SST39WF1601

Features: • Organized as 1M x16• Single Voltage Read and Write Operations 1.65-1.95V• Superior Reliability Endurance: 100,000 Cycles (Typical) Greater than 100 years Data Retention• Low Power Consumption (typical values at 5 MHz) Active Current: 5 mA (typical) Standby Curre...

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SeekIC No. : 004505348 Detail

SST39WF1601: Features: • Organized as 1M x16• Single Voltage Read and Write Operations 1.65-1.95V• Superior Reliability Endurance: 100,000 Cycles (Typical) Greater than 100 years Data Retention...

floor Price/Ceiling Price

Part Number:
SST39WF1601
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: 2025/12/24

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Product Details

Description



Features:

• Organized as 1M x16
• Single Voltage Read and Write Operations
1.65-1.95V
• Superior Reliability
Endurance: 100,000 Cycles (Typical)
Greater than 100 years Data Retention
• Low Power Consumption (typical values at 5 MHz)
Active Current: 5 mA (typical)
Standby Current: 5 A (typical)
Auto Low Power Mode: 5 A (typical)
• Hardware Block-Protection/WP# Input Pin
Top Block-Protection (top 32 KWord)
for SST39WF1602
Bottom Block-Protection (bottom 32 KWord)
for SST39WF1601
• Sector-Erase Capability
Uniform 2 KWord sectors
• Block-Erase Capability
Uniform 32 KWord blocks
• Chip-Erase Capability
• Erase-Suspend/Erase-Resume Capabilities
• Hardware Reset Pin (RST#)
• Security-ID Feature
SST: 128 bits; User: 128 bits
• Fast Read Access Time:
90 ns
• Latched Address and Data
• Fast Erase and Word-Program:
Sector-Erase Time: 36 ms (typical)
Block-Erase Time: 36 ms (typical)
Chip-Erase Time: 140 ms (typical)
Word-Program Time: 28 s (typical)
• Automatic Write Timing
Internal VPP Generation
• End-of-Write Detection
Toggle Bits
Data# Polling
• CMOS I/O Compatibility
• JEDEC Standard
Flash EEPROM Pin Assignments and
Command Sets
• Packages Available
48-ball TFBGA (6mm x 8mm)
48-ball WFBGA (5mm x 6mm)
• All non-Pb (lead-free) devices are RoHS compliant



Description

The SST39WF1601/1602 devices are 1M x16 CMOS Multi-Purpose Flash Plus (MPF+) manufactured with SST's proprietary, high-performance CMOS SuperFlash technology. The split-gate cell design and thick-oxide tunneling
injector attain better reliability and manufacturabilitycompared with alternate approaches. The SST39WF1601/ 1602 write (Program or Erase) with a 1.65-1.95V power supply. These devices conform to JEDEC standard pin assignments for x16 memories.

Featuring high performance Word-Program, the SST39WF1601/1602 devices provide a typical Word-Program time of 28 sec. These devices use Toggle Bit or Data# Polling to indicate the completion of Program operation.
To protect against inadvertent write, they have on-chiphardware and Software Data Protection schemes.
Designed, manufactured, and tested for a wide spectrum of applications, these devices are offered with a guaranteed typical endurance of 100,000 cycles. Data retention is rated at greater than 100 years.

The SST39WF1601/1602 devices are suited for applications that require convenient and economical updating of program, configuration, or data memory. For all system applications, they significantly improve performance and reliability, while lowering power consumption. They inherently use less energy during Erase and Program thanalternative flash technologies. The total energy consumed is a function of the applied voltage, current, and time of application. Since for any given voltage range, the Super- Flash technology uses less current to program and has a shorter erase time, the total energy consumed during any Erase or Program operation is less than alternative flash technologies. These devices also improve flexibility while lowering the cost for program, data, and configuration storage applications.

The SuperFlash technology provides fixed Erase and Program times, independent of the number of Erase/Program cycles that have occurred. Therefore the system software or hardware does not have to be modified or de-rated as is necessary with alternative flash technologies, whose Erase and Program times increase with accumulated Erase/Program cycles.




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