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MU9C4320L-12TDI 参数 Datasheet PDF下载

MU9C4320L-12TDI图片预览
型号: MU9C4320L-12TDI
PDF下载: 下载PDF文件 查看货源
内容描述: 4K ×32的内容可寻址存储器(CAM )具有32位宽的数据接口 [4K x 32 Content Addressable Memory (CAM) with a 32-bit wide data interface]
分类和应用: 存储内存集成电路静态存储器双倍数据速率
文件页数/大小: 32 页 / 449 K
品牌: MUSIC [ MUSIC SEMICONDUCTORS ]
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MU9C4320L ATMCAM  
General Description  
GENERAL DESCRIPTION  
The MU9C4320L ATMCAM is a 4K x 32 Content  
Addressable Memory (CAM) with a 32-bit wide data  
interface. The device is designed for use in ATM switches  
and routers to provide very high throughput VPI/VCI  
translation through lookup tables held in external RAM.  
VPI/VCI fields from the ATM cell header are compared  
against a list of current connections stored in the CAM  
array. As a result of the comparison, the ATMCAM  
generates an address that is used to access an external  
RAM where VPI/VCI mapping data and other information  
associated with the connection are stored.  
This capability provides support for both VPCs and VCCs,  
and halves the number of cycles needed to compare VPI  
and VCI information. A set of control states provides a  
powerful and flexible control interface to the ATMCAM.  
This control structure allows memory read and write,  
register read and write, data move, comparison, validity  
control, addressing control, and initialization operations.  
The ATMCAM architecture uses a non-multiplexed data  
bus, direct hardware control of the device, and an  
independent bus for returning match results. Software  
control is also supported for systems where optimum  
performance is not needed.  
The ATMCAM simultaneously compares the VPI/VCI in  
the CAM array as well as the VPI in a separate VP table.  
OPERATIONAL OVERVIEW  
The ATMCAM is designed to act as an address translator  
for lookup tables in ATM switch and router systems. It  
takes incoming VP/VC identifiers in ATM cell headers  
and generates addresses that access data in an external  
RAM. The RAM holds translated VPI/VCI information  
and other data relating to the particular connection. Refer  
to Figure 2 for a simplified block diagram of an ATM  
switch.  
With the connection established, the controller strips the  
VPI/VCI information off an arriving cell to form the  
Comparand, which is then compared against the contents  
of the ATMCAM. The ATMCAM generates an address  
that is used to access the VPI/VCI mapping data in the  
external RAM. The controller reads the data from the  
RAM and prefixes the translated header to the cell  
payload.  
When a new connection is set up, the VPI/VCI of the  
connection is written to the ATMCAM. The write cycle  
can be to either a specific address within the device, or to  
the next free address. The address at which the write takes  
place is driven onto the Output Address bus, so VPI/VCI  
mapping data can be written simultaneously into the  
external RAM at the correct address.  
If the switch operates on VPI only, as well as on full VPI/  
VCI, the ATMCAM can compare both the VPI and VPI/  
VCI fields simultaneously. The option to test VPI fields is  
selected in the Configuration register of the ATMCAM.  
When selected, the VPI field is used to form an address  
that accesses a single-bit RAM array in the ATMCAM.  
This area of memory is referred to as the VP Table, and  
holds a single bit of information indicating the validity of  
a VP value.  
ATM Data Stream  
Switch  
Control  
and  
CAM  
Control  
Data  
ATM Controller  
VPI/VCI  
Data  
Switch  
Fabric  
Address  
RAM  
ATMCAM  
Figure 2: Switch Block Diagram  
2
Rev. 3  
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