AT49BV8192T

Features: • Low Voltage Operation 2.7V Read 5V Program/Erase• Fast Read Access Time - 120 ns• Internal Erase/Program Control• Sector Architecture One 8K Words (16K bytes) Boot Block with Programming Lockout Two 8K Words (16K bytes) Parameter Blocks One 488K Words (976K...

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AT49BV8192T Picture
SeekIC No. : 004290307 Detail

AT49BV8192T: Features: • Low Voltage Operation 2.7V Read 5V Program/Erase• Fast Read Access Time - 120 ns• Internal Erase/Program Control• Sector Architecture One 8K Words (16K bytes) ...

floor Price/Ceiling Price

Part Number:
AT49BV8192T
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/5/31

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Product Details

Description



Features:

• Low Voltage Operation
  2.7V Read
  5V Program/Erase
• Fast Read Access Time - 120 ns
• Internal Erase/Program Control
• Sector Architecture
  One 8K Words (16K bytes) Boot Block with Programming Lockout
  Two 8K Words (16K bytes) Parameter Blocks
  One 488K Words (976K bytes) Main Memory Array Block
• Fast Sector Erase Time - 10 seconds
• Word-By-Word Programming - 30 ms/Word
• Hardware Data Protection
DATA Polling For End Of Program Detection
• Low Power Dissipation
  25 mA Active Current
  50 A CMOS Standby Current
• Typical 10,000 Write Cycles



Pinout

  Connection Diagram  Connection Diagram


Specifications

Temperature Under Bias................................ -55°C to +125°C
Storage Temperature ..................................... -65°C to +150°C
All Input Voltages
(including NC Pins)
with Respect to Ground ...................................-0.6V to +6.25V
All Output Voltages
with Respect to Ground .............................-0.6V to VCC + 0.6V
Voltage on RESET
with Respect to Ground ...................................-0.6V to +13.5V

*NOTICE: Stresses beyond those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.



Description

The AT49BV8192 and AT49LV8192 are 3-volt, 8-megabit Flash Memories organized as 512K words of 16 bits each. Manufactured with Atmel's advanced nonvolatile CMOS technology, the devices offer access times to 120 ns with power dissipation of just 67 mW at 2.7V read. When deselected, the CMOS standby current is less than 50 A.

AT49BV8192T contains a user-enabled "boot block" protection feature. Two versions of the feature are available: the AT49BV/LV8192 locates the boot block at lowest order addresses ("bottom boot"); the AT49BV/LV8192T locates it at highest order addresses ("top boot")

To allow for simple in-system reprogrammability, the AT49BV/LV8192 does not require high input voltages for programming. Reading data out of the device is similar to reading from an EPROM; AT49BV8192T has standard CE, OE, and WE inputs to avoid bus contention. Reprogramming the AT49BV/LV8192 is performed by first erasing a block of data and then programming on a word-by-word basis.
AT49BV8192T is erased by executing the erase command sequence; the device internally controls the erase operation. The memory is divided into three blocks for erase operations. There are two 8K word parameter block sections and one sector consisting of the boot block and the main memory array block. The AT49BV/LV8192 is programmed on a word-by-word basis.

AT49BV8192T has the capability to protect the data in the boot block; this feature is enabled by a command sequence. Once the boot block programming lockout feature is enabled, the data in the boot block cannot be changed when input levels of 3.6 volts or less are used. The typical number of program and erase cycles is in excess of 10,000 cycles.

The optional 8K word boot block section includes a reprogramming lock out feature to provide data integrity. The boot sector of AT49BV8192T is designed to contain user secure code, and when the feature is enabled, the boot sector is protected from being reprogrammed. 

During a chip erase, sector erase, or word programming, the VPP pin must be at 5V ± 10%.


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