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MF600SWE


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MF600SWE
File Revision System Application Product Type Product Name Date Issued Approved Issued Date
RDPS-MF054 Asymmetric Digital Subscriber Line POTS Splitter MF600SWE Sep. 23th, 2002 Hsieh Design Engineer, R&D_1 jay@ycl.com.tw Roger Manager, R&D_1 Roger@ycl.com.tw
Electronics Co., Ltd.
No.95, Feng Road. Feng Shan City, Kaohsiung, Taiwan, R.O.C.
This controlled document property Electronics Co., Ltd. duplication reproduction transmission unauthorized parties without prior written permission Electronics Co., Ltd. prohibited.
Data sheet subject change without notice
RDPS-MF054(R0)09/23/2002 SHEET
MF600SWE
Table contents
Item Description Introduction Reference Abbreviations Technical requirements 4.1. Schematic 4.2. ZHP-r definition 4.3. Electrical specification 4.4. characteristic 4.5. Test methodology 4.5.1. Insertion loss 4.5.2. Return loss Environmental condition 5.1. Resistibility overvoltage overcurrents 5.2. Climatic condition 5.2.1. Operating temperature 5.2.2. Storage transport 5.2.3. Operating humidity Reliabilty conditions 6.1.Thermal shock 6.2. Temperature humidity exposure 6.3. Vibration test Mechanical condition 7.1. Mechanical -Page
Data sheet subject change without notice
RDPS-MF054(R0)09/23/2002 SHEET
MF600SWE
Introduction: MF600SWE splitter module that been specifically designed implement functionality pass filter POTS over ADSL application. Asymmetric Digital Subscriber Line (ADSL) technology dedicated point point public network access technology that allow multiple forms data voice video carried over twisted-pair copper wire local loop between network service provider's(NSP'S) central office customer site local loops created either intra-building intracampus. Best ADSL delivers this high speed performance over existing copper telephone line while allowing traditional voice service coexist without interruption through POTS pass filters. POTS-splitter customer premises side consists lowpass section( installed aseparated plastic MF600SWE integrate pass filter that block high frequency energy from reaching POTS device provide isolation from impedance effects POTS device ADSL.In addition these filter will also attenuate wideband impulse noise generated POTS device interruption loop current(e.g. pulse dialing hook hook transfer) Because POTS splitter connects directly subscriber loop media must also provide some protection externally induced line hits faults which could damage attached equipment endanger humans interacting with installed equipment. circuit protection will provided mostly standard central office line protection means additional protection measures built into POTS splitter protect against line overstress which could damage splitter itself. electrical transmission specification based ETSI castomer requird
Reference:
Ref. Ref. Ref. ETSI ITU-T Environmental conditions environmental tests Telecommunications equipment Network Customer Installation Resistibility telecommunication switching Equipment overvoltages overcurrents Ref. ITU-T Resistibility subscribers terminal overvoltage overcurrents
RDPS-MF054(R0)09/23/2002 SHEET
Data sheet subject change without notice
MF600SWE Abbreviations:
ADSL POTS ADSL-NT Asymmetric Digital Subscriber Line Central Office Customer Premise Equipment. Plain Telephone Service Remote Terminal Network termination ADSL
Data sheet subject change without notice
RDPS-MF054(R0)09/23/2002 SHEET
MF600SWE Technical requirements
4.1.Schematic following drawing illustrates schematic this product.
4.2. ZHP-r definition facilitate test splitter high pass data have taken into consideration. Capacitors 0.1uF NT-side connected series with 0.12uF capacitors tip-And ring-line ADSL-output splitter itself (see block diagram above). equivalent circuit diagram NT-side shown below
Data sheet subject change without notice
RDPS-MF054(R0)09/23/2002 SHEET
MF600SWE
4.3. Electrical specification
pass filter shall satisfy following parametric limits with complex impedance shown this table across Line side this device following requirement specified single splitter. Splitter parameter Frequency range Splitter bandwidth Nominal voice band Billing tone Ringing frequency ADSL band Line Impedance impedance impedance Modem impedance Operation voltage voice band Nominal signal Billing tone Ringing signal voltage Max. voltage Max. differential Current voice band Loop current Resistance Resistance Isolation resistance tip/ring
Voice -band characteristic
Electrical requirements Range values 3.4KHz 0.3KHz 3.4KHz 12KHz±80Hz 15.3Hz 68Hz 30KHz 1104KHz 270ohm (750ohm 150nF) 270ohm (750ohm 150nF) 270ohm (750ohm 150nF) 30KHz< 1104KHz 21mVpp 10Vpp 30.2Vpp 25Hz 100Vrms 150Vrms with -105VDC offset 320V <=30mA <=50 Mohm 1004Hz <1.0 <±1.0
Insertion loss
Attenuation distortion(relative 200Hz<f<4KHz 1004Hz)
Data sheet subject change without notice
RDPS-MF054(R0)09/23/2002 SHEET
MF600SWE
Electrical requirements Range 300Hz<f<600Hz 600Hz<f<3200Hz 3200Hz<f<4000Hz Return loss from POTS Port from line Port 300Hz<f<3400Hz 3400Hz<f<4KHz 300Hz<f<3400Hz 3400Hz<f<4KHz Longitudinal conversion loss 30KHz 1MHz 1MHz 5MHz ADSL modem interface Isolation voltage ADSL band characteristic ADSL Insertion loss Stop band attenuation 26-1100KHz 32KHz<f<1104KHz <0.3 >2000Vrms minute <250 usec <200 usec <250 usec >=14 >=12 >=14 >=12 values
Splitter parameter Delay distortion
Data sheet subject change without notice
RDPS-MF054(R0)09/23/2002 SHEET
MF600SWE
4.4. characteristic requirement this specification presence POTS loop currents from 30mA. This filter pass POTS tip-to-ring voltages ringing signals 100Vrms frequency from15.3Hz 68Hz with component range from 52V. resistance from tip-to-ring line port interface with phone interface shorted, shall less than equal ohms splitter. resistance from tip-to-ground from ring-to-ground POTS interface with interface open shall greater than equal Megohms. ground point shall local building green wire ground. objective resistance should exceed 20M.
4.5. Test method 4.5.1. Insertion loss insertion loss device connected into given transmission system defined ratio, expressed load power available(before after insertion delivered output network beyond point insertion given frequency. general insertion loss device inserted given transmission system mainly caused internal component resistive loss while impedance between source load device interface having been matched. perform insertion loss measurement ,thru calibration must done prior testing General Insertion loss equation expressed following. Insertion loss where measured voltage value load without circuit. measured voltage value load with circuit. test setup shown drawing below.
Data sheet subject change without notice
RDPS-MF054(R0)09/23/2002 SHEET
MF600SWE
4.5.2. Return loss Return loss measure amount energy that lost reflection which resulted from impedance mismatching interface. Return loss essentially defined ratio power incident upon given transmission system power reflected caused impedance mismatch with respect reference impedance interface between source device. Return loss figure function impedance circuit involved therefore frequency dependent. These impedance must closely maintained order reduce possibility undesirable reflection echoes which long distance circuit telephone user destroy data being sent. perform return loss test ,open ,short, load calibration must done prior measurement while impedance Analyzer being selected impedance mode. Return loss general expressed decibels. General Return loss equation below: Return loss ZMdB Where reference impedance measured impedance
test setup shown drawing below:
Data sheet subject change without notice
RDPS-MF054(R0)09/23/2002 SHEET
MF600SWE Environmental condition:
5.1. Resistibility overvoltages overcurrents: splitter comply with requirements ITU-T K.21. 5.2. Climatic conditions: 5.2.1. Operating temperature: Application indoor Long time operation guarantee temperature Short time operation guarantee temperature According 019, class 5.2.2. Storage transport: ambient temperature High ambient temperature According MIL-STD-202 method 5.2.3. Operation humidity: Long time operation guarantee humidity Short time operation guarantee humidity Short time within continuous hours days year
Reliability conditions:
6.1. Thermal shock Temperature from cycles (According MIL-STD-202 method 107) 6.2. Temperature humidity exposure /95RH 96hrs (According MIL-STD-202 method 103) 6.3. Vibration test Random vibration frequency 5-500Hz sweep time axis Force 2.4grams (According MIL-STD-202 method 204)
Data sheet subject change without notice
RDPS-MF054(R0)09/23/2002 SHEET
MF600SWE Mechanical Condition
7.1. Mechanical
Note Unit
Data sheet subject change without notice
RDPS-MF054(R0)09/23/2002 SHEET

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