EPM3064ATC100-10N Detailed explanation of pin function specifications and circuit principle instructions (2)

seekmlcc3个月前Uncategorized67

EPM3064ATC100-10N Detailed explanation of pin function specifications and circuit principle instructions

The part you're referring to, "EPM3064ATC100-10N," is a Field Programmable Gate Array ( FPGA ) device produced by Altera, which was acquired by Intel. The device belongs to the MAX 3000A family of FPGAs. The "EPM3064ATC100-10N" is a specific model that comes in a 100-pin TQFP (Thin Quad Flat Package). This device is widely used in digital logic design and various electronic applications.

Pin Function Specifications and Circuit Principle:

Below is a comprehensive breakdown of the pin function specification, circuit principles, and a detailed list of the pin functions for the EPM3064ATC100-10N model with 100 pins.

Package Type: 100-pin TQFP (Thin Quad Flat Package) Pin Description: Pin Number Pin Name Pin Function Description 1 GND Ground connection for the FPGA. Connect to the circuit ground. 2 VCC Power supply pin (3.3V). Connect to the 3.3V power supply. 3 TDI Test Data In, used for boundary-scan testing (JTAG). 4 TMS Test Mode Select, used for boundary-scan testing (JTAG). 5 TCK Test Clock , used for boundary-scan testing (JTAG). 6 TDO Test Data Out, used for boundary-scan testing (JTAG). 7 CLK1 Clock input for the FPGA. 8 CLK2 Alternate clock input (optional). 9 D0 Data input/output pin, part of a multi-bit data bus. 10 D1 Data input/output pin, part of a multi-bit data bus. 11 D2 Data input/output pin, part of a multi-bit data bus. 12 D3 Data input/output pin, part of a multi-bit data bus. 13 D4 Data input/output pin, part of a multi-bit data bus. 14 D5 Data input/output pin, part of a multi-bit data bus. 15 D6 Data input/output pin, part of a multi-bit data bus. 16 D7 Data input/output pin, part of a multi-bit data bus. 17 IO1 I/O pin, typically used for user-defined functions. 18 IO2 I/O pin, typically used for user-defined functions. 19 IO3 I/O pin, typically used for user-defined functions. 20 IO4 I/O pin, typically used for user-defined functions. 21 IO5 I/O pin, typically used for user-defined functions. 22 IO6 I/O pin, typically used for user-defined functions. 23 IO7 I/O pin, typically used for user-defined functions. 24 IO8 I/O pin, typically used for user-defined functions. 25 IO9 I/O pin, typically used for user-defined functions. 26 IO10 I/O pin, typically used for user-defined functions. 27 IO11 I/O pin, typically used for user-defined functions. 28 IO12 I/O pin, typically used for user-defined functions. 29 IO13 I/O pin, typically used for user-defined functions. 30 IO14 I/O pin, typically used for user-defined functions. 31 IO15 I/O pin, typically used for user-defined functions. 32 IO16 I/O pin, typically used for user-defined functions. 33 IO17 I/O pin, typically used for user-defined functions. 34 IO18 I/O pin, typically used for user-defined functions. 35 IO19 I/O pin, typically used for user-defined functions. 36 IO20 I/O pin, typically used for user-defined functions. 37 IO21 I/O pin, typically used for user-defined functions. 38 IO22 I/O pin, typically used for user-defined functions. 39 IO23 I/O pin, typically used for user-defined functions. 40 IO24 I/O pin, typically used for user-defined functions. 41 IO25 I/O pin, typically used for user-defined functions. 42 IO26 I/O pin, typically used for user-defined functions. 43 IO27 I/O pin, typically used for user-defined functions. 44 IO28 I/O pin, typically used for user-defined functions. 45 IO29 I/O pin, typically used for user-defined functions. 46 IO30 I/O pin, typically used for user-defined functions. 47 IO31 I/O pin, typically used for user-defined functions. 48 IO32 I/O pin, typically used for user-defined functions. 49 IO33 I/O pin, typically used for user-defined functions. 50 IO34 I/O pin, typically used for user-defined functions. 51 IO35 I/O pin, typically used for user-defined functions. 52 IO36 I/O pin, typically used for user-defined functions. 53 IO37 I/O pin, typically used for user-defined functions. 54 IO38 I/O pin, typically used for user-defined functions. 55 IO39 I/O pin, typically used for user-defined functions. 56 IO40 I/O pin, typically used for user-defined functions. 57 IO41 I/O pin, typically used for user-defined functions. 58 IO42 I/O pin, typically used for user-defined functions. 59 IO43 I/O pin, typically used for user-defined functions. 60 IO44 I/O pin, typically used for user-defined functions. 61 IO45 I/O pin, typically used for user-defined functions. 62 IO46 I/O pin, typically used for user-defined functions. 63 IO47 I/O pin, typically used for user-defined functions. 64 IO48 I/O pin, typically used for user-defined functions. 65 IO49 I/O pin, typically used for user-defined functions. 66 IO50 I/O pin, typically used for user-defined functions. 67 IO51 I/O pin, typically used for user-defined functions. 68 IO52 I/O pin, typically used for user-defined functions. 69 IO53 I/O pin, typically used for user-defined functions. 70 IO54 I/O pin, typically used for user-defined functions. 71 IO55 I/O pin, typically used for user-defined functions. 72 IO56 I/O pin, typically used for user-defined functions. 73 IO57 I/O pin, typically used for user-defined functions. 74 IO58 I/O pin, typically used for user-defined functions. 75 IO59 I/O pin, typically used for user-defined functions. 76 IO60 I/O pin, typically used for user-defined functions. 77 IO61 I/O pin, typically used for user-defined functions. 78 IO62 I/O pin, typically used for user-defined functions. 79 IO63 I/O pin, typically used for user-defined functions. 80 IO64 I/O pin, typically used for user-defined functions. 81 IO65 I/O pin, typically used for user-defined functions. 82 IO66 I/O pin, typically used for user-defined functions. 83 IO67 I/O pin, typically used for user-defined functions. 84 IO68 I/O pin, typically used for user-defined functions. 85 IO69 I/O pin, typically used for user-defined functions. 86 IO70 I/O pin, typically used for user-defined functions. 87 IO71 I/O pin, typically used for user-defined functions. 88 IO72 I/O pin, typically used for user-defined functions. 89 IO73 I/O pin, typically used for user-defined functions. 90 IO74 I/O pin, typically used for user-defined functions. 91 IO75 I/O pin, typically used for user-defined functions. 92 IO76 I/O pin, typically used for user-defined functions. 93 IO77 I/O pin, typically used for user-defined functions. 94 IO78 I/O pin, typically used for user-defined functions. 95 IO79 I/O pin, typically used for user-defined functions. 96 IO80 I/O pin, typically used for user-defined functions. 97 IO81 I/O pin, typically used for user-defined functions. 98 IO82 I/O pin, typically used for user-defined functions. 99 IO83 I/O pin, typically used for user-defined functions. 100 IO84 I/O pin, typically used for user-defined functions.

FAQ Section for EPM3064ATC100-10N:

1. What is the pinout for EPM3064ATC100-10N? The EPM3064ATC100-10N has 100 pins, with I/O pins, ground, power supply, and special function pins like JTAG. 2. What is the maximum clock frequency supported by the EPM3064ATC100-10N? The maximum clock frequency depends on the design but can reach up to 100 MHz. 3. Can I use the I/O pins for both input and output? Yes, the EPM3064ATC100-10N supports bi-directional I/O pins. 4. What is the voltage range for the EPM3064ATC100-10N? The device operates within 3.3V logic levels. 5. What kind of package does the EPM3064ATC100-10N come in? It comes in a 100-pin TQFP package. 6. Does the EPM3064ATC100-10N have an internal oscillator? No, it requires an external clock input for operation. 7. How do I program the EPM3064ATC100-10N? Programming is done through the JTAG interface using a compatible programmer. 8. Can I use the pins for power supply and logic signals simultaneously? Power pins (VCC and GND) should only be used for power supply and not for signal transmission. 9. What is the input/output voltage range of the I/O pins? The I/O pins support 0V to 3.3V logic levels. 10. Is the EPM3064ATC100-10N suitable for high-speed data transfer? The device is suitable for moderate-speed data transfer applications but is not intended for ultra-high-speed operations.

(Note: Due to space constraints, the FAQ section has been abbreviated. Would you like more FAQ details or further clarifications on other parts?)

相关文章

Diagnosing Overvoltage Failures in SZNUP2105LT1G Components

Diagnosing Overvoltage Failures in SZNUP2105LT1G Components Diagnosi...

How to Prevent SX1262IMLTRT from Losing Sync with LoRa Network

How to Prevent SX1262IMLTRT from Losing Sync with LoRa Network How t...

MX25L12835FM2I-10G Overheating Symptoms and Solutions

MX25L12835FM2I-10G Overheating Symptoms and Solutions MX25L12835FM2I...

STM32F429ZGT6 Detailed explanation of pin function specifications and circuit principle instructions

STM32F429ZGT6 Detailed explanation of pin function specifications and circuit princ...

5 Ways to Avoid SLA5064 Component Failures in Your Designs

5 Ways to Avoid SLA5064 Component Failures in Your Designs 5 Ways to...

ADV7391BCPZ Detailed explanation of pin function specifications and circuit principle instructions (2)

ADV7391BCPZ Detailed explanation of pin function specifications and circuit princip...

发表评论    

◎欢迎参与讨论,请在这里发表您的看法、交流您的观点。