9.10.1  

Basic settings 
 


Settings | Network | Basic settings
 
The Basic settings are only valid as of HiPath 3000 V1.2. For other versions/variations, similar settings can be made under IP parameters.

9.10.1.1  

Area: IP access 
Protocol
IP access is used to configure IP access in the communication system. Note that this IP access has no significance for VoIP functionality, but only enables assess for administration, call charge output and applications over CSTA.
The following protocols can be selected:

Inactive  
There is no connection available to the communication system via IP.
LIM  
In this mode, the LIM sub-board on the control board is used as a LAN access to the communication system (only HiPath 3000).
HIP  
In this mode, the HG 1500 card is used instead of the LIM sub-board as the LAN access. The HG 1500 works in the bridging mode, that is, the HG 1500 and the central board of the communication system have separate IP addresses that share a physical LAN interface.
SLIP  
In this mode, IP access is enabled via the V.24 interface. Either the router or the CommServer (V.24/IP box) can be connected here.  
This mode is currently used only in connection with HiPath 500, where HiPath is connected with the HXGO card via a V.24 interface. The selection of this IP access method sets default values for SLIP, which should generally not be changed. SLIP is set by default for HiPath 3150 to 3250 On starting up the system, a test (ping) is performed to verify that the IP connection is working. If it is not, the V.24 interface is initialized with the with the usual V.24 parameters.  

Block IP Access Manager  
The IP Access Manager (see Start IP Access Manager handles the configuration of IP access data of one or more communication systems (incl. the HG 1500 card) directly via the LAN. If such direct configurations need to be prohibited due to special security requirements, this flag must be set.

9.10.1.2  

Area: Router call no. 

Call no. test  
The Call no. test is effective globally, i.e., if it is activated, only calls with a calling party number for which there is also an ISDN partner (cf. routing) defined are accepted. All calls without a calling party number are rejected.

Router call no.  
The direct inward dialing of the communication system is specified here; this is the number under which the communication system can be dialed from outside. The router functionality of the communication system is accessible from outside under this direct inward dialing.

Check DID  
The entered call number for the router is checked for consistency against the call numbers in the communication system. The number must be unique.

9.10.1.3  

Area: Connection control 

Number redials  
Gives the maximum number of Number redials for a call number from the PSTN partner structure (relevant only if the communication system initiates the call over PSTN).

Pause  
Specifies the Pause, in seconds, between the number redials.

9.10.1.4  

Areas: LAN interface/PSTN interface 
The communication system is provided with 2 network interfaces. These are the LAN interface (LAN), which is connected to the corporate network, and the Public Switching Telephone Network (PSTN) interface.
The following parameters can be set up for both interfaces:

IP address  
IP address of the interface.
The IP address must be unique within the network. Any new IP address to be configured should therefore be "pinged" before it is assigned. If the IP address responds, it should not be assigned again.  

Subnet mask  
The subnet mask addresses subnets by masking IP address bits. It indicates the size of the subnet. You can transfer data directly from processor to processor within a subnet without having to establish a connection via a router or a gateway.

MTU  
The maximum packet length, in bytes, for IP protocol. It can lie within the range of values from 500 to 1500.

9.10.1.5  

OSO IP Address area 
The IP address of the OpenScape Office Servers in LAN is entered in the input field "OSO IP Address". OpenScape Office is then connected to HiPath 3000.

9.10.1.6  

Area: TFTP server for APS transfer 
Using the protocol TFTP (Trivial File Transfer Protocol), files can be transported from one computer to another computer. You can operate the communication system in either the server mode or the client mode when transporting.
   -   The communication system in TFTP server mode: The APS is stored on the remote computer and this APS is loaded into the communication system using a "tftp -i <IP address> put <source file name> Hicom.fli" on the remote TFTP-Client. I.e., the client starts off the APS transfer.
   -   The communication system in TFTP client mode: Upon activation via the private SNMP-MIB with "TFTP Download Action", the communication system loads an APS from the administrated TFTP server on its own accord.
The switchover to the transferred APS is realized via SNMP, or in TFTP client mode, at the entered Switchover time.

IP address  
IP address of the TFTP server (TFTP = Trivial File Transfer Protocol) that provides the APS (Application Program System) for the communication system.

Path  
Enter the path here where the APS is stored on the remote processor. The complete path is to be entered.

Switchover time  
Enter the switchover time at which the communication system should switch to the transferred APS. The Time is set in the first input field and the Date of the switchover in the second input field. An initiation via SNMP is necessary to trigger an immediate or time-controlled switchover after the TFTP transfer.

9.10.1.7  

Area: Interface 
If SLIP is configured as the IP access, then the baud rate of the V.24 interface on the central board can be set here in the same way as for the connected device.

See also:  
   -   Section 9.10 "Settings | Network"
   -   Section 9.10.2 "IP parameters"
   -   Section 11.3 "Start IP Access Manager"