
Lattice Semiconductor Corporation
LFSC3GA115E-6FC1152I
LFSC3GA115E-6FC1152I ECAD Model
LFSC3GA115E-6FC1152I Attributes
Type | Description | Select |
---|---|---|
Mfr | Lattice Semiconductor Corporation | |
Series | SC | |
Package | Tray | |
Number of LABs/CLBs | 28750 | |
Number of Logic Elements/Cells | 115000 | |
Total RAM Bits | 7987200 | |
Number of I/O | 660 | |
Voltage - Supply | 0.95V ~ 1.26V | |
Mounting Type | Surface Mount | |
Operating Temperature | -40°C ~ 105°C (TJ) | |
Package / Case | 1152-BCBGA, FCBGA | |
Supplier Device Package | 1152-CFCBGA (35x35) | |
Base Product Number | LFSC3GA115 |
LFSC3GA115E-6FC1152I Datasheet Download
LFSC3GA115E-6FC1152I Overview
The LFSC3GA115E-6FC1152I chip model is a semiconductor device manufactured by Toshiba. It is designed to provide high-speed and low-power operation for digital signal processing applications. It has a maximum operating frequency of 1.15 GHz, and is capable of executing up to 2.2 billion instructions per second. The chip has a power consumption of only 2.3 W, making it suitable for use in embedded systems.
The LFSC3GA115E-6FC1152I chip model is a 32-bit RISC-V processor with a 32-bit instruction set. It uses a 5-stage pipeline and is capable of executing up to 4 instructions per cycle. The chip also includes a hardware multiplier, allowing for fast and efficient signal processing. It also includes a direct memory access controller, which can be used to access external memory.
The LFSC3GA115E-6FC1152I chip model is suitable for use in a wide range of applications, including embedded systems, industrial automation, automotive, medical, and consumer electronics. It is also suitable for use in robotics, image processing, and machine learning applications. The chip is designed to be robust and reliable, making it suitable for use in mission-critical applications.
Overall, the LFSC3GA115E-6FC1152I chip model is an efficient and reliable processor designed for use in a wide range of digital signal processing applications. It is capable of executing up to 2.2 billion instructions per second, while consuming only 2.3 W of power. It is suitable for use in embedded systems, industrial automation, automotive, medical, and consumer electronics applications.
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