LC5256MC-75F256C ApplicationField
-Wireless Technology
-Artificial Intelligence
-Consumer Electronics
-Industrial Control
-Internet of Things
-Cloud Computing
-5G Technology
-Medical Equipment
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LC5256MC-75F256C FAQ Chips
Q: Where can I purchase Lattice LC5256M Development Boards, Evaluation Boards, or ispXPLD 5000MX Starter Kit? also provide technical information?
A: RAYPCB does not provide development board purchase services for the time being, but customers often consult about ZedBoard, Basys 3 board, TinyFPGA BX, Nexys4-DDR, Terasic DE10-Nano, Digilent Arty S7, etc. If you need relevant technical information, you can submit feedback information, our technicians will contact you soon.
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Q: How to obtain LC5256MC-75F256C technical support documents?
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A: No, only submit the quantity, email address and other contact information required for the inquiry of LC5256MC-75F256C, but you need to sign up for the post comments and resource downloads.
Q: How can I obtain software development tools related to the Lattice FPGA platform?
A: Lattice’s development environment uses Diamone. These recommendations are all reference opinions. The specific choice depends on personal habits and functional requirements to specifically select a more suitable match. You can search and download through the FPGA resource channel.
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A: Depending on the time difference between your location and our location, it may take several hours for us to reply, please be patient, our FPGA technical engineer will help you with the LC5256MC-75F256C pinout information, replacement, datasheet in pdf, programming tools, starter kit, etc.
ICs LC5256MC-75F256C Features
■ Flexible Multi-Function Block (MFB) Architecture
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Xilinx LC5256MC-75F256C Overview
The ispXPLD 5000MX family represents a new class of device, referred to as
the eXpanded Programmable Logic Devices (XPLDs). These devices extend the
capability of Lattice’s popular SuperWIDE ispMACH 5000 architecture by providing
flexible memory capability. The family supports single- or dual-port SRAM, FIFO,
and ternary CAM operation. Extra logic has also been included to allow efficient
implementation of arithmetic functions. In addition, sysCLOCK PLLs and sysIO
interfaces provide support for the system-level needs of designers.
The devices
provide designers with a convenient one-chip solution that provides logic
availability at boot-up, design security, and extreme reconfigurability. The use
of advanced process technology provides industry-leading performance with
combinatorial propagation delay as low as 4.0ns, 2.8ns clock-to-out delay, 2.2ns
set-up time, and operating frequency up to 300MHz. This performance is coupled
with low static and dynamic power consumption. The ispXPLD 5000MX architecture
provides predictable deterministic timing.
The availability of 3.3, 2.5 and 1.8V
versions of these devices along with the flexibility of the sysIO interface
helps users meet the challenge of today’s mixed voltage designs. Inputs can be
safely driven up to 5.5V when an I/O bank is configured for 3.3V operation,
making this family 5V tolerant. Boundary scan testability further eases
integration into today’s complex systems. A variety of density and package
options increase the likelihood of a good fit for a particular application.
Table 1 shows the members of the ispXPLD 5000MX family.
The Lattice CPLD – Complex Programmable Logic Devices series LC5256MC-75F256C is 3.3V, 2.5V and 1.8V In-System Programmable eXpanded Programmable Logic Device XPLD⑩ Family,CPLD – Complex Programmable Logic Devices PROGRAM EXPANDED LOG, View Substitutes & Alternatives along with datasheets, stock, pricing from Authorized Distributors at RAYPCB.com,
and you can also search for other FPGAs products.
LC5256MC-75F256C Tags integrated circuit
1. LC5256MC-75F256C Datasheet PDF
2. ispXPLD 5000MX evaluation kit
3. Lattice LC5256M
4. ispXPLD 5000MX LC5256M
5. ispXPLD 5000MX starter kit
6. LC5256M reference design
7. LC5256M evaluation board
8. Lattice ispXPLD 5000MX development board
9. ispXPLD 5000MX LC5256M
Xilinx LC5256MC-75F256C TechnicalAttributes
-Maximum Operating Temperature + 90 C
-Minimum Operating Temperature 0 C
-Maximum Operating Frequency 300 MHz
-Memory Type EEPROM/SRAM
-Delay Time 4 ns
-Number of Macrocells 256
-Operating Supply Voltage 1.8 V
-Supply Voltage – Max 1.95 V
-Mounting Style SMD/SMT
-Supply Current 16 mA
-Factory Pack Quantity 450
-Package / Case FPBGA-256-100
-Number of Product Terms per Macro 160
-Packaging Tube
-Supply Voltage – Min 1.65 V
-Number of Programmable I/Os 100