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W972GG6JB-25
+StücklisteIC DRAM 2GBIT PARALLEL 84WBGA
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HerstellerWinbond Electronics
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Herstellerteil #W972GG6JB-25
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Datenblatt W972GG6JB-25 DataSheet
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Paket TFBGA-84
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Auf Lager1706
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Package / Case | Tray |
| Part Status | Obsolete |
| Memory Type | Volatile |
| Memory Format | DRAM |
| Technology | SDRAM - DDR2 |
| Memory Size | 2Gb (128M x 16) |
| Memory Interface | Parallel |
| Clock Frequency | 200 MHz |
| Write Cycle Time - Word Page | 15ns |
| Access Time | 400 ps |
| Voltage - Supply | 1.7V ~ 1.9V |
| Operating Temperature | 0°C ~ 85°C (TC) |
| Mounting Type | Surface Mount |
Übersicht
Description
Such components are critical in the assembly of various electronic devices, providing specific functionalities like data storage, processing capabilities, or interfacing functions. While there isn't a specific widely-known item associated with "W972GG6JB-25," it is typical for these identifiers to denote specifications such as the type of memory, capacity, speed, voltage requirements, and packaging type.
For detailed specifications, one would typically refer to the datasheet provided by the manufacturer, which outlines technical details, pin configurations, performance metrics, and application guidelines. Understanding these parameters is crucial for integrating the component into a circuit design effectively.
Equivalent
1. Micron MT47H128M16RT-25E
2. Samsung K4T1G164QE-HCE6
3. Hynix HY5PS1G1631C-25
These chips usually offer comparable storage capacities, data rates, and performance characteristics as the Winbond W972GG6JB-25. Always confirm compatibility with your specific application or system requirements.
Features
1. Capacity: It typically offers a storage capacity of 2Gb (gigabit).
2. Architecture: The chip is organized in a 512M x 4-bit configuration, providing efficient data handling.
3. Speed: Operates at a clock frequency of up to 400 MHz, supporting fast data processing and retrieval.
4. Voltage: Designed to run at a standard VDD of 1.8V, making it energy-efficient.
5. Interface: Uses a Double Data Rate (DDR) interface for improved bandwidth.
6. Package: Often available in a 84-ball FBGA package, which is compact and suitable for high-density applications.
7. Temperature Range: Supports a wide operating temperature range, making it versatile for various environments.
8. Application: Suitable for use in mobile devices, consumer electronics, and embedded systems due to its compact size and efficient performance.
These features make the W972GG6JB-25 a reliable choice for applications requiring high-speed and low-power memory solutions.
Pinout
As for its functions, the W972GG6JB-25 serves as a memory component used in various electronic devices to provide high-speed data storage and retrieval. Its key functions include:
1. Data Storage: It temporarily stores data that the CPU needs to access quickly.
2. High-Speed Operation: Operates with a high data transfer rate to support demanding applications.
3. DDR2 Interface: Utilizes a double data rate interface to enhance throughput.
4. Low Power Consumption: Designed to operate efficiently with reduced power usage.
5. Compatibility: Typically used in applications like consumer electronics, networking devices, and computing systems.
This DRAM chip is a crucial component for devices that require efficient memory management and fast data processing capabilities.
Manufacturer
Application
1. Consumer Electronics: Used in devices like DVD players, digital TVs, and set-top boxes for buffering and data storage.
2. Computing: Implemented in PCs and laptops to boost memory capacity and performance.
3. Networking Equipment: Utilized in routers and switches for efficient data management.
4. Embedded Systems: Integrated into industrial control systems and automotive electronics for reliable memory solutions.
5. Mobile Devices: Supports smartphones and tablets with efficient power consumption and increased data processing speed.
These applications benefit from the chip's high-speed data transfer rates and low power requirements.