Instructions for Using the Fuel Algorithm to Control Fuel and Other Products Dispensing Units

Usage modes:

1. Only pulse mode.

2. Interface mode via RS485 (by total accumulative counter).

Necessary components for pulse mode:

1. Power supply 220 to 24/9-36 to 24

2. RFID card reader with 1-wire output. – connection to 1-wire input

3. Pulse counter, Pulse scanner, Electronic boards with pulse output - input IN0

4. Tracker Galileosky 7x ext, 7x HUB

5. Access control unit EXZ. (valve control, motor control) - output OUT0

6. Memory card.

7. Algorithm: SCRIPT Exzotron/EX_FControl_LLS

Required components for interface - pulse mode:

1. Power supply 220 to 24/9-36 to 24

2. RFID card reader with 1-wire output or EFR scoreboard. – connection to 1-wire input

3. Pulse + RS485 EFD scoreboard output or EFR scoreboard input IN0+RS485

4. Tracker Galileosky 7x ext, 7x HUB

5. Access control unit EXZ. (valve control, motor control) - output OUT0

6. Memory card.

7. Algorithm: SCRIPT Exzotron/EX_FControl_LLS

ELECTRICAL EXAMPLES

Pulse only.

 

Wiring diagram for EFD indicator

Connection diagram EFL 6.0

ON-BOARD TERMINAL SETUP PROCEDURE

On-board terminals only Galileosky 7x ext and Galileosky 7x HUB

For the Galileosky 7x ext device, the firmware is at least 38

For the Galileosky 7x HUB device, the firmware is at least 38

The following commands must be sent to the Galileosky block:

FLASHARCHIVE 1,1
REMOTECONFIG 1
ARCHIVE 0
out 0,1
out 1,1
IBCFG 4,4
CANREGIME 11,125000,2000,1
ActiveCAN 0
CAN1REGIME 11,125000,2000,1
ActiveCAN1 0
HeadPackBit 3,1
HeadPackBit 4,1
MainPackBit 178,1
MainPackBit 179,1
MainPackBit 180,1
MainPackBit 181,1
MainPackBit 182,1
MainPackBit 183,1
MainPackBit 3,1
MainPackBit 4,1
MainPackBit 5,1
MainPackBit 6,1
MainPackBit 7,1
MainPackBit 8,1
MainPackBit 9,1
MainPackBit 10,1
MainPackBit 11,1
MainPackBit 12,1
MainPackBit 13,1
MainPackBit 16,1
MainPackBit 32,1
MainPackBit 37,1
MainPackBit 52,1
MainPackBit 60,1
MainPackBit 77,1
MainPackBit 63,1
MainPackBit 61,1
MainPackBit 62,1
MainPackBit 65,1
MainPackBit 64,1
MainPackBit 81,1
MainPackBit 80,1
MainPackBit 79,1
MainPackBit 78,1
MainPackBit 95,1
MainPackBit 97,1
MainPackBit 96,1
HeadPackBit 1,1
HeadPackBit 2,1
MainPackBit 177,1
MainPackBit 184,1
MainPackBit 185,0
MainPackBit 82,1
MainPackBit 83,1
MainPackBit 66,1
RS485FN 4
incfg5 1,1,33000,33000,33000,33000,1,0
1. SCRIPT Exzotron/EX_FControl_LLS
2. settings


ATTENTION WITHOUT ACTIVATION OF THE LICENSE OF ALGORITHMS, the fuel dispenser IS DISPENSING NO MORE THAN 10 liters.

Description of passed parameters:

CAN8BITR0 - transaction flag number 2
CAN32BITR2 - accumulative liter counter, which is read from the fuel dispenser control unit
CAN8BITR3 - total milliliter counter
CAN32BITR3 - RFID card number that is transmitted from a plastic card reader via 1-wire through the Galileosky unit
CAN32BITR4 - counter of cumulative impulses at the rate of 100 impulses per liter. After the transaction is completed, it is reset to zero.
IN5 - relative virtual pulse counter (for servers that do not support receiving CAN parameters.)
IBUTTON - number of the attached plastic card to the reader. (For servers that do not support receiving CAN parameters.)

 

BASIC GALILEOSKY COMMANDS

RFIDSET 12345,0,0,0,0,0 - adding an unlimited card.

RFIDSET 12345,1,0,0,0,0 - blocking shipment by card.

RFIDSET 12345,1,1000,200,1000,100 - adding a card with a balance of 10 liters, a daily limit of 2 liters and a daily balance of 1 liter.

RFIDINFO 12345 – view card balance. settings - the command to set the settings for the algorithm. (parameter number/value)

settings 10, lic - license activation command. (In fact, a license file linked to IMEI is fixed on the memory card)

lic - license number.

Answer:

L=1; V_2023.02.06; U 1.3; Kf 2.100; Mode 3.136; CardHold 4,100; In 5,100; TtAdr 6.5; WaitF 7.10; Mode 8.0; IbAddr 9,255

L= 0 – license is not activated, 1 is activated Version - date of the algorithm version.

U 1 - 1 parameter, time zone value, for setting the time for resetting the daily limit.

Kf 2 – 2nd parameter, value of the calibration factor per 1 liter for the virtual counter on IN5

Mode 3 – 3rd parameter, setting the operating mode according to the bit setting. See below…

CardHold 4 – parameter (one-touch mode, activation and waiting time for impulses from the fuel dispenser when the card is touched once)

In 5 - parameter, number of the counting input for the pulse mode. (input type is cumulative). Value 10 if only RS485.

TtAddr 6 - Setting the address of the total counter via RS485. (default for EFD LLS1, EFR 5) for EFD Liter mode only.

WaitF 7 - the time of automatic completion of the transaction after loading. (waiting for impulses to continue loading).

IbAdr 9 - RS485 port number, which is used to determine the Ibutton label.

 

Important!!! if the parameter is not used, set the value to 255 (Settings 9,255)!!!!!!!!!!!

 

Added authorization on a call to the GSM number of the terminal, the last 9 digits of the caller's number are the card number in the algorithm, you need to register!

The above improvements are used only in the "One touch" mode!!!

Bitwise setting of algorithm modes - moderfid

beat | description | 0 | 1

0 | pocket mode | pocket | one touch

1 | *total for LLS (100 to 1) | disabled | included

2 | interrogation of level sensors by LLS | disabled | included

3 | output control | disabled | included

4 | IBUTTON filter in pocket mode | disabled | included

5 | end on card draw, ignoring WAIT_FUEL | disabled | included

6 | issuance of any card | disabled | included

7 | EFL New firmware or Topaz | disabled | included

8 | do not fix issuance without a card | disabled | included

9 | identification type | Employee | Automobile

10 | double identification | disabled | included

11 | autostart transaction | disabled | included

12 | TR_EN control via RS485 | disabled | included

13 | stop by stop button at input IN3 | disabled | included

Attention to work via RS485, you need to disable the hardware handler on GALILEOSKY.

When working via the RS485 port and setting the SETTINGS 5,10 mode, the algorithm does not fully use the pulse inputs and their settings. Therefore, the user can configure the pulse inputs at his discretion.

 

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