Memory structure with reduced number of reflected signals

A memory structure with reduced-reflection signals at least includes a processing unit; a lumped circuit unit, connected to the processing unit; a plurality of memories, connected to the lumped circuit unit; and a reflected signal absorption unit, disposed at one end of the lumped circuit unit. Thereby, with the cooperation of the processing unit with each memory for signal transmission, the reflected signal absorption unit can be used to absorb the reflected signals so as to reduce the number of reflected signals during signal transmission, achieving the effect of stable operation for the memories.

BACKGROUND OF THE INVENTION

1. Field of the Invention

The present invention relates to a memory structure with reduced-reflection signals, and particularly to a memory structure with reduced-reflection signals, in which with the cooperation of the processing unit with each memory for signal transmission, the reflected signal absorption unit can be used to absorb the reflected signals so as to reduce the number of reflected signals during signal transmission, achieving the effect of stable operation for the memories.

2. Description of Related Art

A conventional memory structure usually consists of a processor, a plurality of memories connected to the processor, and a plurality of signal reflectors respectively disposed at a front end of each of the memories.

However, in terms of the above structure, it is still unable to effectively reduce the number of reflected signals in the process of signal transmission, seriously affecting the operation for the whole system. Furthermore, when the integration of multiple memories is to undertake (for example, a 32-bit memory is integrated to be a 64-bit one), at least two chips are connected. In such a situation, address areas and control areas of the multiple memories will be connected. It not only will lead to an increase in the complexity of the circuit layout, but will a substantial increase in the number of layers for the layout.

For this reason, the inventors has studied and proceeded in-depth discussion, and actively seek approaches for many years engaged in the research and experiences of related industries and manufacturing. After long-term research and efforts in development, the inventors has finally the successfully developed this invention ‘memory structure with reduced number of reflected signals’ which overcomes the shortages in the prior art.

SUMMARY OF THE INVENTION

A main purpose of this invention is to provide a memory structure with reduced-reflection signals, in which with the cooperation of the processing unit with each memory for signal transmission, the reflected signal absorption unit can be used to absorb the reflected signals so as to reduce the number of reflected signals during signal transmission, achieving the effect of stable operation for the memories.

In order to achieve the above and other objectives, the memory structure with reduced-reflection signals according to the invention at least includes a processing unit; a lumped circuit unit, connected to the processing unit; a plurality of memories, connected to the lumped circuit unit; and a reflected signal absorption unit, disposed at one end of the lumped circuit unit.

In one embodiment of the invention, each memory includes an address circuit, a command circuit and a control circuit which are respectively connected to the lumped circuit unit.

In one embodiment of the invention, each memory is individually connected to the lumped circuit unit.

In one embodiment of the invention, each memory is disposed on a chip to form a memory chip which is connected to the lumped circuit unit.

In one embodiment of the invention, at a front end of the lumped circuit unit is disposed another reflected signal absorption unit.

In one embodiment of the invention, the reflected signal absorption unit is disposed is a resister.

In one embodiment of the invention, when the processing unit, the lumped circuit unit, each memory and the reflected signal absorption unit is in the circuit layout, at least two address/control/command areas is provided between the processing unit and the lumped circuit unit; each memory is located on both sides of each address/control/command areas; between the lumped circuit unit and each memory is provided a ground area; and a plurality of power lines is provided between each memory and the processing unit.

DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

The aforementioned illustrations and following detailed descriptions are exemplary for the purpose of further explaining the scope of the present invention. Other objectives and advantages related to the present invention will be illustrated in the subsequent descriptions and appended tables.

FIG. 1is a schematic view of a memory structure with reduced number of reflected signals according to a first embodiment of the invention. As shown, the memory structure with reduced-reflection signals according to the present invention at least includes a processing unit1, a lumped circuit unit2, a plurality of memories3and a reflected signal absorption unit4.

The processing unit1is used as a control center for each memory3.

The lumped circuit unit2is connected to the processing unit1.

Each memory3is connected to the lumped circuit unit2, and includes an address circuit31, a command circuit32and a control circuit33which are respectively connected to the lumped circuit unit2. Each memory3is individually connected to the lumped circuits unit2in parallel.

The reflected signal absorption unit4is disposed at the end of the lumped circuit unit2, and can be a resister. At a front end of the lumped circuit unit can be disposed another reflected signal absorption unit.

When the present invention is in use, it can be applied to related fields, such as DRAM, NAND, MRAM, NOR or SRAM. During the processing unit1cooperates with each of the memory address circuit31, the command circuit32and the control circuit33for signal transmission, the reflected signal absorption unit4can be used to absorb the reflected signals so as to reduce the number of reflected signals in the process of signal transmission, achieving the effect of stable operation for the memories3.

FIG. 2is a schematic view of a memory structure with reduced number of reflected signals according to a second embodiment of the invention. As shown, the memory structure with reduced-reflection signals according to the present invention is the same as the first embodiment, except that each memory3is disposed on a wafer to form a memory chip30which is connected to the lumped circuit unit2, and a front end and a rear end of the lumped circuit unit2can be respectively provided with a reflected signal absorption units4,4a. Thereby, with the cooperation of the processing unit1with each memory3of the memory chip30for signal transmission, the reflected signal absorption units4,4can be used to absorb the reflected signals so as to reduce the number of reflected signals during signal transmission, achieving the effect of stable operation for the memories3.

FIG. 3is a circuit layout diagram of a memory structure with reduced number of reflected signals according to the present invention. As shown, when the processing unit1, the lumped circuit unit2, each memory3and the reflected signal absorption unit4of the present invention is in the circuit layout, at least two address/control/command areas5is provided between the processing unit1and the lumped circuit unit2. Each memory3can be located on both sides of each address/control/command areas5. Between the lumped circuit unit2and each memory3is provided a ground area6. A plurality of power lines7is provided between each memory and the processing unit1. Thereby, when several memories3come to integrate (for example: 32-bit memory is integrated to be a 64-bit one), the circuit layout is rendered to be easy with reduced layers for the layout.

In summary, the memory structure of reduced number of reflected signals according to the present invention can effectively improve the conventional drawbacks. With the cooperation of the processing unit with each memory for signal transmission, the reflected signal absorption unit can be used to absorb the reflected signals so as to reduce the number of reflected signals during signal transmission, achieving the effect of stable operation for the memories. This makes the invention more progressive and more practical in use which complies with the patent law.