DK-DEV-5M570ZN Altera, DK-DEV-5M570ZN Datasheet - Page 87

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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Part Number:
DK-DEV-5M570ZN
Manufacturer:
ALTERA
0
MV51005-1.0
I/O Standards
© 2010 Altera Corporation. All rights reserved. ALTERA, ARRIA, CYCLONE, HARDCOPY, MAX, MEGACORE, NIOS, QUARTUS and STRATIX are Reg. U.S. Pat. & Tm. Off.
and/or trademarks of Altera Corporation in the U.S. and other countries. All other trademarks and service marks are the property of their respective holders as described at
www.altera.com/common/legal.html. Altera warrants performance of its semiconductor products to current specifications in accordance with Altera’s standard warranty, but
reserves the right to make changes to any products and services at any time without notice. Altera assumes no responsibility or liability arising out of the application or use of any
information, product, or service described herein except as expressly agreed to in writing by Altera. Altera customers are advised to obtain the latest version of device
specifications before relying on any published information and before placing orders for products or services.
MAX V Device Handbook
December 2010
December 2010
MV51005-1.0
f
This chapter describes how to implement Altera
without damaging the device or the system.
Technological advancements in deep submicron processes have lowered the supply
voltage levels of semiconductor devices, creating a design environment where devices
on a system board may potentially use many different supply voltages such as 5.0, 3.3,
2.5, 1.8, 1.5, and 1.2 V, which can ultimately lead to voltage conflicts.
To accommodate interfacing with a variety of devices on system boards, MAX
devices have MultiVolt I/O interfaces that allow devices in a mixed-voltage design
environment to communicate directly with MAX V devices. The MultiVolt interface
separates the power supply voltage (V
allowing MAX V devices to interface with other devices using a different voltage level
on the same PCB. The 1.8-V input directly powers the core of the MAX V devices.
For more information about hot socketing and power-on reset (POR), refer to the
Socketing and Power-On Reset in MAX V Devices
This chapter contains the following sections:
The I/O buffer of MAX V devices is programmable and supports a wide range of I/O
voltage standards. You can program each I/O bank in a MAX V device to comply
with a different I/O standard. You can configure all I/O banks with the following
standards:
“I/O Standards” on page 5–1
“MultiVolt I/O Operation” on page 5–3
“5.0-V Device Compatibility” on page 5–3
“Recommended Operating Conditions for 5.0-V Compatibility” on page 5–7
“Power-Up Sequencing” on page 5–8
3.3-V LVTTL/LVCMOS
2.5-V LVTTL/LVCMOS
1.8-V LVTTL/LVCMOS
1.5-V LVCMOS
1.2-V LVCMOS
Emulated LVDS output (LVDS_E_3R)
Emulated RSDS output (RSDS_E_3R)
5. Using MAX V Devices in Multi-Voltage
CCINT
) from the output voltage (V
chapter.
®
devices in multi-voltage systems
CCIO
Systems
),
®
Subscribe
V
Hot

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