Preface Copyright 2018 ADLINK Technology, Inc. This document contains proprietary information protected by copyright. All rights are reserved. No part of this manual may be reproduced by any mechanical, electronic, or other means in any form without prior written permission of the manufacturer.
Table of Contents Preface ..........................2 Safety.......................... 5 Safety Symbols used in this document ................5 General Safety Precautions ................... 5 References and Architecture Specifications ..............6 Terms and Acronyms ....................6 Hardware Platform ......................7 Shelf Front and Rear View ..................8 ATCA Backplane .......................
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7.2.2 DC PEM Signals .................... 25 7.2.3 DC PEM Indicators ..................26 7.2.4 DC PEM Connector PIN Assignment ............26 Shelf Management ....................23 Shelf Managers ......................24 Introduction ........................24 Front Panel Components ..................... 26 Hardware Address ....................... 26 Technical Data ......................
1 Safety The intended audience of this User’s Manual is system integrators and hardware/software engineers. 1.1 Safety Symbols used in this document Hazardous voltage! This is the electrical hazard symbol. It indicates that there are dangerous voltages inside the Shelf.
1.3 References and Architecture Specifications • Pigeon Point Systems IPM Sentry Shelf-External Interface Reference (www.pigeonpoint.com) ® • PICMG 3.0 Revision 3.0 AdvancedTCA® Base Specification (www.picmg.com) 1.4 Terms and Acronyms Table 1: Terms and Acronyms Term Definition ATCA Advanced Telecom Computing Architecture Backplane Passive circuit board providing the connectors for the front boards.
1.5 Hardware Platform The Shelf is 3 U high and 19“ rack mountable. The chassis is designed for easy access of any Field Replaceable Units (FRU). • 2 slot ATCA Backplane with 15 x interconnected Fabric Interface, Base Interface in HUB/HUB or NODE/NODE configuration, bused IPMB interface,...
3 ATCA Backplane The 2-slot ATCA monolithic Backplane is completely passive and is not a field replaceable unit. The backplane provides 40Gb/s connectivity (4 lanes with 10Gb/s) and 2 ATCA slots in a: • Hub/Hub configuration or • Node/Node configuration 3.1 Logical to Physical Slot Mapping...
3.2.5 Base Interface Node/Node configuration All 16 Base Channels of slot 1 are routed to the respective Base Channels of slot 2. Hub/Hub configuration All Base Channels 2 - 16 of slot 1 are routed to the respective Base Channels of slot 2.
3.3 Shelf FRU SEEPROM 2 Shelf FRU SEEPROMS are located on the Backplane. The hardware address for these SEEPROMs is 0xA4. The SEEPROMs are the repository of the shelf specific information capabilities of the system and other user configurable options. The SEEPROMs contain the list of...
4 Air Filter Figure 4: Air Filter 1 Air Filter Filter Element 4.1 Introduction The ATCA Shelf provides a front replaceable air filter. The filter element is an open cell polyurethane foam specially coated to provide improved fire retardation and fungi resistance.
5 Shelf Ground Connection Hazardous voltage! Before powering-up the Shelf, make sure that the Shelf Ground terminals are connected to Protective Earth (PE) of the building. The ATCA Shelf provides a Shelf ground terminal at the left rear side. The Shelf ground terminal provides two threads (M5) with a 16 mm spacing between thread centers to connect a double-lug Shelf ground terminal cable.
6 Fan Trays The 2 Slot ATCA Shelf contains two interchangeable Fan Trays arranged in a side to side configuration for maximum air flow. The Fan Trays are intelligent FRUs and plugged-in at the left and right front of the Shelf.
6.1 IPM Controller and Fan Control The on-board IPM controller is located on the Fan Tray and has 2 operation modes: 1. Shelf Manager Mode As soon as a Shelf Manager is plugged-in and becomes active, the IPM controller switches automatically into the Shelf Manager mode.
Figure 7: Fan Control curves 6.2 Fan Tray Indicators The front panel includes a green and red status LED and a blue hot-swap LED. The Hot-Swap push button indicates to the Shelf Managers that the Fan Tray is about to be removed. Its use is optional, but it is provided so that service personnel can be trained to look for a blue LED to be illuminated on any active component before removing it from the system.
6.3 Fan Tray Signals The Fan Tray provides signals for: • Voltage monitoring • Status of the Hot Swap Controller • Fan Speed • Temperature These signals are controlled by the IPM Controller on the PCB. The Shelf Manager has access to these signals via IPMB.
6.5 Fan Tray IPMB Addresses Geographic address pins H2 at the Fan Tray Backplane connector determine the hardware addresses of the devices. Table 5: Fan Tray IPMB Addresses HW-Addr. IPMB Addr. Fan Tray 1 (left) 0x2E 0x5C Fan Tray 2 (right)
6.7 Rear Board Air Distribution The airflow is measured with impedance boards acc. to the PICMG 3.0 R3.0 specification. Rear board pressure drop: 24 Pa at 0,14 m³/min Figure 9: Rear Board Air Distribution Table 7: Rear Air Flow...
7 Power Hazardous voltage! Before working ensure that the power is removed from the power connection cables. The shelf supports AC- and DC-Power Entry Modules (PEMs). Both PEMs have the same interface to the shelf. The AC-PEM can be powered with 230 VAC line voltage. The specified voltage range is from 180 VAC to 265 VAC .The Shelf supports redundant...
7.1.1 AC PEM Power Distribution Power distribution within the Shelf originates from each AC PEM and powers all the blades, the Shelf Managers, the Fan Trays and the SAP. For maximum fault tolerance, the two AC PEMs should be independently powered by a separate Feed A and Feed B.
7.1.2 AC PEM Signals The AC PEM provides signals for: • PSU output Voltage monitoring • PSU output Current monitoring (Min.100W loading for each AC PSU) • Fuse Monitoring • Status of the Hot Swap Controller • Temperature The I2C devices on the PSU and AC PEM board are connected to Master-Only I2C- bus of the Fan controller board.
7.1.4 AC PEM Connector PIN Assignment 7.2 DC PEM Two pluggable redundant DC Power Entry Modules (PEM) are located at the rear top side of the Shelf. Each PEM provides power terminals for 35A power feed. Each power feed consists of a –48 VDC cable and its corresponding return cable.
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Figure 12: DC PEM 1 Green Fan Tray OK LED RTN Input 2 Red Fan Tray Alarm LED -48 V Input 3 Blue Hot Swap LED Fused switch 4 Hot Swap push button...
7.2.1 DC PEM Power Distribution Power distribution within the Shelf originates from each DC PEM and powers all the blades, the Shelf Managers, the Fan Trays and the SAP. For maximum fault tolerance, the two DC PEMs should be independently powered by a separate Feed A and Feed B.
7.2.3 DC PEM Indicators The front panel includes a green and red status LED and a blue hot-swap LED. Table 10: LEDs on DC PEM Color Description Status Condition Green OK LED No Power to the PEM Solid green...
8 Shelf Management The ATCA Shelves are designed to work with two redundant Shelf Managers in dedicated Shelf Manager slots. Upon request is also a version with on-blade shelf management available. With on- blade shelf management, the I²C components of the PEMs and the SEEPROM are connected to the internal I²C bus on the Fan Trays.
8.1 Shelf Managers This Chapter describes the Shelf Manager hardware. For explicit software documentation see: • Pigeon Point Shelf Manager User Guide • Pigeon Point Shelf Manager External Interface Reference 8.2 Introduction The Shelf Manager is a 78 mm x 280 mm board that fits into a dedicated Shelf Manager slot in a ATCA Shelf.
8.3 Front Panel Components Figure 16: Shelf Manager Front Panel Components Fixing screw RESET push button ETH 0 Ethernet Service Connector Shelf Manager Status LED (red) (RJ45) - Red = Out of Service (OOS) ETH 0 Link/Activity LED (yellow)
9 Technical Data Table 11: Technical Data Physical Dimensions Height Width 482,6 mm Depth (with handles) 384,7 mm Power AC Input voltage nom. 115 VAC/230 VAC Input voltage range 90..140 VAC / 170…. 264 VAC Input Power 10 A per PEM...
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