MT29F64G08CFACAWP:C Micron Technology Inc. IC FLASH 64GBIT 48TSOP
Integraallülitused (IC-d)
Tootja number:
MT29F64G08CFACAWP:C
Tootja:
Tootekategooria:
Kirjeldus:
IC FLASH 64GBIT 48TSOP
RoHs olek:
Andmetabelid:
Juurdepääsu aeg :
-
Kella sagedus :
-
Mälu liides :
Parallel
Mälu suurus :
64Gb (8G x 8)
Mälu tüüp :
Non-Volatile
Mälu vorming :
Flash
Osa olek :
Obsolete
Paigaldustüüp :
Surface Mount
Pakend/ümbris :
48-TFSOP (0.724", 18.40mm Width)
Pakendamine :
Bulk
Pinge – toide :
2.7 V ~ 3.6 V
seeria :
-
Tarnija seadmepakett :
48-TSOP I
Tehnoloogia :
FLASH - NAND
Töötemperatuur :
0°C ~ 70°C (TA)
Tsükli aja kirjutamine – sõna, leht :
-
Laos
57,299
Ühiku hind:
Võtke meiega ühendust Pakkumine
MT29F64G08CFACAWP:C Konkurentsivõimelised hinnad
ChipIcil on ainulaadne tarneallikas. Pakume oma klientidele MT29F64G08CFACAWP:C konkurentsivõimelise hinnaga. Saate nautida meie parimat teenust, ostes ChipIc MT29F64G08CFACAWP:C. Parima hinna saamiseks saidil MT29F64G08CFACAWP:C võtke meiega ühendust.
Hinnapakkumise saamiseks klõpsake
MT29F64G08CFACAWP:C Iseärasused
MT29F64G08CFACAWP:C is produced by Micron Technology Inc., belongs to Mälu.
MT29F64G08CFACAWP:C Toote üksikasjad
:
MT29F64G08CFACAWP:C – Mälu disainitud puhvervõimendid ja toodetud Micron Technology Inc..
MT29F64G08CFACAWP:C, mida pakub Micron Technology Inc., saab osta CHIPMLCC-st.
Siit leiate erinevaid juhtivate tootjate elektroonilisi osi rahu.
CHIPMLCC MT29F64G08CFACAWP:C on range kvaliteedikontrolliga ja nõuetele vastav kõike nõuetele.
CHIPMLCC-s näidatud fondi staatus on ainult viitamiseks.
Kui te ei leia otsitavat osa, võtke meiega ühendust lisateavet, näiteks varude arvu andmetabelis MT29F64G08CFACAWP:C (PDF), hind MT29F64G08CFACAWP:C, Pinout MT29F64G08CFACAWP:C, manuaal MT29F64G08CFACAWP:C Ja MT29F64G08CFACAWP:C asenduslahendus.
MT29F64G08CFACAWP:C, mida pakub Micron Technology Inc., saab osta CHIPMLCC-st.
Siit leiate erinevaid juhtivate tootjate elektroonilisi osi rahu.
CHIPMLCC MT29F64G08CFACAWP:C on range kvaliteedikontrolliga ja nõuetele vastav kõike nõuetele.
CHIPMLCC-s näidatud fondi staatus on ainult viitamiseks.
Kui te ei leia otsitavat osa, võtke meiega ühendust lisateavet, näiteks varude arvu andmetabelis MT29F64G08CFACAWP:C (PDF), hind MT29F64G08CFACAWP:C, Pinout MT29F64G08CFACAWP:C, manuaal MT29F64G08CFACAWP:C Ja MT29F64G08CFACAWP:C asenduslahendus.
MT29F64G08CFACAWP:C FAQ
:
1. What is the maximum capacity of the MT29F64G08CFACAWP:C NAND flash memory?
The MT29F64G08CFACAWP:C NAND flash memory has a maximum capacity of 64 gigabits.
2. What interface does the MT29F64G08CFACAWP:C support for data transfer?
The MT29F64G08CFACAWP:C supports a standard ONFI 3.0 synchronous NAND interface for efficient data transfer.
3. Can the MT29F64G08CFACAWP:C operate at industrial temperature ranges?
Yes, the MT29F64G08CFACAWP:C is designed to operate reliably within industrial temperature ranges.
4. What is the typical power consumption of the MT29F64G08CFACAWP:C during read and program operations?
The MT29F64G08CFACAWP:C typically consumes low power during read and program operations, making it suitable for energy-efficient applications.
5. Does the MT29F64G08CFACAWP:C support hardware-based write protection?
Yes, the MT29F64G08CFACAWP:C features hardware-based write protection to prevent unauthorized data modification.
6. What are the recommended voltage levels for operating the MT29F64G08CFACAWP:C?
The MT29F64G08CFACAWP:C is designed to operate at standard voltage levels of 3.3V for reliable performance.
7. Is the MT29F64G08CFACAWP:C compatible with various error correction codes (ECC) schemes?
Yes, the MT29F64G08CFACAWP:C is compatible with multiple ECC schemes to ensure data integrity and reliability.
8. Can the MT29F64G08CFACAWP:C support fast random access for read and write operations?
Yes, the MT29F64G08CFACAWP:C is optimized for fast random access, enabling quick read and write operations.
9. What is the typical endurance rating of the MT29F64G08CFACAWP:C?
The MT29F64G08CFACAWP:C offers high endurance, typically rated for a large number of program/erase cycles for extended lifespan.
10. Are there any specific considerations for integrating the MT29F64G08CFACAWP:C into embedded systems?
Integrating the MT29F64G08CFACAWP:C into embedded systems requires careful attention to signal integrity, timing, and power supply stability to ensure optimal performance and reliability.
The MT29F64G08CFACAWP:C NAND flash memory has a maximum capacity of 64 gigabits.
2. What interface does the MT29F64G08CFACAWP:C support for data transfer?
The MT29F64G08CFACAWP:C supports a standard ONFI 3.0 synchronous NAND interface for efficient data transfer.
3. Can the MT29F64G08CFACAWP:C operate at industrial temperature ranges?
Yes, the MT29F64G08CFACAWP:C is designed to operate reliably within industrial temperature ranges.
4. What is the typical power consumption of the MT29F64G08CFACAWP:C during read and program operations?
The MT29F64G08CFACAWP:C typically consumes low power during read and program operations, making it suitable for energy-efficient applications.
5. Does the MT29F64G08CFACAWP:C support hardware-based write protection?
Yes, the MT29F64G08CFACAWP:C features hardware-based write protection to prevent unauthorized data modification.
6. What are the recommended voltage levels for operating the MT29F64G08CFACAWP:C?
The MT29F64G08CFACAWP:C is designed to operate at standard voltage levels of 3.3V for reliable performance.
7. Is the MT29F64G08CFACAWP:C compatible with various error correction codes (ECC) schemes?
Yes, the MT29F64G08CFACAWP:C is compatible with multiple ECC schemes to ensure data integrity and reliability.
8. Can the MT29F64G08CFACAWP:C support fast random access for read and write operations?
Yes, the MT29F64G08CFACAWP:C is optimized for fast random access, enabling quick read and write operations.
9. What is the typical endurance rating of the MT29F64G08CFACAWP:C?
The MT29F64G08CFACAWP:C offers high endurance, typically rated for a large number of program/erase cycles for extended lifespan.
10. Are there any specific considerations for integrating the MT29F64G08CFACAWP:C into embedded systems?
Integrating the MT29F64G08CFACAWP:C into embedded systems requires careful attention to signal integrity, timing, and power supply stability to ensure optimal performance and reliability.
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:
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