Programmable Array Logic Circuits

What is a programmable array logic circuit (PAL)?


Programmable array logic (PAL) are semiconductors that are used to implement combinational logic circuits. They have a programmable AND gate array with fixed OR gate array. PAL’s contain PROM (programmable read only memory) and output logic. PAL is a group of PLD (programmable logic device). They’re also faster due to only having a single programmable array.


Features & Benefits


Programmable array logic is typically cheaper to produce & buy rather than the conventional programmable logic array (PLA). Compared to other programmable logic devices (PLD) they typically have higher efficiency, high reliability with only 1 programmable gate, less power consumption and more secure.


With the PAL being easier to program than a PLA there are multiple languages to program PALs in. These include PAL assembler (PALASM), Advanced Boolean expression language (ABEL) and universal programmable logic (CUPL). Programming PAL is very similar to PLA programming, except only the AND gate array needs to be programmed on the PAL.


How does a PAL differ from a PLA?


A PLA (Programmable Logic Array) has both an AND array gate and an OR gate array both available to be programmed, whereas PAL only allows the AND array to be programmed. Other differences include that PLA is slower, less efficient on power consumption and less prolific.


Typical applications


Programmable array logic circuits are typically used in a FPGA (Field Programmable Gate Array). This allows for accelerated testing of systems through programs such as Xilinx.


With the PAL being arranged in a FPGA you can compile test & edit very quickly compared to other arrangements.

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Part Details Brand Mounting Type Package Type Pin Count Dimensions Length Width Height Maximum Operating Supply Voltage Maximum Operating Temperature Minimum Operating Supply Voltage Minimum Operating Temperature
Xilinx XCF02SVOG20C, Configuration Memory 3 → 3.6 V 20-Pin TSSOP Xilinx Surface Mount TSSOP 20 6.5 x 4.39 x 1.04mm 6.5mm 4.39mm 1.04mm 3.6 V +85 °C 3 V -40 °C
Xilinx XCF08PVOG48C, Configuration Memory 1.65 → 2 V 48-Pin TSOP Xilinx Surface Mount TSOP 48 12.1 x 18.5 x 1mm 12.1mm 18.5mm 1mm 2 V +85 °C 1.65 V -40 °C
Xilinx XCF04SVOG20C, Configuration Memory 3 → 3.6 V 20-Pin TSSOP Xilinx Surface Mount TSSOP 20 6.5 x 4.39 x 1.04mm 6.5mm 4.39mm 1.04mm 3.6 V +85 °C 3 V -40 °C
Xilinx XCF16PFSG48C, Configuration Memory 1.65 → 2 V 48-Pin TFBGA Xilinx Surface Mount TFBGA 48 9 x 8 x 0.86mm 9mm 8mm 0.86mm 2 V +85 °C 1.65 V -40 °C
Xilinx XCF32PFSG48C, Configuration Memory 1.65 → 2 V 48-Pin TFBGA Xilinx Surface Mount TFBGA 48 9 x 8 x 0.86mm 9mm 8mm 0.86mm 2 V +85 °C 1.65 V -40 °C
Xilinx XCF01SVOG20C, Configuration Memory 3 → 3.6 V 20-Pin TSSOP Xilinx Surface Mount TSSOP 20 6.5 x 4.39 x 1.04mm 6.5mm 4.39mm 1.04mm 3.6 V +85 °C 3 V -40 °C
Xilinx XCF32PVOG48C, Configuration Memory 1.65 → 2 V 48-Pin TSOP Xilinx Surface Mount TSOP 48 12.1 x 18.5 x 1mm 12.1mm 18.5mm 1mm 2 V +85 °C 1.65 V -40 °C
Xilinx XCF02SVOG20C, Configuration Memory 3 → 3.6 V 20-Pin TSSOP Xilinx Surface Mount TSSOP 20 6.5 x 4.39 x 1.04mm 6.5mm 4.39mm 1.04mm 3.6 V +85 °C 3 V -40 °C
Xilinx XCF01SVOG20C, Configuration Memory 3 → 3.6 V 20-Pin TSSOP
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Xilinx Surface Mount TSSOP 20 6.5 x 4.39 x 1.04mm 6.5mm 4.39mm 1.04mm 3.6 V +85 °C 3 V -40 °C
Xilinx XCF02SVOG20C, Configuration Memory 3 → 3.6 V 20-Pin TSSOP
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Xilinx Surface Mount TSSOP 20 6.5 x 4.39 x 1.04mm 6.5mm 4.39mm 1.04mm 3.6 V +85 °C 3 V -40 °C
Xilinx XCF04SVOG20C, Configuration Memory 3 → 3.6 V 20-Pin TSSOP
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Xilinx Surface Mount TSSOP 20 6.5 x 4.39 x 1.04mm 6.5mm 4.39mm 1.04mm 3.6 V +85 °C 3 V -40 °C
Xilinx XCF08PVOG48C, Configuration Memory 1.65 → 2 V 48-Pin TSOP
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Xilinx Surface Mount TSOP 48 12.1 x 18.5 x 1mm 12.1mm 18.5mm 1mm 2 V +85 °C 1.65 V -40 °C
Xilinx XCF32PFSG48C, Configuration Memory 1.65 → 2 V 48-Pin TFBGA
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Xilinx Surface Mount TFBGA 48 9 x 8 x 0.86mm 9mm 8mm 0.86mm 2 V +85 °C 1.65 V -40 °C
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