EPF6016ATC100-3 Altera, EPF6016ATC100-3 Datasheet - Page 17

IC FLEX 6000 FPGA 16K 100-TQFP

EPF6016ATC100-3

Manufacturer Part Number
EPF6016ATC100-3
Description
IC FLEX 6000 FPGA 16K 100-TQFP
Manufacturer
Altera
Series
FLEX 6000r
Datasheet

Specifications of EPF6016ATC100-3

Number Of Logic Elements/cells
1320
Number Of Labs/clbs
132
Number Of I /o
81
Number Of Gates
16000
Voltage - Supply
3 V ~ 3.6 V
Mounting Type
Surface Mount
Operating Temperature
0°C ~ 85°C
Package / Case
100-TQFP, 100-VQFP
Family Name
FLEX 6000
Number Of Usable Gates
16000
Number Of Logic Blocks/elements
1320
# Registers
1320
# I/os (max)
81
Frequency (max)
142.86MHz
Process Technology
SRAM
Operating Supply Voltage (typ)
3.3V
Logic Cells
1320
Device System Gates
16000
Operating Supply Voltage (min)
3V
Operating Supply Voltage (max)
3.6V
Operating Temp Range
0C to 85C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
100
Package Type
TQFP
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Total Ram Bits
-
Lead Free Status / Rohs Status
Not Compliant
Other names
544-1274

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FLEX 6000 Programmable Logic Device Family Data Sheet
Figure 8. LE Clear & Preset Modes
Asynchronous Clear
Asynchronous Preset
labctrl1 or
labctrl2
Chip-Wide Reset
D
Q
PRN
D
Q
CLRN
labctrl1 or
labctrl2
Chip-Wide Reset
Asynchronous Clear
The flipflop can be cleared by either LABCTRL1 or LABCTRL2.
Asynchronous Preset
An asynchronous preset is implemented with an asynchronous clear. The
Altera software provides preset control by using the clear and inverting
the input and output of the register. Inversion control is available for the
inputs to both LEs and IOEs. Therefore, this technique can be used when
a register drives logic or drives a pin.
In addition to the two clear and preset modes, FLEX 6000 devices provide
a chip-wide reset pin (DEV_CLRn) that can reset all registers in the device.
The option to use this pin is set in the Altera software before compilation.
The chip-wide reset overrides all other control signals. Any register with
an asynchronous preset will be preset when the chip-wide reset is asserted
because of the inversion technique used to implement the asynchronous
preset.
The Altera software can use a programmable NOT-gate push-back
technique to emulate simultaneous preset and clear or asynchronous load.
However, this technique uses an additional three LEs per register.
FastTrack Interconnect
In the FLEX 6000 OptiFLEX architecture, connections between LEs and
device I/O pins are provided by the FastTrack Interconnect, a series of
continuous horizontal and vertical routing channels that traverse the
device. This global routing structure provides predictable performance,
even for complex designs. In contrast, the segmented routing in FPGAs
requires switch matrices to connect a variable number of routing paths,
increasing the delays between logic resources and reducing performance.
Altera Corporation
17

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