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S-GA44Q FUEL DISPENSER

S-GA44Q

S-GA44Q FUEL DISPENSER

FlowMeter Type : Optional

Accuracy : ±0.2%

Pressure Loss (kg/cm): Under 0.25

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 : 330kg.

Dimension(L×W×H) :1270*560*2200(mm)

Dimension(L×W×H)Of Qty of Container : 40ft: 26

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technical archives

    VP500B with power showed in Diagram 4 fuel dispenser -4. As the simplest design, it could be installed at end of reclaiming pipe, namely, near to tank and inlet. It can simultaneously reclaim 12 nozzles, applicable to fuel dispenser with suction pump or submersible pump. Center-type reclaiming vacuum pump VP500B without power showed in Diagram 4-5. This type of pump is very applicable to city filling station, which is powered by submersible pump, mounted 8 nozzles of reclaiming. The deployment of vapor pipe and air vent of tank ensures station’s normal operation. Distributed reclaiming vacuum pump: each fuel dispenser is mounted vapor reclaiming vacuum pump. Diagram 4-6: VP vacuum pump Diagram 4-7: Separated jointer Diagram 4-8: Coaxial hose Separated jointer: its main function is used as convert jointer to separate vapor and oil. Repeated use breakaway: used for protecting fuel dispenser in case of pull down by vehicle. As exterior pull reaching 310~350lb, breakaway is automatically closed, at same time switch off pipelines of vapor and oil. Coaxial hose: a kind of hose with two layers that delivery vapor in internal and exterior oil. Nozzle: with double-layer pipes, mounted vapor valve. Fuel dispenser with vapor recovery system This kind of fuel dispenser with vapor recovery function is used for reclaiming volatile oil vapor near outlet without affecting normal refueling. There are two types widely adopting in domestic market, one is the new developed fuel dispenser that has vapor recovery function; the other type is improved fuel dispenser based upon traditional dispenser and added vapor recovery function. Generally, these are divided into two categories: submersible type and built-in pump type. Dia fuel dispenser gram 4-9: Vapor recovery nozzle Submersible fuel dispenser with vapor recovery function If adopt vacuum-aid vapor rec fuel dispenser overy system, the matching fuel dispenser with vapor recovery function should adopt submersible fuel dispenser. Its working principle is that center vacuum pump g

technical specification

    stripe cards  fuel dispenser   See section 6.4.1   56 Original data elements LLVAR n ..35 Mandatory orig message identifier orig   STAN and orig date and time local   transaction   Wednesday 10 May 2006 - Revision 03   Document title  IFSF POS to FEP Interface  Section Page  Message Content (German Debit) 87178  Element Data element name Format Attribut Usage notes  number e   59 Transport data LLLVAR ans ..999 Conditional - same as original transaction   Required for German Debit cards   See Section 6.4.2   60 Entered PIN digits LLLVAR ans ..999 Conditional if card scheme requires it   (length n2)   Not required for German Debit cards   61 Failed PIN attempts LLLVAR ans ..999 fuel dispenser Conditional if card scheme requires it   fuel dispenser (length n1)   Required for German

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    I know somethi fuel dispenser ng you don t know White s tree frog secretes mucus from its toe pads, and experts in the field have long thought that it is this fluid which helps the frog to cling on. Not so, apparently. In a paper published this week in Interface, one of the journals of Britain s Royal Society, Walter Federle, of Cambridge University, and his colleagues show what is truly afoot. They demonstrate that the toe pads of the frogs are in direct and dry contact with whatever they are standing on, squeezing out the mucus layer. Whatever is holding the frog to the surface, it is not its mucus. Many families of tree frog have evolved adhesive toe pads. The pads are soft, with a regular hexagonal pattern separated by channels into which mucus glands drain. Each hexagonal cell contains a finer pattern of pegs called hemidesmosomes that help the frog to grip. The pads are kept permanently wet by the mucus. Several lines of evidence suggested that the combined forces of surface tension and viscosity were enough to explain how tree frogs stick to surfaces—until some frogs were spotted climbing on rocks over which water was flowing. This led to suspicions that another mechanism was at work. First, the team measured the thickness of the fluid layer between the toe pad and the Petri dish that the frog was standing on. To do this, they used interference reflection microscopy, a technique that reveals details smaller than the wavelength of light itself. They found that the mucus film was typically less than 35 nanometres thick (a nanometre is a millionth of a millimetre). Indeed, its thickness was often “indistinguishable from zero� Thus some parts of a frog s toe pad are in direct and dry contact with whatev fuel dispenser er they are standing on. Next, the researchers compared the viscosity of tree-frog mucus with that of water. They pl fuel dispenser aced a sample of each in a machine that shook them about, and focused a laser beam on each sample. The fluids exerted a drag, causing the samples to move to