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DRAM (Dynamic Random Access Memory)

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TMS44460-70DJ
Texas Instruments
Quantity: 2718
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TMS55161-60DGH
Texas Instruments
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TMS44100-80DJ
Texas Instruments
512KB 4Mx1 4.5V 50mA 5.5V LVCMOS,LVTTL 1bit SOJ
Quantity: 1910
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TMS55165-60DGH
Texas Instruments
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TMS418169-60DZ
Texas Instruments
2MB 90mA 5.5V 16bit SOJ-42 SMD mount 27.43mm*10.29mm*2.69mm
Quantity: 55
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TMS55166-70DGH
Texas Instruments
Quantity: 1148
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TMS55166-60DGH
Texas Instruments
Quantity: 33041
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TMS55161-70DGH
Texas Instruments
Quantity: 56025
Ship Date: 9-13 working days
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100+ $7.0007
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TMS55160-70DGH
Texas Instruments
Quantity: 9854
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Ext. Price: $131.01
MOQ: 17
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TMS55160-60DGH
Texas Instruments
Multiport Video RAM 64-Pin SOIC
Quantity: 36551
Ship Date: 9-13 working days
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1000+ $6.7066
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x $7.7067
Ext. Price: $131.01
MOQ: 17
Mult: 1
SPQ: 1

DRAM (Dynamic Random Access Memory)

DRAM, which stands for Dynamic Random Access Memory, is a type of volatile memory used in computers and other electronic devices for storing data. Here's a concise introduction in English:

Definition:
Dynamic Random Access Memory (DRAM) is a class of semiconductor memory that is used for the main memory in computers and other electronic devices. It is called "dynamic" because it relies on capacitors to store each bit of data, which must be periodically refreshed to prevent data loss.

Function:
DRAM functions by allowing data to be accessed in any order with a relatively small access time. It is designed to be read and written to, with each memory cell storing a single bit of information. DRAM is volatile, meaning it loses its data when power is turned off.

Applications:
DRAM is widely used in various applications due to its high density and cost-effectiveness. It is the primary type of memory found in personal computers, servers, and workstations for system memory (RAM). It is also used in graphics cards for video memory and in embedded systems where high-speed data access is required.

Selection Criteria:
When selecting DRAM, several factors are considered:
1. Capacity: The amount of data that can be stored, measured in gigabytes (GB).
2. Speed: The speed at which data can be accessed, often specified in megahertz (MHz).
3. Latency: The time it takes for a memory access to complete, measured in clock cycles.
4. Form Factor: The physical size and compatibility with the device's motherboard.
5. Energy Efficiency: The power consumption of the DRAM, which is important for battery-powered devices.
6. Reliability: The ability of the DRAM to maintain data integrity over time and under various operating conditions.
7. Price: The cost of the DRAM, which can vary based on the above factors and market conditions.

In summary, DRAM is a critical component in modern electronics, providing fast and flexible data storage that is essential for the operation of computers and other digital systems. When choosing DRAM, it's important to balance factors such as capacity, speed, latency, form factor, energy efficiency, reliability, and cost to meet the specific needs of the application.
Please refer to the product rule book for details.