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U314 Automatic Nozzle

U314

U314 Automatic Nozzle

U314 Automatic nozzles are designed with today's customer in mind. Small, trim, light weight, easy and convenient to use. It is a rugged performer that offers long life and reliable service.

Warning

Use foreign objects to hold open automatic nozzles could result in failure to shut-off and personal injury.

Materials:

Body: Aluminum

seals: Buna-N, Viton

Main stem seals: Viton Cased Oil Seal / Graphite with Teflon

Main stem: Stainless steel

Color of insulator :

Red Green Blue Yellow Black

Features :

U314-A/C/E/G Flow rate: 0-45 L/m ( (13/16")

U314-B/D/F/H Flow rate: 0-70 L/m (15/16")

Working Pressure: 0.18Mpa

Compound Main valve and bleed poppet

Tight structure, attractive appearance. Minimum pressure Loss and

offer a maximum flow rate

Accurate flow control-

It allows customers to top off their tank to the exact amount that they

want , and it's easy to stop gasoline flow precisely.

Easily replaced rotar y 360 swivel- prevents the hose

from curling up.

Hold-open rack is available for full service applications.

The one hand control means easy setting to flow rate for customer's convenience.

Spout with gear: Making it to be holding on the spout of tank

without hand, improving your efficiency.

Flow-lock: designed to shut-off automatically when the spout is

tripped up, limiting spillage, avoiding accident.

Hand insulator- protect both nozzle and vehicle, and insulates

users' hands.

Available Colors- color chart on inside back cover

Selective splash guard.

100% Factory Tested

Replacement Parts:

Key Description

1 Spout 13/16" & Spout 15/16"

2 Full hand insulator

3 Lever-Guard Lever Assembly

4 Diaphragm Assembly

5 Vac Cap

6 Main Valve

7 Swivel BSPT3/4" & NPT3/4" & BSPT1" & NPT1"

Package:

Net Weight Cross Weight Dimension

18.75kg/case of 15 22kg/case of 15 55x34x42.5cm/case of 15

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technical archives

    at random; Select filling types through keyboar fuel dispenser d; Renew select or cancel the filing operation through keyboard as long as nozzle hasn’t been hold; Supporting various applications When IC card includes many applications, give prompt to user; System supports customer’s various applications; No restriction among applications Automatic balance Calculating turnover in line with the accuracy stipulated in JJG443-98 Metrological appraisal regulation for vehicle fuel dispenser; Turnover automatically is deducted from IC card Automatic generation and saving of deal record Automatically generate filing record after each operation; Ensure the safety of MAC value that used to store and transmit data after record; Each filling unit at least store 1,000 pieces of records; Transmit deal record to centre controller in prescribed time (less than 10s) when fuel dispenser and centre controller is in communicating state; Write deal information needed into IC card according to presetting system requirements; Safety secrecy Both fuel dispenser and terminal are verified interactively; Validity of fuel dispenser should be inspected; Personal identification of IC card password; Automatically set IC card to be grey card as filling start; TAC and CTC are automatically generated as money deduction, meanwhile erase grey sign; Grey card solution Suddenly pull out IC card will lead to grey sign; if quickly insert IC c fuel dispenser ard into fuel dispenser, system will automatically finish ded fuel dispenser uction and erase grey sign; When communicated with centre controller, grey IC card is taken off grey sign on each fuel dispenser that on-line centre controller; As filing station that has formed grey card has finished data exchange with data center, any IC card with grey sign is able to deal with on any IC card fuel dispenser that has successfully finished data exchange with data center and is on line. Black card solution IC card fuel dispenser is able to store at least 20,000 blacklists; Able to identify all black cards; Aut

technical specification

    _Status_Message (Data_Id 100) to all CD s enter fuel dispenser ed in the Dispenser s   Recipient_table. The FP_Status_Message must indicate that the FP is no longer assigned   (Assign_Contr_Id=0 0).  5.6 Units Of Measurement  The IFSF Dispenser Application Protocol works on the bases that the units of measurement  are implied. I.E. If the environment where the device is installed works in Litres then all the  volume fields will also be Litres. Alternatively If the environment where the device is  installed works in Gallons then all the volume fields will also be Gallons.  Should an IFSF Dispenser be placed in an environment where both Litres Gallons are  used. It will be the responsibility of the CDSite controller to correctly configure the  dispenser with the correct prices for each product and provide transaction meter details to  other applications (i.e. Pump controllerPOS) running at the site in their required unit format.  5.7 Transaction Terminated - Nozzle not returned  The standard 8 second time-out for responses to messages can be ignored in the case of a  state transition from Fuelling to Idle. This is due to the need for extra time to take account of  inertia within the fuelling termination process.  March 2006 IFSF - STANDARD FORECOURT PROTOCOL FP31_2.23   DISPENSER APPLIC fuel dispenser ATION   fuel dispenser Page: 137  6 Protocol Converter Device Implementation Guidelines  This section gives guidelines recommendation for implementations of Protocol Converter  Devices (PCD) that control non IFSF Dispenser.  6.1 Overview of a Protocol Converter Device (PCD)  A Protocol Converter Device (PCD) is a hardware device that is located between non IFSF  dispenserspumps and converts their proprietary pump protocols t

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    um could, in principle, be extracted to make nucl fuel dispenser ear bombs. But the organisers of the Kumatori Accelerator-driven Reactor Test Facility (KART), at Kyoto University in Japan, which starts up this month, have dusted off an old scheme that might help overcome the problems of nuclear waste. This is to transmute the by-products still further, into something that can be disposed of safely. KARTs and horsepower The idea behind the Kumatori project, which is led by Kaichiro Mishima, was originally championed by Carlo Rubbia, who was once head of CERN, a big subatomic-physics laboratory near Geneva. The plan is to build a “sub- critical�nuclear reactor. Such a reactor would not be able to sustain a chain reaction. Instead, the nucleus- transmuting subatomic particles would be supplied from outside, using a particle accelerator. About 95% of the mass of a piece of used nuclear fuel is unconverted uranium, so the first step is to extract the 5% that is waste. This is done chemically. The radioactive elements to be transmuted are then turned into a target for protons fired out of a particle accelerator. Neutrons cannot be speeded up in an accelerator because they have no electric charge to grab hold of. But the main role of the protons is to knock neutrons free from nuclei in the target. These neutrons should, if all goes well, be absorbed by the technetium and other fission products, transmuting them into fuel dispenser new elements. They will also break up the elements heavier t fuel dispenser han uranium into products similar to those from uranium fission. Although, initially, the new elements will be more radioactive than the spent nuclear waste was, that radioactivity will last only a few hundred years. This means that the dumps into which they are put need not be as secure (or as expensive) as those envisaged for long-term waste-storage. And, as a bonus, the whole process should generate more energy than it consumes. Indeed, Dr Rubbia s original name for the device was an energy amplifier. Researchers in the fi