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S-GA44 FUEL DISPENSER

S-GA44

S-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 :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

    . Examine clearance and replace relevant components when necessary. 1.4. Measurement transducer block 1.5. No discharge due to Solenoid valve closed. First check electric wiring, then trouble on component itself (short circuit of wi fuel dispenser nding or block in valve membrane, etc). 1.6. Pipeline and bottom valve failure If continuously exhaust in vapor separator from beginning, disconnect filter cover and take out filter net; pour same kind of oil in it and given see oil level quickly drop, there is leakage occurred in pipeline and bottom valve. 1.7. No discharge caused by nozzle failure Jam in jointer or filter. Unlock strainer or jointer to remove dirt and waste. Nozzle always in auto-shut state, check automatic shut device, mainly inlet vent, spring. 1.8. Bottom valve be stuck in and pipeline is plugged. Exterior reasons for fuel dispenser no fuel dispenser delivery Oil level is so lower than bottom valve that pump can’t suck oil. Some valve(s) is closed in pipeline between tank and fuel dispensers. Air goes into valve(s). Single phase valve is rusted in bottom valve. Incorrect installation of flange causes leakage between inlet pipe and fuel dispenser. Inappropriate oil is refueled. Oil is easy to gasify; water in oil freeze; wax in oil plug pipe. Pipe design is unsuitable. Two fuel dispensers, for example, are connected in same pipeline without valve, or valve can’t shut completely; pipeline has many crooks or too thin. Slow flow rate as starting 3.1. Strainers, including cone-shaped filter net and nozzle filter net, are jammed. 3.2. Large amount of air flow into from broken parts or pipeline, causing much foam in oil indicator. 3.3. Large noise and vibration during operation Vacuum pressure is inadequate. Leakage occurs in overflow valve or pump gasket. Inner leakage in fuel dispenser increase as serious abrasion in pump vane or vane is stuck by waste. Vapor separator trouble Small floater of vapor separator is broken or fall down; insufficient pressure in high pressure chamber as exhausting valve can

technical specification

    ommunication Services  FP2_1.84 IFSF STANDARD FORECOURT PROTOCOL February 2003   COMMUNICATION SPECIFICATION   Page: 28   All messages are poi fuel dispenser nt to point with acknowledge. If a message doesnt receive an   acknowledge after the given number of retries this is reported to the application   which can take the decision (repeat cancel state change ...).  4.3 Messages Code IFSF_MC  The IFSF message code (IFSF_MC) can be used by the receiving device to easily filter  received data.  Please note that the LONTALK Message code should always have the same value as the  IFSF_MC. This enables the NUERON chip to filter the messages.   Definition   I fuel dispenser FSF fuel dispenser _MC   0 Message for the application not handled by the NEURON   1 Heartbeat message   2 Message for the communication database  4.4 Block Cutting BL  For messages bigger than the maximum block length (Max_Block_Length) the  communication layer cuts the message assigning to each part of the message a block number.  Blocks are numbered from n = 0 using sequential binary numbers and the last block number  is identified as being the last by having its value increased by 128 (bit 8 = 1).   BL   bit 8 bit 7 bit 6 bit 5 bit 4 bit 3 bit 2 bit 1   1 = last block   0 = intermediate not used block number   blocks  The maximum number of blocks is defined by the buffer size of the receiving device (around  1 Kbytes in the IFSF Dispenser Application) and the Block Length.  Example: If the Block Length is 32 the maximum number of blocks is 32 (numbered   from 0 to

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