AI亚检亚大塑料制品有限公司做的大吗?

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AI是国际领先的质量控制服务供应商。AI与国际品牌、零售商及进口商建立合作关系,帮助他们管理供应链并保障其供应链安全。
AI的业务包括供应商审核、产品验货以及实验室测验。我们提供基于网络、支持移动设备的客户管理体系,提供快速进度安排和具有竞争力的价格,惠及全球100多个国家的客户。
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工作时间:周一至周五
工作类别:文职、管理、辅助性工作
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微信"扫一扫"登录买买买之后,中国最大的AI智能公司竟然是阿里集团吗?买买买之后,中国最大的AI智能公司竟然是阿里集团吗?科技圈内百家号这两年里,阿里一直在AI领域买买买。细数下来阿里竟然一举投资了5家芯片企业,杭州中天微、Barefoot Networks、寒武纪、耐能、深鉴,前几天爆出来的阿里15亿投资商汤科技,加上之前的Face++,CV赛道,两个领头羊都纳入麾下。难道阿里要做手机了?中国最大的AI智能公司竟然是阿里集团吗?仔细看阿里投资的公司,基本都是芯片行业的潜力股。目前来看以这几家公司的产业规模和技术积累,很难在短时间内做出对行业格局太大改变的成果出来。手机芯片行业,华为有自主研发的麒麟芯片,仍然是国产手机的老大哥。其实,阿里巴巴的芯片和系统都是为了阿里巴巴“物联网”战略服务的,阿里巴巴如果能在芯片和系统方面完成布局,结合已经国内领先的阿里云,无疑增强了阿里在物联网领域的核心竞争力,打造竞争壁垒,有利于公司长远发展。阿里的物联网思路在2018中国物联网产业生态大会上,阿里云首席智联网科学家柯镇做了《阿里云IoT: 数字中国的基础设施的建设者》的主题演讲,深入浅出的向与会嘉宾阐述了物联网的使命以及作用。柯镇表示,物联网的使命是建造数字化物理世界,同时也是数字化物理世界的工具。阿里巴巴不仅是“一朵云”的制造商,是整个数字世界基础设施的搭建者和建设者,希望为每一个物联网的开发者提供物联网数字中国建设方案以及数字世界建设的基础设施。柯镇指出,物联网是一场认知革命,是把物理世界映射到数字世界,在数字世界进行通信和计算。物联网技术的本质是利用连接与传感器打通物理世界与云世界,利用物联网语言重新定义和描述物理世界,从城市的生产生活以及生态环境中获取数据新能源。同样,物联网也是把物理世界抽象到模型世界,进而更深的认知物理世界,成为跨越认知鸿沟的桥梁。其中,阿里巴巴要做物联网的信息层,将建立从物理世界到数字世界之间的计算桥梁,并建设自我态势感知和自我调节的信息物理系统。该系统完全按照国际标准的工业4.0的数字世界的信息物理系统标准建设,从而形成信息标准、普适计算标准、数字世界标准、安全标准等阿里物联网部门独一无二的九大物联网标准。柯镇表示,预计到2030年,中国将会设计制造世界上80~90%的物联网设备,50%的云计算。阿里物联网实践在2017云栖大会上,阿里云正式推出了Link物联网平台,宣布走“平台+市场+标准”三位一体战略,提出五年连接百亿设备的目标。在这个道路下,物联网产业获得了全面的赋能,从标准统一的底层开发平台,到上层应用规模分销。阿里云Link为此已经推出几十种云端一体的业务和产品,联合了数百家产业链伙伴成立ICA全球标准联盟,并在阿里成熟的电商体系中成立了物联网市场,不设门槛,入驻方案商可以使用自己的软硬件产品包括云。中国领先的外卖服务提供商饿了么,日单量超过900万,但一直饱受配送效率低下困扰,还不知道慢在哪里。配送员不能说不卖力,但大量时间耗费在等饭好的过程中。商户也有抱怨:厨房生产嘈杂,厨师做好外卖单基本靠吼,高峰期前台还常常配错订单。阿里云用物联网思维理顺了这个多头纷杂的系统。最近,阿里云为饿了么提供了基于IoT的配送流程优化,配送员不用等在饭馆,厨师做好饭之后,拍下一个集成了阿里云IoT SDK的按钮,信息就发送到部署在阿里云的饿了么后台管理系统上,系统就可以实时调配距离最近的配送员取菜,同时通知顾客快递已在路上。大大了提高配送效率。下一步,阿里云还计划为每辆配送车也配备一个IoT按钮,配送员不仅可以安全抢单,饿了么还能够获得整个配送流程的数据,知道慢在哪里,从而实现流程优化。平心而论,这个提升了至少数百万人体验的物联网应用并不复杂,阿里云IoT只是充分利用了物联网的连接能力,让物体自己发出指令,构建起一个基于数据的动态调配系统,用数据改善人为的无序。这样类似的需求,一旦平台标准都成熟,会层出不穷百花齐放。我们要准备的,只是改变对待这个世界的态度。对企业来说,物联网已经是新产品占位和降低成本的必需品。根据预测,到2020年,物联网项目预计将占IT预算的43%。深圳芯中芯公司经营蓝牙语音芯片模组多年,占有很高的市场份额。他们最近在老产品中植入阿里云Link,让使用这个模组产品的耳机、音箱啊,轻松变成一个语音交互助手,可以查询天气、帮助预定机票等等。新产品显而易见拥有极受欢迎的差异化竞争力,芯中芯也获得了阿里云物联网市场解决方案类产品的首单成交。这两个都不复杂的案例,清晰的展现了物联网已经在深度改变生活、企业和产业,各种场景、需求已经蜂拥而至。包括阿里在内的任何一个巨头,甚至都没有停下来思考的时间。阿里选择的这套完整的生态培育模式,会极大降低行业生态的解决方案研发、复制以及协作成本,合作伙伴和阿里就能在物联网爆发前夜一起掌握主动权。一个城市的物联网缩影在无锡鸿山,阿里云Link为这座城市的每一个路灯、每一条河流、每一个煤气管道都配备了数据上云的传感器,搭建了云端一体化平台,让城市不再是孤冷的建筑群,而是一个可视化的数字世界。鸿山的管理者可以在实时监控路灯的能耗、河流的涨落、煤气管道是否通畅等,提升城市生活的智能化和体验。同时,在丰富应用的物联网市场,阿里云联合政府共同扶持ISV开发应用和服务。为了保证整个城市处于一个标准体系下运转,而不是烟囱式割裂,阿里云联合数百家合作伙伴,在ISV标准联盟大会上发布了首个物联网白皮书。鸿山小镇几乎是一个物联网产业全景的浓缩,阿里云Link为此提供了平台+市场+标准的完整配置。在这个配置里,最核心的不是三个布点各自发展成熟,而是相互连接,形成一个由硬件+软件+云上技术+前台客户+后台开发者等万物互联的生态系统,为合作伙伴提供一站式服务。鸿山管理者不但可以轻松实现城市治理智能化,大大提高居民幸福指数,更可以借生态能量,吸引和扶持物联网高阶产业,反哺城市经济。在这一切发生之前,阿里云Link选择做物联网基础设施的搭建者。阿里巴巴IoT事业部总经理库伟深信:“物体终将不再冰冷,而是聪明的与人类对话,我们所做的一切,就是为了迎接万物苏醒的新时代。”本文由百家号作者上传并发布,百家号仅提供信息发布平台。文章仅代表作者个人观点,不代表百度立场。未经作者许可,不得转载。科技圈内百家号最近更新:简介:独立自媒体数码评测者,科技自由撰稿人,作者最新文章相关文章AI亚检的实验室测试服务怎么样?_百度知道
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所有问题分类US EPA Issues Final Rule for Composite Wood Products
In July 2016, an unofficial prepublication of the final rule for Composite Wood Products was issued by the Environmental Protection Agency (EPA) (See ). The official
was then published in Federal Register, 81 FR 89674 on December 12, 2016.
The final rule implements formaldehyde standards for composite wood products to reduce formaldehyde emissions as required by the Compliance Monitoring Strategy of the Toxic Substances Control Act (TSCA). In the rule, emission limits are included for domestic or imported hardwood plywood, medium density fiberboard, particleboard and finished goods containing these products (See ).
The final rule is effective February 10, 2017. One year after official publication on December 12, 2017, composite wood products that are sold, supplied, offered for sale, manufactured, or imported in the United States will need to be labeled as TSCA Title VI compliant.
US EPA Proposes First 10 Chemicals for TSCA Review
In late 2016, the Environmental Protection Agency (EPA)
for potential risks to human health and the environment as required by the reformed Toxic Substances Control Act (TSCA).
The evaluations will be used to determine whether these chemicals present an unreasonable risk of injury to health or the environment and are required to be completed within 3 years. If the EPA determines any chemical presents an unreasonable risk, the EPA must mitigate the risks within 2 years.
The first 10 chemicals selected for evaluation from the list of 90 chemicals on the 2014 update to the TSCA work plan are summarized below:
Exposure Information(2014 Work Plan)
Hazard Information(2014 Work Plan)
1,4-Dioxane
Used in consumer products. Present in groundwater, ambient air and indoor environments. High reported releases to the environment.
Possible human carcinogen
1-Bromopropane
Used in consumer products. Present in drinking water, indoor environments, surface water, ambient air, groundwater, soil. Estimated to have high releases to the environment.
Possible human carcinogen
Used in chlor-alkali production, consumer products, coatings and compounds, plastics, roofing products, and other applications.
Also found in certain imported products such as brakes, friction products, gaskets, packing materials and building materials.
Kn Acute and chronic toxicity from inhalation exposures
Carbon Tetrachloride
Used in commercial/industrial products. Present in biomonitoring, drinking water, indoor environments, surface water, ambient air, groundwater, soil. High reported releases to the environment.
Probable human carcinogen
Cyclic Aliphatic Bromide Cluster (HBCD)
Flame retardant in extruded polystyrene foam, textiles, and electrical and electronic appliances.
Acute aquatic toxicity
Methylene Chloride
Used in consumer products. Present in drinking water, indoor environments, ambient air, groundwater, and soil.
Probable human carcinogen
N-Methylpyrrolidone (NMP)
Used in consumer products.
Present in drinking water and indoor environments. High reported releases into the environment.
Reproductive toxicity
Pigment Violet 29 (Anthra [2,1,9-def:6,5,10-d’e’f’] diisoquinoline-1,3,8,10(2H,9H)-tetrone)
Used in consumer products.
Estimated to have moderate releases to the environment.
Aquatic toxicity
Trichloroethylene (TCE)
Used in consumer products. Present in drinking water, indoor environments, surface water, ambient air, groundwater, and soil.
Probable human carcinogen
Tetrachloroethylene (also known as perchloroethylene)
Used in consumer products and dry cleaning. Present in biomonitoring, drinking water, indoor environments, ambient air, groundwater, soil. High reported releases to the environment.
Probable human carcinogen
By the end of 2019, the EPA must have at least 20 chemical risk evaluations ongoing. Therefore, additional chemicals will be designated for evaluation in the near future.
US EPA Proposes Regulation for TCE in Vapor Degreasing Under TSCA
On December 16, 2016, the Environmental Protection Agency issued , regarding the prohibition of manufacture, processing and distribution in commerce of Trichloroethylene (TCE) for use in aerosol degreasing and spot cleaning at dry cleaning facilities.
TCE is a volatile organic compound used in industrial and commercial processes and has some limited uses in consumer and commercial products. However, the use of TCE may potentially lead to unreasonable health risks such as developmental toxicity, immunotoxicity, kidney toxicity, reproductive and endocrine effects, and neurotoxicity. Therefore, the EPA is proposing a prohibition of TCE under section 6 of the Toxic Substances Control Act (TSCA).
The proposed rule (40 CFR Part 751) is summarized below:
Prohibition
180 calendar days after the publication of the final rule
All persons are prohibited from manufacturing, processing, and distributing in commerce TCE in aerosol degreasing products, TCE for use in aerosol degreasing products and TCE for spot cleaning at dry cleaning facilities.
270 calendar days after the publication of the final rule
All persons are prohibited from commercial use of TCE in aerosol degreasing products and TCE for spot cleaning at dry cleaning facilities
The comment period is now open until February 14, 2017.
US State of California Approves Amendment to CCR Regarding BPA in Canned and Bottled Foods and Beverages through Regular Rulemaking Procedure
On November 30, 2016, the Office of Administrative Law (OAL) approved
(See ). The approved rule replaced the emergency regulation, which addresses the same issue.
In the approved rule, the use of a standard point-of-sale warning for BPA exposures from canned and bottled foods and beverages is continued. However, the only difference between the emergency and regular rulemaking is that a new provision is added to require businesses to provide the below information to the Office of Environmental Health Hazard Assessment (OEHHA):
A list of all food products for which a warning is being provided because BPA was intentionally used in the manufacture of the can lining or jar or bottle seals. The food product must be identified by:
Brand name
Product description, including the Federal Food and Drug Administration product category for the food.
Universal Product Code or other specific identifying designation
Where BPA is no longer used in the manufacture of the product packaging but the product is still available in commerce, the last expiration or “use by” date for the product where BPA was intentionally used in the can linings or seals.
The approved rule entered into force on January 1, 2017 and remains effective until December 31, 2017 while the emergency regulation expired on December 31, 2016.
California Proposition 65: Recent 60-Day Notices
In 1986, California voters approved an initiative titled California Proposition 65 to address their growing concerns about exposure to toxic chemicals. Since its origin, there have been many lawsuits that have resulted in reformulations of consumer products containing carcinogenic and reproductively harmful chemicals on the Cal Prop 65 list.
Recent 60-day notices from November and December of 2016 include the following:
Product / Source
Number of Notices
Acrylamide
Fried or Baked Vegetable Chips
Potato Products
Prune Juice
Arsenic (inorganic arsenic compounds), Cadmium and cadmium compounds, Carbon monoxide, Chromium (hexavalent compounds), Cobalt metal powder
Air emissions , Discharge into a source of drinking water
Benzophenone
Octocrylene-containing Sunscreen (products claiming a Sun Protection Factor)
Bisphenol A (BPA)
Polycarbonate Wine Glass
Thermal Paper
Cacao Nibs /
Raw Chocolate
Cadmium and cadmium compounds, Lead and lead compounds
Cacao Nibs, Berries, Root Powder / Chocolate Bar
Dietary Supplements
Carbon monoxide
Charcoal Grills/Smokers/Starter
Di(2-ethylhexyl)phthalate (DEHP)
Body Massagers
Backpack /Cosmetic Bag / Duffel bag
Belts with Vinyl/PVC Components
Cable With Microphone
Children's Notebook / Sandals /
Cleansing Enema Kit
Clipper / Crimp Tool / Cutter
Containers with Imitation Leather
Exercise Equipment With a PVC Rope Component
Eyeglasses with case
Leather Flogger
Motorcycle Jumper Cables
Nipple Clamp
Outdoor Window Thermometer
Replacement Breast Pump Tube
Sauna Suit
Shower cap / accessories
Sports Armband
Steering Wheel Covers
Suction Cups
Tape Measure
Travel Kit / Toiletries
Vinyl/PVC coated hooks / comb out capes / Leg Tips / Sleeves / Collapsible Fishing Bucket / Electrical Tape / Jump Rope / Poncho / Gloves /Jewelry Boxes /Luggage and Totes / Microphone Cords / Planner Covers / Tool Grips /Trays / Wires
Di(2-ethylhexyl)phthalate (DEHP), Di-isodecyl phthalate (DIDP), Diisononyl phthalate (DINP)
PVC rainwear and cases
Di(2-ethylhexyl)phthalate (DEHP), Diisononyl phthalate (DINP)
Fitness Balls
Product storage cases
Di(2-ethylhexyl)phthalate (DEHP), Di-n-butyl phthalate (DBP)
Suction Cups
PVC Flexible Hose Kit
PVC Tubing
Di(2-ethylhexyl)phthalate (DEHP), Di-n-butyl phthalate (DBP), Diisononyl phthalate (DINP)
Di(2-ethylhexyl)phthalate (DEHP), Di-n-butyl phthalate (DBP)
PVC Tubing
Di-isodecyl phthalate (DIDP), Diisononyl phthalate (DINP)
Blinders / Covers / Hose
Diisononyl phthalate (DINP)
iPhone Charging Wire
Bondage Tape
Chicken Stick
Electrodes
Grip Crochet
Hose Valve
iPhone Charging Wire
Travel Kit Bag
Vinyl Chair Covers
Di-n-butyl phthalate (DBP)
Bonding Clamps
Brass Finials / Fittings / Hammers / Inserts
Core Removal Tools
Dietary Supplement
Door Stoppers
Dried Green Teas, Dried Oolong Teas, Pu-Erh Teas, Twig Teas
Flare Connectors
Galvanized hardware cloth
Gas Valves
Handle Fixture
Immersion Wells
Insert Kits
Inflation Set
Plumb Bobs
Pocket Tools
Pop Up Drains
Proflo brand of brass fittings/valves
Punch Sets
Shade Raisers
Shut Off Nozzles
Soft Nose Pols
Tank Guides
Template Guide Sets
Tire Deflators
Lead and lead compounds
Clay tools
Dietary Supplements
Rice Seasoning
Spray Nozzle
Water Line Connection
Canada DOH Issues Guidance Regarding Recommended Concentration for DEGME in Surface Coating Materials
On November 5, 2016, the Canada Department of Health (DOH) issued
through the Canada Gazette. The recommended concentration of total DEGME present in a surface coating material should not more than 10,000 mg/kg (1.0% w/w).
DEGME is a substance specified in the List of Toxic Substances under the Canadian Environmental Protection Act, 1999, since DEGME is entering the environment in a quantity that constitutes a danger in Canada to human life or health. Therefore, to mitigate the exposure to DEGME, the guidance recommended that the total concentration of DEGME present in a surface coating material available to a consumer in Canada shall not exceed 10,000 mg/kg when a wet sample is tested.
Canada Amends Toys Regulations SOR/2011-17
On November 25, 2016,
was published and entered into force to amend the Toys Regulations SOR/2011-17.
The amendments in Toys Regulations are summarized below:
Editorial changes:
Section 7: Small parts
Section 26: Corrosive substances, irritants or sensitizers
Section 27: Substances in plastic materials — prohibition
Removed Phthalate Regulations from Toys Regulations
Removed Exception: “Such a substance may be used to manufacture the plastic material in an amount of 1% or less if the substance meets the requirements of sections 25 and 26.”
Section 29: Stuffing
Removed the following battery requirements and test method:
Section 43: Leakage
Schedule 9: Test Method for Batteries Used in Toys
Added definition:
Good Scientific Practices
Human experience data
Amended Permissible Limits of Toxicity (Schedule 2)
Amended Criteria for Determining if a Substance or Stuffing Material is an Irritant, Corrosive or Sensitizing (Schedule 3)
US Recalls Summary (November – December 2016)
In the US, when hazards are identified in consumer products, they will be recalled and published in the
on the CPSC website, which is updated daily. The US recalls from November 1 to December 31, 2016 are summarized below:
Fire Hazard
Fall Hazard
Injury Hazard
Laceration Hazard
Other Hazards *
* Other Hazards include Amputation Hazard, Burn Hazard, Choking Hazard, Drowning Hazard, Electrical Shock Hazard and Ingestion Hazard with frequency less than 4.
Product Categories
Sporting Goods / Equipment
Home Electrical Appliances (Hair Dryer, Iron, etc.)
Homeware (Non-Food Contact)
Other Categories ^
^ Other Categories include Candles & Burning Items and Accessories, Fabric / Textile / Garment / Home Textile, Food Contact Material, Footwear, Juvenile Product, Tools and Hardware and Toys and Childcare Articles with a frequency of less than 3.
Download the complete
Canada Recalls Summary (November – December 2016)
In Canada, when hazards are identified in consumer products, they will be recalled and published in the
on the Health Canada website, which is updated daily. The Canada recalls from November 1 to December 31, 2016
are summarized below:
Choking Hazard
Flammability Hazard
Fire Hazard
Fall Hazard
Injury Hazard
Other Hazards *
* Other Hazards include Burn Hazard, Laceration Hazard, Microbial Hazard and Strangulation Hazard with frequency less than 5.
Product Categories
Fabric / Textile / Garment / Home Textile
Toys and Childcare Articles
Sports/Fitness Equipment
Home Electrical Appliances (Hair Dryer, Iron, etc.)
Juvenile Products
Other Categories ^
^ Other Categories include Candles & Burning items and Accessories, Consumer Chemicals, Footwear, Furniture, Homeware (Non-Food Contact) and Juvenile Products with a frequency of less than 3.
Download the complete
Mexico Approves Food Contact Materials Standard
On February 15, 2016, a draft standard related to food contact ceramics and glass materials was proposed (See ). On December 24, 2016, the standard entered into force as .
The new standard replaced the previous standard NOM-231-SSA1-2002 for food contact ceramics and expands the scope of products to also include glass materials, with relevant limits for soluble lead and cadmium.
Compared to the draft standard, the maximum permissible limits of soluble lead and cadmium in glassware is amended to include a new type of article. Changes are bolded below.
Table 1. Maximum permissible limits for soluble lead and cadmium in pottery, ceramics, and porcelain
TYPE OF ARTICLE
No. of samples
CRITERIA FOR ACCEPTANCE
Maximum Permissible Limit
LEAD(mg / L)
Cadmium(mg / L)
Does not apply
Small hollowware
Large hollowware
Storage hollowware
Cups and mugs
Does not apply
Does not apply
Table 2. Maximum permissible limits for soluble lead and cadmium in glassware
TYPE OF ARTICLE
No. of samples
CRITERIA FOR ACCEPTANCE
Maximum Permissible Limit
LEAD(mg / L)
Cadmium(mg / L)
Does not apply
Small hollowware
Large hollowware
600 mL to 3 L
Storage hollowware
Europe Issues Guidance for LVD
In November 2016,
was issued. The guidance intends to facilitate the application of the LVD and represents a reference for ensuring consistent and harmonized application of the directive.
In the guidance, clarifications and explanations are provided to each Article of the Directive. Apart from the explanation, the guidance also lists example products that are within or outside the scope in the Directive. In addition, a comparison table of harmonized standards between LVD, 2014/35/EU and Machinery Directive (MD), 2006/42/EC is provided since they share some standards.
South Africa Issues Notice to Adopt Standards
On December 9, 2016, the Department of Trade and Industry issued . The notice announced that the Board of the South African Bureau of Standards has acted in regard to standards according to Standard Act, 2008 (Act No. 8 of 2008).
The following new standards relating to product testing are issued:
Standard No. and year
Title, scope and purport
SANS :2016/ IEC :2015
Rotating electrical machines – Part 27-3: Dielectric dissipation factor measurement on stator winding insulation of rotating electrical machines. Provides guidelines for the test procedures and the interpretation of test results for dielectric dissipation factor measurements on the stator winding insulation of rotating electrical machines.
SANS 6/ IEC 6
Shunt power capacitors of the non-self-healing type for a.c. systems having a rated voltage up to and including 1000 V – Part 1: General – Performance, testing and rating – Safety requirements – Guide for installation and operation. Applies to both capacitor units and capacitor banks intended to be used, particularly, for power-factor correction of a.c. power systems having a rated voltage up to and including 1 000 V and frequencies 15 Hz to 60 Hz.
SANS 6/ IEC 5
Secondary cells and batteries for renewable energy storage – General requirements and methods of test – Part 2: On-grid application. Relates to secondary batteries used in on-grid Electrical Energy Storage (EES) applications and provides the associated methods of test for the verification of their endurance, properties and electrical performance in such applications.
The following product standards are amended:
Standard No. and year
Title, scope and purport
SANS 105-E01:2016/ ISO 105-E01:2013 (E.d 3)
Textiles – Tests for colour fastness – Part E01: Colour fastness to water. Specifies a method for determining the resistance of the colour of textiles of all kinds and in all forms to immersion in water.
SANS 105-E02:2016/ ISO 105-E02:2013 (E.d 2)
Textiles – Tests for colour fastness – Part E02: Colour fastness to sea water. Specifies a method for determining the resistance of the colour of textiles of all kinds and in all forms to immersion in sea water.
SANS 105-E04:2016/ ISO 105-E04:2013 (E.d 3)
Textiles – Tests for colour fastness – Part E04: Colour fastness to perspiration. Specifies a method for determining the resistance of the colour of textiles of all kinds and in all forms to the action of human perspiration.
SANS / ISO
Textiles – Preparation, marking and measuring of fabric specimens and garments in tests for determination of dimensional change. Specifies a method for the preparation, marking and measuring of textile fabrics, garments and fabric assemblies for use in tests for assessing dimensional change after specified treatment, for example washing, dry cleaning, soaking in water and steaming. Applicable to woven and knitted fabrics and to made-up textile articles.
SANS / ISO
Textile floor coverings – Determination of electrical resistance. Describes a laboratory method for the determination of the electrical resistance of textile floor coverings. Includes both horizontal and vertical measurements.
SANS 6/ EN 3 (E.d 2)
Air conditioners, liquid chilling packages and heat pumps with electrically driven compressors for space heating and cooling – Part 3: Test methods. Specifies test methods for the rating and performance of air conditioners, liquid chilling packages and heat pumps using either air, water or brine as heat transfer media, with electrically driven compressors when used for space heating and cooling.
SANS 6/ IEC 6 (E.d 2)
Power transformers – Part 10: Determination of sound levels. Defines sound pressure and sound intensity measurement methods from which sound power levels of transformers, reactors and their associated cooling devices are determined.
SANS / IEC
Fluorescent induction lamps – Safety specifications. Consolidated edition incorporating IEC amendment No. 1. Amended to include requirements for photobiology safety and information on water contact.
China MEP Issues New Technical Standards for Environmental Labelling of Textile Products
On November 14, 2016, the Ministry of Environmental Protection of the People’s Republic of China (MEP) issued the newly approved standard, . The standard entered into force on January 1, 2017.
To fulfill the requirements of the Environmental Protection Law and reduce adverse effects on human health and the environment, the new standard sets forth the following requirements for textiles products with reference to certain standards including but not limited to GB 18401 and GB 31701:
Carcinogenic Dyes
Allergenic Disperse Dyes
Flame Retardants
Surfactants
Heavy Metals
Formaldehyde
Phthalates
Polycyclic Aromatic Hydrocarbons (PAH)
Perfluorinated Chemicals (PFC)
Dimethyl Fumarate (DMF)
Chlorinated Phenol
Chlorobenzene
The new standard replaces following standards:
HJ/T 307-2006 Technical Requirement for Environmental Labeling Products – Ecotypic Textiles
HJ/T 309-2006 Technical Requirement for Environmental Labeling Products – Woolens
HKSAR Proposes Adoption of Updated Safety Standards for Toys and Certain Children’s Products
On December 1, 2016, the Secretary for Commerce and Economic Development, Jacko Tsang,
listed in Schedule 2 under the Toys and Children’s Product Safety Ordinance (Cap. 424).
The proposed adoption of updated standards is summarized below:
Product Type
Current Standard
Updated Standard (Publication/Effective Date)
ISO 5 (October 2015)
BS EN 71-5:2013
BS EN 71-5:2015 (September 2015)
BS EN 71-13:2014 (April 2014)
BS EN +A11:2015
BS EN +A12:2015 (January 2015)
Bunk beds for domestic use
BS EN 747-1:2012
BS EN 747-1:5 (June 2015)
BS EN 747-2:2012
BS EN 747-2:5 (June 2015)
Child safety barriers for domestic use
ASTM F1004-13
ASTM F1004-16b (August 2016)
Children’s high chairs and multi-purpose high chairs for domestic use
ASTM F404-14a
ASTM F404-16a (March 2016)
ISO 5 (November 2015)
ISO 5 (November 2015)
Playpens for domestic use
ASTM F406-13
ASTM F406-15 (December 2015)
Wheeled child conveyances
ASTM F833-13b
ASTM F833-15 (December 2015)
This summary is not intended to be exhaustive nor should it be construed as legal advice.

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