Issue Date: Valid Until: Reference No: 02 October 2014 26 October 2016 T1117/0027 Signatory: for G Stones Chief Executive National Measurement Off
10 Materials are similar to those used on the existing Quantium 300 model. The majority of cladding panels, including the calculator ho
11 NOTE: The de-bowser section is not approved for trade use but is intended for wetstock reconciliation purposes only. A label is fixe
12 5 ALTERNATIVE HYDRAULICS 5.1 Alternative Schlumberger hydraulics (Figure 23) As described in the Certificate but having all the Ta
13 5.1.4.2 Pulser The pulser is sealed by means of a wire which passes through a special seal screw securing the top and bottom covers of the puls
14 5.2.1.3 Super high speed delivery rate (Qmax 130 L/min) For the super high speed delivery rate the pumping unit is connected to two meters fee
15 5.3.1 Construction This unit comprises a combined rotary pump and air separator known as the model EPZ. Fuel is drawn into the pump via an in
16 5.4.3 Sealing 1 Piston sealing A sealing wire feeds through the head of a seal screw fitted in each piston end cover. This seal wire also
17 4 Meter to frame sealing The meter is sealed to the frame of the dispenser by passing the pulser seal wire (described in 2) through the head o
18 5.5.2 TM80 meter As described in the Certificate but having internal modifications to the SM80 meter which reduces drift over the m
19 The label on the opto isolator bears the part number 700-017-1010, an alternative design of the opto isolator bears the part number 700-017-1011,
2 Descriptive Annex 1 INTRODUCTION This pattern of an electrically driven meter comprises a dispensing unit operating in attended stand-alone mod
20 6.3.2.3 Handset control unit The dispenser may be set up using either, a remote infrared handset, or a handset, which plugs in to the calculato
21 6.4.3 Optional LON Interface Having the Communication adapter COM board "WWC OEL 007" replaced with the LON interface board &
22 6.5.2 Approved Software 6.5.2.1 The ARM-9 software contains 4 legally relevant modules: Application name description version checksum(s) I
23 Application name description version checksum(s) VgaMgr.Arm Interface to the VGA 00.006.31 00005616 display 00.00632 Ox2F17 00.006.33 Ox4BB6
24 6.5.2.4 Pre Processor (PPE) Software Application name description version checksum PPE Pre-processor module 05.000.58 0x39B8 06.000.68 OxDD4F
25 6.5.2.7 Indicating devices software Application name description version checksum CSD CAN based LCD display _ 00.001.03 00008671 00.006.15 Ox
26 6.5.2.9 TQC-MPCE impulse encoder software (applies to impulse encoders TQC-MPC3 and TQC-MPL3). version checksum 05.000.32 0x0930 05.000.37 Ox9D
27 6.5.2.14 EIN interface. version checksum 00.007.04 0x029D 02.000.07 Ox6E4A 02.000.13 0x9638 03.000.14 Ox28BA 05.000.17 0x9393 05.001.21 OxF69F
28 6.5.2.18 EPS / Dresser interface. version checksum 05.000.06 Ox3ED7 05.000.12 OxB6B7 05.000.14 0x3908 05.001.16 OxD7A5 06.001.20 OxlOD8 07.001.
29 7.2 Nuovo Pignone vapour recovery system RV-01 - open frame version and explosion proof version 7.2.1 Description As described in the c
3 2.2.1 Combined pump and air separator The pumping unit is belt driven from an electric motor and has an integral air separator. The pumping uni
30 7.3 Malte Persson Meg-95 assisted vapour recovery system As described in the certificate but having assisted vapour recovery system, wit
31 Figure 50 is a block diagram that shows the electrical interconnections between the elements of the system. Figure 51 details the constructi
32 8.1.1.1 Volume conversion device (temperature compensation) and electronic calibration The temperature compensation function and electron
33 8.1.3 Adjustments A programming handset is required to make adjustments to the calibration and temperature compensation. The programming
34 8.2 TVC volume conversion device (Temperature compensation device) 8.2.1 System Description The TVC is a conversion device for use with tw
35 8.2.2.3 Software An infrared port in the TVC unit allows the reading of data and performing the calibration via an infra red reader connect
36 9.2 Self-Service Devices The dispensers in this approval may be connected to any compatible MID POS having an EC Parts Certificate issued by a
37 Figure 1 Elite dispense
38 Figure 3 Infra-red remote control Figure 2 Tatsuno hydraulics
39 Figure 4 Display head legends
4 Manufacturer Model/Description Type Husky Type ‘X’ series, single and double poppet designs. Optional accessories including swivel joints
40 Figure 5 Sealing
41 Figure 6 Range 2000
42 Figure 7 Level 5
43 Figure 8 Industrial Cladding
44 Figure 9 Pagasus Figure 10 Optima
45 Figure 11 Quantium 100
46 Figure 12 Quantium 200
47 Figure 13 Quantium 500
48 Figure 14 Quantium 300 T housing
49 Figure 15 Quantium 400 T housing
5 2.4.2 Display Head The display head is supported from a column on the master module and contains the electronic calculator, displays, power
50 Figure 16 Quantium 500 T housing Figure 17 Quantium 100T model
51 Figure 18 Quantium 200T model Figure 19 Quantium 200T metering dispenser and de-bowser
52 igure 20 Quantium 410 Dispenser
53 Figure 21 Quantium 510 dispenser with alternative electronics enclosure
54 Figure 22 Q510 n model with an optional third payment terminal fitted
55 Figure 23 Schluniberger hydraulic unit
56 Figure 24 Meter and pulser sealing
57 Figure 25 Schlumberger hydraulics Alternative Sealing
58 Figure 26 Alternative Tokheim hydraulic unit PAS V3 Figure 27 Alternative Tokheim hydraulic unit PAS V3 Data Label
59 Figure 28 Alternative Tokheim hydraulic unit PAS V3 Sealing
6 2.5 Displays and legends (Figure 4) The legends on the display face are given in the following table: LEGEND CHARACTER HEIGHT £ This Sale Litr
60 Figure 29 EPZ pump and air separator Figure 30 MA26 meter and MP-T1 pulser combination sealing arrangement 3421
61 Figure 31 MA 26 meter and MP-T1 pulser combination sealing arrangement Figure 32 SM80 meter and MP-T1 pulser combined sealing diagram Dispe
62 Figure 33 TQP pumping unit and TM80 meter Figure 34 The TQM meter
63 Figure 35 Opto isolators and labels
64 Figure 36 WWC Internal views Figure 37 WWC Displays Figure 38 WWC-T1 (Calculator Chassis/plate and input cable cover)
65 Figure 39 WWC-T1 (Showing power supply assembly on the left and the main board plastic cover with the communication adapter board positioned o
66 Figure 40b ECVR or ASF Vapour Recovery System With Durr Pumping unit Figure 41 Vapour recovery module (open frame version) with associated
67 Figure 42 Vapour recovery module (explosion proof version) Figure 43 Magnetic encoder shown fitted between meter and pulser
68 Figure 44 Schematic for vapour recovery system (open frame version)
69 Figure 45 Schematic for vapour recovery system (explosion proof version)
7 3.2 Operating sequence At the start of the transaction, the dispenser displays the previous sale. The attendant removes the nozzle correspond
70 Figure 46 Schematic for vapour recovery hydraulic connections
71 Figure 47 Schematic of vapour recovery system with monitoring Figure 48 Schematic of vapour recovery system without monitor
72 Figure 49 Schematic of vapour recovery system with monitoring Figure 50 Electrical Block Diagram of System
73 Figure 51 Electronic Installation of Automatic Monitoring System Figure 52 Volume conversion (temperature compensation) components
74 Figure 53 Pulser sealing box (PSB) - single seal and multiple seal versions Figure 54 MA26 meter sealing with temperatur
75 Figure 55 SM80/TM80/TQM sealing with probe KEY: 1 Power Supply connection 230V 2 Infrared Port for Data communication 3 Temperature sensor co
76 Key: 1 Power Supply connection 230V 2 Infrared Port for Data communication 3 Temperature sensor connection 4 Density block connection 5 Pulser
77 Figure 62 Typical installation of temperature sensor and sealing arrangement Figure 63 Typical display of measurement data using ‘Fuel Monit
8 4.1.5 Having the single-phase motor described at Section 2.3 replaced by a 3-phase motor. 4.1.6 Having the mechanical totalisers removed fro
9 4.2.4 Pegasus As described in the certificate but having the Pegasus housing as shown in Figure 9 4.2.5 Optima As described in the Certifi
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