LC4384V-75TN176C
A Complex Programmable Logic Device with 384 macrocells, operating at 400MHz, 3.3V voltage, and a 7.5 tPDLC4384V-75TN176C
A Complex Programmable Logic Device with 384 macrocells, operating at 400MHz, 3.3V voltage, and a 7.5 tPD
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Manufacturer Part # : LC4384V-75TN176C
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Package/Case: QFP-176
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Brand: Lattice Semiconductor
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Product Categories : CPLDs (Complex Programmable Logic Devices)
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Series : LC4384
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LC4384V-75TN176C DataSheet
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LC4384V-75TN176C Details
The LC4384V-75TN176C is a programmable logic device (PLD) from Lattice Semiconductor, offering versatile functionality for various digital design applications. This PLD features a high logic density and configurable logic blocks, allowing for custom logic implementation tailored to specific design requirements. It is housed in a compact and durable package, making it suitable for use in embedded systems and digital signal processing.
Pinout
- 1 (GND): Ground
- 2 (IO1): I/O Pin 1
- 3 (IO2): I/O Pin 2
- ...: Additional I/O Pins
- 176 (VCC): Positive Power Supply
(Tip: For detailed pinout information, please refer to the corresponding datasheet.)
Key Features
- High Logic Density: Offers a high number of configurable logic elements for complex designs.
- Configurable Logic Blocks: Allows for flexible logic implementation and customization.
- Embedded Memory: Includes embedded memory blocks for data storage and processing.
- Flexible I/O Options: Provides multiple I/O options for versatile connectivity.
- Low Power Consumption: Designed for efficient power usage in various applications.
Application
- Embedded Systems: Ideal for embedded system design and implementation.
- Digital Signal Processing: Used in DSP applications for custom logic processing.
- Industrial Automation: Suitable for industrial automation systems requiring programmable logic.
Where to Use
The LC4384V-75TN176C is suitable for digital design projects that require flexible and customizable logic processing. It is commonly used in embedded systems, digital signal processing applications, and industrial automation projects for efficient and tailored logic implementations.
How to Use
Integrate the LC4384V-75TN176C into your design by connecting the I/O pins to external components and configuring the logic blocks based on your design requirements. Ensure proper power supply connections and consider the device's power consumption for optimal performance. For detailed usage instructions, refer to the datasheet.
Application Circuit
The application circuit diagram for the LC4384V-75TN176C demonstrates how to interface the PLD with other components in your digital design. It showcases connections for power supply, I/O pins, and logic configuration, enabling seamless integration into your project.
(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)
Equivalents
- LC4384V-35TN176C: A similar PLD with lower logic density and power consumption.
- LC4384V-100TN176C: An alternative PLD offering higher logic density and performance capabilities.
Complementary
The LC4384V-75TN176C can be complemented by the LCMXO2-7000HC-4SG48C, which provides additional logic resources and connectivity options for more complex digital designs. When selecting complementary devices, ensure compatibility and synergy with your overall system requirements.
Frequently Asked Questions
Q: What is the maximum logic density of the LC4384V-75TN176C?
A: The LC4384V-75TN176C offers a logic density of 75,000 gates. For specific details, refer to the datasheet for comprehensive information on logic resources and capabilities.
Q: Is the LC4384V-75TN176C suitable for real-time processing applications?
A: Yes, the LC4384V-75TN176C can be used in real-time processing applications, providing configurable logic elements for custom real-time logic implementations.
Specifications
The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.
Product Category ! | CPLD - Complex Programmable Logic Devices | RoHS | Details |
Series | LC4384V | Mounting Style | SMD/SMT |
Package / Case | TQFP-176 | Operating Supply Voltage ! | 3.3 V |
Number of Macrocells | 384 Macrocell | Number of I/Os | 128 I/O |
Supply Voltage - Max | 3.6 V | Supply Voltage - Min | 3 V |
Minimum Operating Temperature | 0 C | Maximum Operating Temperature ! | + 90 C |
Maximum Operating Frequency | 322 MHz | Propagation Delay - Max | 7.5 ns |
Brand | Lattice | Height | 1.4 mm |
Length | 24 mm | Moisture Sensitive | Yes |
Number of Logic Array Blocks - LABs | 24 | Operating Supply Current | 13.5 mA |
Product Type ! | CPLD - Complex Programmable Logic Devices | Factory Pack Quantity | 40 |
Subcategory | Programmable Logic ICs | Tradename | ispMACH |
Width | 24 mm | Unit Weight | 0.067021 oz |
Datasheet PDF
Datasheets record the features, absolute maximum ratings, applications and more of the device, which benefit a lot as an overall guide to the specific application of the part.
FAQs
What is LC4384V-75TN176C?
The LC4384V-75TN176C is a field-programmable gate array (FPGA) manufactured by Lattice Semiconductor. It belongs to the LC4000V family of FPGAs and is designed for applications requiring high-density logic integration, such as telecommunications, industrial control, and automotive systems.
How Does LC4384V-75TN176C Work?
The LC4384V-75TN176C operates as a reconfigurable integrated circuit that allows users to program and implement custom digital logic functions. It consists of configurable logic blocks, I/O elements, and embedded memory, providing flexibility in designing complex digital systems. The FPGA can be programmed and reprogrammed to adapt to different functionality requirements, making it suitable for diverse applications.
How Many Pins does LC4384V-75TN176C have and What are the Functions of the Pinout Configuration?
The LC4384V-75TN176C is housed in a 176-pin TQFP (Thin Quad Flat Package) package. The pinout configuration includes:
- Configurable I/O pins: These pins can be configured to serve as inputs, outputs, or bidirectional signals.
- Configurable logic blocks (CLBs): These are the functional blocks of the FPGA used to implement custom logic functions.
- Global clock distribution and routing resources: These facilitate the distribution of clock signals and interconnection between different logic elements.
- Embedded memory and PLLs: The FPGA includes embedded memory blocks and phase-locked loops for additional functionality.
What are the Pros and Cons of LC4384V-75TN176C?
Pros:
- High Integration: Provides a high density of configurable logic elements, suitable for complex designs.
- Reconfigurability: Allows for flexible programming and reprogramming to adapt to changing functionality requirements.
- Embedded Resources: Includes embedded memory and PLLs for additional functionality within the FPGA.
- Industrial Applications: Suited for use in rugged industrial environments due to its robust design.
- Package Size: The 176-pin TQFP package provides a good balance of I/O count and board space efficiency.
Cons:
- Complex Design Flow: FPGAs require expertise in digital design and a complex design flow compared to off-the-shelf integrated circuits.
- Power Consumption: High-density FPGAs like the LC4384V-75TN176C may consume relatively higher power compared to lower-density alternatives.
Are There Any Equivalents/Alternatives to LC4384V-75TN176C for Recommendation?
- The Altera (now Intel) MAX V series offers FPGAs with similar high-density characteristics.
- Alternatives to the LC4384V-75TN176C include Xilinx Spartan series FPGAs and Microsemi (now Microchip) SmartFusion2 FPGAs.
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Price details
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