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IS42S16400F-7TL-TR

IS42S16400F-7TL-TR

Product Overview

Category

IS42S16400F-7TL-TR belongs to the category of dynamic random access memory (DRAM) modules.

Use

This product is primarily used in electronic devices such as computers, laptops, smartphones, and tablets for storing and accessing data quickly.

Characteristics

  • High-speed data transfer capabilities
  • Low power consumption
  • Compact size
  • Reliable performance

Package

IS42S16400F-7TL-TR comes in a small form factor package, making it suitable for integration into various electronic devices.

Essence

The essence of IS42S16400F-7TL-TR lies in its ability to provide fast and efficient data storage and retrieval functions in electronic devices.

Packaging/Quantity

IS42S16400F-7TL-TR is typically packaged in reels or trays. The quantity per package may vary depending on the manufacturer's specifications.

Specifications

  • Memory Type: Synchronous DRAM (SDRAM)
  • Capacity: 16 Megabits (2 Megabytes)
  • Organization: 1M x 16 bits
  • Operating Voltage: 3.3V
  • Speed: 7 nanoseconds (tRAC)
  • Interface: Parallel
  • Operating Temperature Range: -40°C to +85°C

Detailed Pin Configuration

The pin configuration of IS42S16400F-7TL-TR is as follows:

  1. VDD
  2. DQ0
  3. DQ1
  4. DQ2
  5. DQ3
  6. DQ4
  7. DQ5
  8. DQ6
  9. DQ7
  10. DQ8
  11. DQ9
  12. DQ10
  13. DQ11
  14. DQ12
  15. DQ13
  16. DQ14
  17. DQ15
  18. A0
  19. A1
  20. A2
  21. A3
  22. A4
  23. A5
  24. A6
  25. A7
  26. A8
  27. A9
  28. A10
  29. A11
  30. A12
  31. A13
  32. A14
  33. A15
  34. /CAS
  35. /RAS
  36. /WE
  37. /CS
  38. /CKE
  39. /LDQM
  40. /UDQM

Functional Features

  • High-speed data transfer rate
  • Burst mode operation for efficient data access
  • Auto-refresh and self-refresh modes for power-saving
  • On-die termination (ODT) for improved signal integrity
  • Programmable burst length and latency settings

Advantages and Disadvantages

Advantages

  • Fast data transfer speed enhances overall system performance.
  • Low power consumption prolongs battery life in portable devices.
  • Compact size allows for integration into space-constrained designs.
  • Reliable performance ensures data integrity.

Disadvantages

  • Limited capacity compared to higher-end memory modules.
  • Higher cost per unit compared to other memory technologies.
  • Requires proper handling and installation to prevent damage.

Working Principles

IS42S16400F-7TL-TR operates based on the principles of synchronous dynamic random access memory. It stores data in a matrix of capacitors, with each capacitor representing a single bit of information. The memory cells are organized in rows and columns, allowing for efficient read and write operations. The synchronous nature of the memory ensures that data is transferred in synchronization with a clock signal, enabling high-speed operation.

Detailed Application Field Plans

IS42S16400F-7TL-TR finds applications in various electronic devices, including but not limited to: - Personal computers - Laptops - Servers - Smartphones - Tablets - Gaming consoles

Detailed and Complete Alternative Models

Some alternative models that can be considered as alternatives to IS42S16400F-7TL-TR are: - MT48LC16M16A2P-75: 16 Megabit SDRAM with similar specifications - K4S561632H-UC60: 16 Megabit SDRAM with comparable performance - AS4C16M16SA-6TCN: 16 Megabit SDRAM with different package options

These alternative models offer similar functionality and can be used as replacements depending on specific requirements.

In conclusion, IS42S16400F-7TL-TR is a high-speed, low-power dynamic random access memory module primarily used in electronic devices for efficient data storage and retrieval. Its compact size, reliable performance, and various functional features make it suitable for a wide range of applications. While it has certain limitations in terms of capacity and cost, there are alternative models available that can fulfill

Seznam 10 běžných otázek a odpovědí souvisejících s aplikací IS42S16400F-7TL-TR v technických řešeních

Sure! Here are 10 common questions and answers related to the application of IS42S16400F-7TL-TR in technical solutions:

  1. Question: What is IS42S16400F-7TL-TR?
    - Answer: IS42S16400F-7TL-TR is a specific model of synchronous dynamic random-access memory (SDRAM) chip commonly used in electronic devices for data storage and retrieval.

  2. Question: What is the capacity of IS42S16400F-7TL-TR?
    - Answer: The IS42S16400F-7TL-TR has a capacity of 16 megabits (Mb), which is equivalent to 2 megabytes (MB).

  3. Question: What is the operating voltage range for IS42S16400F-7TL-TR?
    - Answer: The operating voltage range for IS42S16400F-7TL-TR is typically between 2.5V and 3.3V.

  4. Question: What is the maximum clock frequency supported by IS42S16400F-7TL-TR?
    - Answer: IS42S16400F-7TL-TR supports a maximum clock frequency of 166 MHz.

  5. Question: What is the access time of IS42S16400F-7TL-TR?
    - Answer: The access time of IS42S16400F-7TL-TR is typically around 7 nanoseconds (ns).

  6. Question: Can IS42S16400F-7TL-TR be used in mobile devices?
    - Answer: Yes, IS42S16400F-7TL-TR can be used in mobile devices such as smartphones and tablets, provided they meet the voltage and clock frequency requirements.

  7. Question: What are the typical applications of IS42S16400F-7TL-TR?
    - Answer: IS42S16400F-7TL-TR is commonly used in applications such as computer systems, networking equipment, industrial automation, and telecommunications.

  8. Question: Does IS42S16400F-7TL-TR support burst mode operation?
    - Answer: Yes, IS42S16400F-7TL-TR supports burst mode operation, allowing for faster data transfer rates.

  9. Question: Can IS42S16400F-7TL-TR be used in low-power applications?
    - Answer: Yes, IS42S16400F-7TL-TR has a low-power standby mode and can be used in low-power applications where energy efficiency is important.

  10. Question: Are there any specific design considerations when using IS42S16400F-7TL-TR?
    - Answer: When designing with IS42S16400F-7TL-TR, it is important to consider factors such as signal integrity, power supply stability, and proper decoupling to ensure optimal performance.

Please note that these answers are general and may vary depending on the specific requirements and implementation of the technical solution.