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S-G2 FUEL DISPENSER

S-G2

S-G2 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 : 247kg.

Dimension(L×W×H): 1160*560*2215(mm)

Dimension(L×W×H)Of Qty of Container : 40ft: 27

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technical archives

    inlet of pump. Vapor segregated device: key component of vapor separator. It includes the following components ---High pressure chamber composed of frame and upper cover; vapor segregated chamber that used to fuel dispenser be called general pressure chamber, due to vary along with pump pressure, returned oil floater being installed here; spheriform buoy with exhausting valve, exhausting valve seat, returned oil floater, retur fuel dispenser ned oil valve and exhausting pipe. Some factories evolve the spheroid buoy with exhausting valve and exhausting seat as a ball valve, illustrating in diagram 2-15. Now some manufacturers replace ball valve fuel dispenser with other structure that promotes the separator capacity. Diagram 2-14 Dimensional structure drawing of vapor separator 1-Valve cover 2-Vavle body 3-Steel ball 4-Upper cover Diagram 2-15 Structural drawing of single direction valve This kind of vapor segregated device has large pressure chamber in which oil flow slowly so that vapor has time upward. Therefore, this kind of vapor separator is better than that of small pressure chamber in terms of separate capacity. Anti-backward flow device: it mainly composes of spring seat, spring, check valve unit and outlet pipeline. Check valve gasket is made of oil-resistance rubber board, which is very important for realizing anti backward flow function. Working principle After starting a new fuel dispenser larger air in pipeline is impelled out through check valve and exhausting valve. As there is no foam found in oil indicator fuel dispenser would be refueled. Fuel contained foam flows out of check valve through the bottom of high pressure chamber. The floater in high pressure is upward, levels of exhausting valve and its seat at parallel height, floated air and rest of oil flow into vapor separator chamber from the groove of exhausting valve. If that is ball valve, the steel ball has covered the hole on valve cover, these air and flow only flow from the groove of ball valve. The mixture of oil and air flow into vapor separator chamber in

technical specification

    Operative   RECONCILE   Read Totals Command   CHS MT   fuel dispenser 2   Time-out =   IDLE   AcceptRej fuel dispenser ect CLOSED   Major Error   Command   fuel dispenser Terminate   Enable Command   Command   3   WAIT   TXN DATA   CHS MT   Process Command ==   TRANSACTION   OPEN   Process Completed   5 4   Time-Out   ACK PROCESS TXN   Terminate Command   TXN DATA DATA  chs_100 STANDARD FORECOURT PROTOCOLJ. Carrier April 1998 - FINAL DRAFT 1.00   CARD HANDLING SERVER APPLICATION   Page 20  2.2.2 ATTENDED TRANSACTION PAYMENT STATE TABLE   STATE 1

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    Empirically, economists have long had trouble pinning down the wealth effect from housing. Two decades ago, it was considered to be non-existent. Then studies found that changes in property values did affect fuel dispenser spending, but by less than changes in share prices did. However, the latest research suggests that, in America at least, housing wealth has a bigger influence on consumption than financial assets, and the fuel dispenser effect is increasing. A new study by Christopher Carroll, Misuzu Otsuka and Jirka Slacalek estimates that an increase in housing wealth of $100 in America eventually boosts spending by $9. A similar in fuel dispenser crease in stockmarket wealth would produce only $4 more spending. That ties in with a new microeconomic analysis of individuals wealth and spending habits by Raphael Bostic, Stuart Gabriel and Gary Painter, which estimates that the wealth effect from housing is around three times bigger than that of financial assets. A study by Karl Case, John Quigley and Robert Shiller also found the wealth effect from housing to be more significant than that from shares. In another study, Mr Slacalek finds that in industrial countries, the effect of a change in housing wealth on spending has risen in the past 15 years. But whereas in America and Britain it is now bigger than that of financial assets, in most other countries the wealth effect from share and bond portfolios is still greater. One reason for this difference is that Anglo-Saxon economies have more sophisticated instruments through which people can take cash out of their homes, through the ability to refinance mortgages, for example. All of which suggests that Wall Street s optimists may understate the impact of weaker home prices on spending. By the same token, however, the pessimists may exaggerate how much the recent rise in equity extraction has fuelled an unsustainable spending binge. First, some of the withdrawal of housing equity is a natural consequence of turnover in the property market, as older people move to smaller homes,