H5TQ4G63EFR-RDC Detailed explanation of pin function specifications and circuit principle instructions

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H5TQ4G63EFR-RDC Detailed explanation of pin function specifications and circuit principle instructions

The part number "H5TQ4G63EFR-RDC" refers to a Memory module from Hynix (a leading global semiconductor manufacturer). Specifically, this part is a DDR3 SDRAM (Double Data Rate 3 Synchronous Dynamic Random- Access Memory) device with a capacity of 4GB (Gigabits).

Pin Function Specifications and Circuit Principle Instructions

Package Type: This particular memory chip is typically available in a FBGA (Fine-pitch Ball Grid Array) package. Package Size: The specific number of pins can vary depending on the exact part configuration, but DDR3 modules generally feature 96 pins (or in some configurations, the number can be higher, e.g., 200 pins for some larger modules). Pin Function Description:

Below is a detailed pinout table for a typical DDR3 memory chip in the FBGA package. It will include the function of each pin to ensure complete understanding.

Pin Number Pin Name Pin Function Description 1 A0 Address Input (Bit 0) - Address line for memory addressing 2 A1 Address Input (Bit 1) - Address line for memory addressing 3 A2 Address Input (Bit 2) - Address line for memory addressing 4 A3 Address Input (Bit 3) - Address line for memory addressing 5 A4 Address Input (Bit 4) - Address line for memory addressing 6 A5 Address Input (Bit 5) - Address line for memory addressing 7 A6 Address Input (Bit 6) - Address line for memory addressing 8 A7 Address Input (Bit 7) - Address line for memory addressing 9 A8 Address Input (Bit 8) - Address line for memory addressing 10 A9 Address Input (Bit 9) - Address line for memory addressing 11 A10 Address Input (Bit 10) - Address line for memory addressing 12 A11 Address Input (Bit 11) - Address line for memory addressing 13 A12 Address Input (Bit 12) - Address line for memory addressing 14 A13 Address Input (Bit 13) - Address line for memory addressing 15 A14 Address Input (Bit 14) - Address line for memory addressing 16 A15 Address Input (Bit 15) - Address line for memory addressing 17 A16 Address Input (Bit 16) - Address line for memory addressing 18 A17 Address Input (Bit 17) - Address line for memory addressing 19 A18 Address Input (Bit 18) - Address line for memory addressing 20 A19 Address Input (Bit 19) - Address line for memory addressing 21 A20 Address Input (Bit 20) - Address line for memory addressing 22 A21 Address Input (Bit 21) - Address line for memory addressing 23 A22 Address Input (Bit 22) - Address line for memory addressing 24 A23 Address Input (Bit 23) - Address line for memory addressing 25 A24 Address Input (Bit 24) - Address line for memory addressing 26 A25 Address Input (Bit 25) - Address line for memory addressing 27 A26 Address Input (Bit 26) - Address line for memory addressing 28 A27 Address Input (Bit 27) - Address line for memory addressing 29 A28 Address Input (Bit 28) - Address line for memory addressing 30 A29 Address Input (Bit 29) - Address line for memory addressing 31 DQ0 Data Input/Output (Bit 0) - Data bus for reading/writing data 32 DQ1 Data Input/Output (Bit 1) - Data bus for reading/writing data 33 DQ2 Data Input/Output (Bit 2) - Data bus for reading/writing data 34 DQ3 Data Input/Output (Bit 3) - Data bus for reading/writing data 35 DQ4 Data Input/Output (Bit 4) - Data bus for reading/writing data 36 DQ5 Data Input/Output (Bit 5) - Data bus for reading/writing data 37 DQ6 Data Input/Output (Bit 6) - Data bus for reading/writing data 38 DQ7 Data Input/Output (Bit 7) - Data bus for reading/writing data 39 DQ8 Data Input/Output (Bit 8) - Data bus for reading/writing data 40 DQ9 Data Input/Output (Bit 9) - Data bus for reading/writing data … … … 96 VSS Ground - Voltage reference for the chip 97 VDD Power Supply - Power input for the chip

(Note: The full table would continue with all the necessary pins, showing their exact functions. This is a small excerpt for illustration.)

Frequently Asked Questions (FAQ) – 20 Common Questions about the H5TQ4G63EFR-RDC

Q1: What type of memory is H5TQ4G63EFR-RDC?

A1: The H5TQ4G63EFR-RDC is a DDR3 SDRAM (Double Data Rate 3 Synchronous Dynamic Random-Access Memory) module.

Q2: How many pins does the H5TQ4G63EFR-RDC memory module have?

A2: The memory module comes in a 96-ball FBGA package, which features 96 pins.

Q3: What is the capacity of the H5TQ4G63EFR-RDC memory chip?

A3: The H5TQ4G63EFR-RDC chip has a capacity of 4Gb (Gigabits).

Q4: What is the voltage supply for H5TQ4G63EFR-RDC?

A4: The H5TQ4G63EFR-RDC requires a 1.5V power supply.

Q5: What is the data rate of H5TQ4G63EFR-RDC?

A5: The H5TQ4G63EFR-RDC supports data rates up to 1066 Mbps.

Q6: Can the H5TQ4G63EFR-RDC be used in a desktop computer?

A6: Yes, the H5TQ4G63EFR-RDC can be used in desktop motherboards that support DDR3 memory.

Q7: What is the operating temperature range of H5TQ4G63EFR-RDC?

A7: The operating temperature range for the H5TQ4G63EFR-RDC is typically 0°C to 95°C.

Q8: What is the maximum clock frequency supported by H5TQ4G63EFR-RDC?

A8: The H5TQ4G63EFR-RDC supports a 1066 MHz clock frequency.

Q9: Does H5TQ4G63EFR-RDC have ECC (Error-Correcting Code)?

A9: No, the H5TQ4G63EFR-RDC does not support ECC (Error-Correcting Code).

Q10: What is the packaging type of H5TQ4G63EFR-RDC?

A10: The H5TQ4G63EFR-RDC is packaged in a FBGA (Fine-pitch Ball Grid Array) package.

Q11: How many memory chips are required to make a 4GB DDR3 DIMM module using H5TQ4G63EFR-RDC?

A11: Typically, 16 chips of H5TQ4G63EFR-RDC would be used to form a 4GB DDR3 DIMM module.

Q12: What is the read latency for the H5TQ4G63EFR-RDC?

A12: The read latency for the H5TQ4G63EFR-RDC is typically CL7 (CAS Latency 7).

Q13: Is the H5TQ4G63EFR-RDC compatible with DDR2 motherboards?

A13: No, the H5TQ4G63EFR-RDC is a DDR3 module and is not compatible with DDR2 motherboards.

Q14: What is the data width of H5TQ4G63EFR-RDC?

A14: The H5TQ4G63EFR-RDC has a x4 data width, meaning it has 4 data bits per chip.

Q15: Does the H5TQ4G63EFR-RDC support dual-channel memory?

A15: Yes, the H5TQ4G63EFR-RDC can be used in dual-channel configurations.

Q16: Can the H5TQ4G63EFR-RDC be used in laptops?

A16: The H5TQ4G63EFR-RDC can be used in laptops with compatible DDR3 SO-DIMM sockets.

Q17: What is the maximum burst length supported by the H5TQ4G63EFR-RDC?

A17: The H5TQ4G63EFR-RDC supports a burst length of 8.

Q18: What is the refresh rate of the H5TQ4G63EFR-RDC?

A18: The refresh rate for the H5TQ4G63EFR-RDC is 64ms.

Q19: Can I overclock the H5TQ4G63EFR-RDC?

A19: While the H5TQ4G63EFR-RDC can theoretically be overclocked, doing so could void the warranty or damage the chip, so it's not recommended.

Q20: Where can I purchase the H5TQ4G63EFR-RDC?

A20: The H5TQ4G63EFR-RDC can be purchased from authorized electronic component distributors such as Digi-Key, Mouser, or directly from Hynix.

This explanation should provide a comprehensive understanding of the H5TQ4G63EFR-RDC model, its pin configuration, functionality, and usage.

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