Emulex LPe15004, LPe16004, LPe16000B-series HBA, LPe16000B, LPe16002B Installation Manual

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LPe15004, LPe16004, and
LPe16000B-series HBA
Installation Manual
P008875-02A Rev. A Emulex Connects™ Servers, Storage and People
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Information furnished by Emulex is believed to be accurate and reliable. However, no responsibility is assumed by Emulex for its use; or for any infringements of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent, copyright or related rights of Emulex.
Emulex, the Emulex logo, AutoPilot Installer, AutoPilot Manager, BlockGuard, Connectivity Continuum, Convergenomics, Emulex Connect, Emulex Secure, EZPilot, FibreSpy, HBAnyware, InSpeed, LightPulse, MultiPulse, OneCommand, OneConnect, One Network. One Company., SBOD, SLI, and VEngine are trademarks of Emulex. All other brand or product names referenced herein are trademarks or registered trademarks of their respective companies or organizations.
Emulex provides this manual "as is" without any warranty of any kind, either expressed or implied, including but not limited to the implied warranties of merchantability or fitness for a particular purpose. Emulex may make improvements and changes to the product described in this manual at any time and without any notice. Emulex assumes no responsibility for its use, nor for any infringements of patents or other rights of third parties that may result. Periodic changes are made to information contained herein; although these changes will be incorporated into new editions of this manual, Emulex disclaims any undertaking to give notice of such changes.
Emulex, 3333 Susan Street Costa Mesa, CA 92626
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LPe15004, LPe16004, and LPe16000B-series HBA Installation Manual P008875-02A Rev. A
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Table of Contents
Table of Contents
List of Figures ......................................................................................4
List of Tables .......................................................................................5
1. Introduction .....................................................................................6
Overview................................................................................................ 6
Major Features .................................................................................... 6
Compatibility ...................................................................................... 7
Prerequisites....................................................................................... 7
HBA Identification ................................................................................ 7
2. Installation.......................................................................................8
Preparing the HBA for Installation ................................................................. 8
Installing the Adapter .............................................................................. 10
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Attaching Media ..................................................................................... 11
Applying Power ...................................................................................... 13
Viewing the LEDs .................................................................................... 13
POST Conditions and Results ...................................................................13
3. References .................................................................................... 15
LPe15004, LPe16004, and LPe16000B–series HBA Specifications ........................ 15
FCC and Regulatory Notices....................................................................... 16
Declarations of Conformity........................................................................ 18
Laser Safety Notice ................................................................................. 20
LPe15004, LPe16004, and LPe16000B-series HBA Installation Manual P008875-02A Rev. A
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List of Figures
List of Figures
Figure 2-1 Typical Optical Transceiver .............................................................. 8
Figure 2-2 Releasing the Latch on an Optical Transceiver........................................ 9
Figure 2-3 Removing an Optical Transceiver........................................................ 9
Figure 2-4 Removing the Bracket ....................................................................10
Figure 2-5 Installing an Optical Transceiver .......................................................12
Figure 2-6 Connecting a Fiber Optic Cable.........................................................12
Figure 2-7 Optical HBA LED Indicators ..............................................................13
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List of Tables
List of Tables
Table 1-1 Software and Hardware Environments.................................................. 7
Table 2-1 Media Specifications ......................................................................11
Table 2-2 POST Conditions and Results ............................................................14
Table 3-1 LPe15004, LPe16004, and LPe16000B–series HBA Specifications ..................15
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1. Introduction
Overview
This manual describes the following Fibre Channel (FC) to Peripheral Component Interconnect Express (PCIe) Emulex
LPe15004, 8 gigabit per second (Gb/s)
LPe16000B, LPe16002B, and LPe16004, 16 Gb/s
The core technology of these HBAs is Emulex's 10th generation FC controller. The controller is a multi-function PCIe Gen3 interface controller that is compliant to the PCI Express Base Specification Rev 3.0 and PCI Express CEM Specification Rev 3.0. The LPe16000B is a single-channel adapter, the the LPe15004 and LPe16004 are four-channel adapters.
These HBAs support packet transfers at 2.5, 5.0, and 8 gigatransfers per second (2.5, 5.0, and 8 GT/s) on the PCIe link (auto-negotiated with the system). The supported physical PCIe connector is x8. The fully featured FC port is compliant to various American National Standards Institute (ANSI) FC standards.
®
host bus adapters (HBAs):
LPe16002B is a dual-channel adapter, and
1. Introduction Overview
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Note: Illustrations in this manual are only examples. The actual hardware may vary.
Major Features
Multi-function PCIe 3.0 device with one (LPe16000B), two (LPe16002B), or four
(LPe15004 and LPe16004) independent FC ports.
Auto-negotiation between 4-Gb/s, 8-Gb/s, or 16-Gb/s (LPe16000B, LPe16002B,
and LPe16004 adapters only) FC link speeds.
Complies with the PCIe base and CEM 3.0 specifications. x8-lane standard Generation 3, PCIe interface at 2.5GT/s, 5GT/s, or 8GT/s
(auto-negotiated with the system).
ECC protection of high density RAM (single-bit correction, double-bit
detection).
SFP+ interface supporting optics with LC connections and digital diagnostics
capability.
Host interface support is provided through Emulex standard drivers.
The LPe15004 adapter supports Windows Server 2012, Windows Server
2008, Windows Hyper-V, Citrix, Kernel-based Virtual Machine (KVM), VMware ESXi, Red Hat Enterprise Linux (RHEL), SUSE Linux Enterprise Server (SLES), Oracle Enterprise Linux (OEL), and Solaris S11 (x86 and Solaris Sparc)
The LPe16000B-series adapters supports Windows Server 2008 R2 and WS 8,
Red Hat Enterprise Linux, VMware ESXi, and Solaris S11 (including Comstar).
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The LPe16004 adapter supports Windows Server 2008 R2, Windows Server
2012, Linux 2.6 Kernel, VMware ESXi, Solaris 11 (including Comstar), Target Mode Drivers (TM Kits 9.6 and 9.7), FreeBSD, and Debian.
Parts and construction are compliant to the European Union Directive of
Restriction of Hazardous Substances (RoHS).
Compatibility
Table 1-1 Software and Hardware Environments
Software Environments See the HBA’s website for compatible operating systems.
Hardware Environments LPe15004: PCIe 3.0 supports x8, x4, x2, and x1.
LPe16004, LPe16000B, and LPe16002B: PCIe 3.0 supports x8, x4, and x1.
Note: HBAs are PCIe 3.0 and CEM 3.0 compliant systems and are
backwards compatible to 1.0a, 1.1, and 2.0 compliant systems.
Prerequisites
1. Introduction Overview
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Use PCIe Gen 3 compliant systems that are x8 or x16 lane at up to 8 GT/s per lane.
HBA Identification
Each HBA ships with several numbers clearly marked on the board. Emulex recommends recording these numbers before installation.
Serial number – assigned by Emulex. Use this number when communicating
with Emulex.
IEEE address – an Institute of Electrical and Electronics Engineers (IEEE) unique
64-bit identifier used for system configuration
World Wide Name (WWN) – derived from the IEEE) address, the FC industry
uses the WWN for FC connectivity.
Note: IEEE addresses and WWNs are assigned in sequential order. For example, if
an adapter has four ports, it has four IEEE addresses and four WWNs; one for each port with the second, third and fourth IEEE addresses/WWNs being the next successive number of the first.
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2. Installation
The standard HBAs can be connected to fiber optic cables.
Preparing the HBA for Installation
The Emulex LPe16004, LPe16000B, and LPe16002B HBAs use removable optical transceivers. If you need to change the bracket for an HBA installation, you must first remove the optical transceiver(s), if installed, from the housing (cage). This procedure explains how to remove the transceiver and bracket safely.
Note: The LPe15004 HBA comes with a low–profile PCIe bracket installed.The
low–profile mounting bracket is shorter than the standard bracket; approximately 3.11 inches (7.9 cm) compared to 4.75 inches (12.06 cm) long.
Note: On the LPe15004 HBA, you can remove and change the bracket but you
cannot remove the optical transceiver.
Note: The LPe16004, LPe16000B, and LPe16002B HBAs come with a standard
full–height PCIe bracket installed.
Preparing the HBA for Installation
2. Installation
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To change the bracket:
1. Some HBAs have optical transceivers embedded in their cage assemblies. These optical transceivers must be removed before the bracket can be removed. If the HBA contains optical transceivers, continue with the following steps; otherwise, proceed to step 4.
Caution: This is a delicate operation. Take care not to damage the optical
transceiver.
The HBA uses different types of optical transceivers. Figure 2-1 shows an example of one type with the bail (handle) extended.
Figure 2-1 Typical Optical Transceiver
2. To remove a transceiver, pull the bail (handle) out and down to release the latch and gently pull the transceiver out. Do not force it. After the latch is released, the transceiver slides out easily.
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Preparing the HBA for Installation
2. Installation
Figure 2-2 shows a transceiver with the latch released (bail extended) and another transceiver latched in place.
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Figure 2-2 Releasing the Latch on an Optical Transceiver
Figure 2-3 shows an extracted transceiver and another transceiver latched in place.
Figure 2-3 Removing an Optical Transceiver
3. Observing Electrostatic Discharge (ESD) precautions, store the transceiver in an ESD-safe place.
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2. Installation
Installing the Adapter
4. Remove the mounting bracket screws from the top of the HBA. Figure 2-4 shows the screws that are removed from the bracket.
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Figure 2-4 Removing the Bracket
5. Remove the bracket and store it for future use.
6. Align the new mounting bracket tabs with the holes in the HBA.
Note: Be careful not to push the bracket past the EMI compression tabs of the SFP
cage. Ensure the light emitting diodes (LEDs) are properly aligned with the holes in the bracket.
7. Re-install the screws that attach the HBA to the bracket.
8. Re-install the transceiver by sliding it into the housing. When the latch engages, it clicks.
9. Push the bail back into place.
Installing the Adapter
To install the adapter:
1. Turn off the computer if hotplug is not supported on the server. See your server documentation to see if it supports Hot Plug/Hot Swap of PCIe adapter cards.
2. Remove the computer case.
3. Remove the blank panel from an empty PCIe bus slot. See “Preparing the HBA for Installation” on page 8 to change the brackets if needed. Otherwise, proceed to “Attaching Media” on page 11.
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4. Insert the HBA into an empty PCIe x8 or x16 slot. Press firmly until the adapter is seated.
Note: Make sure that the adapter is in an appropriate PCIe slot that does not
interfere with other components or with the case to prevent damage to the HBA.
5. Secure the HBA mounting bracket to the case with a panel screw or clip.
6. Replace the computer case and tighten the case screws.
The HBA is now installed in the server and is ready for an FC device.
Attaching Media
Note: The HBA does not allow normal data transmission on an optical link unless it is
connected to another similar or compatible laser product (that is, multimode to multimode.)
Note: The HBA does not automatically downgrade to the required FC speed based on
cable length. You must downgrade the speed with the appropriate utility or link errors may occur.
2. Installation
Attaching Media
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Use a multimode fiber optic cable, with short-wave lasers, that adheres to the following specifications:
Table 2-1 Media Specifications
Fiber Optic Cable Maximum Length Minimum Length Connector
OM4 - Multi-mode 50/125 micrometer fiber (4700 MHz*km bandwidth cable)
OM3 - Multimode 50/125 micron fiber (2000 MHz*km bandwidth cable)
OM2 - Multimode 50/125 micron fiber (500 MHz*km bandwidth cable)
OM1 - Multimode 62.5/125 micron fiber (200 MHz*km bandwidth cable)
4GFC: 0.5m - 400m
8GFC: 0.5m - 190m
16GFC: 0.5m - 125m
4GFC: 0.5m - 380m
8GFC: 0.5m - 150m
16GFC: 0.5m - 100m
4GFC: 0.5m - 150m
8GFC: 0.5m - 50m
16GFC: 0.5m - 35m
4GFC: 0.5m - 70m
8GFC: 0.5m - 21m
16GFC: 0.5m - 15m
0.5 meters LC
0.5 meters LC
0.5 meters LC
0.5 meters LC
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To attach media to the HBA:
1. Connect the appropriate cable to the HBA.
When connecting an optical cable, ensure the cages have optical transceivers installed in them (see Figure 2-5).
2. Installation
Attaching Media
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Figure 2-5 Installing an Optical Transceiver
Once the optical transceivers are installed, insert the optical cable into the LC connectors on the HBA (see Figure 2-6).
Figure 2-6 Connecting a Fiber Optic Cable
2. After the appropriate cable is connected to the HBA, connect the other end to the FC device.
After the cable is connected to the HBA, you are ready to apply power to the computer.
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Applying Power
To apply power:
1. Verify that the HBA is securely installed in the computer.
2. Verify that the correct media is attached.
3. Plug in and turn on the computer.
4. Watch the LEDs for Power On Self Test (POST) results.
Viewing the LEDs
You can view green and yellow LEDs through openings in the HBA's mounting bracket. The green LED indicates firmware operation and the yellow LED indicates port activity or link speed. Each port has a corresponding set of green and yellow LEDs as shown in the figure below.
2. Installation
Applying Power
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Figure 2-7 Optical HBA LED Indicators
POST Conditions and Results
POST is the default mode of self-test for the LPe15004, LPe16004, and the LPe16000B-series HBAs. No jumpers or connectors are necessary for this test to run. These tests perform a quick confidence level check of the HBA before running the operational software.
At a minimum, the following tests are performed by POST:
Flash boot image checksum test
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2. Installation
Viewing the LEDs
Internal ASIC RAM tests for proper ECC and parity operation
NLPort loopback test
The following table summarizes POST conditions and results:
Note: For the Link Rate conditions, there is a 1 second pause when the LED is off
between each group of fast blinks (2, 3, or 4). Observe the LED sequence for several seconds to be sure you have correctly identified the pattern.
Table 2-2 POST Conditions and Results
Green LED Yellow LED State
Off Off Boot failure (Dead board)
Off On POST failure (Dead board)
Off Slow Blink Boot failure after POST
Off Fast Blink Not Defined
Off Flashing POST processing in progress
On Off Failure in Common Code Module
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On On Failure in Common Code Module
On 1 Fast Blinks Normal (Link up at 2GFC) (legacy
compatibility only)
On 2 Fast Blinks Normal (Link up at 4GFC)
On 3 Fast Blinks Normal (Link up at 8GFC)
On 4 Fast Blinks Normal (Link up at 16GFC)
On Flashing Not Defined
Slow Blink Off Normal-link down
Slow Blink On Not Defined
Slow Blink Slow Blink Not Defined
Slow Blink Fast Blink Not Defined
Slow Blink Flashing Not Defined
Fast Blink Off Not Defined
Fast Blink On Not Defined
Fast Blink Slow Blink Not Defined
Fast Blink Fast Blink Beaconing
Fast Blink Flashing Not Defined
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LPe15004, LPe16004, and LPe16000B–series HBA Specifications
3. References
3. References
LPe15004, LPe16004, and LPe16000B–series HBA Specifications
The specifications of the LPe15004, LPe16004, and LPe16000B–series HBAs are listed in Table 3-1.
Table 3-1 LPe15004, LPe16004, and LPe16000B–series HBA Specifications
Parameter Range
Physical Dimensions LPe16000B-series and LPe15004 HBAs: Low-profile form factor, 6.600 inches
by 2.731 inches.
LPe16004 HBA: Standard height, half length form factor, 6.600 inches by 4.376 inches.
Power Requirements Single channel LPe16000B HBA: 9.3W (typical), 11.6W (maximum)
Dual channel LPe16000B HBA: 11.1W (typical), 13.3W (maximum)
Quad channel LPe16004 HBA: 22.4W (typical), 25.0W (maximum)
Quad channel LPe15004 HBA: 11.5W (typical), 14.2W (maximum)
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Power Susceptibility The LPe16004,LPe16000B–series, and LPe15004 HBAs can operate within the
following voltage ranges:
PCIe 3.3V: 3.3V +/- 9%
PCIe 12V: 12V +/- 8%Power supply noise susceptibility: 100mV p-p at frequencies 100KHz or less
Airflow 200 linear feet per minute (minimum, LPe16000B–series and LPe15004 HBAs)
250 linear feet per minute (minimum, LPe16004 HBA)
Temperature 0°C to 55°C (operating,LPe15004)
0°C to 50°C (operating, LPe16004 and LPe16000B–series HBAs)
-40°C to 70°C (storage, LPe15004, LPe16004, and LPe16000B–series HBAs)
Note: Operating HBAs in higher temperature conditions may result in early
failure.
Humidity LPe16004 and LPe16000B–series HBAs:
5% to 95% (non-condensing, 22°C wet bulb) for storage
10% to 90% (non-condensing, 22°C wet bulb) for operation
LPe15004 HBA:
5% to 95% (non-condensing, 23°C wet bulb) for storage
10% to 90% (non-condensing, 23°C wet bulb) for operation
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FCC and Regulatory Notices
Table 3-1 LPe15004, LPe16004, and LPe16000B–series HBA Specifications (Continued)
Parameter Range
3. References
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Agency Approvals for LPe15004, LPe16004, and LPe16000B-series HBAs
Vibration, peak acceleration
• Class 1 Laser Product per DHHS 21CFR (J) & EN60825-1 when equipped with approved optical devices
• UL recognized to UL60950-1 2nd Edition
• cUR recognized to CSA 22.2, No. 60950-1-07
• TUV certified by to EN60950-1+A11+A1+A12
• FCC Rules, Part 15, Class A
• Industry Canada, ICES-003, Class A
• EMC Directive 2004/108/EEC (CE Mark)
EN55022:2010, Class A EN55024:2010
• Australian EMC Framework (C-Tick Mark)
AS/NZS CISPR22:2009+A1, Class A
• Japan VCCI, Class A
• Taiwan BSMI, Class A
• Korea KCC, Class A
• RoHS Compliant (Directive 2011/65/EU)
• China RoHS compliant
0.25g (5 Hz to 500 Hz)
(Sweep Rate = 1 octave/minute)
FCC and Regulatory Notices
LPe15004, LPe16004, and LPe16000B–series HBA Models
This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation.
Responsible Party:
Jeff Benck, President and Chief Executive Officer Emulex Corporation (714) 662-5600 3333 Susan St. Costa Mesa, CA. 92626 USA
Note: This equipment has been tested and found to comply with the limits for a Class
A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. The reader is cautioned that changes or modifications made to the equipment not expressly approved by Emulex
LPe15004, LPe16004, and LPe16000B-series HBA Installation Manual P008875-02A Rev. A
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FCC and Regulatory Notices
3. References
could void the user's authority to operate this equipment. The above statement applies to products marketed in the USA.
This class A digital apparatus meets all requirements of the Industry Canada (IC) Interference - Causing Equipment Standard (ICES-003).
Cet appareil numérique de la classe A respecte toutes les exigences du règlement sur le matériel brouilleur du Canada. CAN ICES-3 (A)/ NMB-3 (A)
Notice for Japan and Translations (VCCI)
Translation:
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This is a Class A product. If this equipment is used in a domestic environment, radio interference may occur, in which case, the user may be required to take corrective action. VCCI—A.
Notice for Taiwan and Translations (BSMI)
Translation:
This equipment is a Class A ITE, and operation of this equipment in a residential area is likely to cause harmful interference, in which case users will be required to correct the interference at their own expense.
Notice for South Korea and Translations (KCC)
Translation:
Sellers and users of this equipment take note that this equipment is EMC approved for Class A industrial use, and as such is not intended for residential use.
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Declarations of Conformity
LPe16004 and LPe16000B–series HBA Models
This equipment complies with CISPR22/EN55022 Class A.
WARNING: This is a class A product. In a domestic environment, this product may
cause radio interference requiring the user to take adequate measures.
Note: Changes or modifications not expressly approved by Emulex Corporation,
including the use of non-Emulex approved optical transceivers, could void the user's authority to operate this equipment.
Declarations of Conformity
3. References
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Declarations of Conformity
3. References
LPe15004 HBA Models
This equipment complies with CISPR22/EN55022 Class A.
WARNING: This is a class A product. In a domestic environment, this product may
cause radio interference requiring the user to take adequate measures.
Changes or modifications not expressly approved by Emulex Corporation could void the user's authority to operate this equipment.
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Laser Safety Notice
Emulex products incorporating optical laser transceivers contain Class 1 laser devices, which comply with DHHS/CDRH 21CFR Sub-chapter J, and the international laser safety standard EN/IEC 60825-1. Class 1 laser devices are not considered to be hazardous.
The use of non-Emulex approved optical transceivers, or transceivers which do not comply with the Class 1 radiation performance requirements defined in DHHS/CDRH 21CFR Sub-chapter J and IEC 60825-1, may expose the user to hazardous laser radiation, and such devices should not be used with Emulex products.
3. References
Laser Safety Notice
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LPe15004, LPe16004, and LPe16000B-series HBA Installation Manual P008875-02A Rev. A
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