184 Field Programmable Gate Arrays (FPGA) 9

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Part RoHS Manufacturer Programmable IC Type Grading Of Temperature Form Of Terminal No. of Terminals Package Code Package Shape Total Dose (V) Package Body Material No. of Logic Cells Surface Mount Maximum Supply Voltage No. of CLBs Technology Used Screening Level No. of Inputs No. of Equivalent Gates Nominal Supply Voltage (V) Packing Method Power Supplies (V) Package Style (Meter) Package Equivalence Code Sub-Category Minimum Supply Voltage Pitch Of Terminal Maximum Operating Temperature Maximum Combinatorial Delay of a CLB Organization Minimum Operating Temperature Finishing Of Terminal Used Position Of Terminal JESD-30 Code Moisture Sensitivity Level (MSL) Maximum Seated Height Width Qualification Additional Features JESD-609 Code Maximum Clock Frequency Maximum Time At Peak Reflow Temperature (s) No. of Outputs Peak Reflow Temperature (C) Length

LCMXO2-4000HE-6MG184C

Lattice Semiconductor

FPGA

Other

Ball

184

LFBGA

Square

Plastic/Epoxy

4320

Yes

1.26 V

150

1.2

Tray

1.2 V

Grid Array, Low Profile, Fine Pitch

BGA184,14X14,20

Field Programmable Gate Arrays

1.14 V

.5 mm

85 °C (185 °F)

0 °C (32 °F)

Tin/Silver/Copper

Bottom

S-PBGA-B184

3

1.5 mm

8 mm

No

e1

150

8 mm

LCMXO2-4000HE-4MG184I

Lattice Semiconductor

FPGA

Ball

184

LFBGA

Square

Plastic/Epoxy

4320

Yes

1.26 V

150

1.2

Tray

1.2 V

Grid Array, Low Profile, Fine Pitch

BGA184,14X14,20

Field Programmable Gate Arrays

1.14 V

.5 mm

100 °C (212 °F)

-40 °C (-40 °F)

Tin/Silver/Copper

Bottom

S-PBGA-B184

3

1.5 mm

8 mm

No

e1

150

8 mm

UPD65654GN

Renesas Electronics

FPGA

Industrial

Gull Wing

184

QFP

Square

Plastic/Epoxy

Yes

CMOS

192

5

5 V

Flatpack

QFP184,1.4SQ

Field Programmable Gate Arrays

.635 mm

85 °C (185 °F)

-40 °C (-40 °F)

Quad

S-PQFP-G184

No

192

UPD65658GN

Renesas Electronics

FPGA

Industrial

Gull Wing

184

QFP

Square

Plastic/Epoxy

Yes

CMOS

220

5

5 V

Flatpack

QFP184,1.4SQ

Field Programmable Gate Arrays

.635 mm

85 °C (185 °F)

-40 °C (-40 °F)

Quad

S-PQFP-G184

No

220

UPD65676GN

Renesas Electronics

FPGA

Industrial

Gull Wing

184

QFP

Square

Plastic/Epoxy

Yes

CMOS

448

5

5 V

Flatpack

QFP184,1.4SQ

Field Programmable Gate Arrays

.635 mm

85 °C (185 °F)

-40 °C (-40 °F)

Quad

S-PQFP-G184

No

448

UPD65651GN

Renesas Electronics

FPGA

Industrial

Gull Wing

184

QFP

Square

Plastic/Epoxy

Yes

CMOS

220

5

5 V

Flatpack

QFP184,1.4SQ

Field Programmable Gate Arrays

.635 mm

85 °C (185 °F)

-40 °C (-40 °F)

Quad

S-PQFP-G184

No

220

UPD65664GN

Renesas Electronics

FPGA

Industrial

Gull Wing

184

QFP

Square

Plastic/Epoxy

Yes

CMOS

288

5

5 V

Flatpack

QFP184,1.4SQ

Field Programmable Gate Arrays

.635 mm

85 °C (185 °F)

-40 °C (-40 °F)

Quad

S-PQFP-G184

No

288

UPD65652GN

Renesas Electronics

FPGA

Industrial

Gull Wing

184

QFP

Square

Plastic/Epoxy

Yes

CMOS

220

5

5 V

Flatpack

QFP184,1.4SQ

Field Programmable Gate Arrays

.635 mm

85 °C (185 °F)

-40 °C (-40 °F)

Quad

S-PQFP-G184

No

220

UPD65672GN

Renesas Electronics

FPGA

Industrial

Gull Wing

184

QFP

Square

Plastic/Epoxy

Yes

CMOS

368

5

5 V

Flatpack

QFP184,1.4SQ

Field Programmable Gate Arrays

.635 mm

85 °C (185 °F)

-40 °C (-40 °F)

Quad

S-PQFP-G184

No

368

Field Programmable Gate Arrays (FPGA)

Field Programmable Gate Arrays (FPGAs) are digital integrated circuits that are programmable by the user to perform specific logic functions. They consist of a matrix of configurable logic blocks (CLBs) that can be programmed to perform any digital function, as well as programmable interconnects that allow these blocks to be connected in any way the designer wishes. This makes FPGAs highly versatile and customizable, and they are often used in applications where a high degree of flexibility and performance is required.

FPGAs are programmed using specialized software tools that allow the designer to specify the logic functions and interconnects that are required for a particular application. This process is known as synthesis and involves translating the high-level design into a format that can be implemented on the FPGA hardware. The resulting configuration data is then loaded onto the FPGA, allowing it to perform the desired logic functions.

FPGAs are used in a wide range of applications, including digital signal processing, computer networking, and high-performance computing. They offer a number of advantages over traditional fixed-function digital circuits, including the ability to be reprogrammed in the field, lower development costs, and faster time-to-market. However, they also have some disadvantages, including higher power consumption and lower performance compared to custom-designed digital circuits.