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D-GA44 FUEL DISPENSER

D-GA44

D-GA44 FUEL DISPENSER

Pump Type: Optional

Inlet Pressure : >=54kPa.

Flow rate (L/min.) :55±5

Suction Distance (m): 6(verticalmente) / 50(orizzontalmente)

FlowMeter Type: Optional

Accuracy :±0.2%

Motor Voltage(V) :110V/220V/380V,50Hz/60Hz

Capacity(hp) :1HP(0.75kw)

Input Voltage : 110V/220V/380V,50Hz/60Hz

Nozzle : Auto Shut-off Nozzle

Environmental Condition : -40~~+55degree

Control Type: Solenold Vale Control Type

Preset : Function Provided(Small LCDIndicator)

Display(Counter) :Type LCD and Bright Backlight

Digit of Volume : 0~~999,999(6 Digits),Decimal point can be changed

Digit of Amount : 0~~999,999(6 Digits),Decimal point can be changed

Digit of Unit price : 0~~9999(4 Digits),Decimal point can be changed

Digit of Total Range : 0~~99,999,999,99

Optional Display :Type LCD and Bright Backlight

Digit of Volume : 0~~99,999,999(8 Digits),Decimal point can be changed

Digit of Amount : 0~~99,999,999(8 Digits),Decimal point can be changed

Digit of Unit price: 0~~999999(6 Digits),Decimal point can be changed

Digit of Total Range : 0~~99,999,999,99

Totalizer :1~~9,999,999

Hose :4.5m

Weight : 335kg

Dimension(L×W×H): 1270 x 620 x 2420(mm)

Dimension(L×W×H)Of Qty of Container: 40ft: 45 20ft: 22

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    te of Diagram 2-18d after rounding 90 degree. Diagram 2-18d: it is the continuation of the state showed in the diagram 2-18c. Nylon wheel rotates clockwise, and come to the state of Diagram 2-18a after rounding 90 degree. The four pistons discharge out a certain oil under different oil pressure, meanwhile, nylon wheel drive export axis round. Each rotation of export axis means a working circulation. Discharge adjustment The cubage of oil discharged by measurement transducer depends upon the moving distance and cross section of piston accor fuel dispenser ding to the working principal. The moving distance of piston is twice as many as of connecting board. Thus, the oil cubage discharged in a circulation can be showed in the following fo fuel dispenser rmula: Vaca = π(d/2)2×2L×4=2πd2L (2--2) Vaca──Academic discharge in a circulation; d──Diameter of piston; L──The center of connecting board The formula of 2- fuel dispenser 2 is an ideal discharge volume. But there are many elements affecting discharge, including the centre distance of connecting board, diameter tolerance between piston and bushing, inconsistent clearance between piston and cylinder, different oil viscosity under various temperature, different fluid fluctuation in varied hydraulic system, and measurement transducer variable loan. Thereby, the real discharge is: V real = V ac �△V (2-3) V real ── Real discharge; V ac ──Academic discharge; V�──Dispersion of academic discharge and real discharge . In order to make the real discharge near to the academic one and ensure keeping the stable and correct relation between the real discharge and export axis, rational design, high machining accuracy and necessary adjustment are needed. The adjusting device mounts two regulative pistons installed in a pair of piston. They are connected with a rod, moving along with pistons until near to furthest point and hit the bolt of adjusting cover. But piston still move, its room substituted by

technical specification

    system.  EPS The application that manages the card payment application.  Main Flow Description  1. Cashier or POS application triggers the logon.  2. If POS fails the process is aborted and the cashier has to recover the POS.  3. POS requests to EPS the logon.  4. If message invalid it is repeated or the process is aborted and the cashier receives a specific   alarm. POS is still at the initial status.  5. EPS accepts the logon  6. If EPS gets into an exception status transaction not possible t fuel dispenser o complete the transaction   gives a negative response.  7. If POS fails to receive a response from EPS (EPS failure) it considers the logon failed.  8. If EPS tells POS the fuel dispenser response but POS has failed (e.g. fails to get the acknowledge) it   considers the logon failed.  9. If completed EPS tells POS the result (positive or negative).  10. If succes fuel dispenser sful both applications are operative for card acceptance.  11. If the result is negative no operation is possible: exception must be solved and logon repeated.  3.16 Part A - use case: Logoff  Each workstation has to logoff per maintenance SW update etc.  Logoff isNOT reconciliationand itdoes not involve it.  This operation is ignored ifexecuted without a logon operation before.  Pre-Conditions  The cashierSiteManagerMaintenance wants to stop operate card acceptance at the POS or the POS Sell  applications triggers it under predefined conditions.  Actors  Actor Description  August 2002 IFSF STANDARD FORECOURT PROTOCOL FP319_1.00   EPS POS INTERFACE SPECIFICATION   Page 42 of 146  CashierOperator Person who might trigger the operation on the POS Sell application.  POS The application (or device) that allows the Cashier to enter transactions into the   syst

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    aper objects than was describing the discovery has been submitted to the Astrophysical Journal. previously This follows the discovery last year by Maciej Konacki, of the California Institute thought of Technology, of a gaseous giant orbiting a star that is itself orbited by a binary-star system. Such an arrangement would have quickly shed its protoplanetary discs, so fuel dispenser how exactly the exoplanet came to be formed is a mystery. The discovery of exoplanets in binary and triple-star systems raises the prospect that the galaxy houses many more such o fuel dispenser bjects than was previously thought. More than 60% of the stars in the Milky Way have a companion star around which they orbit. Most searches for exoplanets have avoided such systems, beca fuel dispenser use the presence of two stars complicates matters. But given that exoplanets could well form in many different ways, astrophysicists believe that taking a closer look at the neglected majority of double stars may reveal a galaxy full of new worlds. Finding out just how common exoplanets are—particularly the rocky, Earth-like sort—will be the task of two space-based telescopes to be launched within the next couple of years. All being well, a French spacecraft called COROT, backed by the European Space Agency, will take off in December. It has been designed to spot exoplanets bigger than twice the size of the Earth. America s space agency, NASA, plans to launch a more ambitious exoplanet-hunter, called Kepler, in October 2008. It should be capable of detecting exoplanets smaller than the Earth. The observatories will monitor regions of the galaxy continuously, in order to detect exoplanets as they pass between their host star and the Earth. The astronomers who will use these telescopes are particularly interested in finding any Earth-like objects in the so-called habitable zone around a s