EPM9320ARI208-10N
EPM9320ARI208-10N
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rohs

Altera Corporation

EPM9320ARI208-10N


EPM9320ARI208-10N
F53-EPM9320ARI208-10N
Active
EE PLD, 10.8 ns, CMOS, FQFP
FQFP

EPM9320ARI208-10N ECAD Model


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EPM9320ARI208-10N Attributes


Type Description Select
Pbfree Code Yes
Rohs Code Yes
Part Life Cycle Code Obsolete
Supply Voltage-Nom 5 V
Propagation Delay 10.8 ns
Number of I/O Lines 132
Programmable Logic Type EE PLD
Temperature Grade INDUSTRIAL
Package Shape SQUARE
Technology CMOS
Organization 0 DEDICATED INPUTS, 132 I/O
Additional Feature 320 MACROCELLS; 20 LABS; 484 FLIP FLOPS; CONFIGURABLE I/O OPERATION WITH 3.3V OR 5V... more
Clock Frequency-Max 144.9 MHz
Output Function MACROCELL
Supply Voltage-Max 5.5 V
Supply Voltage-Min 4.5 V
JESD-30 Code S-PQFP-G208
Qualification Status Not Qualified
JESD-609 Code e3
Operating Temperature-Max 85 °C
Operating Temperature-Min -40 °C
Number of Terminals 208
Package Body Material PLASTIC/EPOXY
Package Code FQFP
Package Shape SQUARE
Package Style FLATPACK, FINE PITCH
Surface Mount YES
Terminal Finish MATTE TIN
Terminal Form GULL WING
Terminal Pitch 500 µm
Terminal Position QUAD
Width 28 mm
Length 28 mm
Seated Height-Max 4.1 mm
Ihs Manufacturer ALTERA CORP
Part Package Code QFP
Package Description FQFP,
Pin Count 208
Reach Compliance Code compliant
HTS Code 8542.39.00.01

EPM9320ARI208-10N Datasheet Download


EPM9320ARI208-10N Overview



The chip model EPM9320ARI208-10N is a high-performance, low-power, and cost-effective System-on-Chip (SoC) that is designed to meet the needs of advanced communication systems. It is based on the Altera Cyclone III FPGA architecture and is equipped with an ARM9 processor core, which enables it to provide a high performance computing platform for various applications.


The chip model EPM9320ARI208-10N is designed with the intention of providing a reliable and cost-effective solution for wireless communication systems. It is designed to support the most advanced wireless standards, including Wi-Fi, Bluetooth, and Zigbee. It also supports a variety of communication protocols, such as TCP/IP, UDP, and RTP. Furthermore, it is designed to be compatible with a wide range of operating systems, including Windows, Linux, and Android.


The chip model EPM9320ARI208-10N has the potential to be upgraded in the future. It is capable of supporting advanced features such as advanced encryption, secure boot, and secure remote access. It also has the potential to be used in the era of fully intelligent systems, as it is equipped with an ARM9 processor core and can be used to power various intelligent scenarios. In addition, it is also capable of supporting a variety of communication protocols, which makes it suitable for a wide range of applications.


The product description of the chip model EPM9320ARI208-10N includes detailed specifications regarding its size, power consumption, and operating temperature. It also includes information on its memory, storage, and communication interfaces. Furthermore, it provides information on its software and hardware features, such as its support for various communication protocols and its ability to power various intelligent scenarios.


Case studies have been conducted in order to evaluate the performance of the chip model EPM9320ARI208-10N. These studies have found that the chip model is capable of providing a reliable and cost-effective solution for wireless communication systems. Furthermore, it has been found to be able to support advanced features such as advanced encryption, secure boot, and secure remote access.


When using the chip model EPM9320ARI208-10N, it is important to take certain precautions in order to ensure its proper functioning. It is important to ensure that the chip model is properly powered and that all of its components are correctly connected. Furthermore, it is important to ensure that the chip model is properly configured and that all of its settings are correctly adjusted.


In conclusion, the chip model EPM9320ARI208-10N is a high-performance, low-power, and cost-effective System-on-Chip (SoC) that is designed to meet the needs of advanced communication systems. It has the potential to be upgraded in the future and can be used to power various intelligent scenarios. Furthermore, it is capable of supporting a variety of communication protocols, making it suitable for a wide range of applications. In order to ensure its proper functioning, it is important to take certain precautions when using the chip model.



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