
Lattice Semiconductor Corporation
ISPLSI 1016E-80LTN44
ISPLSI 1016E-80LTN44 ECAD Model
ISPLSI 1016E-80LTN44 Attributes
Type | Description | Select |
---|---|---|
Mfr | Lattice Semiconductor Corporation | |
Series | ispLSI® 1000E | |
Package | Tray | |
Programmable Type | In System Programmable | |
Delay Time tpd(1) Max | 15 ns | |
Voltage Supply - Internal | 4.75V ~ 5.25V | |
Number of Logic Elements/Blocks | 16 | |
Number of Macrocells | 64 | |
Number of Gates | 2000 | |
Number of I/O | 32 | |
Operating Temperature | 0°C ~ 70°C (TA) | |
Mounting Type | Surface Mount | |
Package / Case | 44-TQFP | |
Supplier Device Package | 44-TQFP (10x10) | |
Base Product Number | ISPLSI 1016E |
ISPLSI 1016E-80LTN44 Datasheet Download
ISPLSI 1016E-80LTN44 Overview
The ISPLSI 1016E-80LTN44 is an advanced FPGA (field programmable gate array) chip designed for use in a variety of applications. It is manufactured by Lattice Semiconductor and is part of the company's iCE40 UltraPlus family of FPGAs. This chip is a low power, cost-effective solution that offers a wide range of features and capabilities.
The ISPLSI 1016E-80LTN44 is an 80-pin device that has an operating voltage range of 1.2V to 3.3V. It has a total of 1,016 logic elements, including 16-bit LUTs, 4-bit ROMs, and 4-bit RAMs. The device also includes two PLLs, two DSP blocks, two I/O blocks, and four general purpose I/O pins. The device has a maximum clock frequency of 250 MHz and a maximum operating temperature of 85°C.
The ISPLSI 1016E-80LTN44 is designed for use in a variety of applications, including embedded systems, industrial automation, automotive, and consumer electronics. It is ideal for applications that require high performance and low power consumption, such as image processing, motor control, and digital signal processing. The device is also suitable for use in FPGA-based system-on-chip designs.
Overall, the ISPLSI 1016E-80LTN44 is a powerful and cost-effective FPGA device that is suitable for a wide range of applications. It offers a wide range of features, including a low power consumption, a wide operating temperature range, and a high clock frequency. The device is ideal for applications that require high performance and low power consumption, such as image processing and motor control.
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