ETC MF601F

Product Specification
MF601F
File No
RDPS-MF008
Revision
R1
System Application
Mirco Filter For ADSL CPE Side
Product Type
Micro filter
Product Name
MF601F
Date
Jul. 03th, 2002
Issued By
Sundi Lin- Design Engineer, R&D_1
[email protected]
Approved By
Roger Wu – Manager, R&D_1
[email protected]
Issued Date
YCL Electronics Co., Ltd.
No.95, Feng Jen Road. Feng Shan City, Kaohsiung, Taiwan, R.O.C.
This controlled document is the property of YCL Electronics Co., Ltd. Any duplication
reproduction or transmission by unauthorized parties without the prior written
permission of YCL Electronics Co., Ltd. is prohibited.
Data sheet subject to change without notice
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SHEET 1 OF 10
Product Specification
MF601F
Table of contents
Item Description
Page
1.
Introduction
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3
2.
Reference
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3
3.
Abbreviations
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4
4.
Technical requirements
4.1. Schematic
4.2 : Electrical Specification
4.3 : DC characteristic
4.4 : Test methodology
4.4.1 : Insertion loss
4.4.2 : Return loss
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4
4
5
7
7
7
8
5
Environmental condition
5.1. Resistibility to overvoltage and
overcurrents
5.2. Climatic condition
5.2.1. Operating temperature
5.2.2. Storage and transport
5.2.3. Operating humidity
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9
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6
Reliabilty conditions
6.1.Thermal shock
6.2. Temperature humidity exposure
6.3. Vibration test
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7.
Mechanical condition
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10
Data sheet subject to change without notice
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Product Specification
MF601F
1. Introduction:
The in-Line Micro filter has been specifically designed to implement the functionality of low
pass filter in G.Lite system.G.Lite technology is similar to full rate ADSL in using DMT
technology but operates at a lower data rate of up to 1.5Mbps downstream and 512Kbps
upstream ,depending on line conditions and lengths.ADSL Lite is proposed as a lower speed
version of ADSL that will eliminate the need for telecom to install and maintain a premises
based POTS splitter. It was found necessary to include one or more low pass filters in series
with the POTS terminals in order to reliably achieve maximum data rates.
For POTS voice band service , the low pass filter provide protection from ADSL signal which
may impact through non-line or other effects remote devices(handset, fax, voice band modem
etc)and central office operation . For ADSL signal , it also provide protection from the high
frequency transient and impedance effect that occur during POTS operation(ringing
transients , on-hook,off-hook transient and so on).
Because the POTS splitter connects directly to the subscriber loop media , it must also
provide some protection for externally induced line hits or faults which could damage any
attached equipment or endanger humans interacting with the installed equipment.The circuit
protection will be provided mostly by standard central office line protection means and
additional protection measures built into pots splitter to protect against line overstress which
could damage the splitter itself.
2. Reference:
Ref. 1 :
Ref. 2 :
ETS 300 001
ANSI T1E1.4 G.992.2
Attachment to Public Switched Telephone Network
Network and Customer Installation Interface
Ref. 3 :
ITU-T K20
Resistibility of telecommunication switching
Equipment to overvoltages and overcurrents
Ref. 4 :
ITU-T K21
Data sheet subject to change without notice
Resistibility of subscribers terminal to overvoltage and
overcurrents
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Product Specification
MF601F
3. Abbreviations:
ADSL
CO
CPE
POTS
RT
ADSL-NT
Asymmetric Digital Subscriber Line
Central Office
Customer Premise Equipment.
Plain Old Telephone Service
Remote Terminal
Network termination of ADSL
4. Technical requirements:
4.1.Schematic:
The following drawing illustrate the schematic of this product.
Data sheet subject to change without notice
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Product Specification
MF601F
4.2 : Electrical Specification :
The low pass filter shall satisfy the following parametric limits with a complex impedance ZL
shown in this table across the Line side of this device .The following requirement is
specified for a single splitter and with three added parallel filters
Electrical requirements
Splitter parameter
Range
values
Frequency range
Splitter bandwith
DC to 3.4KHz
Nominal voice band
0.3KHz to 3.4KHz
Billing tone
12KHz±80Hz
Ringing frequency
15.3Hz to 68Hz
ADSL band
30KHz to 1104KHz
Line Impedance ZL
270ohm + (750ohm || 150nF)
CO impedance ZTc
270ohm + (750ohm || 150nF)
RT impedance ZTr
270ohm + (750ohm || 150nF)
Modem impedance
30KHz< f< 1104KHz
100 ohm
Operation voltage voice band
Nominal signal
21mVpp to 5.4 Vpp
Billing tone
10Vpp to 30.2Vpp
Ringing signal
40Vrms to 150Vrms(113Vpp
to 424 Vpp)
DC voltage
0V to -60V ANSI 6.98
Max. AC voltage
150Vrms with -105VDC offset
Max. differential
320V
Current voice band
Loop current
<100mA
Transient current(on/off hook)
<150mA
DC Resistance
DC Resistance
<=15.0 ohm
Isolation resistance tip/ring
>5 Mohm
Voice –band characteristic
Insertion loss single filter
1004Hz
<1.0dB
Attenuation relative to 1004Hz
200Hz<f<4KHz
<±1.0 dB
Data sheet subject to change without notice
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Product Specification
MF601F
Electrical requirements
Splitter parameter
Range
values
Insertion loss with three added
parallel filters
1004Hz
<2.0dB
Attenuation relative to 1004Hz
200Hz<f<4KHz
<±1.0 dB
Insertion loss with two added
parallel filters
200Hz<f<4KHz
<2.0dB
Delay distortion
200Hz<f<4KHz
<150 usec
Return loss single filter
200 Hz <f<500Hz
>=14.0dB
500Hz<f<2KHz
>=18.0dB
2KHz<f<3.4KHz
>=14.0dB
200Hz<f<500Hz
>=18.0dB
500Hz<f<2KHz
>=11.0dB
2KHz<f<3.4KHz
>=8.0dB
200Hz<f<500Hz
>=18.0dB
500Hz<f<2KHz
>=14.0dB
2KHz<f<3.4KHz
>=11.0dB
Return loss with three added
parallel filters
Return loss with two added
parallel filters
Isolation voltage
>2000Vrms for 1 minute
ADSL band characteristic
Stop band attenuation
25KHz<f<50KHz
>15 dB
50KHz<f<1MHz
>25 dB
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Product Specification
MF601F
4.3 : DC characteristic :
All requirement of this specification can be met in the presence of all POTS loop currents
from 0mA to 100mA. This in line filter can pass POTS tip-to-ring dc voltages of 0V to 105V
and ringing signals of 40V to 150Vrms at any frequency from15.3Hz to 68Hz with a dc
component in the range from 0V to 105V.
The DC resistance from tip-to-ring at the line port interface with the phone interface shorted,
shall be less than or equal to 15 ohms for one splitter.The DC resistance from tip-to-ground
and from ring-to-ground at the POTS interface with the U-R interface open shall be greater
than or equal to 5 Megohms. The ground point shall be local building or green wire ground.
As an objective , the dc resistance should exceed 10MΩ.
4.4 : Test method :
4.4.1 : Insertion loss :
The insertion loss of a device connected into a given transmission system is defined as
the ratio,expressed in dB, of the load power available(before and after insertion ) delivered
to the output network beyond the point of insertion at a given frequency.In general , the
insertion loss is defined as the ratio, expressed in dB of the power delivered to a load with
the circuit in place and the power delivered to a load without the circuit in place.The added
insertion loss shall be measured using the test up in figure 3. For measuring POTS band
insertion loss for single filter module also a single filter wit four added parallel load
filters.General Insertion loss equation can be expressed as following
Insertion loss = 20 log V2 / V1 dB where
V1 = the measured voltage value of load without LPF in circuit.
V2 = the measured voltage value of load with LPF in circuit.
The test setup is shown in drawing below. :
Remote POTS Splitter
ZL
Line
LPF
Phone
Test
Equipment
ZL
Load#1 LPF
ZL is normal Termination
Load#4 LPF
Data sheet subject to change without notice
in test set
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Product Specification
MF601F
4.4.2 : Return loss :
Return loss measure the amount of energy that is lost due to reflection which resulted
from impedance mismatching at the interface. Return loss is essentially defined as the
ratio of the power incident upon a given transmission system to the power reflected
caused by impedance mismatch with respect to reference impedance at the interface
between source and device.Return loss figure are a function of the impedance of the
circuit involved and are therefore frequency dependent.
These impedance must be closely maintained in order to reduce the possibility of
undesirable reflection and echoes which in long distance circuit the telephone user or
destroy the data being sent.To perform the return loss test ,open ,short,load calibration
must be done prior measurement while the LCZ impedance Analyzer being selected in
impedance mode. Return loss is general expressed in decibels. General Return loss
equation as below: Return loss = 20 log ZL + ZM / ZL - ZMdB
Where ZL = the reference impedance
ZM = the measured impedance
The test setup is shown in drawing below:
Remote POTS Splitter
ZL
Line
Phone
LPF
Test
Equipment
ZL
Load#1 LPF
Return loss reference
Load#4 LPF
Data sheet subject to change without notice
impedance
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Product Specification
MF601F
5. Environmental condition:
5.1. Resistibility to overvoltages and overcurrents:
The splitter has to comply with requirements as per ITU-T K.21.
5.2. Climatic conditions:
5.2.1. Operating temperature:
Application
indoor
Long time operation guarantee temperature ( 5 to 40 0C )
Short time operation guarantee temperature ( 0 to 50 0C )
( According to ETS 300 019, class 3.2 )
5.2.2. Storage and transport:
Low ambient temperature
- 20 0C
High ambient temperature
+85 0C
( According to MIL-STD-202 method 107 )
5.2.3. Operation humidity:
Long time operation guarantee humidity ( 5 to 85 % )
Short time operation guarantee humidity ( 5 to 90 % )
Short time : within 72 continuous hours and 15 days in a year
6. Reliability conditions:
6.1. Thermal shock :
Temperature from -20 °C to +85 °C for 5 cycles
(According to MIL-STD-202 , method 107)
6.2. Temperature humidity exposure :
+50 °C /95RH , 96hrs
(According to MIL-STD-202 , method 103)
6.3. Vibration test :
Random vibration , frequency 5-500Hz , sweep time :1 hr / axis /
Force : 2.4grams (According to MIL-STD-202 , method 204)
Data sheet subject to change without notice
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Product Specification
MF601F
7. Mechanical condition :
1
Note :
1. Unit : mm
2. Unless otherwise specified , all tolerances are ±0.5 mm
Data sheet subject to change without notice
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