E/ECE/324/Add.2/Rev.4 E/ECE/TRANS/505/Add.2/Re
|
|
|
- Earl Horace Ferguson
- 9 years ago
- Views:
Transcription
1 E/ECE/TRANS/505/Add.2/Re First draft for Regulation 3 to demonstrate the application of the HRD 17. October 2014 Regulation No. 3 Contents Uniform provisions concerning the approval of retroreflecting devices for power-driven vehicles and their trailers Regulation Page 1. Scope Definitions Application for approval Markings Approval General specifications Special specifications (tests) Conformity of production Penalties for non-conformity of production Production definitively discontinued Names and addresses of Technical Services responsible for conducting approval tests, and of Type Approval Authorities Transitional provisions... 5 Annees 1 Retro-reflecting devices Communication Eamples of approval marks Test procedure - Class IA and Class IIIA Specifications of shape and dimensions... 12
2 Appendi - Retro-reflectors for trailers - Classes IIIA and IIIB Colorimetric specifications Photometric specifications Resistance to eternal agents Stability in time of the optical properties of retro-reflecting devices Resistance to heat Colour-fastness Chronological order of tests Resistance to impact - Class IVA Test procedure - Class IVA Chronological order of tests for Class IVA Test procedure for Classes IB and IIIB devices Minimum requirements for conformity of production control procedures Minimum requirements for sampling by an inspector... 30
3 1. Scope This Regulation applies to retro-reflecting devices 1 for vehicles of categories L, M, N, O, and T Definitions 3 For the purpose of this Regulation: The definitions including the definition of type etc. given in the Horizontal Reference Document (HRD) shall apply to this Regulation; 3. Application for approval 3.1. The applicant shall follow instructions stated in paragraph 3. of the HRD The drawings required by paragraph 3. of the HRD shall also identify the illuminating surface of the device. 4. Markings 4.1. The applicant shall follow instructions stated in paragraph 4. of the HRD In addition to paragraph 4.1. above, the word "TOP" inscribed horizontally on the highest part of the illuminating surface, if such an indication is necessary to determine without ambiguity the angle or angles of rotation prescribed by the manufacturer. 5. Approval 5.1. General The applicant shall follow instructions stated in paragraph 5. of the HRD In addition, if the approval granted in respect of a retro-reflecting device is etended to other such devices differing only in colour, the two samples in any other colour submitted in conformity with paragraph of this Regulation 1 Also called "retro-reflector(s)". 2 As defined in Anne 7 to the Consolidated Resolution on the Construction of Vehicles (R.E.3), (document TRANS/WP.29/78/Rev.2, para.2. 3 The definitions of the technical terms (ecluding the ones in Regulation No. 48) are those adopted by the International Commission on Illumination (CIE).
4 shall be required to meet only the colorimetric specifications, the other tests no longer being required. This paragraph is not applicable to devices of Class IVA Composition of the approval mark The applicant shall follow instructions stated in paragraph 5.. of the HRD The approval mark has also to include following additional group of symbols IA, IB, IIIA, IIIB or IVA showing the class of the approved retro-reflecting device Arrangement of the approval mark Follow the corresponding instructions in paragraph 5.3. and Anne 1 of the HRD. Anne 3, to this Regulation and in addition Anne 1 of the HRD gives eamples specific to this regulation of arrangements of approval marks for grouped, combined or reciprocally incorporated lamps with all the above-mentioned additional symbols. 6. General specifications 6.1. Follow instructions in paragraph 6.and 9 of the HRD and in addition: Retro-reflecting optical units may not be replaceable For devices of Class IVA their means of fiation shall be such that they allow a stable and durable connection between the device and the vehicle. 7. Special specifications (tests) 7.1. Retro-reflecting devices must also satisfy the conditions as to dimensions and shape, and the colorimetric, photometric, physical and mechanical requirements set forth in Annees 5 to 11 and 13 to this Regulation. The test procedures are described in Anne 4 (Classes IA, IIIA), Anne 14 (Class IVA) and Anne 16 (Classes IB, IIIB) Depending on the nature of the materials of which the retro-reflecting devices and, in particular, their optical units, are made, the competent authorities may authorize laboratories to omit certain unnecessary tests, subject to the epress reservation that such omission must be mentioned under "Remarks" on the form notifying approval. 8. Conformity of production Devices approved in accordance with this Regulation and the referred HDR shall be so manufactured as to conform to the type approved and to meet the requirements set forth by this Regulation and the Horizontal Reference Document as described in paragraph 11 of the HRD.
5 9. Penalties for non-conformity of production See paragraph 12. of the HDR. 10. Production definitively discontinued. See paragraph 13. of the HDR. 11. Names and addresses of Technical Services responsible for conducting approval tests, and of Type Approval Authorities See paragraph 14. of the HDR. 12. Transitional provisions The Contracting Parties applying this Regulation: Shall continue to recognize approvals issued for the former Classes I, II and III in respect of the fitting of retro-reflecting devices intended as replacement for vehicles in use; May issue approvals for Classes I and II on the basis of the original version of this Regulation (document E/ECE/324-E/ECE/TRANS/505/Add.2 of 23 September 1964) provided that the devices are intended as replacements for fitting to vehicles in use and that it would not be technically feasible for the devices in question to satisfy the photometric requirements for Class IA; May prohibit the fitting of retro-reflecting devices which do not meet the requirements of this Regulation: On vehicles for which type approval or individual approval was issued on or after 20 March On vehicles first brought into use on or after 20 March 1985.
6 Anne 1 Anne 1 Retro-reflecting devices Symbols and units are described in Anne 7 to the Horizontal Reference Document. 6
7 Anne 2 Anne 2 Communication (Maimum format: A4 ( mm)) issued by : Name of administration: concerning: 2 Approval granted Approval etended Approval refused Approval withdrawn Production definitively discontinued of a type of retro-reflecting device pursuant to Regulation No. 3. Approval No... Etension No.. 1. Trade name or mark of the device: Manufacturer's name for the type of device: Manufacturer's name and address: If applicable, name and address of the manufacturer's representative: Submitted for approval on: Technical Service responsible for conducting approval tests: Date of test report: Number of test report: Concise description: In isolation/part of an assembly of devices: 2... Colour of light emitted: white/red/amber: 2... Installation as an integral part of a lamp which is integrated into the body of a vehicle: yes/no 2 Geometric conditions of installation and relating variations, if any:... 1 Distinguishing number of the country which has granted/etended/ refused/withdrawn approval (see approval provisions in the Regulation). 2 Strike out what does not apply.
8 Anne Position of the approval mark: Reason(s) for etension (if applicable): Approval granted/refused/etended/withdrawn: Place: Date: Signature: The following documents, bearing the approval number shown above, are available on request:
9 Anne 3 Anne 3 Eamples of approval marks Figure 1 Marking for single lamps a = 4 mm min. a = 4 mm min
10 Anne 3 Note: The above approval number must be placed close to, but in any position in relation to, the circle surrounding the letter "E". The digits constituting the approval number must face the same way as the "E". The group of symbols indicating the class must be diametrically opposite the approval number. The Type Approval Authorities shall avoid using approval numbers IA, IB, IIIA, IIIB and IVA which might be confused with the class symbols IA, IB, IIIA, IIIB and IVA. These sketches show various possible arrangements and are given as eamples only. The above approval mark affied to a retro-reflecting device shows that the type of device concerned has been approved in the Netherlands (E 4) under approval number The approval number shows that approval was granted in accordance with the requirements of the Regulation as modified by the 02 series of amendments. 10
11 Anne 4 Anne 4 Test procedure - Class IA and Class IIIA 1. The applicant shall submit for approval ten samples which shall be tested in the chronological order indicated in Anne After verification of the general specifications (paragraph 6. of the Regulation) and the specifications of shape and dimensions (Anne 5), the ten samples shall be subjected to the heat resistance test described in Anne 10 and at least one hour after this test eamined as to their colorimetric characteristics and CIL (Anne 7) for an angle of divergence of 20' and an illumination angle V = H = 0 or if necessary, in the position defined in Anne 7, paragraphs 4. and 4.1. The two retro-reflecting devices giving the minimum and maimum values shall then be fully tested as shown in Anne 7. These two samples shall be kept by the laboratories for any further checks which may be found necessary. The other eight samples shall be divided into four groups of two: First group: The two samples shall be subjected successively to the water penetration test (Anne 8, paragraph 1.1.) and then, if this test is satisfactory, to the tests for resistance to fuels and lubricants (Anne 8, paragraphs 3. and 4.). Second group: The two samples shall, if necessary, be subjected to the corrosion test (Anne 8, paragraph 2.), and then to the abrasive-strength test of the rear face of the retroreflecting device (Anne 8, paragraph 5.). Third group: The two samples shall be subjected to the test for stability in time of the optical properties of retroreflecting device (Anne 9). Fourth group: The two samples shall be subjected to the colourfastness test (Anne 11). 3. After undergoing the tests referred to in the above paragraph, the retroreflecting devices in each group must have: 3.1. A colour which satisfies the conditions laid down in Anne 6. This shall be verified by a qualitative method and, in case of doubt, confirmed by a quantitative method A CIL which satisfies the conditions laid down in Anne 7. The verification shall be performed only for an angle of divergence of 20' and an illumination angle of V = H = 0 or, if necessary, in the position specified in Anne 7, paragraphs 4. and 4.1.
12 Anne 5 Anne 5 Specifications of shape and dimensions 1. Shape and dimensions of retro-reflecting devices in Class IA or IB 1.1. The shape of the illuminating surfaces shall not be easily confused with a triangle at normal observation distances. 2. Shape and dimensions of retro-reflecting devices in Classes IIIA and IIIB (see appendi to this anne) 2.1. The illuminating surfaces of retro-reflecting devices in Classes IIIA and IIIB must have the shape or an equilateral triangle. If the word "TOP" is inscribed in one corner, the ape of that corner must be directed upwards The illuminating surface may or may not have at its centre a triangular, nonretro-reflecting area, with sides parallel to those of the outer triangle The illuminating surface may or may not be continuous. In any case, the shortest distance between two adjacent retro-reflecting optical units must not eceed 15 mm The illuminating surface of a retro-reflecting device shall be considered to be continuous if the edges of the illuminating surfaces of adjacent separate optical units are parallel and if the said optical units are evenly distributed over the whole solid surface of the triangle If the illuminated surface is not continuous, the number of separate retroreflecting optical units including the corner units shall not be less than four on each side of the triangle The separate retro-reflecting optical units shall not be replaceable unless they consist of approved retro-reflecting devices in Class IA The outside edges of the illuminating surfaces of triangular retro-reflecting devices in Classes IIIA and IIIB shall be between 150 and 200 mm long. In the case of devices of hollow-triangle type, the width of the sides, measured at right angles to the latter, shall be equal to at least 20 per cent of the effective length between the etremities of the illuminating surface. 3. Shape and dimensions of retro-reflecting devices in Class IVA 3.1. The shape of the illuminating surfaces shall not be easily confused with a triangle at normal observation distances The light emitting surface of the retro-reflecting device must be at least 25 cm Compliance with the above specifications shall be verified by visual inspection. 12
13 Anne 5 - Appendi Anne 5 - Appendi Retro-reflectors for trailers - Classes IIIA and IIIB Note: These sketches are for illustration purposes only.
14 Anne 6 Anne 6 Colorimetric specifications 1. These specifications shall apply only to clear, red or amber retro-reflecting devices Retro-reflecting devices may consist of a combined retro-reflecting optical unit and filter, which must be so designed that they cannot be separated under normal conditions of use The colouring of retro-reflecting optical units and filters by means of paint or varnish is not permitted. 2. When the retro-reflecting device is illuminated by CIE standard illuminant A, with an angle of divergence of 1/3 degrees and an illumination angle of V = H = 0 degree, or, if this produces a colourless surface reflection, an angle V = +/- 5 degrees, H = 0 degree, the trichromatic coordinates of the reflected luminous flu must be within the limits according to relevant subparagraph 2 of Anne 4 of the HRD. 3. Clear retro-reflecting devices must not produce a selective reflection, that is to say, the trichromatic coordinates "" and "y" of the standard illuminant "A" used to illuminate the retro-reflecting device must not undergo a change of more than 0.01 after reflection by the retro-reflecting device. 14
15 Anne 7 Anne 7 Photometric specifications 1. When applying for approval, the applicant shall specify one or more or a range of ais of reference, corresponding to the illumination angle V = H = 0 in the table of coefficients of luminous intensity (CIL). In the case where more than one or a range of different ais of reference are specified by the manufacturer, the photometric measurements shall be repeated making reference each time to a different ais of reference or to the etreme ais of reference of the range specified by the manufacturer. 2. For photometric measurements, only the illuminating surface defined by the planes contiguous to the outermost parts of the optical system of the retroreflecting device as indicated by the manufacturer and contained within a circle of 200 mm diameter for Class IA or IB shall be considered, and the illuminating surface itself shall be limited to 100 cm 2 though the surfaces of the retro-reflecting optical units need not necessarily attain this area. The manufacturer shall specify the perimeter of the area to be used. In the case of Class IIIA, Class IIIB and Class IVA, the whole of the illuminating surfaces shall be considered without limitation as to size. 3. CIL values 3.1. Class IA, Class IB, Class IIIA and Class IIIB The CIL values for red retro-reflecting devices must be at least equal to those in the table below, epressed in millicandelas per lu, for the angles of divergence and illumination shown. Class Angle of divergence α Illumination angles (in degrees) Vertical V Horizontal H 0 0 ±10 0 ±5 ±20 IA, IB 20' 1 30' IIIA, IIIB 20' 1 30' CIL values lower than those shown in the last two columns of the above table are not permissible within the solid angle having the reference centre as its ape and bounded by the planes intersecting along the following lines: (V = ±10, H = 0 ) (V = ±5, H = ±20 ) CIL values for amber retro-reflecting devices in Class IA or IB must be at least equal to those in the table of paragraph above multiplied by the coefficient CIL values for colourless retro-reflecting devices in Class IA or IB must be at least equal to those in the table of paragraph above multiplied by the coefficient 4.
16 Anne However, in the case where a retro-reflecting device of Class IA, Class IB, Class IIIA or Class IIIB is intended to be installed with its H plane at a mounting height less than 750 mm above the ground, the CIL values are verified only up to an angle of 5 downwards For devices of Class IVA the CIL values must be at least equal to those in the table below, epressed in millicandelas per lu, for the angles of divergence and illumination shown. Colour Angle of divergence α Illumination angles (in degrees) Vertical V Horizontal H 0 0 ± ±20 0 ±30 0 ±40 0 ±50 White 20' 1 30' Amber 20' 1 30' Red 20' 1 30' 1, , , However, in the case where a retro-reflecting device of Class IVA is intended to be installed with its H plane at a mounting height less than 750 mm above the ground, the CIL values are verified only up to an angle of 5 downwards. 4. When the CIL of a retro-reflecting device is measured for an angle β of V = H = 0, it shall be ascertained whether any mirror effect is produced by slightly turning the device. If there is any such effect, a reading shall be taken with an angle β of V = ±5, H = 0. The position adopted shall be that corresponding to the minimum CIL for one of these positions With an illumination angle β of V = H = 0, or the angle specified in paragraph 4. above, and an angle of divergence of 20', retro-reflecting devices which are not marked "TOP" shall be rotated about their aes of reference to the position of minimum CIL, which must conform to the value specified in paragraph 3. above. When the CIL is measured for the other angles of illumination and divergence, the retro-reflecting device shall be placed in the position corresponding to this value of ε. If the specified values are not attained, the device may be rotated about its ais of reference ±5 from that position With an illumination angle β of V = H = 0, or the angle specified in paragraph 4. above, and an angle of divergence of 20', retro-reflecting devices marked "TOP" shall be rotated about their aes ±5. The CIL must not fall below the prescribed value in any position assumed by the device during this rotation If for the direction V = H = 0, and for ε = 0 the CIL eceeds the specified value by 50 per cent or more, all measurements for all angles of illumination and divergence shall be made for ε = 0. 16
17 Anne 8 Anne 8 Resistance to eternal agents 1. Resistance to water and dirt penetration 1.1. Water submersion test Retro-reflecting devices whether part of a lamp or not, shall be stripped of all removable parts and immersed for 10 minutes in water at a temperature of 50 ± 5 C, the highest point of the upper part of the illuminating surface being 20 mm below the surface of the water. This test shall be repeated after turning the retro-reflecting device through 180, so that the illuminating surface is at the bottom and the rear face is covered by about 20 mm of water. These optical units shall then be immediately immersed in the same conditions in water at a temperature of 25 ± 5 C No water shall penetrate to the reflecting surface of the retro-reflecting optical unit. If visual inspection clearly reveals the presence of water, the device shall not be considered to have passed the test If visual inspection does not reveal the presence of water or in case of doubt, the CIL shall be measured by the method described in Anne 4, paragraph 3.2., or Anne 14, paragraph 4.2., the retro-reflecting device being first lightly shaken to remove ecess water from the outside Alternative test procedure for Classes IB and IIIB devices As an alternative, at the request of the manufacturer, the following test (moisture and dust test) shall be applied instead of the submersion-test specified in paragraph 1.1. above Moisture test The test evaluates the ability of the sample device to resist moisture penetration from a water spray and determines the drainage capability of those devices with drain holes or other eposed openings in the device Water spray test equipment A water spray cabinet with the following characteristics shall be used: Cabinet The cabinet shall be equipped with a nozzle(s) which provides a solid cone water spray of sufficient angle to completely cover the sample device. The centreline of the nozzle(s) shall be directed downward at an angle of 45 ± 5 to the vertical ais of a rotating test platform Rotating test platform The rotating test platform shall have a minimum diameter of 140 mm and rotate about a vertical ais in the centre of the cabinet.
18 Anne Precipitation rate The precipitation rate of the water spray at the device shall be 2.5 (+1.6/-0) mm/min as measured with a vertical cylindrical collector centred on the vertical ais of the rotating test platform. The height of the collector shall be 100 mm and the inside diameter shall be a minimum of 140 mm Water spray test procedure A sample device mounted on a test fiture, with initial CIL measured and recorded shall be subjected to a water spray as follows: Device openings All drain holes and other openings shall remain open. Drain wicks, when used, shall be tested in the device Rotational speed The device shall be rotated about its vertical ais at a rate of 4.0 ± 0.5 min If the retro-reflector is reciprocally incorporated or grouped with signalling or lighting functions, these functions shall be operated at design voltage according to a cycle of 5 min ON (in flashing mode, where appropriate), 55 min OFF Test duration The water spray test shall last 12 hours (12 cycles of 5/55 min) Drain period The rotation and the water spray shall be turned OFF and the device allowed to drain for 1 hour with the cabinet door closed Sample evaluation Upon completion of the drain period. The interior of the device shall be observed for moisture accumulation. No standing pool of water shall be allowed to be formed, or which can be formed by tapping or tilting the device. The CIL shall be measured according to the method specified in Anne 4 paragraph 3.2. after having dried the eterior of the device with a dry cotton cloth Dust eposure test This test evaluates the ability of the sample device to resist dust penetration which could significantly affect the photometric output of the retro-reflector Dust eposure test equipment The following equipment shall be used to test for dust eposure: Dust eposure test chamber The interior of the test chamber shall be cubical in shape in size 0.9 to 1.5 m per side. The bottom may be "hopper shaped" to aid in collecting the dust. The internal chamber volume, not including a "hopper shaped" bottom shall be 2 m 3 maimum and shall be charged with 3 to 5 kg of the test dust. The chamber shall have the capability of agitating the test dust by means of compressed air or blower fans in such a way that the dust is diffused throughout the chamber. 18
19 Anne The dust The test dust used shall be fine powdered cement in accordance with standard ASTM C * Dust eposure test procedure A sample device, mounted on a test fiture, with the initial CIL measured and recorded, shall be eposed to dust as follows: Device openings All drain holes and other openings shall remain open. Drain wicks, when used, shall be tested in the device Dust eposure The mounted device shall be placed in the dust chamber no closer than 150 mm from a wall. Devices with a length eceeding 600 mm shall be horizontally centred in the test chamber. The test dust shall be agitated as completely as possible by compressed air or blower(s) at intervals of 15 min for a period of 2 to 15 s for the duration of 5 hours. The dust shall be allowed to settle between the agitation periods Measured sample evaluation Upon completion of the dust eposure test, the eterior of the device shall be cleaned and dried with a dry cotton cloth and the CIL measured according to the method specified in Anne 4, paragraph Resistance to corrosion 2.1. Retro-reflecting devices must be so designed that they retain the prescribed photometric and colorimetric characteristics despite the humidity and corrosive influences to which they are normally eposed. The resistance of the front surface to tarnishing and of the protection of the rear face to deterioration shall be checked, particularly when an essential metal component seems liable to be attacked The retro-reflecting device, or the lamp if the device is combined with a light, shall be stripped of all removable parts and subjected to the action of a saline mist for a period of 50 hours, comprising two periods of eposure of 24 hours each, separated by an interval of two hours during which the sample is allowed to dry The saline mist shall be produced by atomizing, at a temperature of 35 C ± 2 C, a saline solution obtained by dissolving 20 ± 2 parts by weight of sodium chloride in 80 parts of distilled water containing not more than 0.02 per cent of impurities Immediately after completion of the test, the sample must not show signs of ecessive corrosion liable to impair the efficiency of the device. * American Society for Testing and Materials
20 Anne 8 3. Resistance to fuels The outer surface of the retro-reflecting device and, in particular, of the illuminating surface, shall be lightly wiped with a cotton cloth soaked in a miture of 70 vol. per cent of n-heptane and 30 vol. per cent of toluol. After about five minutes, the surface shall be inspected visually. It must not show any apparent surface changes, ecept that slight surface cracks will not be objected to. 4. Resistance to lubricating oils The outer surface of the retro-reflecting device and, in particular, the illuminating surface, shall be lightly wiped with a cotton cloth soaked in a detergent lubricating oil. After about 5 minutes, the surface shall be cleaned. The CIL shall then be measured (Anne 4, paragraph 3.2. or Anne 14, paragraph 4.2.). 5. Resistance of the accessible rear face of mirror-backed retro-reflecting devices 5.1. After having brushed the rear face of the retro-reflecting device with a hard nylon brush, a cotton cloth soaked in the miture, defined in paragraph 3. Above shall be applied to the said rear face for one minute. The cotton cloth is then removed and the retro-reflecting device left to dry As soon as evaporation is completed, an abrasion test shall be made by brushing the rear face with the same nylon brush as before The CIL shall then be measured (Anne 4, paragraph 3.2. or Anne 14, paragraph 4.2.) after the whole surface of the mirror-backed rear face has been covered with Indian ink. 20
21 Anne 9 Anne 9 Stability in time of the optical properties 1 of retro-reflecting devices 1. The Type Approval Authority which granted approval shall have the right to check the stability in time of the optical properties of a type of retroreflecting device in service. 2. The competent authorities of countries other than the country in which approval was granted may carry out similar checks in their territory. If a type of retro-reflector in use ehibits a systematic defect, the said authorities shall transmit any components removed for eamination to the Type Approval Authority which granted approval, with a request for its opinion. 3. In the absence of other criteria, the concept of "systematic defect" of a type of retro-reflector in use shall be interpreted in conformity with the intention of paragraph 6.1. of this Regulation. 1 Despite the importance of tests to check the stability in time of the optical properties of retroreflecting devices, it is in the present state of the art not yet possible to assess this stability by laboratory tests of limited duration.
22 Anne 10 Anne 10 Resistance to heat 1. The retro-reflecting device shall be kept for 48 consecutive hours in a dry atmosphere at a temperature of 65 C ± 2 C. 2. After this test, no cracking or appreciable distortion of the retro-reflecting device and, in particular, of its optical component must be visible. 22
23 Anne 11 Anne 11 Colour-fastness 1 1. The Type Approval Authority which granted approval shall have the right to check the colour-fastness of a type of retro-reflecting device in service. 2. The competent authorities of countries other than the country in which approval was granted may carry out similar checks in their territory. If a type of retro-reflector in use ehibits a systematic defect, the said authorities shall transmit any components removed for eamination to the Type Approval Authority which granted approval, with a request for its opinion. 3. In the absence of other criteria, the concept "systematic defect" of a type of retro-reflector in use shall be interpreted in conformity with the intention of paragraph 9.1. of this Regulation. 1 Despite the importance of tests to check the colour-fastness of retro-reflecting devices, it is in the present state of the art not yet possible to assess colour-fastness by laboratory tests of limited duration.
24 Anne 12 Anne 12 Chronological order of tests Number of anne Number of paragraph Tests Samples a b c d e f g h i j - 6.* General specifications: visual inspection 5 - Shapes and dimensions: visual inspection 10 - Heat: 48 h at 65 ± 2 C Visual inspection for distortion 6 - Colorimetry: visual inspection Trichromatic coordinates in case of doubt 7 - Photometry: limited to 20' and V = H = Complete photometry 8 1. Water: 10 min. in normal position 10 min. in inverted position visual inspection Colorimetry: visual inspection Trichromatic coordinates in case of doubt Photometry: limited to 20' and V = H = Motor fuels: 5 min. visual inspection 8 4. Oils: 5 min. visual inspection Colorimetry: visual inspection Trichromatic coordinates in case of doubt Photometry: limited to 20' and V = H = Corrosion: 24 hours 2 hours interval 24 hours visual inspection 8 5. Rear face: 1 min. visual inspection Colorimetry: visual inspection Trichromatic coordinates in case of doubt Photometry: limited to 20' and V = H = Stability in time Colorimetry: Visual inspection or trichromatic coordinates Photometry: limited to 20' and V = H = Colour-fastness Colorimetry: Visual inspection or trichromatic coordinates Photometry: limited to 20' and V = H = Deposit of samples with authority * of the Regulation. 24
25 Anne 13 Anne 13 Resistance to impact - Class IVA 1. The retro-reflecting device shall be mounted in a manner similar to the way in which it is mounted on the vehicle, but with the lens faced horizontal and directed upwards. 2. Drop a 13 mm diameter polished solid steel ball, once, vertically onto the central part of the lens from a height of 0.76 m. The ball may be guided but not restricted in free fall. 3. When a retro-reflecting device is tested at room temperature with this method, the lens shall not crack.
26 Anne 14 Anne 14 Test procedure - Class IVA 1. The applicant shall submit for approval ten samples which shall be tested in the chronological order indicated in Anne After verification of the specifications in paragraphs 6.1. to 6.5. of this Regulation and the specifications of shape and dimensions (Anne 5), the ten samples shall be subjected to the heat resistance test (Anne 10) and one hour minimum after this test eamined as to their colorimetric characteristics and CIL (Anne 7) for an angle of divergence of 20' and an illumination angle V = H = 0 or, if necessary, in the positions defined in Anne 7. The two retro-reflecting devices giving the minimum and maimum values shall then be fully tested as shown in Anne 7. These two samples shall be kept by the laboratories for any further checks which may be found necessary. 3. Four samples out of the remaining eight samples shall be selected at random and divided into two groups of two in each group. First group: The two samples shall be subjected successively to the water-penetration resistance test (Anne 8, paragraph 1.) and then, if this test is satisfactory, to the tests for resistance to fuels and lubricating oils (Anne 8, paragraphs 3. and 4.). Second group: The two samples shall, if relevant, be subjected to the corrosion test (Anne 8, paragraph 2.), and then to the abrasive-strength test of the rear face of the retro-reflecting device (Anne 8, paragraph 5.). These two samples shall also be subjected to the impact test (Anne 13). 4. After undergoing the tests referred to in the above paragraph, the retroreflecting devices in each group must have: 4.1. A colour which satisfies the conditions laid down in Anne 6. This shall be verified by a qualitative method and, in case of doubt, confirmed by a quantitative method; 4.2. A CIL which satisfies the conditions laid down in Anne 7. Verification shall be performed only for an angle of divergence of 20' and an illumination angle of V = H = 0 or, if necessary, in the positions specified in Anne The four remaining samples can be utilized, if necessary, for any other purpose. 26
27 Anne 15 Anne 15 Chronological order of tests for Class IVA Number of anne Number of paragraph Tests Samples a b c d e f g h i j - 6.* General specifications: visual inspection 5 - Shape and dimensions: visual inspection 10 - Heat: 48 h at 65 C ± 20 C Visual inspection for distortion 6 - Colorimetry: visual inspection Trichromatic coordinates in case of doubt 7 - Photometry: limited to 20' and V = H = Complete photometry 8 1. Water: 10 min. in normal position 10 min. in inverted position visual inspection 8 3. Motor fuels: 5 min. visual inspection 8 4. Oils: 5 min. visual inspection 6 - Colorimetry: visual inspection Trichromatic coordinates in case of doubt 7 - Photometry: limited to 20' and V = H = Corrosion: 24 hours 2 hours' interval 24 hours visual inspection 8 5. Rear face: 1 min. visual inspection 13 - Impact visual inspection 6 - Colorimetry: visual inspection Trichromatic coordinates in case of doubt 7 - Photometry: limited to 20' and V = H = Deposit of samples with Authority * of the Regulation.
28 Anne 16 Anne 16 Test procedure for Classes IB and IIIB devices Retro-reflecting devices of Classes IB and IIIB shall be tested according to the test procedures specified in Anne 4, following the chronological order of tests given in Anne 12, with the eception of the test according to Anne 8, paragraph 1., which for Classes IB and IIIB devices may be replaced by the test specified in Anne 8, paragraph
29 Anne 17 Anne 17 Minimum requirements for conformity of production control procedures The minimum requirements for conformity of production control procedures set forth in Anne 2 to the HRD shall be complied with;
30 Anne 18 Anne 18 Minimum requirements for sampling by an inspector The minimum requirements for sampling by an inspector set forth in Anne 3 to the Horizontal Reference Document shall be complied with; 30
E/ECE/324/Rev.1/Add.64/Rev.2 E/ECE/TRANS/505/Rev.1/Add.64/Rev.2
7 December 2011 Agreement Concerning the adoption of uniform technical prescriptions for wheeled vehicles, equipment and parts which can be fitted and/or be used on wheeled vehicles and the conditions
E/ECE/324/Rev.2/Add.127 E/ECE/TRANS/505/Rev.2/Add.127
8 January 2013 Agreement Concerning the Adoption of Uniform Technical Prescriptions for Wheeled Vehicles, Equipment and Parts which can be fitted and/or be used on Wheeled Vehicles and the Conditions for
E/ECE/324/Rev.1/Add.44/Rev.2 E/ECE/TRANS/505/Rev.1/Add.44/Rev.2
7 September 2010 Agreement Concerning the Adoption of Uniform Technical Prescriptions for Wheeled Vehicles, Equipment and Parts which can be Fitted and/or be Used on Wheeled Vehicles and the Conditions
INTERNATIONAL ASSOCIATION OF CLASSIFICATION SOCIETIES. Interpretations of the FTP
INTERNATIONAL ASSOCIATION OF CLASSIFICATION SOCIETIES Interpretations of the FTP CONTENTS FTP1 Adhesives used in A or B class divisions (FTP Code 3.1, Res A.754 para. 3.2.3) June 2000 FTP2 Pipe and duct
Legal Requirements for. Motor Vehicles and Trailers. according to ECE Regulation 48. Our Ideas, Your Success. Customized Solutions
Innovative Technologies Customized Solutions Intensive Support Our Ideas, Your Success. Legal Requirements for Motor Vehicles and Trailers according to ECE Regulation 48 Ideas today for the cars of tomorrow
Economic and Social Council
UNITED NATIONS E Economic and Social Council Distr. GENERAL TRANS/WP.1/2003/1/Rev.4 23 April 2004 ENGLISH Original: ENGLISH, FRENCH and RUSSIAN ECONOMIC COMMISSION FOR EUROPE INLAND TRANSPORT COMMITTEE
E/ECE/324 Rev.1/Add.38/Rev.1 E/ECE/TRANS/505. 7 February 2003 AGREEMENT
7 February 2003 AGREEMENT CONCERNING THE ADOPTION OF UNIFORM TECHNICAL PRESCRIPTIONS FOR WHEELED VEHICLES, EQUIPMENT AND PARTS WHICH CAN BE FITTED AND/OR BE USED ON WHEELED VEHICLES AND THE CONDITIONS
Treatment of a surface or structure to resist the passage of water in the absence of hydrostatic pressure. presence of hydrostatic pressure.
Recommend Approval: Team Leader Date Division Chief Date Approved: Director Date Maryland Department of Transportation State Highway Administration Office of Materials Technology MARYLAND STANDARD METHOD
IHSS-N1 WELDED HONEYCOMB CORE SPECIFICATION. Generated: Sergiy Papyshev Engineering. Approved: Don Prysi Manufacturing. Approved: Merzuk Ramic Quality
IHSS-N1 WELDED HONEYCOMB CORE SPECIFICATION Generated: Sergiy Papyshev Engineering Approved: Don Prysi Manufacturing Approved: Merzuk Ramic Quality Approved: Steven Barnett Administrative DATE DATE DATE
Commonwealth of Pennsylvania PA Test Method No. 632 Department of Transportation October 2013 5 Pages LABORATORY TESTING SECTION. Method of Test for
Commonwealth of Pennsylvania PA Test Method No. 632 Department of Transportation 5 Pages LABORATORY TESTING SECTION Method of Test for TIME OF SETTING OF CONCRETE MIXTURES BY PENETRATION RESISTANCE 1.
Trade Measurement (Weighbridges) Regulations
AUSTRALIAN CAPITAL TERRITORY Regulations 1991 No. 30 Trade Measurement (Weighbridges) Regulations Regulation TABLE OF PROVISIONS PART I PRELIMINARY 1. Citation 2. Commencement 3. Interpretation 4. Application
TYPICAL FIRE SAFETY INSPECTION VIOLATIONS
TYPICAL FIRE SAFETY INSPECTION VIOLATIONS The following is a list of typical violations often found by inspectors and a generic solution. You can use this list to improve the safety of your facility, to
NDT Procedure for Liquid Penetrant Inspection
NDT Procedure for Liquid Penetrant Inspection A Nondestructive testing (NDT) Procedure suitable for General Liquid/Dye Penetrant Inspections. This is a sample LPT procedure and may be required to be modified
NDT Procedure for Liquid Penetrant Inspection TRINITY NDT. An ISO 9001:2008 Certified Company
NDT Procedure for Liquid Penetrant Inspection A Nondestructive testing (NDT) Procedure suitable for General Liquid/Dye Penetrant Inspections. This is a sample LPT procedure and may be required to be modified
8001782 Owner s Manual
8001782 Digital Infrared Thermometer Owner s Manual Introduction This instrument is a portable, easy to use compact-size digital thermometer with laser sighting designed for one hand operation. The meter
3.1.1 Full Type Tests & Routine Tests according to Clause 8 2 & 8 3. 4.0 Instructions For Installation, Operation & Maintenance
SPECIFICATION FOR LOW VOLTAGE SWITCHBOARD SEN I N D E X Description 10 STANDARD TECHNICAL REQUIREMENTS 11 Standards 12 General Operating Conditions 13 General Description Of Switchboard 131 Structure 132
Quality Assurance and Diagnostic Water Leakage Field Check of Installed Storefronts, Curtain Walls and Sloped Glazing Systems
Method of Test Committee Approval Product Group Approval Approved via 5/21/15 MOT CC Out for Ballot (#805-15) PUBLICATION NO. AAMA 501.2-XX DRAFT #2 DATED 5/21/15 Quality Assurance and Diagnostic Water
Reasons for reissue are provided in Section 6, REVISION SUMMARY.
Reasons for reissue are provided in Section 6, REVISION SUMMARY. The FRONT OF TOOL has the AMP marking on the link. The BACK OF TOOL (Wire Side), into which the wire is inserted, has the wire size marked
PLEASE NOTE. For more information concerning the history of these regulations, please see the Table of Regulations.
PLEASE NOTE This document, prepared by the Legislative Counsel Office, is an office consolidation of this regulation, current to August 1, 2013. It is intended for information and reference purposes only.
MILMAN & ASSOCIATES STRUCTURAL CONSULTING ENGINEERS/ PROJECT MANAGERS
MILMAN & ASSOCIATES STRUCTURAL CONSULTING ENGINEERS/ PROJECT MANAGERS May 29, 2013 Revision B Structural Guideline for Design and Installation Holes in Composite Floor Slab Terminal 3, Departure Level
Chimney systems ICOPAL WULKAN C/CI/C-eko/CI-eko
INSTALLATION MANUAL Chimney systems ICOPAL WULKAN C/CI/C-eko/CI-eko Ventilated Notified entity Building Technical and Research Institute Prague notification no. 1020 This instruction refers to double-layer
Trade Measurement (Weighbridges) Regulations 1997
New South Wales Trade Measurement (Weighbridges) Regulations 1997 under the Trade Measurement Act 1989 His Excellency the Lieutenant-Governor, with the advice of the Executive Council, has made the following
Foundation Experts, LLC Specializes in Foundation Repair and Waterproofing
1 Most basements show some signs of leaking and cracking. Through the years, problems with water, poor soils, grading, drainage and possible settling affect the integrity of a basement. Being able to recognize
PERFORMANCE GUIDELINES
1. Foundation/Basement 17 PERFORMANCE GUIDELINES 1. FOUNDATION/BASEMENT 1.1 Efflorescence on concrete or masonry surfaces Efflorescence is the formation of a white crystalline or powdery deposit on the
USER INSTRUCTIONS FOR 10 LITRE PORTABLE DEHUMIDIFIER MODEL NO. DHMD102
USER INSTRUCTIONS FOR 10 LITRE PORTABLE DEHUMIDIFIER MODEL NO. DHMD102 THANK YOU FOR CHOOSING YOUR NEW DEHUMIDIFIER. BEFORE USING THE UNIT READ THESE INSTRUCTIONS FULLY AND RETAIN THEM FOR FUTURE REFERENCE
THE METALITH PERIMETER SECURITY SYSTEM INSTALLATION INSTRUCTIONS. Attention
THE METALITH PERIMETER SECURITY SYSTEM INSTALLATION INSTRUCTIONS Thank you purchasing the Metalith Perimeter Security System. The following document provides the manufacturer s recommendations for successful
INTERNATIONAL HOCKEY FEDERATION PERFORMANCE REQUIREMENTS AND TEST PROCEDURES FOR HOCKEY BALLS. Published: April 1999
INTERNATIONAL HOCKEY FEDERATION PERFORMANCE REQUIREMENTS AND TEST PROCEDURES FOR HOCKEY BALLS Published: April 1999 CONTENTS 1 Introduction 2 Test Procedures General 3 Standards and Specific Test Procedures
AS COMPETITION PAPER 2008
AS COMPETITION PAPER 28 Name School Town & County Total Mark/5 Time Allowed: One hour Attempt as many questions as you can. Write your answers on this question paper. Marks allocated for each question
Laserlyte-Flex Alignment System
Laserlyte-Flex Alignment System LaserLyte-Flex The LaserLyte-Flex Alignment System is a unique, interchangeable, low cost plug and play laser system. Designed specifically for aligning and positioning
MIST DECORATIVE LAMP WITH ESSENTIAL OIL DIFFUSER
EN MIST DECORATIVE LAMP WITH ESSENTIAL OIL DIFFUSER OPERATING INSTRUCTIONS Read the instructions carefully before operating the appliance or carrying out maintenance operations. Observe all the safety
Degrees of protection. IP codes. W.M.M. Menheere Holec Holland N.V. The Netherlands
Degrees of protection IP codes W.M.M. Menheere Holec Holland N.V. The Netherlands 1 INDEX Introduction...3 1. The IEC protection code (International Protection IP)...3 2. Interpreting the IP code...3 3.
DIAMOND Retractable Rodding Robot Model SPRAYROD-R
2004-12-21 2 1 (23) DIAMOND Retractable Rodding Robot Model SPRAYROD-R 2004-12-21 2 2 (23) Table of contents 1 TECHNICAL DESCRIPTION...4 1.1 MAIN DETAILS...5 1.2 COMPONENTS DESCRIPTION...5 1.2.1 Pneumatic
Trade Measurement (Weighbridges) Regulations 1993
Historical version: 3.2.1997 to 31.8.2008 Regulations revoked South Australia Trade Measurement (Weighbridges) Regulations 1993 under the Trade Measurement Act 1993 Contents Part 1 Preliminary 1 Short
ACT Math Vocabulary. Altitude The height of a triangle that makes a 90-degree angle with the base of the triangle. Altitude
ACT Math Vocabular Acute When referring to an angle acute means less than 90 degrees. When referring to a triangle, acute means that all angles are less than 90 degrees. For eample: Altitude The height
COMMERCIAL COOKING HOODS, VENTILATION & FIRE SUPPRESSION SYSTEM GUIDELINES AND PROCEDURES
COMMERCIAL COOKING HOODS, VENTILATION & FIRE SUPPRESSION SYSTEM GUIDELINES AND PROCEDURES These guidelines are to be used for ALL commercial cooking hoods, ventilation systems and related fire suppression
CORNER FRIDGE REFRIGERATION UNIT INSTALLATION AND OPERATION INSTRUCTIONS
CORNER FRIDGE REFRIGERATION UNIT INSTALLATION AND OPERATION INSTRUCTIONS D E F Y I N G C O N V E N T I O N Congratulations on your new Corner Fridge Your new corner fridge may have different functions
Type Testing Procedure for Crankcase Oil Mist Detection and Alarm Equipment
(Jan 2005) (Corr.1 Nov 2005) (Rev.1 Oct 2006) (Corr.1 Oct 2007) (Rev.2 Feb 2015) Type Testing Procedure for Crankcase Oil Mist Detection and Alarm Equipment 1. Scope 1.1 To specify the tests required to
The entire document shall be read and understood before proceeding with a test. ISTA 3B 2013 - Page 1 of 35
Packaged-Products for Less-Than-Truckload (LTL) Shipment ISTA 3 Series General Simulation Performance Test PROCEDURE VERSION DATE Last TECHNICAL Change: NOVEMBER 2012 Last EDITORIAL Change: JANUARY 2013
Improper storage of potential pollutants will increase the risk of water pollution that may occur because of spills.
WQ-3 Best Management Practice (BMP) Water Quality Protection Guideline Secondary Containment Design and Operation Standards Section 1. Introduction According to the EPA, the majority of water pollution
Technical Regulations 2015-2016
F1 in Schools - 2014 World Finals Technical Regulations Technical Regulations 2015-2016 2013 - F1 in Schools Ltd. Page 1 of 27 3 September 2015 CONTENTS PREFACE SUMMARY OF MAIN REVISIONS FROM 2013 REGULATIONS...
(This report is endorsed) Industrivej 20, 9900 Frederikshavn, Danmark
Spectrum Laboratories Ltd is accredited by International Accreditation New Zealand (formerly Telarc). The tests reported herein have been performed in accordance with the terms of our accreditation. This
LABORATORY DETERMINATION OF CALIFORNIA BEARING RATIO
LABORATORY DETERMINATION OF CALIFORNIA BEARING RATIO STANDARD IS: 2720 (Part 16) 1979. DEFINITION California bearing ratio is the ratio of force per unit area required to penetrate in to a soil mass with
Operator Quick Guide EC SENSOR
Operator Quick Guide EC SENSOR Revision G - 24/04/2008 General Information About This Guide The information in this guide has been carefully checked and is believed to be accurate. However, Hach Ultra
F1 in Schools - 2015 World Finals Technical Regulations
2013 - F1 in Schools Ltd. Page 1 of 24 25 March 2015 Front Cover Colossus F1 2014 World Champions F1 Car, Robert May's School, Hampshire, England Amendments made on [Date] are indicated thus (using red
F1 in Schools - 2014 World Finals Technical Regulations. 2014 WORLD FINALS Technical Regulations
2014 WORLD FINALS Technical Regulations Refer also to the 2014 World Finals Competition Regulations. For World Finals use only. 2013 - F1 in Schools Ltd. Page 1 of 23 13 August 2014 Front Cover A1 Racing
Detailing of Reinforcment in Concrete Structures
Chapter 8 Detailing of Reinforcment in Concrete Structures 8.1 Scope Provisions of Sec. 8.1 and 8.2 of Chapter 8 shall apply for detailing of reinforcement in reinforced concrete members, in general. For
12-1 Representations of Three-Dimensional Figures
Connect the dots on the isometric dot paper to represent the edges of the solid. Shade the tops of 12-1 Representations of Three-Dimensional Figures Use isometric dot paper to sketch each prism. 1. triangular
Rear Impact Guard TEST METHOD 223. Standards and Regulations Division. Issued: December 2003
Transport Canada Safety and Security Road Safety Transports Canada Sécurité et sûreté Sécurité routière Standards and Regulations Division TEST METHOD 223 Rear Impact Guard Issued: December 2003 Standards
SOHOline and SOHO Slimline The SOHOline and SOHO Slimline offer a modular, sturdy and compact design
SOHOline and SOHO Slimline The SOHOline and SOHO Slimline offer a modular, sturdy and compact design Ideal installation for; Offices Branch Offices Schools Computer Aided Classes Government Offices Hotels
Select Radiators Installation Guide
Select Radiators Installation Guide Table of Contents Informational Symbols...3 Before You Begin...4 Select Rough-In... 5 Connection Installation...6 Optional Piping Arrangements...7 Conventional Wall
4. CAMERA ADJUSTMENTS
4. CAMERA ADJUSTMENTS Only by the possibility of displacing lens and rear standard all advantages of a view camera are fully utilized. These displacements serve for control of perspective, positioning
product manual HS-4210 HS-4210_MAN_09.08 Digital Static Cone Penetrometer
HS-4210_MAN_09.08 product manual HS-4210 Digital Static Cone Penetrometer Introduction This Manual covers the measurement of bearing capacity using the Humboldt Digital Static Cone Penetrometer (DSCP).
IMPORTANT INFORMATION
Curved Quadrant Instruction Manual CQ IMPORTANT INFORMATION Toughened glass is completely safe for use in our shower enclosures and bath screens; providing our products are installed according to our guidelines.
No. 8940. EUROPEAN AGREEMENT CONCERNING THE INTERNATIONAL CAR RIAGE OF DANGEROUS GOODS BY ROAD (ADR). DONE AT GENEVA ON 30 SEPTEMBER 1957'
1975 United Nations Treaty Series Nations Unies Recueil des Traités 435 [TRANSLATIN TRADUCTIN] No. 8940. EURPEAN AGREEMENT CNCERNING THE INTERNATINAL CAR RIAGE F DANGERUS GDS BY RAD (ADR). DNE AT GENEVA
Fire Preventive and Fireproof Performance Test and Evaluation Procedure Manual
BR BO-01-02 Effective from June 1, 2000 Revision: March 26, 2002 Fire Preventive and Fireproof Performance Test and Evaluation Procedure Manual (Unofficial Manual) Technical Appraisal Department, Building
Storage Store the siding in a dry and ventilated area. Do not place it directly on the ground. Always cover the siding after a day s work.
Installation Guide Before you begin, take the time to read this entire guide to clearly understand the requirements and steps to follow for proper installation. Warning Do not install defective material.
Lighthouse Engineering, L.L.C.
Registered Engineering Firm (F: 9334) Phone: 214-577-1077 Fax: 214-224-0549 Website: www.lighthouseeng.com Email: [email protected] Thursday, September 04, 2014 TO: Our Client RE: Initial Engineering
T H A N K Y OU F O R Y OUR P U R C H A S E O F A N E S S E N T I A V A N I T Y, P L E A S E R E A D T H E S E V A N I T Y C A R E A N D I N S T A L L
T H A N K Y OU F O R Y OUR P U R C H A S E O F A N E S S E N T I A V A N I T Y, P L E A S E R E A D T H E S E V A N I T Y C A R E A N D I N S T A L L AT I O N I N S T R U C T I O N S C A R E F U L LY CAR
USER INSTRUCTIONS FOR GET PORTABLE 12k BTU AIR CONDITIONER MODEL No. GPACU12HR
USER INSTRUCTIONS FOR GET PORTABLE 12k BTU AIR CONDITIONER MODEL No. GPACU12HR CONTENTS Introduction Safety Notes Identification of parts Installation instructions Operation instructions Maintenance Troubleshooting
MAVO-MONITOR / MAVO-SPOT Instrument Set for Contact or Distant Measurements of Luminances
Operating Instructions MAVO-MONITOR / MAVO-SPOT Instrument Set for Contact or Distant Measurements of Luminances 15043 1/1.00 10 9 8 1 7 6 1 Display 2 Slider switch cd/m² segment test 3 ON/OFF switch 4
International Year of Light 2015 Tech-Talks BREGENZ: Mehmet Arik Well-Being in Office Applications Light Measurement & Quality Parameters
www.led-professional.com ISSN 1993-890X Trends & Technologies for Future Lighting Solutions ReviewJan/Feb 2015 Issue LpR 47 International Year of Light 2015 Tech-Talks BREGENZ: Mehmet Arik Well-Being in
Field Welding Inspection Guide
Field Welding Inspection Guide Assistance in interpretation of any specification or questions concerning field welding issues can be obtained from the Office of Materials Management, Structural Welding
Adaptive strategies for office spaces in the UK climate
International Conference Passive and Low Energy Cooling 631 Adaptive strategies for office spaces in the UK climate I. Gallou Environment & Energy Studies Programme, Architectural Association Graduate
Sprinkler Identification Number. Page 1 of 6 MARCH 2014 TFP288. Worldwide Contacts. www.tyco-fire.com
Worldwide Contacts www.tyco-fire.com Model EC-HS 80 K-factor, Quick Response Extended Coverage Horizontal Sidewall Sprinklers Installations per VdS CEA 400, Annex E, LH/OH General Description The Model
Dehumidifier D 850E. - Instruction manual version 02
Dehumidifier D 850E - Instruction manual version 02 Content 1. Description of dehumidifier 1.1. General data 1.2. Technical data 2. Operation and usage 2.1. Usage 2.2. Location and installation 2.3. Preparing
Single-Phase AC Synchronous Generator
ST Series Single-Phase AC Synchronous Generator Instructions for Operation and Maintenance English to English translation by R.G. Keen, May 2004. ST Series of Single-Phase AC Synchronous Generators Description
LockerLock Schließgehäuse LockerLock lock case Boîtier de fermeture LockerLock Scatola di ciusura LockerLock Caja de cierre LockerLock
LockerLock Schließgehäuse LockerLock lock case Boîtier de fermeture LockerLock Scatola di ciusura LockerLock Caja de cierre LockerLock Caution! Õ It is necessary to read the section "Commissioning" in
A. Work on this project shall consist of, but is not limited to, the following:
PART 1 - GENERAL CLEANING AND RESTORATION OF SECTION 05900-1 1.1 SUMMARY A. Work on this project shall consist of, but is not limited to, the following: 1. Clean and treat all exposed anodized architectural
Type Testing Procedure for Crankcase Oil Mist Detection and Alarm Equipment
(Jan 2005) (Corr.1 Nov 2005) (Rev.1 Oct 2006) (Corr.1 Oct 2007) Type Testing Procedure for Crankcase Oil Mist Detection and Alarm Equipment 1. Scope 1.1 To specify the tests required to demonstrate that
Milwaukee USER MANUAL
Milwaukee USER MANUAL PORTABLE DISSOLVED OXYGEN METER MODEL: MW600 Smart DO Meter PROBE PREPARATION: The meter is supplied with a 9V battery. Slide off the battery compartment cover on the back of the
3. Commercial Trailer Lighting Requirements Federal Motor Carrier Safety Regulations (FMCSR) 49 CFR, Subpart B Of FMCSR Part 393
FMCSR 393.9.26 3. Commercial Trailer Lighting Requirements Federal Motor Carrier Safety Regulations (FMCSR) 49 CFR, Subpart B Of FMCSR Part 393 Lighting Devices, Reflectors, and Electrical Equipment 393.9
D.3. Angles and Degree Measure. Review of Trigonometric Functions
APPENDIX D Precalculus Review D7 SECTION D. Review of Trigonometric Functions Angles and Degree Measure Radian Measure The Trigonometric Functions Evaluating Trigonometric Functions Solving Trigonometric
Walking and Working Surface Checklist:
Walking and Working Surfaces Purpose: This information is presented to improve the level of safety in our operations, and to inform you that we will comply with the OSHA Standard 29 CFR 1910.23. Responsibility:
Apr 17, 2000 LAB MANUAL 1302.0. 1302 PARTICLE SIZE ANALYSIS OF SOILS AASHTO Designation T 88 (Mn/DOT Modified)
Apr 17, 2000 LAB MANUAL 1302.0 1302 PARTICLE SIZE ANALYSIS OF SOILS AASHTO Designation T 88 (Mn/DOT Modified) 1302.1 SCOPE This method describes a procedure for the quantitative determination of the distribution
TS-E24mm f/3.5l TS-E45mm f/2.8 TS-E90mm f/2.8 Instructions
TS-E24mm f/3.5l TS-E45mm f/2.8 TS-E90mm f/2.8 ENG Instructions Thank you for purchasing a Canon product. Canon s TS-E lenses are tilt-shift lenses designed for EOS cameras. The tilt-shift mechanism enables
CHARISMA SHOWER/TUB DOOR INSTALLATION INSTRUCTIONS
CHARISMA SHOWER/TUB DOOR INSTALLATION INSTRUCTIONS IMPORTANT DreamLine reserves the right to alter, modify or redesign products at any time without prior notice. For the latest up-to-date technical drawings,
VdS 2100-09en. VdS Guidelines for water extinguishing systems. Non-return valves. Requirements and test methods. VdS 2100-09en : 2011-05 (01)
VdS Guidelines for water extinguishing systems VdS 2100-09en Requirements and test methods VdS 2100-09en : 2011-05 (01) Publishing house: VdS Schadenverhütung GmbH Amsterdamer Str. 172-174 50735 Köln,
Bench Autoclave. Standard Operating Procedure. For Installation, Use and Maintenance
Bench Autoclave Standard Operating Procedure For Installation, Use and Maintenance 1. Introduction This SOP is intended for use with the following model, in a laboratory context: Type: Nuve Bench Top Steam
Active and Passive Sash Replacement
for Andersen Gliding Windows Read all instructions carefully before attempting this procedure. If you have any questions about your ability to complete the procedure, call Andersen at 1-888-888-7020 for
BGA - Ball Grid Array Inspection Workshop. Bob Willis leadfreesoldering.com
BGA - Ball Grid Array Inspection Workshop Bob Willis leadfreesoldering.com Mixed Technology Assembly Processes Adhesive Dispensing Component Placement Adhesive Curing Turn Boar Over Conventional Insertion
Bathroom Installation Guide
Bathroom Installation Guide Step-by-step installation of your cabinets We do a lot of groundwork to make it as simple as possible for you to assemble and install your new bathroom furniture yourself. We
Equipment Lighting and Visibility Requirements
Equipment Lighting and Visibility Requirements Purpose To help ensure that adequate warning of work vehicles and equipment is provided to motorists, pedestrians and workers, in and adjacent to construction
Important Information
Single Door Quadrant Instruction Manual ESQ Important Information Toughened glass is completely safe for use in our shower enclosures and bath screens; providing our products are installed according to
CLASSIFICATION NOTES
CLASSIFICATION NOTES Type Approval, Installation and Testing of Water Level Detectors on Bulk Carriers and Single Hold Cargo Ships other than Bulk Carriers General Information This edition of the classification
F1 in Schools - 2015 World Finals Technical Regulations. Formula 1 Class
F1 in Schools - 2015 World Finals Technical Regulations Formula 1 Class 2013 - F1 in Schools Ltd. Page 1 of 23 7 July 2015 Front Cover Colossus F1 2014 World Champions F1 Car, Robert May's School, Hampshire,
Rousseau 10. User Guide
Rousseau 10 User Guide Base station overview ➀ LED signals White, permanent light: - Base station ready, you can register a handset Slow flashing white light: - Paging call in progress - Active call (you
CILINDRO 40 design SLIDE Studio
CILINDRO 40 design SLIDE Studio Dimensioni: Ø 30 h 40 cm Peso: 2 Kg Imballaggio: 32 x 32 x 42 cm Volume imballaggio: 0,043 m 3 Dimensions: Ø 30 h 40 cm Poids: 2 Kg Emballage: 32 x 32 x 42 cm Volume emballage:
4.3-inch Back-Up Camera
TM 4.-inch Back-Up Camera Model No.: PKC0BU4 Owner s Manual and Warranty Information Read these instructions completely before using this product. Retain this Owner s Manual for future reference. INTRODUCTION
B Dinesh Prabhu, Asst. Professor, P E S College Engg., Mandya, KARNATAKA 1
Firing Order Every engine cylinder must fire once in every cycle. This requires that for a four-stroke fourcylinder engine the ignition system must fire for every 180 degrees of crank rotation. For a sixcylinder
The purpose of industrial lighting is to enable quick and accurate work, safely, and in a good visual environment. Points of note are:
5.4 Industry indoor Techniques General The purpose of industrial lighting is to enable quick and accurate work, safely, and in a good visual environment. Points of note are: Illuminance on the task is
VC 104+ Rigid Grade / Rigid Grade Imagine VC 104 Rigid Grade Commercial Customised
Page 1 of 6 instructions VC 104+ Rigid Grade / VC 104+ Rigid Grade Imagine / (for the rest of this document referred to as VC 104) can be applied to new and used trucks and trailers with painted rigid
Decree of the Ministry of the Environment on fire safety of ventilation systems
THE NATIONAL BUILDING CODE OF FINLAND MINISTRY OF THE ENVIRONMENT Housing and Building Department Decree of the Ministry of the Environment on fire safety of ventilation systems Adopted in Helsinki, 18
RAILWAY EQUIPMENT REFLECTORIZATION RULES
RAILWAY EQUIPMENT REFLECTORIZATION RULES TC number TC O 0-56 Approved on February 27, 2006 Effective on May 1, 2006 Subsections 4.1 and 9.1 revised on and effective as of July 19, 2006 CONTENTS 1. Short
Sun Windows General Information Sun New Construction Window Installation Instructions
Sun Windows General Information Section 1 G F H H H A. Apply Weather Resistive Barrier B. Apply Sill Flashing Tape C. Place Waterproof Sill Shims D. Caulk Back of Nail Fin Sides & Top, Set Window, Fasten
Activity Set 4. Trainer Guide
Geometry and Measurement of Solid Figures Activity Set 4 Trainer Guide Mid_SGe_04_TG Copyright by the McGraw-Hill Companies McGraw-Hill Professional Development GEOMETRY AND MEASUREMENT OF SOLID FIGURES
