Datasheets
M29W640FB70ZA6F by:
STMicroelectronics
Micron Technology Inc
Numonyx Memory Solutions
STMicroelectronics
Not Found

4MX16 FLASH 3V PROM, 70ns, PBGA48, 6 X 8 MM, 0.80 MM PITCH, LEAD FREE, TFBGA-48

Part Details for M29W640FB70ZA6F by STMicroelectronics

Results Overview of M29W640FB70ZA6F by STMicroelectronics

Tip: Data for a part may vary between manufacturers. You can filter for manufacturers on the top of the page next to the part image and part number.

Applications Internet of Things (IoT) Environmental Monitoring Financial Technology (Fintech) Smart Cities Transportation and Logistics Agriculture Technology Telecommunications Virtual Reality (VR), Augmented Reality (AR), and Vision Systems Education and Research Consumer Electronics Security and Surveillance Audio and Video Systems Computing and Data Storage Healthcare Entertainment and Gaming

M29W640FB70ZA6F Information

M29W640FB70ZA6F by STMicroelectronics is a Flash Memory.
Flash Memories are under the broader part category of Memory Components.

Memory components are essential in electronics for computer processing. They can be volatile or non-volatile, depending on the desired function. Read more about Memory Components on our Memory part category page.

Price & Stock for M29W640FB70ZA6F

Part # Distributor Description Stock Price Buy
ComSIT USA 64 MBIT (8MBIT X 8 OR 4MBIT X 16, PAGE, BOOT BLOCK) 3V SUPPLY FLASH MEMORY Flash, 4MX16, 70ns, PBGA4... 8 more RoHS: Not Compliant ECCN: EAR99 Stock DE - 1979
Stock ES - 0
Stock US - 0
Stock MX - 0
Stock CN - 0
Stock HK - 0
RFQ

Part Details for M29W640FB70ZA6F

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M29W640FB70ZA6F Part Data Attributes

M29W640FB70ZA6F STMicroelectronics
Buy Now Datasheet
Compare Parts:
M29W640FB70ZA6F STMicroelectronics 4MX16 FLASH 3V PROM, 70ns, PBGA48, 6 X 8 MM, 0.80 MM PITCH, LEAD FREE, TFBGA-48
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Rohs Code Yes
Part Life Cycle Code Transferred
Ihs Manufacturer STMICROELECTRONICS
Part Package Code BGA
Package Description 6 X 8 MM, 0.80 MM PITCH, LEAD FREE, TFBGA-48
Pin Count 48
Reach Compliance Code compliant
ECCN Code EAR99
HTS Code 8542.32.00.51
Access Time-Max 70 ns
Alternate Memory Width 8
Boot Block BOTTOM
Command User Interface YES
Common Flash Interface YES
Data Polling YES
JESD-30 Code R-PBGA-B48
JESD-609 Code e1
Length 8 mm
Memory Density 67108864 bit
Memory IC Type FLASH
Memory Width 16
Number of Functions 1
Number of Sectors/Size 8,127
Number of Terminals 48
Number of Words 4194304 words
Number of Words Code 4000000
Operating Mode ASYNCHRONOUS
Operating Temperature-Max 85 °C
Operating Temperature-Min -40 °C
Organization 4MX16
Package Body Material PLASTIC/EPOXY
Package Code TFBGA
Package Equivalence Code BGA48,6X8,32
Package Shape RECTANGULAR
Package Style GRID ARRAY, THIN PROFILE, FINE PITCH
Page Size 4/8 words
Parallel/Serial PARALLEL
Programming Voltage 3 V
Qualification Status Not Qualified
Ready/Busy YES
Seated Height-Max 1.2 mm
Sector Size 8K,64K
Standby Current-Max 0.0001 A
Supply Current-Max 0.02 mA
Supply Voltage-Max (Vsup) 3.6 V
Supply Voltage-Min (Vsup) 2.7 V
Supply Voltage-Nom (Vsup) 3 V
Surface Mount YES
Technology CMOS
Temperature Grade INDUSTRIAL
Terminal Finish TIN SILVER COPPER
Terminal Form BALL
Terminal Pitch 0.8 mm
Terminal Position BOTTOM
Toggle Bit YES
Type NOR TYPE
Width 6 mm

Alternate Parts for M29W640FB70ZA6F

This table gives cross-reference parts and alternative options found for M29W640FB70ZA6F. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of M29W640FB70ZA6F, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

Part Number Manufacturer Composite Price Description Compare
M29W640GB7AZA6F Micron Technology Inc Check for Price Flash, 4MX16, 70ns, PBGA48, 6 X 8 MM, 0.80 MM PITCH, ROHS COMPLIANT, TFBGA-48 M29W640FB70ZA6F vs M29W640GB7AZA6F
M29W640GB70ZA6E STMicroelectronics Check for Price 4MX16 FLASH 3V PROM, 70ns, PBGA48, 6 X 8 MM, 0.80 MM PITCH, ROHS COMPLIANT, TFBGA-48 M29W640FB70ZA6F vs M29W640GB70ZA6E
M29W640GB7AZA6E Numonyx Memory Solutions Check for Price Flash, 4MX16, 70ns, PBGA48, 6 X 8 MM, 0.80 MM PITCH, ROHS COMPLIANT, TFBGA-48 M29W640FB70ZA6F vs M29W640GB7AZA6E
M29W640GB70ZA6F Micron Technology Inc Check for Price Flash, 4MX16, 70ns, PBGA48, TFBGA-48 M29W640FB70ZA6F vs M29W640GB70ZA6F
M29W640GB7AZA6E Micron Technology Inc Check for Price Flash, 4MX16, 70ns, PBGA48, 6 X 8 MM, 0.80 MM PITCH, ROHS COMPLIANT, TFBGA-48 M29W640FB70ZA6F vs M29W640GB7AZA6E
M29W640GB70ZA6E Micron Technology Inc Check for Price Flash, 4MX16, 70ns, PBGA48, TFBGA-48 M29W640FB70ZA6F vs M29W640GB70ZA6E
M29W640GB7AZA6F Numonyx Memory Solutions Check for Price Flash, 4MX16, 70ns, PBGA48, 6 X 8 MM, 0.80 MM PITCH, ROHS COMPLIANT, TFBGA-48 M29W640FB70ZA6F vs M29W640GB7AZA6F
M29W640FB70ZA6E STMicroelectronics Check for Price 4MX16 FLASH 3V PROM, 70ns, PBGA48, 6 X 8 MM, 0.80 MM PITCH, LEAD FREE, TFBGA-48 M29W640FB70ZA6F vs M29W640FB70ZA6E
M29W640GB70ZA6F STMicroelectronics Check for Price 4MX16 FLASH 3V PROM, 70ns, PBGA48, 6 X 8 MM, 0.80 MM PITCH, ROHS COMPLIANT, TFBGA-48 M29W640FB70ZA6F vs M29W640GB70ZA6F
M29W640FB70ZA6E Micron Technology Inc Check for Price Flash, 4MX16, 70ns, PBGA48, TFBGA-48 M29W640FB70ZA6F vs M29W640FB70ZA6E
Part Number Manufacturer Composite Price Description Compare
M28W640CB90ZB1 STMicroelectronics Check for Price 4MX16 FLASH 3V PROM, 90ns, PBGA48, 0.75 MM PITCH, TFBGA-48 M29W640FB70ZA6F vs M28W640CB90ZB1
GE28F640C3TC70 Intel Corporation Check for Price Flash, 4MX16, 70ns, PBGA48, CSP, VFBGA-48 M29W640FB70ZA6F vs GE28F640C3TC70
M28W640ECB85ZB6 STMicroelectronics Check for Price 4MX16 FLASH 3V PROM, 85ns, PBGA48, 6.39 X 10.50 MM, 0.75 MM PITCH, TFBGA-48 M29W640FB70ZA6F vs M28W640ECB85ZB6
M29W640GT70ZA6E STMicroelectronics Check for Price 4MX16 FLASH 3V PROM, 70ns, PBGA48, 6 X 8 MM, 0.80 MM PITCH, ROHS COMPLIANT, TFBGA-48 M29W640FB70ZA6F vs M29W640GT70ZA6E
S29GL064N90BFI40 Spansion Check for Price Flash, 4MX16, 90ns, PBGA48, 8.15 X 6.15 MM, LEAD FREE, FBGA-48 M29W640FB70ZA6F vs S29GL064N90BFI40
M28W640ECB85ZB6F STMicroelectronics Check for Price 4MX16 FLASH 3V PROM, 85ns, PBGA48, 6.39 X 10.50 MM, 0.75 MM PITCH, LEAD FREE, TFBGA-48 M29W640FB70ZA6F vs M28W640ECB85ZB6F
M28W640ECB70ZB6E STMicroelectronics Check for Price 4MX16 FLASH 3V PROM, 70ns, PBGA48, 6.39 X 10.50 MM, 0.75 MM PITCH, LEAD FREE, TFBGA-48 M29W640FB70ZA6F vs M28W640ECB70ZB6E
M28W640ECB85ZB1T STMicroelectronics Check for Price 4MX16 FLASH 3V PROM, 85ns, PBGA48, 6.39 X 10.50 MM, 0.75 MM PITCH, TFBGA-48 M29W640FB70ZA6F vs M28W640ECB85ZB1T
M58MR064C100ZC6T STMicroelectronics Check for Price 4MX16 FLASH 1.8V PROM, 14ns, PBGA48, 0.50 MM PITCH, TFBGA-48 M29W640FB70ZA6F vs M58MR064C100ZC6T
M29W640GH60ZA6E STMicroelectronics Check for Price 4MX16 FLASH 3V PROM, 60ns, PBGA48, 6 X 8 MM, 0.80 MM PITCH, ROHS COMPLIANT, TFBGA-48 M29W640FB70ZA6F vs M29W640GH60ZA6E

M29W640FB70ZA6F Related Parts

M29W640FB70ZA6F Frequently Asked Questions (FAQ)

  • The recommended operating voltage range for the M29W640FB70ZA6F is 2.7V to 3.6V, with a typical voltage of 3.3V.

  • During power-up, the HOLD# signal should be kept high until the power supply has reached the recommended operating voltage range. During power-down, the HOLD# signal should be kept low to prevent any unwanted writes or erases.

  • The WP# signal is used to protect the memory from unwanted writes or erases. When WP# is low, the memory is write-protected, and when WP# is high, the memory is writable. Typically, WP# is connected to a pull-up resistor and a switch or a logic gate to control the write protection.

  • The optimal clock frequency depends on the specific application and system requirements. The M29W640FB70ZA6F supports clock frequencies up to 133 MHz. However, it's recommended to consult the datasheet and application notes for specific guidance on clock frequency selection and timing constraints.

  • When using the M29W640FB70ZA6F in an MCM or SoC design, ensure that the memory is properly isolated from other components, and that the power supply and clock signals are properly decoupled and filtered. Additionally, consider the thermal and noise implications of integrating the memory with other components.