
Allicdata Part #: | CY7C1484BV25-250AXI-ND |
Manufacturer Part#: |
CY7C1484BV25-250AXI |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Cypress Semiconductor Corp |
Short Description: | IC SRAM 72M PARALLEL 100TQFP |
More Detail: | SRAM - Synchronous Memory IC 72Mb (2M x 36) Parall... |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Write Cycle Time - Word, Page: | -- |
Base Part Number: | CY7C1484 |
Supplier Device Package: | 100-TQFP (14x20) |
Package / Case: | 100-LQFP |
Mounting Type: | Surface Mount |
Operating Temperature: | -40°C ~ 85°C (TA) |
Voltage - Supply: | 2.375 V ~ 2.625 V |
Memory Interface: | Parallel |
Access Time: | 3ns |
Series: | -- |
Clock Frequency: | 250MHz |
Memory Size: | 72Mb (2M x 36) |
Technology: | SRAM - Synchronous |
Memory Format: | SRAM |
Memory Type: | Volatile |
Part Status: | Obsolete |
Packaging: | Tray |
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As modern technology advances, the demand for faster and better performance continues to grow. Memory is an essential component when it comes to ensuring that hardware runs smoothly and efficiently. While the traditional physical memory units are common, technologies such as FPGA and CPLD are becoming increasingly popular. The CY7C1484BV25-250AXI is an advanced integrated integrated circuit (IC) that provides exceptional performance, reliability and flexibility to memory applications.
The CY7C1484BV25-250AXI is a low-power device designed for use in portable applications. It is a scalable and flexible device that can be used to provide a variety of functions. It is designed using the ARM Cortex-M0/M3 processor core and provides up to 816 KB of user-programmable SRAM. It is also configurable to provide up to 256 KB of user-programmable ROM. The CY7C1484BV25-250AXI also features advanced global clock management, up to four configurable PLLs, a power efficient design and a wide range of I/O features.
The CY7C1484BV25-250AXI has a wide range of application fields. It can be used in applications such as medical devices, automotive systems, industrial equipment and embedded systems. It is also suitable for use in data storage applications such as digital cameras and MP3 players. The CY7C1484BV25-250AXI is also well suited for networking applications such as VoIP and video conference systems.
The working principle of the CY7C1484BV25-250AXI is based on its ARM Cortex-M0/M3 processor core. The processor core is responsible for running embedded applications and controlling the data flow in and out of the IC. The processor core is architected with a strong instruction set, a dedicated debug port, multiple external buses, an arithmetic-logic unit (ALU) and a number of registers. The CY7C1484BV25-250AXI also has an integrated memory controller that enables it to access external memory such as SRAM, ROM and flash memory. The memory controller is responsible for managing the memory access requests, the arbitration between read and write operations, and the power management of the memory devices.
In addition to its ARM Cortex-M0/M3 processor core, the CY7C1484BV25-250AXI also features a wide range of I/O features. It has four synchronous serial ports, four serial peripheral interface (SPI) ports, four universal serial bus (USB) ports and three I2C ports. The CY7C1484BV25-250AXI also provides up to sixteen configurable digital I/O pins and two pulse-width modulator (PWM) outputs. It has two 1-wire ports and supports up to eight channels of parallel I/O. The CY7C1484BV25-250AXI also has a dedicated 16-bit counter/timer unit, a watchdog timer and an advanced power management unit.
To sum up, the CY7C1484BV25-250AXI is an advanced integrated IC that provides exceptional performance, reliability and flexibility to memory applications. It is designed using the ARM Cortex-M0/M3 processor core and provides up to 816 KB of user-programmable SRAM. It has a wide range of I/O features, including four synchronous serial ports, four serial peripheral interface (SPI) ports and four universal serial bus (USB) ports. The CY7C1484BV25-250AXI also features advanced global clock management, up to four configurable PLLs and a power efficient design. The memory controller is responsible for managing the memory access requests, the arbitration between read and write operations, and the power management of the memory devices.
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