XPC823EVR75B2 Product Information|NXP

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Operating Features

ParameterValue
Security Status
COMPANY PUBLIC
Description
PB-FREE 823E 75MHZ
ParameterValue
Number of pins
256
Package Style
BGA

Environmental

Part/12NCPbFreeEU RoHSHalogen FreeRHF Indicator2nd Level InterconnectREACH SVHCWeight (mg)
XPC823EVR75B2(935313871557)
Yes
Yes
Yes
D
e1
REACH SVHC
1662.95

Quality

Part/12NCSafe Assure Functional SafetyMoisture Sensitivity Level (MSL)Peak Package Body Temperature (PPT) (C°)Maximum Time at Peak Temperatures (s)
Lead Free SolderingLead Free SolderingLead Free Soldering
XPC823EVR75B2
(935313871557)
No
3
260
40

Shipping

Part/12NCHarmonized Tariff (US)DisclaimerExport Control Classification Number (US)
XPC823EVR75B2
(935313871557)
854231
3A991A2

Product Change Notice

Part/12NCIssue DateEffective DatePCNTitle
XPC823EVR75B2
(935313871557)
2020-12-152020-12-16202011011INXP Will Add a Sealed Date to the Product Label

More about MPC823E

Archived content is no longer updated and is made available for historical reference only.

The MPC823e microprocessor is a versatile, one-chip integrated microprocessor and peripheral combination that can be used in a variety of electronic products. It particularly excels in low-power, portable, image capture and personal communication products. It is a version of the MPC823 microprocessor that provides enhanced performance with larger data and instruction caches. Like the MPC823, it has a universal serial bus (USB) interface and video display controller, as well as the existing LCD controller of the MPC823 (Rev A) device.

The MPC823e microprocessor integrates a high-performance embedded MPC8xx core with a communication processor module that uses a specialized RISC processor for imaging and communication. The communication processor module can perform embedded signal processing functions for image compression and decompression. It also supports seven serial channels--two serial communication controllers, two serial management controllers, one I²C port, one USB channel, and one serial peripheral interface.

This two-processor architecture consumes power more efficiently than traditional architectures because the communication processor module frees the core from peripheral tasks like imaging and communication.

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