EPM9320LC84-15N
EPM9320LC84-15N
Image shown is a representation only, Exact specifications should be obtained from the product data sheet.
rohs

Altera Corporation

EPM9320LC84-15N


EPM9320LC84-15N
F53-EPM9320LC84-15N
Active
EE PLD, 16 ns, CMOS, QCCJ,
PLCC84

EPM9320LC84-15N ECAD Model


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EPM9320LC84-15N Attributes


Type Description Select
Rohs Code Yes
Part Life Cycle Code Obsolete
Supply Voltage-Nom 5 V
Propagation Delay 16 ns
Number of I/O Lines 60
Programmable Logic Type EE PLD
Temperature Grade COMMERCIAL
Package Shape SQUARE
Technology CMOS
Organization 0 DEDICATED INPUTS, 60 I/O
Additional Feature 484 FLIP FLOPS; CONFIGURABLE I/O OPERATION WITH 3.3V OR 5V
Clock Frequency-Max 117.6 MHz
Output Function MACROCELL
Supply Voltage-Max 5.25 V
Supply Voltage-Min 4.75 V
JESD-30 Code S-PQCC-J84
Qualification Status Not Qualified
JESD-609 Code e3
Moisture Sensitivity Level 3
Operating Temperature-Max 70 °C
Number of Terminals 84
Package Body Material PLASTIC/EPOXY
Package Code QCCJ
Package Shape SQUARE
Package Style CHIP CARRIER
Surface Mount YES
Terminal Finish MATTE TIN
Terminal Form J BEND
Terminal Pitch 1.27 mm
Terminal Position QUAD
Width 29.3116 mm
Length 29.3116 mm
Seated Height-Max 5.08 mm
Ihs Manufacturer INTEL CORP
Package Description QCCJ,
Reach Compliance Code compliant
HTS Code 8542.39.00.01
Samacsys Manufacturer Intel

EPM9320LC84-15N Overview



The chip model EPM9320LC84-15N is a modern electronic device that is used in a variety of applications. It is designed to provide a high-performance, low-power, and cost-effective solution for a range of applications. It is a high-speed, low-power, and cost-effective solution for a range of applications. This chip model is widely used in the embedded system and consumer electronics industry.


The EPM9320LC84-15N chip model is an 8-bit microcontroller that is designed to provide a high-performance, low-power, and cost-effective solution for a range of applications. It has a wide range of features, such as a 32-bit RISC architecture, 8-channel 10-bit A/D converter, 8-bit PWM, and 8-bit Timer/Counter. It also has several peripheral functions, such as an 8-channel UART, SPI, I2C, and CAN interfaces. With the help of these features, the EPM9320LC84-15N chip model can be used in a variety of applications, such as motor control, industrial control, and consumer electronics.


The industry trends of the chip model EPM9320LC84-15N will be determined by the specific application environment and the technologies needed to support it. For example, if the application requires high-speed data processing, then the chip model should be designed to support high-speed data processing. If the application requires low-power consumption, then the chip model should be designed to support this. Furthermore, new technologies may be needed to support the application environment, such as advanced algorithms, software development tools, or new hardware components.


The product description and specific design requirements of the chip model EPM9320LC84-15N should be taken into consideration when designing the application. It is important to understand the features and capabilities of the chip model in order to ensure that the application meets its requirements. Furthermore, case studies and precautions should be taken into consideration when designing the application. This will ensure that the application is safe and reliable.


The chip model EPM9320LC84-15N can be applied to the development and popularization of future intelligent robots. This chip model can be used to provide the necessary computing power for the robots. Furthermore, the chip model can be used to provide the necessary sensors and actuators for the robots. In order to use the chip model effectively, technical talents such as software engineers, hardware engineers, and roboticists are needed.


In conclusion, the chip model EPM9320LC84-15N is a high-performance, low-power, and cost-effective solution for a range of applications. The industry trends of the chip model will be determined by the specific application environment and the technologies needed to support it. Furthermore, the product description and specific design requirements of the chip model should be taken into consideration when designing the application. Finally, the chip model can be applied to the development and popularization of future intelligent robots, and technical talents such as software engineers, hardware engineers, and roboticists are needed to use the model effectively.



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