DOWNLOAD Sharp UP-3500 (serv.man34) Service Manual ↓ Size: 782.08 KB | Pages: 59 in PDF or view online for FREE

Model
UP-3500 (serv.man34)
Pages
59
Size
782.08 KB
Type
PDF
Document
User Manual / Operation Manual
Brand
Device
EPOS / UP3500 In-Line (IRC Network) Manual
File
up-3500-sm34.pdf
Date

Sharp UP-3500 (serv.man34) User Manual / Operation Manual ▷ View online

16
In the IRC system, the following two systems for PLU/EAN stock control are available: a centralized system
and an individual system.
In choosing the type of PLU/EAN stock control system, please consult your authorized SHARP dealer.
Centralized system
Preset stock data is stored only in the master. Stock data in each satellite must be zero before a PLU/EAN
entry is made.
When a consolidated report is generated, stock data in respective satellites is consolidated into the stock file
in the master and calculated there.
The stock data calculated at the master is displayed or printed out and the stock data in each satellite is
reset to zero at the same time.
Individual system
The master and satellites store their own preset stock data. When a consolidated report is generated, the
stock data in the master and satellites is consolidated and displayed or printed out.
In the individual system, the consolidation does not affect the stock data in the master.
NOTE
10. PLU/EAN stock control
17
All REG-mode transaction data in each satellite is saved in its T-LOG buffer. T-LOG polling is a data
collecting system in which the master collects data from the T-LOG buffers in satellites.
A request for T-LOG polling is issued from the satellite to the master when the number of data records in its
T-LOG buffer exceeds a predetermined number.
As the master detects such a request, it starts collecting T-LOG buffer data. After collecting data from one
satellite, the master waits for a preset time and starts collecting data from another satellite. In T-LOG polling,
the data transmitted to the master is stored in the corresponding file.
The data flow in T-LOG polling is shown below.
Polling sequence (see the figure above.)
(1) Satellite A makes a request for polling.
(2) The master detects the request and starts collecting T-LOG data from satellite A.
(3) The T-LOG data is sent to the master.
(4) After receiving T-LOG data from satellite A, the master waits for a preset time.
(5) The master detects a request from another satellite (B, C or D) and starts polling for it.
You can specify in the PGM2 mode whether the entry function of a satellite is disabled (LOCK) or enabled
(CONTINUE) when the T-LOG buffer is full.
If it is disabled, an error message “T-LOG FULL” will be displayed and you are not allowed to make any
entry in the REG/MGR mode at the satellite until the error message is cleared.
If it is enabled, you can continue entries but cannot save the entered data. Even if data is entered after the
T-LOG buffer becomes full, the previous data saved in the file will not be erased.
• Depending on a remaining capacity of T-LOG buffer, T-LOG full indicator “T” appears on the
top right of the screen in a colored square: green for less than 20 percent remaining, yellow for
less than 10 percent remaining and red for less than 5 percent remaining.
• For the programming whether or not to lock a registration entry when the T-LOG file is full, see
the UP-3500 Instruction Manual.
• For the T-LOG polling between the master and MWS, please consult your authorized SHARP
dealer.
NOTE
Master
Satellite A
Satellite B
Satellite C
Satellite D
(1)
(5)
(4)
(2)
(3)
11. T-LOG polling
18
In the IRC system, the following two systems for PLU/EAN data control are available: a centralized system
and an individual system.
In choosing the type of PLU/EAN data control system, please consult your authorized SHARP dealer.
Centralized system
PLU/EAN sales data is centrally controlled by the master. PLU/EAN sales data which is temporarily stored
in the T-LOG buffer of a satellite is sent to the master by T-LOG polling.
Individual system
The master and satellites control their own PLU/EAN sales data. PLU/EAN sales reports can be individually
generated at each machine. Consolidation of PLU/EAN sales data can be achieved by generating the
consolidated PLU/EAN report at the master.
The learning function enables the operator at a satellite to set the unit price, associated
department and auto-deletion/non-deletion choice for an item whose code is undefined in the
PLU/EAN file, and to register the transaction. (For further information on the learning function,
see the UP-3500 Instruction Manual.)
If the satellite has no dynamic EAN file, the data on the EAN item which has been set using the
learning function is stored in the PLU/EAN main file to update the file.
If the satellite has a dynamic EAN file, the data is stored in the dynamic EAN file to update the file.
The data which has been set using the learning function in the training mode at a satellite is also
stored in its T-LOG buffer.
For the data flow, see the following figures.
(1) In case that the master and satellites have no dynamic EAN files:
PLU/EAN
main file
T-LOG
buffer
PLU/EAN
main file
Saving
Updating
Registration by the
learning function
T-LOG polling/updating
Master
Satellite
NOTE
12. PLU/EAN data control
19
(2) In case that the master has a dynamic EAN file and satellites don't:
(3) In case that both the master and satellites have dynamic EAN files:
PLU/EAN 
main file
Dynamic
EAN file
Dynamic
EAN file
PLU/EAN 
main file
T-LOG
buffer
Saving
Updating
Registration by the
learning function
T-LOG polling
Updating the PLU/EAN
main files of satellites
At this time, all dynamic
EAN files in the IRC
system are cleared.
Updating
Master
Satellite
T-LOG polling
PLU/EAN
main file
Dynamic
EAN file
T-LOG
buffer
PLU/EAN
main file
Saving
Updating
Registration by the
learning function
Updating the 
PLU/EAN main 
files of satellites
At this time, 
the dynamic EAN file of 
the master is cleared.
Updating
Master
Satellite
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