Documents for MR256DL08BMA45R

Datasheets

Rev. 2.3 Effective Mar 26 2018

MR256DL08B_Datasheet.pdf

MR256DL08B, Dual Supply 32K x 8 MRAM

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Product Change Notices (PCNs)

Rev. 1 Effective Dec 15 2012

PCN02257 Everspin adds UTAC Dongguan (UDG) as a qualified source of the BGA package

Everspin adds UTAC Dongguan (UDG) as a qualified source of the BGA package

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Rev. 1 Effective Dec 30 2011

PCN1893 ALTERNATIVE FORMAT FOR TRACE CODES ON PACKAGE MARKING

Beginning December 30, 2011, Everspin may use an alternative Trace Code marking format interchangeably with the existing format. The existing format identifies fabrication site, assembly site, final test site and wafer lot, year and work week. The alternative format will identify the assembly site and wafer lot, year and work week. Affects all Everspin products and packages.

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packaging

Rev. 2.2 Effective Apr 13 2018

Everspin_48-ball BGA_Package_Guide.pdf

Thermal Resistance, Recommended reflow profile, package outline drawings for all 48-ball FBGA packages from Everspin

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application notes

Rev. 1 Effective Dec 5 2014

Replacing the Cypress CY14U256LA-BA35 nvSRAM with Everspin's MR256DL08BMA45 MRAM

Replacing the Cypress CY14U256LA-BA35 nvSRAM with Everspin's MR256DL08BMA45 MRAM

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Rev. 1 Effective Mar 30 2013

Comparing Technologies FRAM vs. MRAM

Compares FRAM memory technology with Everspin's MRAM technology.

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Rev. 1 Effective Feb 1 2012

Approximating the Magnetic Field When Using Everspin MRAM

How to create an approximation of the magnetic field strength surrounding an MRAM

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technical articles & white papers

Rev. 1.1 Effective Feb 9 2018

MRAM Improvements to Automotive Non-Volatile Memory Storage

Automotive powertrain modules use flash memory technology to retain critical control and diagnostic information during power off (keep-alive memory (KAM) and non-volatile memory (NVM)). Complex software must be designed to maximize the lifecycle of these devices because they have a limited number of write cycles. MRAM (Magneto resistive Random Access Memory) has the potential to eliminate this complexity and make the process of managing KAM and NVM easier and more robust. This paper demonstrates using off-board MRAM devices with a next generation of powertrain microprocessor. The prototype boards integrating the latest powertrain microcontroller, with the Everspin MRAM MRA16A (2 pcs of x16 bits) and MR2xH50 (@ a SCK 40MHz) chips were created. An investigation was performed evaluating the MRAM capabilities for storing and retrieving data during simulated key-off and key-on events.

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Rev. 1 Effective Jan 8 2010

Toggle and Spin-Torque MRAM: Status and Outlook

Article by J.M. Slaughter, et.al., of Everspin Technologies

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RoHS / REACH

Rev. 032718 Effective Mar 27 2018

QUA00417_Everspin Reach Statement 3_27_2018.pdf

Everspin REACH statement

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Rev. 032718 Effective Mar 27 2018

QUA02364_Everspin_RoHS_compliance.pdf

Everspin RoHS compliance

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Rev. 4.20 Effective Dec 16 2016

EICC Product Level Master

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Rev. 4.20 Effective Dec 16 2016

EICC Company Level Master

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Effective Sep 23 2016

Everspin CFSI_CMRT by Product 4.10_09232016.xls

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Effective Sep 23 2016

Everspin CFSI_CMRT Company Level 4.10_09232016.xls

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