Description The MIP801D is mainly a technology process change from the PIC16C505 14-pin parts. There are some changes that may affect older designs looking to use the new parts. The changes are grouped into two categories: those that affect hardware and those that affect software. In most cases,...
MIP801D: Description The MIP801D is mainly a technology process change from the PIC16C505 14-pin parts. There are some changes that may affect older designs looking to use the new parts. The changes are gro...
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The MIP801D is mainly a technology process change from the PIC16C505 14-pin parts. There are some changes that may affect older designs looking to use the new parts. The changes are grouped into two categories: those that affect hardware and those that affect software.
In most cases, an older design of MIP801D will have little or no problems migrating to these new parts.Although battery-backed SRAM is a mature and established solution, it has numerous weaknesses. MIP801D directly or indirectly from the presence of the battery. FRAM uses an inherently nonvolatile storage mechanism that requires no battery. MIP801D therefore eliminates these weaknesses. The major considerations in upgrading to FRAM are as follows. Output current should be minimized for best temperature accuracy. Power dissipation within the MIP801D will cause self-heating and temperature drift; see Thermal Considerations section. The information given herein, including the specifications and dimensions, is subject to change without prior notice to improve product characteristics. Before ordering, purchasers are advised to contact the Sensitron Semiconductor sales department for the latest version of the datasheet(s).
MIP801D described in this document are designed, developed and manufactured as contemplated for general use, including without limitation, ordinary industrial use, general office use, personal use, and household use, but are not designed, developed and manufactured as contemplated (1) for any use that includes fatal risks or dangers that, unless extremely high safety is secured, could have a serious effect to the public, and could lead directly to death, personal injury, severe physical damage or other loss (i.e., nuclear reaction control in nuclear facility, aircraft flight control, air traffic control, mass transport control, medical life support system, missile launch control in weapon system), or (2) for any use where chance of failure is intolerable (i.e., submersible repeater and artificial satellite).
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