how to choose proper methods of carrying out tests necessary for understanding the work of clean facilities and indicates the conditions of their operation. It also contains important notices about the testing devices and test organisation as well.
Q: What is the latest edition of ISO 14644?
A: The latest standard ISO 14644 consists of 5 parts, with the most recent versions being ISO 14644-1: 2015, ISO 14644-3: 2019, 14644-5: 2020. The developed versions summarize the newest practices from different sectors, especially pharmaceuticals and other industries producing technologies. The new issues of the ISO 14644 concern improving methods of particle counting, efficiency openings, energy saving techniques, and methods of environmental control.
Q: What is the classification of cleanrooms belonging to ISO 7?
A: The ISO 7 class of cleanrooms is determined by the amount of airborne particles allowed in it according to ISO 14644-1. Thus, the cleanroom of ISO class 7 must not contain more than 352000 of 0.5 microns particles per cubic meter of air. The specified level of cleanliness is usually adequate for some of the production works of pharmaceuticals, electronics, and other industries. At the same time, the ISO class cleanrooms require special systems for continuous air turnover and replacement to keep the necessary level of cleanliness in these facilities.
Q: What are the standards set by the ISO 14644-4 for cleanrooms?
A: The ISO 14644-4 standard is aimed at determining the requirements and instructions related to the processes of building, functioning, and specifying the systems of air circulation and ventilation (HVAC). The standard provides a theoretical foundation and accurate description of working principles covering the process of air circulation and ensuring that all the process in a cleanroom comply with the required classification. The standard determines how motion should be directed to manage the processes of circulation in the cleanroom, as well as how to calculate and maintain the required number of air changes.
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