KMC68MH360RC33L [NXP]

4 CHANNEL(S), 10Mbps, LOCAL AREA NETWORK CONTROLLER, CPGA241, PGA-241;
KMC68MH360RC33L
型号: KMC68MH360RC33L
厂家: NXP    NXP
描述:

4 CHANNEL(S), 10Mbps, LOCAL AREA NETWORK CONTROLLER, CPGA241, PGA-241

通信 时钟 局域网 数据传输 外围集成电路
文件: 总3页 (文件大小:269K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Freescale Semiconductor, Inc.  
MC68360  
Preliminary Information  
MC68360 New Features on REV C.1  
March 7, 1995  
Some new features have been added to the XC68360 Revision C.1 device. The uses of these new  
features are not required with an exception of hardware device errata fixes. The main purpose of the revision  
C.1 device is to fix the errata items that is described on the QUICC Device Errata as "will be fixed on rev C.1".  
Revision C.1 device is visually marked with mask number 1E68C. The RISC revision number in the XC68360  
at address (MiscBase+$00) has the value $0003.  
NOTE  
The following information is not described in the MC68360 User's Manual  
(MC68360UM/AD). The use of this document along with the QUICC Device  
Errata, QUICC Users Manual Errata, Changes in Rev B, the Centronics  
Controller Manual and the User's Manual will fully describe revision C.1  
device operation. All of this information will be incorporated into a future  
revision of the User’s Manual.  
CPM  
DUAL PORT RAM  
256 Bytes of memory have been added to the internal RAM of the part. The memory map on page 3-3 of the  
User’s Manual should now reflect that the area from DPRBASE + $700 to DPRBASE + $7FF now contains  
256 bytes of memory in Dual-Port RAM which contains User Data / BDs / Microcode Scratch.  
NOTE  
This extra memory will not be available if a RAM microcode package is  
installed in the QUICC.  
This document contains information on a product under development. Freescale reserves the right to change or discontinue this product without notice.  
©
Freescale Semiconductor,  
1995  
IncF. or More Information On This Product,  
Go to: www.freescale.com  
Freescale Semiconductor, Inc.  
SMC  
UART MODE  
SMC Event Register (SMCE)  
The SMC UART event register has one new bit. The width and the location of the register has not changed.  
The definition of the new bits is as follows:  
Bit 6 BRKe (End of Break Sequence Received)  
This bit is set when the end of a break sequence is received on the SMC UART receiver.  
PARALLEL I/O PORTS  
PORT A  
Two new multiplexing options have been added to Port A. Table 7-16 on page 7-351 should show the  
following new options:  
PAPAR(0)=1 and PADIR(0)=1 results in Signal PA0 being used as RXD4 (Only if PA6 is not being used as  
RXD4)  
PAPAR(1)=1 and PADIR(1)=1 results in Signal PA1 being used as TXD4  
SERIAL INTERFACE  
SI RAM ENTRIES  
A loop back option has been added in each time slot in the SI. This option is set by a new bit in each entry in  
the SI RAM. The width of the entry has not changed. The definition of the new bits is as follows  
Bit 15 LOOP (Loop back this time slot)  
Set this bit when you wish to perform a loop back on this time slot  
0 = normal mode  
1 = loop back mode for this time slot  
For More Information On This Product,  
Go to: www.freescale.com  
Freescale Semiconductor, Inc.  
SERIAL INTERFACE SYNCHRONIZATION  
In previous versions of the QUICC, the SI would reset itself if an unexpected sync pulse was seen during the  
middle of a time frame. This would cause the SI to sync again on the following sync pulse but it would also  
lead to an unresolved loss of synchronization of an SCC or SMC operating in Transparent or GCI modes  
(assuming that SCC or SMC was receiving data from the SI).  
In revision C.1 and later of the QUICC, the SI will ignore this unexpected sync pulse and synchronize on the  
next sync pulse (it will not reset itself). This may lead to a reception of one or two “bad” slots but the SCC or  
SMC will remain synchronized.  
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Japan:  
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Headquarters  
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Information in this document is provided solely to enable system and software  
implementers to use Freescale Semiconductor products. There are no express or  
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For Literature Requests Only:  
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implied copyright licenses granted hereunder to design or fabricate any integrated  
circuits or integrated circuits based on the information in this document.  
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vary in different applications and actual performance may vary over time. All operating  
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Semiconductor was negligent regarding the design or manufacture of the part.  
For More Information On This Product,  
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