CN201039100Y - Coaxial high-power low pass filtering-resistance converter - Google Patents

Coaxial high-power low pass filtering-resistance converter Download PDF

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Publication number
CN201039100Y
CN201039100Y CNU2007200114934U CN200720011493U CN201039100Y CN 201039100 Y CN201039100 Y CN 201039100Y CN U2007200114934 U CNU2007200114934 U CN U2007200114934U CN 200720011493 U CN200720011493 U CN 200720011493U CN 201039100 Y CN201039100 Y CN 201039100Y
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CN
China
Prior art keywords
low
impedance
transmission line
characteristic impedance
pass filtering
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CNU2007200114934U
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Chinese (zh)
Inventor
丛金涛
吕卫
么国静
董振刚
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ANSHAN JIZHAO ELECTRONICS Co Ltd
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ANSHAN JIZHAO ELECTRONICS Co Ltd
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Priority to CNU2007200114934U priority Critical patent/CN201039100Y/en
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Publication of CN201039100Y publication Critical patent/CN201039100Y/en
Anticipated expiration legal-status Critical
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Abstract

The utility model relates to a coaxial type high-power low-pass filter-impedance converter, which is characterized in that the device is coaxial structure and comprises the inner, outer conductors and the isolation supporting pieces, the inner, outer conductors and the medium between the inner, outer conductors form the high and low impedance transmission lines; the high and low impedance lines are arranged with interval, the isolation supporting pieces are arranged between the inner, outer conductors of the low characteristics impedance transmission line; the neighboring conductors are connected by screw thread. The utility model has the advantages that the relative band width is equal or bigger than thirty percent; the device has the low pass breadth one frequency characteristic, which can effectively restrain the quadratic or more harmonious wave in the system; the utility model device replaces the impedance converter in the multi-channel synthesis apparatus, which can save transmitter output low pass filter, the inserting losses of the RF output system are reduced, so the transmitter RF output system is simplified, and the costs are reduced.

Description

Coaxial high-power low-pass filtering-impedance converter
Technical field
The utility model relates to the impedance transformer in the wireless communication technique field, particularly a kind of coaxial high-power low-pass filtering-impedance converter.
Background technology
Impedance transformer is extensive use of in wireless telecommunications transmitter and antenna, is a key technology of designing high-power multichannel RF synthesizer, and impedance transformer is finished two different impedance Z usually LTo Z HConversion (Z L<Z H), impedance no-load voltage ratio r=Z H/ Z L1; In the synthesizer of transmitter n road (n is a positive integer), common ZH=50 Ω, ZL=112.5/n; The major function of common impedance transformer is impedance conversion, even it has the low pass width of cloth-frequency characteristic, but its stopband characteristic is relatively poor, therefore also needs to use low pass filter in transmitter usually.
The utility model content
The utility model purpose provides a kind of coaxial high-power low-pass filtering-impedance converter, is applied in the radio and television transmitter in the multiplexer, makes it possess impedance conversion and two kinds of functions of low pass filtered simultaneously; Impedance no-load voltage ratio r=1.33~10.7, relative bandwidth 〉=30%, power capacity 〉=10KW; Replace impedance transformer in the former synthesizer with this equipment, save the output low pass filter, this simplifies transmitter RF output, inserts loss and reduces, and reduces equipment cost.
In order to realize the purpose of this utility model, the utility model adopts technical scheme as follows:
Coaxial high-power low-pass filtering-impedance converter is characterized in that: this equipment is coaxial configuration, is made up of outer conductor, inner wire and insulated supporting plate; Inner and outer conductor and between medium constitute transmission line, comprise high characteristic impedance transmission line and low characteristic impedance transmission line; Eight sections high and low impedance transmission lines of low-pass filtering-impedance transformer network of forming are distributed in distance, i.e. " height-low-Gao-low-Gao-low-Gao-low " structure; Be provided with insulated supporting plate between the low characteristic impedance transmission line inner and outer conductor, adopt between the adjacent inner conductors to be threaded.
Characteristic impedance span 100~120 Ω of high characteristic impedance transmission line, low characteristic impedance line characteristic impedance span 5~10 Ω, eight joint inner wire length L<λ g/8 of low-pass filtering-impedance transformer network of forming, wavelength when wherein λ g passes through transmission line for the working frequency range center frequency signal.
Advantage of the present utility model is:
● broad working band, relative bandwidth 〉=30%;
● equipment has the fabulous low pass width of cloth-frequency characteristic, the above harmonic wave of secondary and secondary in the effectively inhibition system;
● replace former multiplexer middle impedance converter with the utility model equipment, can save transmitter output low pass filtered
The ripple device, transmitter RF output system is simplified, and the RF output system is inserted loss and is reduced;
● device fabrication is simple, and the utility model is the electric property that guarantees equipment with the machine components size, as long as the machine components ERROR CONTROL is in allowed limits, equipment does not need debugging when producing.
Description of drawings
Fig. 1: coaxial high-power low-pass filtering-impedance converter structure chart
Fig. 2: coaxial high-power low-pass filtering-impedance converter equivalent electric schematic diagram
Fig. 3: FM frequency range No. 8 synthesizer theory diagrams
Fig. 4: FM frequency range 14.06 Ω → 50 Ω low-pass filtering-impedance converter characteristic curves
Embodiment
Below in conjunction with accompanying drawing the utility model is described in further detail:
Coaxial high-power low-pass filtering-impedance converter, structure is seen Fig. 1, it is characterized in that: equipment is coaxial configuration, is made up of outer conductor M1, inner wire T0~T9, insulated supporting plate E1~E4; (air and insulated supporting plate E1~E4) constitute transmission line TL0~TL9 for inner and outer conductor and the medium between them; The TL0 characteristic impedance is Z L, the TL9 characteristic impedance is ZH, impedance no-load voltage ratio r=ZH/ZL; TL1, TL3, TL5, TL7 characteristic impedance span 100~120 Ω, because its characteristic impedance is higher, we are called the high resistant transmission line; TL2, TL4, TL6, TL8 characteristic impedance span 5~10 Ω, because its characteristic impedance is lower, we are called low-resistance transmission line; TL1~TL8 constitutes impedance conversion and low-pass filter network; The length L of inner wire T1~T8<λ g/8, wavelength when wherein λ g passes through transmission line for the working frequency range center frequency signal.
With the equivalence of high resistant transmission line is series inductance, and the low-resistance transmission line equivalence is a shunt capacitance, and the equivalent electric schematic diagram of low-pass filtering-impedance transformer network that TL1~TL8 forms as shown in Figure 2; As impedance no-load voltage ratio r=Z H/ Z L=1.33~10.7, each device normalized parameter span sees Table one among Fig. 2:
Table one:
L1 C1 L2 C2 L3 C3 L4 C4
0.4~1.5 0.5~1.5 1.1~4.5 0.35~2 1.2~7.5 0.2~1.5 1.0~11.0 0.05~0.7
We need design No. 8 synthesizers that use in the FM broadcast transmitter, operating frequency range 88~108MHz, theory diagram is seen Fig. 3, power capacity〉10KW; The function that needs impedance transformer wherein to finish is: with impedance Z L=14.06 Ω transform to Z H=50 Ω can surpass 35dB to the inhibition ability of secondary and above harmonic wave simultaneously.We can take following method to realize:
Adopt coaxial type structure shown in Figure 1, it is the 79.4mm copper pipe that outer conductor M1 adopts external diameter, and inner wire T1~T8 adopts copper or aluminium, and insulated supporting plate E1~E4 adopts polytetrafluoroethylmaterial material, its relative dielectric constant ε r=2.1; Adopt " being threaded " method between the adjacent inner wire, for example T1 and T2, T2 and T3, T3 and T4...... etc. in the drawings.
Line characteristic impedance is selected: TL0 characteristic impedance Z L=14.06 Ω, TL9 characteristic impedance Z H=50 Ω for convenience of calculation, all select 110 Ω with high resistant line TL1, TL3, TL5, TL7 characteristic impedance, and 7 Ω are all selected in low-resistance line TL2, TL4, TL6, TL8 characteristic impedance, according to TL0~TL9 characteristic impedance, calculate the diameter of T0~T9.
According to impedance no-load voltage ratio r=Z H/ Z L, known quantity such as relative bandwidth calculates or tables look-up and obtain each device normalized parameter of equivalent electric circuit (Fig. 2), carries out anti-normalization again and calculates, and obtains inductance in the circuit, capacitance parameter; Use high resistant transmission line equivalent series inductance at last, low-resistance transmission line equivalent parallel electric capacity calculates the length of T1~T8.T0 and T9 length can be according to the practical structures size Selection.
Because there is distributed capacitance in the high resistant transmission line, there is distributed inductance in low-resistance transmission line, therefore needs to adopt " repeatedly approaching " method to improve design accuracy when designing and calculating.
Fig. 4 is a simulation curves of the present utility model, by this curve as can be seen, in working band 88~108MHz, inserts loss<0.1dB, and reflection loss is better than-30dB, to second harmonic with upper frequency (〉 176 MHz) the inhibition ability surpasses 40dB.Because its good broadband performance can be operated on the optional frequency of FM frequency range 88~108MHz power capacity〉10KW.
The above the utility model for convenience of description that only gives an actual example, the person of ordinary skill in the field can be according to the impedance no-load voltage ratio, given prototype circuit normalized parameter in relative bandwidth and the table one, carry out " anti-normalization " conversion, the utility model equipment can be operated in other frequency range, VHF-1 wave band for example, the VHF-III wave band, in the UHF television transmitter, if we have determined the characteristic impedance of TL1~TL8, when the impedance no-load voltage ratio, relative bandwidth, when operating frequency changed, the utility model equipment overall structure only was embodied in the variation and the equipment overall structure change in size of T1~T8 length; Therefore these aspects all should be included in the above claim.

Claims (2)

1. coaxial high-power low-pass filtering-impedance converter, it is characterized in that: this equipment is coaxial configuration, is made up of outer conductor, inner wire and insulated supporting plate; Inner and outer conductor and between medium constitute transmission line, comprise high characteristic impedance transmission line and low characteristic impedance transmission line; Eight sections high and low impedance transmission lines of low-pass filtering-impedance transformer network of forming are distributed in distance; Be provided with insulated supporting plate between the low characteristic impedance transmission line inner and outer conductor, adopt between the adjacent inner conductors to be threaded.
2. coaxial high-power low-pass filtering-impedance converter according to claim 1, it is characterized in that: characteristic impedance span 100~120 Ω of high characteristic impedance transmission line, low characteristic impedance line characteristic impedance span 5~10 Ω, eight joint inner wire length L<λ g/8 of low-pass filtering-impedance transformer network of forming, wavelength when wherein λ g passes through transmission line for the working frequency range center frequency signal.
CNU2007200114934U 2007-04-06 2007-04-06 Coaxial high-power low pass filtering-resistance converter Expired - Fee Related CN201039100Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2007200114934U CN201039100Y (en) 2007-04-06 2007-04-06 Coaxial high-power low pass filtering-resistance converter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2007200114934U CN201039100Y (en) 2007-04-06 2007-04-06 Coaxial high-power low pass filtering-resistance converter

Publications (1)

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CN201039100Y true CN201039100Y (en) 2008-03-19

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101056094B (en) * 2007-04-06 2010-04-21 鞍山吉兆电子有限公司 Coaxial high-power low-pass filtering-impedance converter
CN102610878A (en) * 2011-09-30 2012-07-25 电子科技大学 Coaxial low-pass filter
CN108206321A (en) * 2018-01-15 2018-06-26 南京福客通信设备有限公司 A kind of coaxial power splitter of ultra wide band

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101056094B (en) * 2007-04-06 2010-04-21 鞍山吉兆电子有限公司 Coaxial high-power low-pass filtering-impedance converter
CN102610878A (en) * 2011-09-30 2012-07-25 电子科技大学 Coaxial low-pass filter
CN102610878B (en) * 2011-09-30 2014-06-18 电子科技大学 Coaxial low-pass filter
CN108206321A (en) * 2018-01-15 2018-06-26 南京福客通信设备有限公司 A kind of coaxial power splitter of ultra wide band

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20080319

Termination date: 20110406