P1023NSE5CFB Product Information|NXP

Buy Options

Operating Features

ParameterValue
Core Type
e500
Core: Number of cores (SPEC)
2
Operating Frequency [Max] (MHz)
500
ParameterValue
PCIe
3
External Memory Supported
DDR3 SDRAM, DDR3L SDRAM
Ambient Operating Temperature (Min to Max) (℃)
0 to 105

Environmental

Part/12NCPbFreeEU RoHSHalogen FreeRHF Indicator2nd Level InterconnectREACH SVHCWeight (mg)
P1023NSE5CFB(935325614557)
Yes
Yes
Certificate Of Analysis (CoA)
Yes
D
e2
REACH SVHC
997.5

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
P1023NSE5CFB
(935325614557)
No
3
260
40

Shipping

Part/12NCHarmonized Tariff (US)DisclaimerExport Control Classification Number (US)CCATSFootprintCapture Symbol
P1023NSE5CFB
(935325614557)
854231
5A002A1
G143809
 PDF | Cadence Allegro(dra) PDF | Orcad Capture 16.3(olb)

Product Change Notice

Part/12NCIssue DateEffective DatePCNTitle
P1023NSE5CFB
(935325614557)
2025-04-162025-05-26202504008IFreescale Logo to NXP Logo Product Marking Conversion for All Remaining Former Freescale Products
P1023NSE5CFB
(935325614557)
2020-12-152020-12-16202011011INXP Will Add a Sealed Date to the Product Label

More about P1023

The P1023 and P1017 processors offer the value of integrated high-performance data path offload for networking protocols and dual e500 Power Architecture® cores for application software. The P1023 and P1017 are ideally suited for high-performance enterprise WLAN, fixed routers and security gateway applications. The P1023 device supports a 400–800 MHz performance range, along with advanced security and a rich set of interfaces—all delivered on 45 nm technology for low-power implementation.

The P1023 processor includes a performance-optimized implementation of the QorIQ® data path acceleration architecture (DPAA). This architecture provides the infrastructure to support simplified sharing of networking interfaces and accelerators by multiple CPU cores. The DPAA significantly reduces software overhead associated with high touch packet forwarding operations. Examples of the types of packet processing services this architecture is optimized to support include traditional routing and bridging, firewall, VPN termination for IPsec and MACsec (a standardized form of Ethernet encapsulation that can be used to provide confidentiality).