Product Information

MPC8536EBVTATHA

MPC8536EBVTATHA electronic component of NXP

Datasheet
MPU PowerQUICC III MPC85xx Processor RISC 32bit 0.09um 1.25GHz 1.5V/1.8V/2.5V/3.3V 783-Pin FCBGA Tray

Manufacturer: NXP
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)

36: USD 237.2612 ea
Line Total: USD 8541.4

0 - Global Stock
MOQ: 36  Multiples: 36
Pack Size: 36
     
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Freescale Semiconductor Document Number: MPC8536EEC Data Sheet: Technical Data Rev. 5, 09/2011 MPC8536E MPC8536E PowerQUICC III Integrated Processor MAPBGA783 29 mm x 29 mm Hardware Specifications High-performance, 32-bit e500 core, scaling up to Support for various Ethernet physical interfaces: GMII, 1.5 GHz, that implements the Power Architecture TBI, RTBI, RGMII, MII, RGMII, RMII, and SGMII technology Support TCP/IP acceleration and QOS features 36-bit physical addressing MAC address recognition and RMON statistics support Double-precision embedded floating point APU using Support ARP parsing and generating wake-up events 64-bit operands based on the parsing results while in deep sleep mode Embedded vector and scalar single-precision Support accepting and storing packets while in deep floating-point APUs using 32- or 64-bit operands sleep mode Memory management unit (MMU) High-speed interfaces (multiplexed) supporting: Integrated L1/L2 cache Three PCI Express interfaces L1 cache32-Kbyte data and 32-Kbyte instruction PCI Express 1.0a compatible L2 cache512-Kbyte (8-way set associative) One x8/x4/x2/x1 PCI Express interface DDR2/DDR3 SDRAM memory controller with full ECC Two x4/x2/x1 ports, or, support One x4/x2/x1 port and Two x2/x1 ports One 64-bit/32-bit data bus Two SGMII interfaces Up to 333-MHz clock (667-MHz data rate) Two Serial ATA (SATA) controllers support SATA I and Supporting up to 16 Gbytes of main memory SATA I data rates Using ECC, detects and corrects all single-bit errors and PCI 2.2 compatible PCI controller detects all double-bit errors and all errors within a nibble Three universal serial bus (USB) dual-role controllers Invoke a level of system power management by comply with USB specification revision 2.0 asserting MCKE SDRAM signal on-the-fly to put the 133-MHz, 32-bit, enhanced local bus (eLBC) with memory memory into a low-power sleep mode controller Both hardware and software options to support Enhanced secured digital host controller (eSDHC) used for battery-backed main memory SD/MMC card interface Integrated security engine (SEC) optimized to process all Support boot capability from eSDHC the algorithms associated with IPsec, IKE, SSL/TLS, Integrated four-channel DMA controller 2 iSCSI, SRTP, IEEE Std 802.16e, and 3GPP. Dual I C and dual universal asynchronous XOR engine for parity checking in RAID storage receiver/transmitter (DUART) support applications Programmable interrupt controller (PIC) Enhanced Serial peripheral interfaces (eSPI) Power management, low standby power Support boot capability from eSPI Support Doze, Nap, Sleep, Jog, and Deep Sleep mode Two enhanced three-speed Ethernet controllers (eTSECs) PMC wake on: LAN activity, USB connection or remote with SGMII support wakeup, GPIO, internal timer, or external interrupt event Three-speed support (10/100/1000 Mbps) System performance monitor Two IEEE Std 802.3, IEEE 802.3u, IEEE 802.3x, IEEE Std 1149.1-compatible, JTAG boundary scan IEEE 802.3z, IEEE 802.3ac, IEEE 802.3ab, and 783-pin FC-PBGA package, 29 mm 29 mm IEEE Std 1588-compatible controllers 2011 Freescale Semiconductor, Inc. All rights reserved.Table of Contents 1 Pin Assignments and Reset States .3 2.21 PCI Express 100 1.1 Pin Map 4 2.23 Clocking . 106 2 Electrical Characteristics 21 2.24 Thermal . 110 2.1 Overall DC Electrical Characteristics 21 3 Hardware Design Considerations 114 2.2 Power Sequencing 25 3.1 System Clocking 114 2.3 Power Characteristics 26 3.2 Power Supply Design and Sequencing . 114 2.4 Input Clocks .29 3.3 Pin States in Deep Sleep State . 115 2.5 RESET Initialization .31 3.4 Decoupling Recommendations . 115 2.6 DDR2 and DDR3 SDRAM 32 3.5 SerDes Block Power Supply Decoupling 2.7 eSPI .38 Recommendations . 116 2.8 DUART .40 3.6 Connection Recommendations . 116 2.9 Ethernet: Enhanced Three-Speed Ethernet (eTSEC), 3.7 Pull-Up and Pull-Down Resistor Requirements . 116 MII Management 40 3.8 Output Buffer DC Impedance 116 2.10 Ethernet Management Interface Electrical Characteristics 3.9 Configuration Pin Muxing . 117 61 3.10 JTAG Configuration Signals . 118 2.11 USB 63 3.11 Guidelines for High-Speed Interface Termination . 120 2.12 enhanced Local Bus Controller (eLBC) 66 4 Ordering Information 121 2.13 Enhanced Secure Digital Host Controller (eSDHC) .75 4.1 Part Numbers Fully Addressed by this Document . 122 2.14 Programmable Interrupt Controller (PIC) .77 4.2 Part Marking . 122 2.15 JTAG .77 4.3 Part Numbering . 123 2.16 Serial ATA (SATA) .79 5 Package Information 123 2 2.17 I C .85 5.1 Package Parameters for the FC-PBGA . 123 2.18 GPIO .88 5.2 Mechanical Dimensions of the FC-PBGA . 124 2.19 PCI 89 6 Product Documentation 125 2.20 High-Speed Serial Interfaces 91 7 Document Revision History . 125 MPC8536E PowerQUICC III Integrated Processor Hardware Specifications, Rev. 5 2 Freescale Semiconductor

Tariff Desc

8542.31.00 52 No ..CMOS and MOS Microprocessors (MPU), Microcontrollers (MCU) and Digital Signal Processors (DSP)

Electronic integrated circuits: Processors and controllers, whether or not combined with memories, converters, logic circuits, amplifiers, clock and timing circuits, or other circuits
Monolithic integrated circuits Digital.
FR9
Freescale
FREESCALE SEMI
Freescale Semicon
FREESCALE SEMICONDUC
Freescale Semiconductor
Freescale Semiconductor - NXP
NXP
NXP Freescale
NXP (FREESCALE)
NXP / Freescale
NXP SEMI
NXP Semicon
NXP SEMICONDUCTOR
NXP Semiconductors
NXP USA Inc.
PH3
PHI

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