ICE65L04F-LCB132I Overview
As part of the 132-VFBGA, CSPBGA package, it is included. A FIELD PROGRAMMABLE GATE ARRAY-based FPGA is one of these types. Having 95 I/Os makes data transfers more coherent. The basic building blocks of logic contain 3520 logic elements/cells. Fpga chips is powered from a supply voltage of 1V. There is a Field Programmable Gate Arrays family component in this FPGA part. Surface Mount-connectors can be used to attach this FPGA module to the development board. Fpga chips operates at a voltage of 1.14V~1.26V and uses a battery to supply power. FPGAs belonging to the iCE65? L series are a type of FPGA that belong to the iCE65? L series of FPGAs. The operating temperature should be kept at -40°C~85°C TA when operating. A total of 95 outputs are incorporated into this device. As a space-saving measure, this FPGA model is contained within Tray. In total, it has a total of 132 terminations. This device has 81920 RAM bits, which is the number of RAM bits that this device offers. In order to find related parts, use the part number ICE65 as a base. There is a maximum RAM si10kBe of 10kB on this FPGA module, which is necessary to ensure the normal operation of the program. In this case, there are 132 pins on the board. An array of 440 LABs/CLBs is built into the FPGA. In my opinion, this FPGA could produce fantastic results if mounted in Surface Mount, provided that its specifications are followed. In operation with 1.2V, designers can take advantage of its flexibility to the fullest extent. This is a battery operated device that operates on 1V. There is a memory of 10kB embedded inside this FPGA module that can be used to store programs and data. In fact, this FPGA is capable of reaching a speed of 256MHz. In order to operate this device, a supply current of 26μA is used.
ICE65L04F-LCB132I Features
95 I/Os
Up to 81920 RAM bits
132 LABs/CLBs
ICE65L04F-LCB132I Applications
There are a lot of Lattice Semiconductor Corporation ICE65L04F-LCB132I FPGAs applications.
- Broadcast
- Server Applications
- Distributed Monetary Systems
- High Performance Computing
- Medical Applications
- Secure Communication
- Enterprise networking
- Data center hardware accelerators
- Automotive advanced driver assistance systems (ADAS)
- Cryptography