MPC8535BVJANGA 製品情報|NXP

購入オプション

MPC8535BVJANGA

生産終了 (EOL)

12NC: 935320418557

詳細

注文

操作機能

パラメータ
Core Type
e500
Operating Frequency [Max] (MHz)
800
Core: Number of cores (SPEC)
1
Cache (KB)
32
パラメータ
L2 Cache (Max) (KB)
512
External Memory Supported
DDR2 SDRAM
Ambient Operating Temperature (Min to Max) (℃)
0 to 105
Ethernet Type
1GBaseT

環境

Part/12NC鉛フリーEU RoHSハロゲンフリーRHFインジケーター2次インターコネクトREACH SVHCWeight (mg)
MPC8535BVJANGA(935320418557)
Yes
Yes
Certificate Of Analysis (CoA)
Yes
D
e2
REACH SVHC
3769.8

品質

Part/12NC安全保障機能安全吸湿感度レベル (MSL)Peak Package Body Temperature (PPT) (C°)Maximum Time at Peak Temperatures (s)
鉛フリーはんだ鉛フリーはんだ鉛フリーはんだ
MPC8535BVJANGA
(935320418557)
No
3
260
40

配送

Part/12NC関税分類番号(米国)免責事項:輸出規制品目番号(米国)
MPC8535BVJANGA
(935320418557)
854231
3A991A2

製造終了品・代替品データ

Part/12NC製造終了のお知らせ最終購入日 最終納品日交換
MPC8535BVJANGA
(935320418557)
NOTICE
2021-09-09
2022-09-09
-

製品変更のお知らせ

Part/12NC発行日有効期限PCNタイトル
MPC8535BVJANGA
(935320418557)
2021-03-042021-03-05202102034DNDiscontinuance of P1010P1020 P1022 P2020P3041 P4080 P5040 C290 MSC8156 BSC9131837x 8548 8572 8536 8544 Families
MPC8535BVJANGA
(935320418557)
2020-12-152020-12-16202011011INXP Will Add a Sealed Date to the Product Label
MPC8535BVJANGA
(935320418557)
2017-12-202018-01-03201710023INew PQ Label Input for Non-MPQ Shipments

詳細 MPC8535E

The MPC8535E PowerQUICC® III is designed to deliver gigahertz-class complex application processing performance with exceptional feature integration and high-speed connectivity for IP network and advanced media processing applications.

It combines a robust e500 processor core, with enhanced peripherals and interconnect technology, to balance processor performance with I/O system throughput. The MPC8535E processor includes advanced energy management features that help enable next-generation embedded Internet media processing applications with energy efficiency levels under the environmental and governmental energy regulatory requirements.

The MPC8535E processor implements sophisticated power-saving modes for managing energy consumption in both dynamic and static power modes. Designers will be able to leverage these modes to efficiently match work accomplished with the correct level of energy consumed.

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