DK-DEV-5M570ZN Altera, DK-DEV-5M570ZN Datasheet - Page 27

KIT DEV MAX V 5M570Z

DK-DEV-5M570ZN

Manufacturer Part Number
DK-DEV-5M570ZN
Description
KIT DEV MAX V 5M570Z
Manufacturer
Altera
Series
MAX® Vr
Type
CPLDr

Specifications of DK-DEV-5M570ZN

Contents
Board, Cable(s), Software and Documentation
Silicon Manufacturer
Altera
Core Architecture
CPLD
Core Sub-architecture
MAX
Silicon Core Number
5M
Silicon Family Name
MAX V
Kit Contents
MAX V CPLD Development Board, USB Cable
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
5M570ZF256
Lead Free Status / Rohs Status
Compliant
Other names
544-2722

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DK-DEV-5M570ZN
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Chapter 2: MAX V Architecture
MultiTrack Interconnect
Figure 2–10. R4 Interconnect Connections
Notes to
(1) C4 interconnects can drive R4 interconnects.
(2) This pattern is repeated for every LAB in the LAB row.
December 2010 Altera Corporation
Figure
2–10:
The column interconnect operates similarly to the row interconnect. Each column of
LABs is served by a dedicated column interconnect, which vertically routes signals to
and from LABs and row and column IOEs. These column resources include:
MAX V devices include an enhanced interconnect structure within LABs for routing
LE output to LE input connections faster using LUT chain connections and register
chain connections. The LUT chain connection allows the combinational output of an
LE to directly drive the fast input of the LE right below it, bypassing the local
interconnect. These resources can be used as a high-speed connection for wide fan-in
functions from LE 1 to LE 10 in the same LAB. The register chain connection allows
the register output of one LE to connect directly to the register input of the next LE in
the LAB for fast shift registers. The Quartus II Compiler automatically takes
advantage of these resources to improve utilization and performance.
shows the LUT chain and register chain interconnects.
LUT chain interconnects within an LAB
Register chain interconnects within an LAB
C4 interconnects traversing a distance of four LABs in an up and down direction
R4 Interconnect
Driving Left
Adjacent LAB can
drive onto another
LAB’s R4 Interconnect
Neighbor
LAB
Primary
LAB (2)
C4 Column Interconnects (1)
Neighbor
LAB
R4 Interconnect
Driving Right
MAX V Device Handbook
Figure 2–11
2–15

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