PEB20320H-V34 Infineon Technologies, PEB20320H-V34 Datasheet - Page 227

IC CONTROLR 32-CH HDLC 160-MQFP

PEB20320H-V34

Manufacturer Part Number
PEB20320H-V34
Description
IC CONTROLR 32-CH HDLC 160-MQFP
Manufacturer
Infineon Technologies
Datasheet

Specifications of PEB20320H-V34

Function
Multichannel Network Interface Controller (MUNICH)
Interface
HDLC, V.110, X.30
Voltage - Supply
5V
Current - Supply
100mA
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
160-BSQFP
Includes
Automatic Flag Detection, CRC Generation and Checking, Error Detection, Interframe-Time-Fill Change Detection
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Power (watts)
-
Number Of Circuits
-
Other names
PEB20320H-V34
PEB20320H-V34IN

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
PEB20320H-V34
Manufacturer:
Infineon Technologies
Quantity:
10 000
6.3.2
A few more effort is necessary to integrate the MUNICH32 into a ST BUS system from
MITEL. The basic assumption made here is that the clock master is the ST BUS system.
That means all signals derived from the ST BUS need to be adapted to match the
MUNICH32 timing requirements. First of all the clock signal C2 must be inverted before
it can be used as the MUNICH32 clocks (TCLK = RCLK = C2). The next step is the
generation of the TSP and RSP pulses out of the F0 signal, which is the ST BUS frame
synchronization signal. The RSP pulse can be derived from the F0 signal by means of a
simple D-Flip-Flop clocked with C2, as depicted in the following Figure 116. Due to the
necessary phase relationship between the serial data streams and their corresponding
TSP, RSP and F0 pulses, the effort to generate the TSP pulse is much higher than for
RSP.
Figure 116
User’s Manual
MUNICH32 in Systems with MITEL ST BUS
MUNICH32
PEB 20320
RDATA
TDATA
RCLK
TCLK
RSP
TSP
Q
Q
Q
Q
STi
STo
227
D
D
C2
System Clock Adaption
ST-BUS
&
F0
Decode
’254’
Counter
RES
8-Bit
Application Hints
PEB 20320
ITS04692
01.2000

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