PAL®C20 Series, PLDs (Programmable Logic Device)

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5
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Series
Number of Macrocells
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Speed
Mounting Type
Programmable Type
Voltage - Input
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PAL®C20
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeSeriesProgrammable TypeVoltage - InputSpeedPackage / CaseSupplier Device PackageNumber of Macrocells
PALC16L8L-35WC
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
PAL®C20
PAL
4.5V ~ 5.5V
35 ns
20-CDIP (0.300", 7.62mm) Window
20-CDIP
-
5962-8867808RA
UV PLD, 30NS, CMOS, CDIP20
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
PAL®C20
PAL
4.5V ~ 5.5V
30 ns
20-CDIP (0.300", 7.62mm) Window
20-CDIP
4
PALC16R6-30LMB
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
PAL®C20
PAL
4.5V ~ 5.5V
30 ns
20-CLCC
20-CLCC (8.89x8.89)
6
PALC16R4-35WC
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
PAL®C20
PAL
4.5V ~ 5.5V
35 ns
20-CDIP (0.300", 7.62mm) Window
20-CDIP
4
PALC16R8-35PI
OT PLD, 25NS, PAL-TYPE, CMOS
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
PAL®C20
PAL
4.5V ~ 5.5V
35 ns
20-DIP (0.300", 7.62mm)
20-DIP
8

PLDs (Programmable Logic Device)

Programmable Logic Devices (PLDs) are electronic components that can be programmed to perform specific logic functions. They offer flexibility and customization in digital circuit design without the need for dedicated hardware design. Functionality and Features: PLDs consist of configurable logic blocks, input/output pins, and interconnect resources. They can be programmed to implement various logic functions by configuring internal connections and defining the behavior of input/output pins. PLDs enable designers to create custom digital circuits and easily modify their functionality as needed. Usage Scenarios: PLDs are commonly used in digital circuit design, prototyping, and product development. They are especially useful when flexibility, reconfigurability, and fast design iterations are required. PLDs facilitate rapid prototyping and allow designers to quickly iterate on designs without the need for extensive hardware modifications. Application Fields: PLDs find applications in numerous industries and fields. In telecommunications, they are used to implement complex protocols, network interfaces, and signal processing algorithms. Automotive electronics rely on PLDs for engine control units, advanced driver-assistance systems, and infotainment systems. Aerospace applications include flight control systems and avionics. Consumer electronics, industrial control systems, and many other domains also benefit from the versatility of PLDs. Key Advantages: Flexibility: PLDs offer flexibility in digital circuit design, allowing for customization and adaptation to changing requirements. Rapid Prototyping: PLDs enable quick prototyping and iterative development, accelerating the design process. Cost-Effective: PLDs eliminate the need for custom hardware design, reducing costs associated with dedicated hardware. Reconfigurability: The ability to reprogram PLDs allows for easy modifications and updates to the logic functions implemented. Adaptability: PLDs can be easily reconfigured for different applications or changing design needs, providing versatility. PLDs play a crucial role in modern digital circuit design, providing a versatile and customizable solution. Their flexibility, rapid prototyping capabilities, and widespread use across various industries make them an essential component for designers seeking efficient and adaptable digital circuit solutions.