H5000 Outdoor Mini Virtual HUB

Similar documents
GPON EDFA with WDM for IP(OLT) Wavelengths Multiple Optical Outputs

8 Ports. 16 Ports. ED5219LGT Series. CATV Single Channel EDFA 1310nm Forward Optical Transmitter

ED5229GT-E/GTRE Series

ED5229GT-E Series. Page 1 of 8

OPTILAB CATALOG TRANSMITTER OPTICAL NODE MINI-NODE EDFA PASSIVE OPTICS RECEIVER

7820A CATV Optical Receiver 1 GHz

7840A DOCSIS 3.1 Low Noise CATV Optical Receiver

ACION 8000 Series. A8KFR1 1RU Forward Receiver

Prisma D-PON System ONT and Upstream Receiver

7820A 1GHz CATV Optical Receiver

Headend Optics Platform (CH3000)

! "#$ ' % & % & ' ( )!' *!+, ( *-"(! './ 0 / 0/ $ 1/ 2$3 1

Prisma D-PON System 1550 nm Downstream Transmitter and EDFA

OmniStar GX2 Headend Optics Platform

Description. Features MODEL ODN2P OPTICAL DISTRIBUTION NODE WITH TWO AMPLIFIED RF PORTS LIGHT LINK SERIES 2.

PRODUCT OVERVIEW OPTICAL NODES

Model 755U Optical Transmitter DWDM, up to 20 km, Low Distortion, Wideband

Headend Optics Platform (CH3000)

TranScend Opto-Stacker & Destacker. Operation Manual

HDBS-5000DW Series. 950MHz~2400 MHz

RLT 1550 d10. DWDM High Power, Ultra Wide Band CATV & SAT MHz Laser Optical Transmitter, with pre-correction, LAN remote control and alarms

Compact EGC Fiber Deep Nodes A90100 and A90300

Model DM8000-U Optical Transmitter Direct Modulation, DWDM, Low Distortion, Wideband

2015 OPTICAL TRANSMITTERS

Model GS Port Node 1 GHz with 65/86 MHz split

Medallion 8000 Series 1550 nm Directly-Modulated Transmitter

MAIN CATALOGUE FIBRE OPTICS

PONA 3000 Series Erbium Doped Fiber Amplifier

PONA 3000 Series Erbium Doped Fiber Amplifier

OMNISTAR GX2. GX2-LM1000E Series 1310 nm Broadcast Transmitter DATA SHEET BENEFITS. 1 GHz bandwidth

CHP Max Headend Optics Platform CHP CORWave II

Radio Frequency over Glass. Passive Optical Network (PON) for EuroDOCSIS infrastructures

Cisco GS7000 High-Output 4-Way Segmentable Node with 42/54 Split

Opti Max Nodes Digital Return System

OPTICAL DISTRIBUTION STATION -

Proposal of Distributing 4 SAT IF Signals To 209 Homes within 3Km Over Fiber Cable

Ver. 1.0sb 1550nm Erbium Doped Fiber Amplifier MX-A5100 Series Technical Specification

100G CWDM Link Model for DM DFB Lasers. John Petrilla: Avago Technologies May 2013

OmniStar GX2 Headend Optics Platform

Emcore SITU2831 Externally Modulated RF Amplified Fiber Optic Transmitter and SIRU3000 Fiber Optic Receiver

opengear OPG-1L 50 MHz-2.3 GHz

OmniStar GX2 Headend Optics Platform

HDO701 FIBRE OPTIC TRANSMITTER

CABLE TV on fiber. CABLE TV FIBERLINK Pass 100+ TV channels on 1 SingleMode fiber with no need for amps

THE ART OF ENGINEERING

Cisco GS7000 High-Output (GaN) 4-Way Segmentable Node with 85/102 MHz Split

OPTICAL MEASURING INSTRUMENTS. MS9710C 600 to 1750 nm OPTICAL SPECTRUM ANALYZER GPIB. High Performance for DWDM Optical Communications

Prisma II Optical Amplifiers for Fiber to the Home (FTTH)

OmniStar GX2 Headend Optics Platform GX2 LM1000E Series

L-Band Fiber Optic Links

GPON ONU Triplexer Transceiver

Product Operation Manual

FORWARD PATH TRANSMITTERS

MAFA 5000 Series Erbium Doped Fiber Preamplifier

DVO700 P FIBRE OPTIC TRANSMITTER

Typical applications:

Fibre Channel Fiber-to-Fiber Media Converters

PROFESSIONAL DWDM OPTICAL LASER TRANSMITTER for HFC & FTTH LARGE CATV & SAT MHz DISTRIBUTIONS

PL7330T / PL7330R16 RF Link High Power Input, 16dB Optical Budget 45Km nm or 70Km nm

11 GHz MDD FIBER OPTIC LINK FEATURES TYPICAL APPLICATIONS

ChromaFlex. ChromaFlex CF-QRRX Quad Analog Return Path Receiver Modules HARDWARE INTERFACE MANUAL.

100G MMF 20m & 100m Link Model Comparison. John Petrilla: Avago Technologies March 2013

FOM-9010, FOM-9011 and FOM-9012

Long Distance L-Band Fiber Optic Links

MX/HD-SDI-3G. Transmit HD-SDI-3G signals over Fiber

SilverBULLET 3G Series

a simply perfect network. OptiCal networks Ed

LT1550 Laser Transmitter with Erbium Doped Fibre Amplifier

EPON ONU Triplexer Transceiver

OTX Optical Transmitter. Operation Instructions

Ordering information. 40Gb/s QSFP+ ER4 Optical Transceiver Product Specification. Features

ModBox-1310nm-1550nm-28Gbaud-PAM nm & 1550 nm, 28 Gbaud PAM-4 Reference Transmitter

The Art of Engineering

MAXCOM PRODUCT SPECIFICATIONS FIBER OPTIC VIDEO / AUDIO / ASI LINK. Model MX3257HD. Description. Features. Model Selection Guide

FREQUENCY CONVERTER. MULTIPLE OUTPUT WIDEBAND Ku AND Ka DOWNCONVERTERS. Narda-MITEQ FEATURES OPTIONS

SATCOM FIBER OPTIC PRODUCTS

ModBox-1310nm-1550nm-NRZ 1310nm & 1550 nm, 28 Gb/s, 44 Gb/s Reference Transmitters

Industrial 10/100 Base-TX to 100 Base-FX Media Converter NS-200AFC-T/NS-200AFCS-T/NS-200AFCS-60T +12 ~ +48

3G-SDI Extender via Single Mode Fiber LC Simplex Connector Extends 3G-SDI Link Up To 20 Kilo Meters

SPCxxB10100D SFP+ Dual Fiber CWDM CWDM / 10dB / 10 Gigabit Ethernet

Features: Compliance: Applications: Warranty: QSFP-40G-LR4-GT 40GBASE-LR4 QSFP+ SMF Module Cisco Compatible

Long Reach, Client-Side SFP, Multi-Rate, Multi-Protocol, CWDM, 3R Transponder WaveReady Transponder 740 LR CWDM

100G SR4 Link Model Update & TDP. John Petrilla: Avago Technologies January 2013

F M1SDI 1 Ch Tx & Rx. HD SDI Fiber Optic Link with RS 485. User Manual

High Density Optical Platform for FTTx and HFC

EVLA Fiber Selection Critical Design Review

Four-way Return Optical Receiver Manual. Transmitter OP-OR124RJ. Shenzhen Optostar Optoelectronics Co., Ltd (Version 1)

High Density Optical Platform

Opti Max4100. Opti Max. 1GHz Segmentable Nodes. Features. Broadband Access. 1GHz technology. Future 85/105MHz architecture support

SFP-Bxx-ttrr. Up to 80km Sinlge-Mode SFP Transceiver. Features. Applications. Benefits

SFCxxB16GExD SFP Dual Fibre CWDM ITU CWDM / 16dB / Gigabit Ethernet

Table of Contents. Headend Optical Transport OmniStar Enhanced DFB Laser [AM-OMNI-ALM-*] file:////ncs-server-xp/temp/motorola CD 2001/frames.

MTS/T-BERD 8000 Platform

Multiwavelength Gain Module EDFA

LONWORKS Fibre Optic Converter

Multicom Optical Return Path Receiver MUL HRPR 4B

1 Gang-sized Multi-format video to Optical DVI Converter, MVDF DATA SHEET

EDFA Erbium Doped Fibre Amplifier

SFCxxB24GExD SFP Dual Fibre CWDM CWDM / 24dB / Gigabit Ethernet

MTS/T-BERD 8000 Platform Optical Spectrum Analyzer Modules

Transcription:

H5000 Outdoor Mini Virtual HUB The H5000 is an RFOG Indoor/Outdoor Mini Virtual Hub that provides an optical distribution point for downstream traffic and an aggregation point for upstream traffic, making it easy for cable operators to extend their fiber networks far beyond the traditional hub/headend infrastructure. By using the H5000, the operators can make the best use of their fiber to deliver improved high-speed internet, cable IPTV, and multi-screen services over their existing networks using RFoG technology. The H5000 also allows PON overlay. The Mini-Hub provides Optical Amplification, Wavelength Conversion, Wavelength Collapsing, Optical Muxing/Demuxing/Splitting, and RFoG / PON service. Features Field-hardened outdoor type housing Single fiber to Multi-point distribution One way or Bidirectional optical transmission High power Multiport C-band EDFA optical amplification Redundant power supplies Built-in optical wavelength Multiplexing and De-Multiplexing modules PON overlay capability No need for a standalone power supply just to feed the hub. Cable 40-90 VAC or Mains 90-240 VAC power supply options Page 1 of 7 www.acicomms.com

Block Diagrams The H5000 Outdoor Micro Hub structure Application Page 2 of 7 www.acicomms.com

Specifications ACI Absolute Maximum Ratings H5000 Outdoor Mini Virtual Hub Parameters Min Typ. Max Units Notes AC Input Voltage 90-240 Vac 50/60Hz, line power H5000 Total Power Consumption - - 100 W Operating Temperature -40-60 C Storage Temperature -40-85 C Relative Humidity 0-95 % (non-condensing) Input Optical Power into DS EDFA - - 8 dbm System Performance Parameters Conditions Units Min Typ. Max Notes Optical Input Power (to EDFA) Optical Output Power/Port (with PON Pass Thru Option) Optical Output Power/Port (No PON Pass Thru Option) Upstream Performance Operating BW Frequency Response Flatness Optical Input Range @ 1550 nm dbm -5 - +8 After WDM dbm 18 - - After WDM dbm 19 - - 42 MHz Option 85 MHz Option 5 42 MHz 5 85 MHz No PON WDM With PON WDM MHz 5 5-42 85 dbpk-pk - - 2 dbm -23-22 - -10-9 1 RF Out Level (in AGC Range) RF Out Level (Out of AGC Range) AGC ON Optical In -20 to -10dBm R-ONU: 8.8% OMI/ch 4ch for 42MHz Option 8ch for 85MHz Option AGC ON Optical In -22 to -8 R-ONU: 8.8% OMI/ch 4 ch for 42 MHz Option 8 ch for 85 MHz Option dbmv/ch 34 36 38 2 dbmv/ch 30 32 38 2 DR @ 38 db NPR - db 10 - - 3 1) QHSR sensitivity range: -23 to -10 dbm. 2) RF out level is measured from QDR s RF Out. 3) Fiber length = 20 km, Rx Optical = -10 dbm, Opt attenuator needs to be between Tx and Fiber, Tx burst mode disable. Page 3 of 7 www.acicomms.com

ACI H5000 Outdoor Mini Virtual Hub EDFA Module Specification Parameters Conditions Units Min Typ. Max Notes Uplink Ports RFoG Port GPON Port 1 (Single fiber), 2 (Dual fiber) 8 Down Link Ports RFoG & GPON 8 RFoG System WDM Wavelength 1550 nm (DS) 1610 nm (US) nm 1545 1600-1563 1610 PON Pass Through WDM Wavelength 1310 nm (US) 1490 nm (DS) nm 1260 1480 1310 1490 1360 1500 Output Power/Port (No PON Pass Thru Option) Output Power/Port (with PON Pass Thru Option) dbm 19 - - After WDM dbm 18 - - Total Input Power @ 1550 nm dbm -5 - +8 Saturated Output Power Pin -5 dbm @ 1550 nm db Po Po+0.3 Po+1 Output Power Variation - db 0-1 Output Power Stability Over λop db - - 1 NF @ Pin=0 dbm - db - - 5.5 PDG Over λop db - - 0.5 PMD Over λop ps - - 0.5 Optical Return Loss All Ports db 45 - - Input Optical Connector Output Optical Connector PON Input Optical Connector LC/APC (Standard) LC/APC (Standard) LC/UPC (Standard) Optical IL with WDM RFoG System PON Pass Thru (optional) 1550 & 1610 1310 & 1490 db - - 1 1.2 Output Isolation db 45 - - Page 4 of 7 www.acicomms.com

A34XMTDR Digital Return Transmitter Specification Parameters Conditions Units Specification Notes Optical Specifications Laser Type FP, DFB or CWDM Optical Return Loss Min. db 45 Optical Output Power Min. dbm -5 to 0 0 to 3 Wavelength Spectral Line Width (RMS) RF Specifications Operating Bandwidth 45 MHz 85 MHz DFB/FP laser CWDM laser FP DFB CWDM nm 1310 ± 20 nm ITU-T CWDM 1271 1611 nm 1.5 (typical) 0.4 (typical) 0.4 (typical) MHz 5 to 45 5 to 85 Impedance Ω 75 RFIN 1 and RFIN 2 Level dbmv/ch 16 RFIN 1 and RFIN 2 Input Return Loss Max -db 16 RF Input Level Adjustment Range 0.1 db step db 0 to 20 RFIN 1 and RFIN 2 Flatness Link dbpk-pk ±1 RF Input Test Point Level -db 20 ± 0.5 RF Input Test Point Return Loss Max -db 16 Link Performance Link Gain db 20 Peak NPR 45 MHz 85 MHz db 53 52 Dynamic range @ 40 db CNR db 18 MER db 38 BER <1x10-9 Environmental Power Consumption Maximum Watt 7.5 Operating Temperature Inside Optical Node Ambient Temperature C F -25 to +85-32 to +185 Relative Humidity Non-condensing % 0 to 95 Optical Connector LC/APC Dimensions D H W Inch. (mm) 5.81 x 1.16 x 2.95 (147.6 x 29.5 x 74.9) Page 5 of 7 www.acicomms.com

QHSR Quad High-Sensitivity Return Optical Receiver (for RFoG) Optical Specification Parameters Conditions Units Specification Notes Receive Optical Power dbm -23 to -10 Responsivity 1310 nm 1550 nm ma/mw 0.8 0.9 Optical Test Point -23 to -10 dbm V/mW 20 0.1V = -23 2V = -10 Optical Return Loss db 45 Optical Wavelength nm 1260 to 1620 RF Specification Operating Bandwidth MHz 5-200 6 ch for 42 MHz 8 ch for 85 MHz RFout1 and RFout2 Return Loss Max. db -16 RX1 to & Rx4 RF Output Level 8 ch @ 8.8% OMI/ch -23 dbm Rx Opt dbmv/ch 5 RF Atten set to 0 db, After 2x1 Optical AGC Range Rx Opt = -10 to -20 dbm db 10 RFout = 10 dbmv/ch AGC Accuracy Rx Opt = -10 to -20 dbm db ± 1.5 RF Path Gain Adjustment Range 0.1 db steps db 0 to 25 Rx1 to Rx4 Response Flatness 5 200 MHz dbpk-pk ±1 RF Output Test Point Level RFout 1, RFout2 Relative to RF Output db -20 ± 1 5 200 MHz RF Output Test Point Return Loss Max. db -16 TP1, TP2 RFout1 to RFout2 Isolation db <-50 Receiver EIN Max. pa/ Hz 2 Discrete Second Order (DSO) dbc -55 2-tone Opt Test Discrete Third Order (DTO) dbc -60 Note 1 Environment Module Dimensions D x H x W mm 176 x 74.9 x 30.7 Power Consumption Max. W 5 Operating Temperature C -40 to 80 Internal Relative Humidity Non-condensing % 0 to 95 Optical Connector Standard SC/APC Page 6 of 7 www.acicomms.com

Part Number Ordering Matrix H5000 Configuration Sheet Customer: Created By: Order Date: ORDERING MATRIX November 27, 2018 Position 1 2 3 4 5 6 7 8 9 10 11 PART NUMBER H5000 1 2 3 4 5-6 7 8-9 Port Number for EDFA 2A = 85MHz, Single RF, Single 1471nm CWDM-Type Laser, 80km 4 = 4 Ports 2B = 85MHz, Single RF, Single 1491nm CWDM-Type Laser, 80km 8 = 8 Ports 2C = 85MHz, Single RF, Single 1511nm CWDM-Type Laser, 80km 2D = 85MHz, Single RF, Single 1531nm CWDM-Type Laser, 80km WDM Options for EDFA 2E = 85MHz, Single RF, Single 1551nm CWDM-Type Laser, 80km 0 = No PON Bypass WDM 2F = 85MHz, Single RF, Single 1571nm CWDM-Type Laser, 80km 3 = With PON Bypass WDM (1490/1310) 2G = 85MHz, Single RF, Single 1591nm CWDM-Type Laser, 80km 2H = 85MHz, Single RF, Single 1611nm CWDM-Type Laser, 80km Network Management 0 = None 3A = 45MHz, Dual RF, Single 1471nm CWDM-Type Laser, 80km (2-fer) 1 = SNMP (Media Converter) 3B = 45MHz, Dual RF, Single 1491nm CWDM-Type Laser, 80km (2-fer) 3C = 45MHz, Dual RF, Single 1511nm CWDM-Type Laser, 80km (2-fer) Power Supply 3D = 45MHz, Dual RF, Single 1531nm CWDM-Type Laser, 80km (2-fer) 0 = Cable Power (40-90Vac) 3E = 45MHz, Dual RF, Single 1551nm CWDM-Type Laser, 80km (2-fer) 1 = Universal Line Power (100 to 240Vac) 3F = 45MHz, Dual RF, Single 1571nm CWDM-Type Laser, 80km (2-fer) 3G = 45MHz, Dual RF, Single 1591nm CWDM-Type Laser, 80km (2-fer) EDFA Output Power 3H = 45MHz, Dual RF, Single 1611nm CWDM-Type Laser, 80km (2-fer) 18 = 18 dbm 4A = 85MHz, Dual RF, Single 1471nm CWDM-Type Laser, 80km (2-fer) RFoG Receiver 4B = 85MHz, Dual RF, Single 1491nm CWDM-Type Laser, 80km (2-fer) 1 = One QHSR 4C = 85MHz, Dual RF, Single 1511nm CWDM-Type Laser, 80km (2-fer) 2 = Two QHSR 4D = 85MHz, Dual RF, Single 1531nm CWDM-Type Laser, 80km (2-fer) 4E = 85MHz, Dual RF, Single 1551nm CWDM-Type Laser, 80km (2-fer) Digital Return Transmitter Options (See Note 1) 4F = 85MHz, Dual RF, Single 1571nm CWDM-Type Laser, 80km (2-fer) 4G = 85MHz, Dual RF, Single 1591nm CWDM-Type Laser, 80km (2-fer) 01 = 45MHz, Single RF, Single FP-Type Laser, 10km 4H = 85MHz, Dual RF, Single 1611nm CWDM-Type Laser, 80km (2-fer) 02 = 45MHz, Dual RF, Single FP-Type Laser, 10km (2-fer) 03 = 45MHz, Single RF, Single 1310nm DFB-Type Laser, 40km 10 OPTICAL CONNECTOR 04 = 45MHz, Dual RF, Single 1310nm DFB-Type Laser, 40km (2-fer) 1 =HE Interfaces: SC/APC; EDFA Ports: LC/APC; PON Bypass: LC/APC 05 = 85MHz, Single RF, Single FP-Type Laser, 10km 06 = 85MHz, Single RF, Single 1310nm DFB-Type Laser, 40km 11 WDM Options for HE Interface 07= 85MHz, Dual RF, Single 1310nm DFB-Type Laser, 40km (2-fer) 0 =No WDM 5 =1550/1531 1 =1550/1310 6 =1550/1571 1A = 45MHz, Single RF, Single 1471nm CWDM-Type Laser, 80km 2 =1550/1471 7 =1550/1591 1B = 45MHz, Single RF, Single 1491nm CWDM-Type Laser, 80km 3 =1550/1491 8 =1550/1611 1C = 45MHz, Single RF, Single 1511nm CWDM-Type Laser, 80km 4 =1550/1511 1D = 45MHz, Single RF, Single 1531nm CWDM-Type Laser, 80km 1E = 45MHz, Single RF, Single 1551nm CWDM-Type Laser, 80km 1F = 45MHz, Single RF, Single 1571nm CWDM-Type Laser, 80km 1G = 45MHz, Single RF, Single 1591nm CWDM-Type Laser, 80km 1H = 45MHz, Single RF, Single 1611nm CWDM-Type Laser, 80km NOTES: 1. Refer to the A8KQDR Data Sheet for selecting the corresponding headend digital receiver. ACI Communications, Inc. 23307 66th Avenue South Kent, WA 98032 Rev B 11-27-2018 ACI Communications, Inc. reserves the right to discontinue the manufacture or change specifications without prior notice on any parts illustrated in this data sheet. Registered trademarks are the property of their respective owners Page 7 of 7 www.acicomms.com