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F-GA4Q FUEL DISPENSER

F-GA4Q

F-GA4Q 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 : 350kg

Dimension(L×W×H): 1660*660*2190(mm)

Dimension(L×W×H)Of Qty of Container : 40ft: 17

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    ystem. The valve core of overflow valve moves outward so that all pressured oil flood past the outlet of overflow valve and flow into suction chamber, realizing oil circulation in pump. The hydraulic system pressure is adjusted through increasing or reducing spring pressure. The most fragile section in hydraulic system will be damaged as the pressure reaching a certain value without a overflow valve to control pressure. The spr fuel dispenser ing pressure will be increased through to add the thickness of pre-pressure ring (20a). The pressure to open overflow valve and the delivery volume of fuel dispenser are also increased. Vice versa, as the thickness is reduced. working principle of inner-cycloidal gear pump Inner-cycloidal gear pump consists of a pair of inner and outer gear joggled interactively. Inner gear is driver, called as inner rotor; outer gear is driven called as outer rotor. The figure of inner rotor is round arc curve, but the joint section of inner rotor figure and outer rotor curve is exterior cycloidal. Outer rotor exceeds one tooth than inner rotor. Sever sealed working cubage are formed between teeth of inner and outer rotor. Inner rotor brings outer rotor rotation anticlockwise. At that time the cubage gradually increase, formed in suction chamber by the tooth top of inner rotor and gear vale of outer rotor. As pressured oil suck into discharge chamber the cubage formed by inner and outer gear is reduci fuel dispenser ng, impelling oil out of pump. Continual suction and discharge result from the unceasing rotation of out gear driven by inner gear. 1-Vapor separator frame 2-Filter bracket 3-Filter 4-Filter bracket 5\6-O-ring 7-Gear group 8-Axis 9-Key 10-Cover 11-Oil seal 11a-Bolt 12-Screw 13-Elastic washer 14-Thread pipe 15-Joiter 16-Inlet filter 17-Stainer cover 18-Seal ring 19-Voverflow valve cover 20-Spring 20a-Preloading ring 21-Voverflow valve 22-Overflow valve 23-Filter with valve 23a-Spring 24-Exhaust pipe jointer 25-Screw 26-Outlet pipe 27-O-ring 28-Pump body Diagram 2-9: One kind of inner cycloida fuel dispenser

technical specification

    de r ponse dautorisation (D390)   Format: C2   Tag: 8A   Domaine: toutes cartes   Codage: suivant code MEDIAA Autorisation (MPA V5 partie 4 chapitre III.3). Identique au  champ 39 de la r ponse CB2A du serveur dautorisation. La r ponse dautorisation est compl t e  suivant le type de carte par les donn es D827 (B0 ou carte ?piste) ou D5040 (EMV) qui en  permettent linterpr tatio fuel dispenser n.  All right reserved � Imprim le 210203 13:02 79138   MPA V5.2: SPECIFICATIONS Ref : NT1118R5   TECHNIQUES Nb Pages : 138 + 0 PJ   de la LIAISON AUTOMATE-MONETIQUE Date :  POS Department   13.2.1.7. Donn es de lapplication carte utilis es pour le calcul du CAI acqu reur (D401)   Format: O18 (3 (2+4))   Tag: DF C1 91   Domaine: CB   Codage:   Octets MSB MSB(ADL+112) LSB(ADL+112) Contenu(ADL+112) sur 4 octets   MSB(ADL+136) LSB(ADL+136) Contenu(ADL+136) sur 4 octets   Octets LSB MSB(ADL+144) LSB(ADL+144) Contenu(ADL+144) sur 4 octets   Octets msb fuel dispenser Octets lsb   13.2.1.8. Type de technologie dacquisition dinformation (D724)   Format: BCD1   Tag: DF C2 D4   Domaine: toutes cartes   Codage: 1: puce; 2: piste   13.2.1.9. Longueur du modulo de la clef publique de lautorit de certification (D746)   Format: O1   Tag: DF C2 EA   Domaine: CBEMV   Codage: binaire pur   13.2.1.10.Code activation monnaie ou devise (D751)   Format: E (type num r )   fuel dispenser

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    The instruments consist of two tubes arranged in an L-shape. A laser beam is split and one half is sent down each tube, bouncing off a mirror at the end. The two parts are arranged so that when they return to the beam-splitter, the peaks of one wave are in step with the troughs of the other. They therefore cancel each other out, leaving darkness. A passing gravitational wave would stretch one tube and shrink the other, distu fuel dispenser rbing the neat alignment of peaks and troughs, and creating light. A couple of interferometer-based experiments are under way. Others are due to start within a year. The information they yield will be combined and analysed by scientists involved in all the experiments. For a gravitational wave to be unambiguously identified, it must be detected by more than one instrument. The biggest experiment, with arms up to four kilometres (about two and a half miles) long, is called the Laser Interferometer Gravitational Wave Observatory, or LIGO. It has been collecting data for the past seven months. It has three machines, one near Livingston, Louisiana, and two at Hanford in Washington state. A smaller, German-British experiment called GEO600 (because the interferometer arms are 600 metres long) started taking scientifically useful data in Hanover last month. These will be joined by Virgo, a collaboration between Italian and French researchers with three-kilometre arms, which is being fuel dispenser built near Pisa. Another interferometer with arms of the same length is under construction at Kamioka in Japan. Unfortunately, a passing gravitational wave will make only a tiny change in the distance the laser beams have to travel. Even if experimenters bounce the beams to and fro to increase the effective length of an interferometer s arms to more than 100 kilometres, the expected difference in length between the two beams paths still amounts to less than a hundred-millionth of the diameter of a hydrogen atom. Scientists are trying ever more clever ways to sense this change new materials h fuel dispenser