GB2544845A - Dynamic random access memory - Google Patents

Dynamic random access memory Download PDF

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Publication number
GB2544845A
GB2544845A GB1613370.4A GB201613370A GB2544845A GB 2544845 A GB2544845 A GB 2544845A GB 201613370 A GB201613370 A GB 201613370A GB 2544845 A GB2544845 A GB 2544845A
Authority
GB
United Kingdom
Prior art keywords
display screen
processing unit
random access
dynamic random
access memory
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
GB1613370.4A
Other versions
GB201613370D0 (en
Inventor
Cheng Han-Hung
Kuo Chi-Fen
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Avexir Technologies Corp
Original Assignee
Avexir Technologies Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Avexir Technologies Corp filed Critical Avexir Technologies Corp
Publication of GB201613370D0 publication Critical patent/GB201613370D0/en
Publication of GB2544845A publication Critical patent/GB2544845A/en
Withdrawn legal-status Critical Current

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Classifications

    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11CSTATIC STORES
    • G11C7/00Arrangements for writing information into, or reading information out from, a digital store
    • G11C7/04Arrangements for writing information into, or reading information out from, a digital store with means for avoiding disturbances due to temperature effects
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/183Internal mounting support structures, e.g. for printed circuit boards, internal connecting means
    • G06F1/185Mounting of expansion boards
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11CSTATIC STORES
    • G11C11/00Digital stores characterised by the use of particular electric or magnetic storage elements; Storage elements therefor
    • G11C11/21Digital stores characterised by the use of particular electric or magnetic storage elements; Storage elements therefor using electric elements
    • G11C11/34Digital stores characterised by the use of particular electric or magnetic storage elements; Storage elements therefor using electric elements using semiconductor devices
    • G11C11/40Digital stores characterised by the use of particular electric or magnetic storage elements; Storage elements therefor using electric elements using semiconductor devices using transistors
    • G11C11/401Digital stores characterised by the use of particular electric or magnetic storage elements; Storage elements therefor using electric elements using semiconductor devices using transistors forming cells needing refreshing or charge regeneration, i.e. dynamic cells
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11CSTATIC STORES
    • G11C5/00Details of stores covered by group G11C11/00
    • G11C5/02Disposition of storage elements, e.g. in the form of a matrix array
    • G11C5/04Supports for storage elements, e.g. memory modules; Mounting or fixing of storage elements on such supports
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01LSEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
    • H01L25/00Assemblies consisting of a plurality of individual semiconductor or other solid state devices ; Multistep manufacturing processes thereof
    • H01L25/03Assemblies consisting of a plurality of individual semiconductor or other solid state devices ; Multistep manufacturing processes thereof all the devices being of a type provided for in the same subgroup of groups H01L27/00 - H01L33/00, or in a single subclass of H10K, H10N, e.g. assemblies of rectifier diodes
    • H01L25/04Assemblies consisting of a plurality of individual semiconductor or other solid state devices ; Multistep manufacturing processes thereof all the devices being of a type provided for in the same subgroup of groups H01L27/00 - H01L33/00, or in a single subclass of H10K, H10N, e.g. assemblies of rectifier diodes the devices not having separate containers
    • H01L25/065Assemblies consisting of a plurality of individual semiconductor or other solid state devices ; Multistep manufacturing processes thereof all the devices being of a type provided for in the same subgroup of groups H01L27/00 - H01L33/00, or in a single subclass of H10K, H10N, e.g. assemblies of rectifier diodes the devices not having separate containers the devices being of a type provided for in group H01L27/00
    • H01L25/0655Assemblies consisting of a plurality of individual semiconductor or other solid state devices ; Multistep manufacturing processes thereof all the devices being of a type provided for in the same subgroup of groups H01L27/00 - H01L33/00, or in a single subclass of H10K, H10N, e.g. assemblies of rectifier diodes the devices not having separate containers the devices being of a type provided for in group H01L27/00 the devices being arranged next to each other

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  • Engineering & Computer Science (AREA)
  • Computer Hardware Design (AREA)
  • Power Engineering (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Control Of Indicators Other Than Cathode Ray Tubes (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)
  • Condensed Matter Physics & Semiconductors (AREA)
  • Human Computer Interaction (AREA)
  • Controls And Circuits For Display Device (AREA)

Abstract

Dynamic random access memory DRAM device (module) comprising a main body (10, fig 1), a processing unit (14 figure 3) disposed on/in the body , a display screen 15 and a row of electrical connectors or transmit port 16 (e.g USB, SATA, IDE). The module may also comprise of a sound sensing unit (40 fig 3), a temperature sensing unit (20 fig 3) and an efficacy detecting unit (30 fig 3). The main body has a substrate 11 and an outer casing or shell portion 12 disposed on two opposite side faces of the substrate, the substrate is provided with a memory module (memory devices) 13 ; the display screen 15 is attached to the main body and viewable from outside of the dynamic random access memory (module) , the display screen 15 is electrically connected with the processing unit 14, the processing unit can control a display state 151 of the display screen. The transmit port 16 disposed on the substrate 11 is electrically connected with the memory module. The DRAM module may also comprise an (audio) sound sensing unit to sense or detect a sound such that the processing unit may control the display state of the display screen. A temperature sensor may also facilitate display of the temperature state of the unit module. An efficacy unit detects the efficiency of the module (e.g memory module capacity or reading speed) and this value may be displayed accordingly. The shell or casing portion may comprise a window or cut out (hollowed out) portion to house and embed the display screen. The display screen may comprise of an Organic Light Emitting Diode (OLED), and may comprise a patterned (digit alpha numeric) portion 151 and a background portion 152 whilst both may have their respective colours controlled via the processor unit.

Description

DYNAMIC RANDOM ACCESS MEMORY
BACKGROUND OF THE INVENTION
Field of the Invention
The present invention relates to a dynamic random access memory. Description of the Prior Art A dynamic random access memory as disclosed in TW201520737 includes a substrate, a boosting circuit and a plasma tube. The boosting circuit is disposed on the substrate and electrically connected with two power output ends; and two opposite ends of the plasma tube have two electrodes electrically connected the two power output ends.
When in actual practice, the plasma tube of the conventional dynamic random access memory has limited variations.
In addition, when the memory does not function normally, a user is unable to know the state of the memory (for example, capacity and temperature) from the appearance of the memory to find out the cause.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
SUMMARY OF THE INVENTION
The major object of the present invention is to provide a dynamic random access memory, wherein compared with a conventional plasma tube, a display screen can show various states according to a processing unit, and the dynamic random access memory is more pleasant to the eye.
In addition, pattern variations on the display screen allow a user to know the state of the dynamic random access memory conveniently.
To achieve the above and other objects, a dynamic random access memory is provided, including a main body, a processing unit, a display screen and a transmit port. The main body has a substrate and a shell portion disposed by two opposite side faces of the substrate, the substrate is provided with a memory module; the processing unit is disposed in the main body; the display screen is attached to the main body and is viewable from outside of the dynamic random access memory, the display screen and the processing unit are electrically connected with each other, the processing unit can control a display state of the display screen; and the transmit port is disposed on the substrate, and the transmit port is electrically connected with the memory module.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment(s) in accordance with the present invention.
BRIEF DESCRIPTION OF THE DRAWINGS
Fig. 1 is a perspective view of a preferred embodiment of the present invention;
Fig. 2 is a breakdown view of the preferred embodiment of the present invention; and
Fig. 3 is a diagram showing a structural relationship of the preferred embodiment of the present invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
The present invention will be clearer from the following description when viewed together with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment in accordance with the present invention.
Please refer to Figs. 1 to 3 for a preferred embodiment of the present invention. A dynamic random access memory 1 includes a main body 10, a processing unit 14, a display screen 15 and a transmit port 16.
The main body 10 has a substrate 11 and a shell portion 12 disposed by two opposite side faces of the substrate 11, the substrate 11 is provided with a memory module 13, and the processing unit 14 is disposed in the main body 10.
In this embodiment, the transmit port 16 is disposed on the substrate 11, and the transmit port 16 is electrically connected with the memory module 13. More specifically, to cooperate with different insert slots in different specifications, the transmit port 16 may be a USB, a SATA or an IDE transmit port.
The display screen 15 is attached to the main body 10 and is viewable from outside of the dynamic random access memory 1, the display screen 15 and the processing unit 14 are electrically connected with each other, and the processing unit 14 can control a display state (for example, a temperature state or an efficacy state of the dynamic random access memory 1) of the display screen 15. In this embodiment, the shell portion 12 is further provided with a hollow-out portion 120, and the display screen 15 is embedded in the hollow-out portion 120; in other embodiments, the display screen may be disposed on the substrate, the shell portion may be provided with a light-transmittable portion (the light-transmittable portion may be a hollow-out structure or a layer made of a light-transmittable material) so that the display screen can be viewed from the light-transmittable portion (the display screen may also be arranged between the shell portion and the substrate).
In this embodiment, the processing unit 14 is electrically connected with the transmit port 16, and the substrate 11 is a circuit board; therefore, the processing unit 14 and the transmit port 16 can be electrically connected with each other through a circuit embedded in the substrate 11. In other embodiments, the processing unit may be connected with other exterior powers (for example, a mother board) directly instead of being electrically connected with the transmit port.
The display screen 15 includes a pattern portion 151 and a background portion 152, the processing unit 14 can control color states of the pattern portion 151 and the background portion 152 respectively, and the pattern portion 151 and the background portion 152 are in different colors; therefore, the display screen 15 can show a state of the dynamic random access memory 1 through patterns or words. In this embodiment, the display screen 15 is an organic light-emitting diode (OLED) display screen; however the display screen 15 may be an active-matrix OLED (AMOLED), passive matrix OLED (PMOLED) or super AMOLED which is pliable and thin. It is understandable that the display screen may be a digital, liquid crystal display, thin-film transistor, hot cathode fluorescent lamp or cold cathode fluorescent lamp display screen.
In this embodiment, the processing unit 14 is electrically connected with a temperature sensing unit 20, the temperature sensing unit 20 can sense a temperature of at least one of the substrate 11, the memory module 13 and the display screen 15 to produce a sensing signal, and the processing unit 14 can control the display screen 15 to show a temperature state according to the sensing signal. Specifically, the processing unit 14 can control the pattern portion 151 of the display screen 15 to show a number or a symbol of the temperature and control the background portion 152 to show different background colors (or flashing states) according to different temperature sections.
In addition, the processing unit 14 is further electrically connected with a sound sensing unit 40, the sound sensing unit 40 can sense a sound to produce a sensing signal, and the processing unit 14 can control the display state of the display screen 15 according to the sensing signal. For example, the processing unit 14 can control the pattern portion 151 of the display screen 15 to show a number or a symbol of a volume (or a tune) according to an intensity of the volume (or the tune) and control the background portion 152 to show different background colors (or flashing states) according to different volumes (or tunes); or the user can speak specific words (which have different sound waves) to the sound sensing unit 40 and make the processing unit 14 control the display state (patterns, colors or flashes) of the display screen 15.
The dynamic random access memory 1 is further provided with an efficacy detecting unit 30, the efficacy detecting unit 30 is electrically connected with the processing unit 14 and the memory module 13, the efficacy detecting unit 30 can detect an efficacy condition of the memory module 13 to produce an efficacy signal, and the processing unit 14 can control the display screen 15 to show an efficacy state according to the efficacy signal. More specifically, the efficacy detecting unit 30 can detect a capacity of the memory module 13, the efficacy signal is a capacity detecting signal, and the processing unit 14 can control the display screen 15 to show a capacity state according to the capacity detecting signal so that the user can view the state of the memory module 13 from outside without operating a computer. In addition, the efficacy detecting unit 30 can further detect a reading speed of the memory module 13, the efficacy signal is a reading speed detecting signal, and the processing unit 14 can control the display screen 15 to show a reading speed state according to the reading speed detecting signal. It is to be noted that in addition to the pattern portion 151 which can show reading speed state, the background portion 152 can produce colors or flashing states in accordance with different reading speeds.
Specifically, in other embodiments, the processing unit may not be electrically connected with the above-mentioned detecting units or sensing units, and the processing unit can control the display screen to show patterns corresponding to a preset programming built in the processing unit.
Given the above, compared with a traditional plasma tube, the display screen of the dynamic random access memory can show various display states according to the processing unit.
In addition, through the pattern variations of the display screen, the user can know the state of the dynamic random access memory conveniently and precisely.
While we have shown and described various embodiments in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.

Claims (11)

WHAT IS CLAIMED IS:
1. A dynamic random access memory, including: a main body, having a substrate and a shell portion disposed by two opposite side faces of the substrate, the substrate provided with a memory module; a processing unit, disposed in the main body; a display screen, attached to the main body and viewable from outside of the dynamic random access memory, electrically connected with the processing unit, the processing unit being able to control a display state of the display screen; a transmit port, disposed on the substrate and electrically connected with the memory module.
2. The dynamic random access memory of claim 1, wherein the processing unit is electrically connected with a sound sensing unit, the sound sensing unit is able to sense a sound to produce a sensing signal, and the processing unit is able to control the display state of the display screen according to the sensing signal.
3. The dynamic random access memory of claim 1, wherein the processing unit is electrically connected with a temperature sensing unit, the temperature sensing unit is able to sense a temperature of at least one of the substrate, the memory module and the display screen to produce a sensing signal, and the processing unit is able to control the display screen to show a temperature state according to the sensing signal.
4. The dynamic random access memory of claim 1, further provided with an efficacy detecting unit, the efficacy detecting unit electrically connected with the processing unit and the memory module, the efficacy detecting unit being able to detect an efficacy condition of the memory module to produce an efficacy signal, the processing unit being able to control the display screen to show an efficacy state according to the efficacy signal.
5. The dynamic random access memory of claim 4, wherein the efficacy detecting unit is able to detect a capacity of the memory module, the efficacy signal is a capacity detecting signal, and the processing unit is able to control the display screen to show a capacity state according to the capacity detecting signal.
6. The dynamic random access memory of claim 4, wherein the efficacy detecting unit is able to detect a reading speed of the memory module, the efficacy signal is a reading speed detecting signal, and the processing unit is able to control the display screen to show a reading speed state according to the reading speed detecting signal.
7. The dynamic random access memory of claim 1, wherein the transmit port is a USB, a SATA or an IDE transmit port.
8. The dynamic random access memory of claim 1, wherein the shell portion is provided with a hollow-out portion, and the display screen is embedded in the hollow-out portion.
9. The dynamic random access memory of claim 1, wherein the display screen includes a pattern portion and a background portion, the processing unit is able to control color states of the pattern portion and the background portion respectively, and the pattern portion and the background portion are in different colors.
10. The dynamic random access memory of claim 9, wherein the display screen is an organic light-emitting diode (OLED) display screen.
11. A dynamic random access memory substantially as hereinbefore described with reference to and as shown in the accompanying drawings.
GB1613370.4A 2015-11-20 2016-08-03 Dynamic random access memory Withdrawn GB2544845A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW104138478A TWI552149B (en) 2015-11-20 2015-11-20 Dynamic random access memory

Publications (2)

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GB201613370D0 GB201613370D0 (en) 2016-09-14
GB2544845A true GB2544845A (en) 2017-05-31

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DE (1) DE102016116571A1 (en)
GB (1) GB2544845A (en)
NL (1) NL1042100B1 (en)
TW (1) TWI552149B (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI607432B (en) * 2015-11-20 2017-12-01 英信科技有限公司 Dynamic Random Access Memory
TWI632456B (en) * 2017-03-03 2018-08-11 宇瞻科技股份有限公司 Reflective heat dissipation device
TWI632455B (en) * 2017-03-03 2018-08-11 宇瞻科技股份有限公司 Heat dissipation device having adjustable reflector member
TWI692291B (en) * 2018-01-05 2020-04-21 威剛科技股份有限公司 Dynamic random access memory module

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Publication number Priority date Publication date Assignee Title
US20060045168A1 (en) * 2004-08-31 2006-03-02 Pny Technologies, Inc. Electronic module with built-in temperature display
US20060149960A1 (en) * 2004-12-20 2006-07-06 Andy Paul Managing memory modules
US20120299582A1 (en) * 2011-05-24 2012-11-29 Hon Hai Precision Industry Co., Ltd. Input power measuring device
US20130155800A1 (en) * 2011-12-20 2013-06-20 Samsung Electronics Co., Ltd. Secondary Memory Units and Systems Including the Same
US20140223032A1 (en) * 2013-02-06 2014-08-07 International Business Machines Corporation Memory module status indication
TW201610670A (en) * 2015-11-20 2016-03-16 宇帷國際股份有限公司 Electronic device
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CN205230594U (en) * 2015-12-01 2016-05-11 宇帷国际股份有限公司 Dynamic random access memory body

Also Published As

Publication number Publication date
NL1042100A (en) 2017-06-07
NL1042100B1 (en) 2017-10-10
GB201613370D0 (en) 2016-09-14
TWI552149B (en) 2016-10-01
DE102016116571A1 (en) 2017-05-24
TW201610992A (en) 2016-03-16

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