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YY/T 0752-2016 PDF English (YY/T 0752-2009: Older version)


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YY/T 0752-2016: PDF in English (YYT 0752-2016)

YY/T 0752-2016 YY PHARMACEUTICAL INDUSTRY STANDARD OF THE PEOPLE’S REPUBLIC OF CHINA ICS 11.040.30 C 35 Replacing YY/T 0752-2009 Electrical surgical equipment for osseous tissue ISSUED ON: JANUARY 26, 2016 IMPLEMENTED ON: JANUARY 01, 2017 Issued by: China Food and Drug Administration Table of Contents Foreword ... 3  1 Scope ... 5  2 Normative references ... 5  3 Terms and definitions ... 5  4 Product classification ... 6  5 Technical requirements ... 7  6 Test methods ... 9  Electrical surgical equipment for osseous tissue 1 Scope This Standard specifies terms and definitions, product classification, technical requirements, test methods for electrical surgical equipment for osseous tissue. This Standard is applicable to electrical surgical equipment for osseous tissue powered by network power supply (hereinafter referred to as the equipment). This Standard is inapplicable to electrical surgical equipment for osseous tissue powered by internal power supply. This Standard is inapplicable to similar equipment for dentistry. 2 Normative references The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. GB 9706.1-2007, Medical electrical equipment - Part 1: General requirements for safety (IEC 60601-1:1988, IDT) GB/T 14710-2009, Environmental requirement and test methods for medical electrical equipment YY/T 0149-2006, Medical instruments of stainless steel - Test methods of corrosion resistance (ISO 13402:1995, MOD) YY 0505-2012, Medical electrical equipment - Part 1-2: General requirements for safety - Collateral standards: Electromagnetic compatibility - Requirements and tests (IEC 60601-1-2:2004, IDT) YY 1057-2016, General specifications for medical foot switch 3 Terms and definitions For the purposes of this document, the following terms and definitions apply. 3.1 electric surgical equipment for osseous tissue a medical instrument that is powered by the network power supply to provide mechanical power required for surgical tools to perform osseous tissue surgery 3.2 main frame a device that provides mechanical kinetic energy and/or electrical energy for handpiece in electric osseous tissue surgery equipment, and implements real- time monitoring of its output 3.3 flexible cable a component that realizes the transmission of mechanical kinetic energy between the main frame and the handpiece 3.4 cable a component that realizes the electrical connection between the main frame and the handpiece 3.5 handpiece a component that the handpiece is held by the operator and can drive the clamped surgical knife to achieve the purpose of surgery; the handpiece is divided into integrated type or split type; the split type is composed of the (power) handle that can provide power to the machine head, the machine head that clamps the tool, and (or) the speed change direction mechanism and other components 3.6 cutter an apparatus that is clamped on a handpiece to perform osseous tissue surgery 3.7 rotation speed/frequency of work within the maximum output speed/frequency range of the handpiece output specified by the manufacturer, the corresponding output speed/frequency under a specific workload 3.8 load of work the torque and/or force specified by the manufacturer that can sustain a certain operating speed/frequency 4 Product classification The classification according to the connection mode of the main frame and the handpiece is as follows: a) Clamp the test rod or cutter to the handpiece. Then fix the handpiece on the measurement platform. Test with 30N of axial tension acting on the test rod or cutter. The test rod or cutter shall not fall off; b) Clamp the test rod or cutter with the largest specification to the handpiece. Then fix the handpiece on the measurement platform. Gradually load the test rod or cutter to 1.5 times the rated load. There shall be no relative slippage or permanent deformation between the test rod or cutter and the chuck. 6.2.2 Perform the loading and unloading test of the test rod or cutter and the handpiece according to the instructions, which shall meet the requirements of 5.2.2. 6.2.3 Clamp the test rod or cutter to the handpiece. Then fix the handpiece on the test platform. Keep the test rod or cutter parallel to the test platform. a) When the set rotation speed is ≤3000r/min, the equipment runs at low speed and no load. After the speed is stable, use a dial indicator to measure. Record the radial runout of the test rod or tool 20mm from the output end of the handpiece. Measure 3 times. The arithmetic average value shall meet the requirements of 5.2.3. b) When the set rotation speed is >3000r/min, run at no-load within the recommended speed range. After the speed is stable, use a non-contact measuring instrument to measure. Record the radial runout of the test rod or cutter 20mm away from the output end of the handpiece. Measure 3 times. The arithmetic average value shall meet the requirements of 5.2.3. 6.2.4 Install a test rod or cutter on the handpiece output. Fix the handpiece on the test platform. Apply an axial push-pull force of 10N on the test rod or cutter. Use a dial indicator to measure the relative displacement between the test rod or cutter and the handpiece chuck, which shall meet the requirements of 5.2.4. 6.2.5 According to the manufacturer's instructions, load the largest specification test rod or cutter at the maximum speed and run the handpiece with no load. After 3min, measure the highest temperature that can touch the surface of the handpiece shell. The test is carried out at an ambient temperature of 20°C ± 2°C. 6.2.6 Use ample block comparison method or electrical measurement method for surface roughness. The electrical measurement method shall be used for measurement during arbitration and shall meet the requirements of 5.2.6. Conduct visual inspection with a magnifying glass or hand feel inspection, without sharp edges, burrs, sharp corners. 6.3 Flexible cable performance test 6.3.1 Measure the length of the flexible cable, which shall meet the requirements of 5.3.1. 6.3.2 Load and unload the flexible cable according to the method specified in the manual. Apply 30N of axial pulling force on the connecting end of the flexible cable and the main frame AND the connecting end of the flexible cable and the handpiece respectively, which shall meet the requirements of 5.3.2. 6.3.3 Test according to the following steps: a) After the flexible cable is connected to the main frame, the output end of the flexible cable is fixed on the test platform; b) Connect the output end of the flexible cable to the test device through the connector. The output speed/frequency of the equipment is set at the highest value and it is turned on and runs without load. Place the flexible cable under its natural curve during normal operation. Then adjust the distance between the test device and the main frame until the curvature radius of one of the bending parts of the flexible cable reaches the minimum radius specified by the standard; c) Gradually load until the device reaches the overload protection, it shall meet the requirements of 5.3.3. 6.4 Connecting cable test 6.4.1 Measure the cable length, which shall meet the requirements of 5.4.1. 6.4.2 Apply an axial pulling force of 20N on the cable connecting the cable to the main frame and the cable connecting to the handpiece, which shall meet the requirements of 5.4.2. 6.5 Foot controller test 6.5.1 Test according to the requirements specified in YY 1057-2016, which shall meet the requirements of 5.5.1. 6.5.2 Apply 20N of axial tension on the cable that connects the foot controller and the main frame, which shall meet the requirements of 5.5.2. 6.6 Environmental test Test according to the requirements of 5.6. The equipment can still work normally after the test. 6.7 Safety requirements Test according to the method specified in GB 9706.1-2007 and YY 0505-2012, ......
 
Source: Above contents are excerpted from the PDF -- translated/reviewed by: www.chinesestandard.net / Wayne Zheng et al.