DK-DEV-5M570ZN Altera, DK-DEV-5M570ZN Datasheet - Page 34

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

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
DK-DEV-5M570ZN
Manufacturer:
ALTERA
0
2–22
MAX V Device Handbook
UFM Storage
Internal Oscillator
Each device stores up to 8,192 bits of data in the UFM block.
size, sector, and address sizes for the UFM block.
Table 2–3. UFM Array Size
There are 512 locations with 9-bit addressing ranging from 000h to 1FFh. The sector 0
address space is 000h to 0FFh and the sector 1 address space is from 100h to 1FFh. The
data width is up to 16 bits of data. The Quartus II software automatically creates logic
to accommodate smaller read or program data widths. Erasure of the UFM involves
individual sector erasing (that is, one erase of sector 0 and one erase of sector 1 is
required to erase the entire UFM block). Because sector erase is required before a
program or write operation, having two sectors enables a sector size of data to be left
untouched while the other sector is erased and programmed with new data.
As shown in
oscillator. The dedicated circuitry uses this oscillator internally for its read and
program operations. This oscillator's divide by 4 output can drive out of the UFM
block as a logic interface clock source or for general-purpose logic clocking. The
typical OSC output signal frequency ranges from 3.9 to 5.3 MHz, and its exact
frequency of operation is not programmable.
The UFM internal oscillator can be instantiated using the MegaWizard
Manager. You can also use the MAX II/MAX V Oscillator megafunction to instantiate
the UFM oscillator without using the UFM memory block.
5M40Z
5M80Z
5M160Z
5M240Z
5M570Z
5M1270Z
5M2210Z
Device
Figure
Total Bits
2–15, the dedicated circuitry within the UFM block contains an
8,192
8,192
8,192
8,192
8,192
8,192
8,192
2 (4,096 bits per sector)
2 (4,096 bits per sector)
2 (4,096 bits per sector)
2 (4,096 bits per sector)
2 (4,096 bits per sector)
2 (4,096 bits per sector)
2 (4,096 bits per sector)
Sectors
Address Bits
December 2010 Altera Corporation
Table 2–3
9
9
9
9
9
9
9
Chapter 2: MAX V Architecture
User Flash Memory Block
lists the data
Plug-In
Data Width
16
16
16
16
16
16
16

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