EPM2210 Altera Corporation, EPM2210 Datasheet - Page 31

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EPM2210

Manufacturer Part Number
EPM2210
Description
(EPMxxxx) JTAG & In-System Programmability
Manufacturer
Altera Corporation
Datasheet

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Altera Corporation
December 2004
f
Auto-Increment Addressing
The UFM block supports standard read or stream read operations. The
stream read is supported with a auto-increment address feature. De-
asserting the ARSHIFT signal while clocking the ARCLK signal increments
the address register value to read consecutive locations from the UFM
array.
Serial Interface
The UFM block supports a serial interface with serial address and data
signals. The internal shift registers within the UFM block for address and
data are 9 bits and 16 bits wide, respectively. The Quartus II software
automatically generates interface logic in LEs for a parallel address and
data interface to the UFM block. Other standard protocol interfaces such
as SPI are also automatically generated in LE logic by the Quartus II
software.
For more information on the UFM interface signals and the Quartus II
LE-based alternate interfaces, see Using User Flash Memory in MAX II
Devices.
UFM Block to Logic Array Interface
The UFM block is a small partition of the flash memory which contains
the CFM block as shown in
EPM240 device is located on the left side of the device adjacent to the left
most LAB column. The UFM block for the EPM570, EPM1270, and
EPM2210 devices is located on the bottom left portion of the device. The
UFM input and output signals interface to all types of interconnects (R4
interconnect, C4 interconnect, and DirectLink interconnect to/from
adjacent LAB rows). The UFM signals can also be driven from global
clocks, GCLK[3..0]. The interface region for the EPM240 device is
shown in
EPM2210 devices are shown in
Figure
Core Version a.b.c variable
2–16. The interface regions for EPM570, EPM1270, and
Figures 2–1
Figure
2–17.
MAX II Device Handbook, Volume 1
and 2–2. The UFM block for the
MAX II Architecture
2–25

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