CERTIFICATE No

Total Page:16

File Type:pdf, Size:1020Kb

CERTIFICATE No CERTIFICATE No. P20224288 Order No. 384757 Page 1 of 2 Product IC including capacitor discharge function (ICX) Applicant Power Integrations, Inc. 5245 Hellyer Avenue San Jose, CA 95138 USA Manufacturer Power Integrations, Inc. 5245 Hellyer Avenue San Jose, CA 95138 USA Factory (2) See page 2 Ratings 240V AC 50-60Hz nominal Trade mark CAPZero-3 Model / Type Ref. CAP300DG Principal characteristics A sample of the product was tested ITAV EN 62368-1:2014;A11 and found to be in conformity with Validity This certificate documents conformity with the standards shown, and also applies as license for use of Nemkos name and certification mark. The certificate and license is valid as long as the applicable conditions are complied with, and provided that any changes to the product are notified to Nemko for acceptance prior to implementation. New standards or amendments to the standards may imply that the product design must be updated and/or that re-testing and re-certification is necessary. Additional information Compliance with requirements regarding building-in, protection against electric shock and Electromagnetic Compatibility (EMC) must be checked when the equipment is built-in a completed product or forms a part of a complete system. Additional model(s) No additional models Date of issue 14-02-2020 Sweet Yuan Certification Department Nemko AS Philip Pedersens vei 11, 1366 Lysaker, Norway TEL +47 22 96 03 30 EMAIL [email protected] ENTERPRISE NUMBER NO974404532 nemko.com CERTIFICATE No. P20224288 Order No. 384757 Page 2 of 2 Factories Tianshui Huatian Technology Co., Ltd. Hefei Tongfu Microelectronics Co., Ltd. No. 88 Chiyu Road, Qinzhou District, Tianshui No.578, Weixing Road, Hefei Gansu 741001 Anhui Province 230601 China China Date of issue 14-02-2020 Sweet Yuan Certification Department Nemko AS Philip Pedersens vei 11, 1366 Lysaker, Norway TEL +47 22 96 03 30 EMAIL [email protected] ENTERPRISE NUMBER NO974404532 nemko.com.
Recommended publications
  • 2.20 Gansu Province
    2.20 Gansu Province Gansu Provincial Prison Enterprise Group, affiliated with Gansu Provincial Prison Administration Bureau,1 has 18 prison enterprises Legal representative of the prison company: Liu Yan, general manager of Gansu Prison Enterprise Group2 His official positions in the prison system: Deputy director of Gansu Provincial Prison Administration Bureau No. Company Name of the Legal Person Legal Registered Business Scope Company Notes on the Prison Name Prison, to which and representative/ Title Capital Address the Company Shareholder(s) Belongs 1 Gansu Gansu Provincial Gansu Liu Yan 803 million Wholesale and retail of machinery 222 Jingning The Gansu Provincial Prison Provincial Prison Provincial Deputy director of yuan and equipment (excluding sedans), Road, Administration Bureau is Gansu Province’s Prison Administration Prison Gansu Provincial building materials, chemical Chengguan functional department that manages the Enterprise Bureau Administration Prison products, agricultural and sideline District, prisons in the entire province. It is in charge Group Bureau Administration products (excluding grain Lanzhou City of the works of these prisons. It is at the Bureau; general wholesale); wholesale and retail of deputy department level, and is managed by manager of Gansu daily necessities the Justice Department of Gansu Province.4 Prison Enterprise Group3 2 Gansu Dingxi Prison of Gansu Qiao Zhanying 16 million Manufacturing and sale of high-rise 1 Jiaoyu Dingxi Prison of Gansu Province6 was Dingqi Gansu Province Provincial Member of the yuan and long-span buildings, bridges, Avenue, established in May 1952. Its original name Steel Prison Communist Party marine engineering steel structures, An’ding was the Gansu Provincial Fourth Labor Structure Enterprise Committee and large boiler steel frames, District, Dingxi Reform Detachment.
    [Show full text]
  • Mammalia: Bovidae) from the Late Miocene Qingyang Area, Gansu, China
    Palaeontologia Electronica palaeo-electronica.org “Gazella” (Mammalia: Bovidae) from the late Miocene Qingyang area, Gansu, China Yikun Li, Qinqin Shi, Shaokun Chen, and Tao Deng ABSTRACT The rich collection from the late Miocene sediments from the Qingyang area, Gansu, China was discovered by E. Licent in the 1920s, and previous studies focused on the equids and hyaenids whereas little attention was given to the accompanying bovid material. The collection of Bovidae dug up from the Qingyang area and pre- served at Musée Hoangho Paiho, Tianjin, China, is dominated by “Gazella”. We describe and identify two species: “Gazella” paotehensis and “G.” dorcadoides. The nomenclatural issues surrounding those two species of gazelles are reviewed in this paper, and although the questionable mandible illustrated by Teilhard de Chardin and Young in 1931 may be excluded from “G.” paotehensis metrically and morphologically, the species is still considered valid. The subcomplete cranium M 3956, kept at Uppsala Universitet Evolutionsmuseet and studied by B. Bohlin, is selected here as the neotype of “G.” paotehensis, and emended diagnoses are given. Based on previous studies and insights from new material from the Qingyang area, we provide a table summarizing diagnostic morphological characters of “G.” paotehensis and “G.” dorcadoides. Yikun Li. Key Laboratory of Vertebrate Evolution and Human Origins of Chinese Academy of Sciences, Institute of Vertebrate Paleontology and Paleoanthropology, Chinese Academy of Sciences, Beijing 100044, China; University of Chinese Academy of Sciences, Beijing 100049, China; Museum für Naturkunde, Leibniz Institute for Evolution and Biodiversity Science, Berlin 10115, Germany. [email protected] Qinqin Shi. Key Laboratory of Vertebrate Evolution and Human Origins of Chinese Academy of Sciences, Institute of Vertebrate Paleontology and Paleoanthropology, Chinese Academy of Sciences, Beijing 100044, China.
    [Show full text]
  • Issues and Potential Solutions to the Clean Heating Project in Rural Gansu
    sustainability Article Issues and Potential Solutions to the Clean Heating Project in Rural Gansu Dehu Qv 1,* , Xiangjie Duan 1, Jijin Wang 2, Caiqin Hou 1, Gang Wang 1, Fengxi Zhou 1,* and Shaoyong Li 1,* 1 Department of Building Environment and Energy Application Engineering, School of Civil Engineering, Lanzhou University of Technology, Lanzhou 730050, China; [email protected] (X.D.); [email protected] (C.H.); [email protected] (G.W.) 2 School of Architecture, Harbin Institute of Technology, Key Laboratory of Cold Region Urban and Rural Human Settlement Environment Science and Technology, Ministry of Industry and Information Technology, Harbin 150090, China; [email protected] * Correspondence: [email protected] (D.Q.); [email protected] (F.Z.); [email protected] (S.L.); Tel.: +86-931-2973715 (D.Q.) Abstract: Rural clean heating project (RCHP) in China aims to increase flexibility in the rural energy system, enhance the integration of renewable energy and distributed generation, and reduce environmental impact. While RCHP-enabling routes have been studied from a technical perspective, the economic, ecological, regulatory, and policy dimensions of RCHP are yet to be analysed in depth, especially in the underdeveloped areas in China. This paper discusses RCHP in rural Gansu using a multi-dimensional approach. We first focus on the current issues and challenges of RCHP in rural Gansu. Then the RCHP-enabling areas are briefly zoned into six typical regions based on the resource distribution in Gansu Province, and a matching framework of RCHP is recommended. Then we focus on the economics and sustainability of RCHP-enabling technologies. Based on the medium-term assessment of RCHP in the demonstration provinces, various technical schemes and routes are analysed and compared in order to determine which should be adopted in rural Gansu.
    [Show full text]
  • Gansu Airport Group Co., Ltd. Main Contractor Local Company Main Consultant -
    Ex-Post Monitoring of Completed ODA Loan Project The People’s Republic of China Lanzhou Zhongchuan Airport Expansion Project External Evaluators: Tomoko Matsushita and Masahiro Yoshizawa, INGEROSEC Corporation 1. Project Description Kazakhstan Mongolia Gansu Province Beijing City Project Site The People's Republic of China Nepal Bhutan India Myanmar Project Location Map Terminal building of Lanzhou Zhongchuan Airport 1.1 Project Objective The project’s objective was to newly construct a runway except for the existing runway and a passenger terminal building in the former runway area of Lanzhou Zhongchuan Airport situated 70km northwest of the urban district of Lanzhou, Gansu Province in order to cope with the predicted increase in the demand for air transport, thereby contributing to activating economic activities in the northwestern region. At the same time, the project aims to grade up the aforesaid airport serve as an emergency or alternative airport, thereby contributing to the improvement of aviation safety in the northwestern region. 1.2 Outline of the Loan Agreement Approved Amount / Disbursed Amount 6,338 million yen / 6,299 million yen Loan Agreement Signing Date / December, 1996 / June, 2002 Final Disbursement Date Ex-post Evaluation 2004 Executing Agency Gansu Airport Group Co., Ltd. Main Contractor Local company Main Consultant - 1.3 Background of Ex-post Monitoring Gansu Province, which located in Northeastern China near Xinjiang Uygur Autonomous 4-1 Region and Central Asia, plays an important role in terms of politics and economics. Since the surrounding areas including the Tarim Basin are abundant in oil reserves, transportation of materials in the province was expected to increase when the development of oil fields started on a large scale.
    [Show full text]
  • Linxia, People’S Republic of China
    Applicant UNESCO Global Geopark Linxia, People’s Republic of China Geographical and geological summary 1. Physical and human geography Linxia Geopark is situated in Linxia Hui Autonomous Prefecture, Gansu Province, People's Republic of China. The geographical coordinates are 103°02′19.08′′-103°38′21.06′′E; 35°14′37.43′′-36°09′10.87′′N, with a total area of 2120 km2. Linxia Geopark stretches across two natural regions, that is, the arid area of the Loess Plateau in Northwest China and the alpine humid area of the Qinghai-Tibet Plateau. The Geopark, high in the southwest and low in the northeast, is in the shape of a sloping basin with an average elevation of 2000m. The Geopark is in a temperate continental climate zone with annual average temperature of 5.0- 9.4°C. The annual precipitation is 260-660mm, and the rainfall is mostly concentrated between June and September. The Geopark is located in the upper reaches of the Yellow River basin and has abundant surface water. Most parts are covered with aeolian loess parent material. The distribution of natural vegetation varies widely with very prominent zonality. The Geopark involves six counties (cities) including Yongjing County, Hezheng County, Dongxiang County, Linxia City, Guanghe County, and Linxia County in Linxia Hui Autonomous Prefecture, and 66 townships. The Geopark has a population of 1.166 million, with 31 nations including Hui, Han, Dongxiang, Baoan, Salar, and so on. In the north of the Geopark, Yongjing County is 74km away from the provincial capital Lanzhou, and in the south, Hezheng is 116km away from Lanzhou.
    [Show full text]
  • The Sustainable Development Research of Lanzhou Living Environment Hongfei Li
    5th International Conference on Civil Engineering and Transportation (ICCET 2015) The Sustainable Development Research of Lanzhou Living Environment Hongfei Li School of Design and Art, Lanzhou University of Technology, Lanzhou, 730050, China [email protected] Keywords: Living Environment; Sustainable Development ;Lanzhou Abstract. The living environment is the base of the survival and development of human, its sustainable development is directly related to the extent of human life and it is one of most important content that measure the progress of human society and culture development. With the rapid development of economy and people's life quality improved steadily, more and more people pay attention to the seriousness of the living environment. Based on the research of the sustainable development of the city living environment, combined with the present situation of Lanzhou city residential environment, offer the countermeasures and suggestions which can promote the sustainable development of human settlements in Lanzhou City, and from the point of view that city environment and future sustainable development , and adhere to the "people-oriented" principle, to provide a reference to the relevant departments of the government. Background People's living standard have significantly improved by the rapid development of the economy of China. People paying attention to the issues of living environment and sustainable development when they pursuit of quality of life in the process of continuous improvement. The pursuit of high quality of life makes people want to enjoy a quality living environment. The problem of survival environment of city become the study that majority of scholars pay close attention to and further research very naturally because of large people living there.
    [Show full text]
  • Evaluation of Green Development Efficiency of the Major Cities In
    sustainability Article Evaluation of Green Development Efficiency of the Major Cities in Gansu Province, China Rongrong Liu 1,* , Dong Chen 2, Suchang Yang 1 and Yang Chen 3 1 School of Economics, Lanzhou University, Lanzhou 730000, China; [email protected] 2 Economic Management College of Agriculture and Forestry, Lanzhou University of Finance and Economics, Lanzhou 730101, China; [email protected] 3 School of Earth and Environmental Sciences, Lanzhou University, Lanzhou 730000, China; [email protected] * Correspondence: [email protected] Abstract: Green development (GD) has become a new model of sustainable development across the world. However, our knowledge of green development efficiency (GDE) in Gansu province is poor. In remedy, this study, based on the panel data of 12 major cities in Gansu from 2010 to 2017, employed the super-efficient Slack-based measure (SBM) to analyze and evaluate GDE from the input–output perspective. Furthermore, we analyzed the input redundancy and output deficiency of identified inefficient cities in 2017 and conducted spatial autocorrelation analysis of GDE of the cities under study. Results show differences in the GDE of the major cities in Gansu, with an average value of 0.985. Green development efficiency in Lanzhou, Qingyang, Jinchang, Jiuquan, and Tianshui was relatively higher than in other cities. Green development efficiency in Zhangye, Wuwei, Jiayuguan, Baiyin, Dingxi, Longnan, and Longnan was less than one due to their redundant labor and capital input and excessive pollutant emission output. The overall GDE in Gansu depicts “high east and low west” zones. Each city in Gansu needs to formulate targeted policies and regulations to improve Citation: Liu, R.; Chen, D.; Yang, S.; resource utilization, innovation capacity, reduce pollutant emission, optimize the industrial structure, Chen, Y.
    [Show full text]
  • This Article Appeared in a Journal Published by Elsevier. the Attached
    This article appeared in a journal published by Elsevier. The attached copy is furnished to the author for internal non-commercial research and education use, including for instruction at the authors institution and sharing with colleagues. Other uses, including reproduction and distribution, or selling or licensing copies, or posting to personal, institutional or third party websites are prohibited. In most cases authors are permitted to post their version of the article (e.g. in Word or Tex form) to their personal website or institutional repository. Authors requiring further information regarding Elsevier’s archiving and manuscript policies are encouraged to visit: http://www.elsevier.com/copyright Author's personal copy Resources, Conservation and Recycling 54 (2010) 1296–1302 Contents lists available at ScienceDirect Resources, Conservation and Recycling journal homepage: www.elsevier.com/locate/resconrec Survey of officials’ awareness on circular economy development in China: Based on municipal and county level Bing Xue a,b,1,2, Xing-peng Chen b,∗,2, Yong Geng a,1, Xiao-jia Guo b,2, Cheng-peng Lu b,2, Zi-long Zhang b,d,2, Chen-yu Lu c,b,2,3 a Circular Economy and Industrial Ecology Group, Institute of Applied Ecology, Chinese Academy of Sciences, No. 72, Wenhua Road, Shenhe District, 110016 Shenyang, China b Institute of Human Geography, College of Earth and Environmental Sciences, Lanzhou University, No. 222, South Tianshui Road, Chenguan District, 730000 Lanzhou, China c College of Geography and Environment Science, Northwest Normal University, No. 967, Anning East Road, Anning District, 730070 Lanzhou, China d Gund Institute for Ecological Economics, The University of Vermont, 617 Main Street, Burlington, VT 05405, USA article info abstract Article history: With rapid industrialization in China, both resource scarcity and resources efficiency have challenged the Received 23 December 2009 country’s sustainable development.
    [Show full text]
  • Lanzhou-Chongqing Railway Development – Social Action Plan Monitoring Report No
    Social Monitoring Report Project Number: 35354 April 2010 PRC: Lanzhou-Chongqing Railway Development – Social Action Plan Monitoring Report No. 1 Prepared by: CIECC Overseas Consulting Co., Ltd Beijing, PRC For: Ministry of Railways This report has been submitted to ADB by the Ministry of Railways and is made publicly available in accordance with ADB’s public communications policy (2005). It does not necessarily reflect the views of ADB. ADB LOAN Social External Monitoring Report –No.1 The People’s Republic of China ADB Loan LANZHOU –CHONGQING RAILWAY PROJECT EXTERNAL MONITORING & EVALUATION OF SOCIAL DEVELOPMENT ACTION PLAN Report No.1 Prepared by CIECC OVERSEAS CONSULTING CO.,LTD April 2010 Beijing 1 CIECC OVERSEAS CONSULTING CO.,LTD TABLE OF CONTENTS 1. MONITORING AND EVALUATING OUTLINE……………………….………………………3 1.1 THE PROJECT PROMOTED SOCIAL DEVDLOPMENT ALONG THE RAILWAY OBVIOUSLY…………………………………………………..………….…3 1.2 THE PROJECT PROMOTED THE POOR PEOPLE’S INCOME AND REDUCED POVERTY……………………………………………………………...………………….5 2. PROJECT CONSTRUCTION AND SOCIAL DEVELOPMENT..……………………….6 2.1 MACRO-BENEFIT OF THE PROJECT………………...…………………………….7 2.2 THE EXTENT OF LAND ACQUISITION AND RESETTLEMENT OF PROJECT AND RESETTLEMENT RESULTS…………………………………………………....8 2.3 INFLUENCE AND PROMOTION OF PROJECT CONSTRUCTION AND LOCAL ECONOMICDEVELOPMENT………………………………………………………10 2.4 JOB OPPORTUNITY FROM THE PROJECT…………………………………… 14 2.5 PURCHASING LOCAL BUILDING MATERIALS……………………………… 16 2.6 “GREEN LONG PASSAGE” PROJECT IN PROCESS..………………………… 16 3. SAFETY MANAGEMENT IN CONSTRUCTION
    [Show full text]
  • 43025-013: Gansu Tianshui Urban Infrastructure Development Project
    Environmental Monitoring Report Project Number: 43025-013 July 2018 PRC: Gansu Tianshui Urban Infrastructure Development Project Prepared by Tianshui Project Management Office for Tianshui Municipal Government, Tianshui Environment Protection Bureau, and the Asian Development Bank. This environmental monitoring report is a document of the borrower. The views expressed herein do not necessarily represent those of ADB's Board of Directors, Management, or staff, and may be preliminary in nature. In preparing any country program or strategy, financing any project, or by making any designation of or reference to a particular territory or geographic area in this document, the Asian Development Bank does not intend to make any judgments as to the legal or other status of any territory or area. # 10 Semi-annual Report July 2018 (through January to June 2018) People’s Republic of China: Gansu Tianshui Urban Infrastructure Development Project Prepared by Tianshui Project Management Office(Tianshui Urban Construction and Investment Co.) for the Tianshui Municipal Government, Tianshui Environment Protection Bureau, and the Asian Development Bank. This environmental monitoring report is a document of the borrower. The views expressed herein do not necessarily represent those of ADB's Board of Directors, Management, or staff, and may be preliminary in nature. In preparing any country program or strategy, financing any project, or by making any designation of or reference to a particular territory or geographic area in this document, the Asian Development
    [Show full text]
  • Gansu Internet-Plus Agriculture Development Project
    Gansu Internet-Plus Agriculture Development Project (RRP PRC 50393) Project Administration Manual Project Number: 50393-002 Loan Number: LXXXX September 2019 People’s Republic of China: Gansu Internet-Plus Agriculture Development Project ii ABBREVIATIONS ADB – Asian Development Bank COL – collective-owned land CNY – Chinese Yuan EMP – environmental management plan FSR – feasibility study report FY – Fiscal year GAP – gender action plan GPG – Gansu Provincial Government GRM – grievance redress mechanism GSSMCU – Gansu Supply and Marketing Cooperatives Union ICT – information and communication technology IEE – Initial Environmental Examination IOT – internet-of-things LIBOR – London interbank offered rate LURT – land use rights transfer mu – Chinese unit of measurement (1 mu = 666.67 square meters or 0.067 hectares) OCB – open competitive bidding PFD – Provincial Finance Department PIU – project implementation unit PMO – project management office PPE – participating private enterprise PPMS – project performance management system PRC – People’s Republic of China SDAP – social development action plan SOE – state-owned enterprise SOL – state-owned land TA – Technical assistance iii CONTENTS I. PROJECT DESCRIPTION 1 A. Rationale 1 B. Impact and Outcome 3 C. Outputs 3 II. IMPLEMENTATION PLANS 9 A. Project Readiness Activities 9 B. Overall Project Implementation Plan 10 III. PROJECT MANAGEMENT ARRANGEMENTS 12 A. Project Implementation Organizations: Roles and Responsibilities 12 B. Key Persons Involved in Implementation 14 C. Project Organization Structure 16 IV. COSTS AND FINANCING 17 A. Cost Estimates Preparation and Revisions 17 B. Key Assumptions 17 C. Detailed Cost Estimates by Expenditure Category 18 D. Allocation and Withdrawal of Loan Proceeds 20 E. Detailed Cost Estimates by Financier 21 F. Detailed Cost Estimates by Outputs and/or Components 23 G.
    [Show full text]
  • Pdf | 615.25 Kb
    Emergency Plan of Action Final Report China: Floods DREF operation Operation n° MDRCN006 Date of Issue: 15 February 2019 Glide number: TC-2018-000110-CHN Date of disaster: 7 July 2018 Operation start date: 15 July 2018 Operation end date: 15 November 2018 Host National Society: Red Cross Society of China (RCSC) Operation budget: CHF 381,563 Number of people affected: 1,381,000 Number of people assisted: 27,800 persons 1 N° of National Societies involved in the operation: International Federation of Red Cross and Red Crescent Societies (IFRC) N° of other partner organizations involved in the operation: National Disaster Reduction Commission, Ministry of Emergency Management of People Republic of China A. SITUATION ANALYSIS Description of the disaster Heavy and continuous rainfall on 7 July 2018 caused flooding in most parts of Sichuan and the southeast region of Gansu Province. In some areas of North Central Sichuan, there were heavy rainstorms and torrential rains for four consecutive days. These were also compounded by the effects of two weather systems in the area; Typhoon Prapiroon, and Typhoon Maria. According to reports from National Disaster Reduction Commission, as of 13 July 2018, the floods affected 1,381,000 people, where 3 persons died; 222,000 had taken emergency resettlement; 22,000 needed emergency relief in Sichuan prefectures of Deyang, Mianyang, Guangyuan (that includes 15 cities and 70 counties); more than 900 houses collapsed, and 29,000 houses damaged. A total of 36,900 hectares of crops were also affected by the flood. The direct economic loss was estimated to be over 5.3 billion Yuan (approximately CHF 792 million).
    [Show full text]