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Part Manufacturer Description Datasheet BUY
TLE2426QDRQ1 Texas Instruments Automotive Rail Splitter Precision Virtual Ground 8-SOIC -40 to 125 visit Texas Instruments
TLE2426MDREP Texas Instruments Enhanced Product Rail Splitter Precision Virtual Ground 8-SOIC -55 to 125 visit Texas Instruments Buy
V62/06601-01XE Texas Instruments Enhanced Product Rail Splitter Precision Virtual Ground 8-SOIC -55 to 125 visit Texas Instruments
TLE2426QDRG4Q1 Texas Instruments Automotive Rail Splitter Precision Virtual Ground 8-SOIC -40 to 125 visit Texas Instruments Buy
HA1-5104-2 Intersil Corporation QUAD OP-AMP, 3000uV OFFSET-MAX, 60MHz BAND WIDTH, CDIP14 visit Intersil
HA2-2525-5 Intersil Corporation OP-AMP, 14000uV OFFSET-MAX, 20MHz BAND WIDTH, MBCY8 visit Intersil

band splitter

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: Finisar C/L Band Splitter The Finisar C/L Band Splitter is a wideband component for combining or splitting C and L band signals in optical networking systems. Through a patent-pending design, the product delivers exceptionally low insertion loss and minimal polarization dependent loss (PDL) and polarization mode dispersion (PMD). Features: Exceptionally low insertion loss Low polarization sensitivity High isolation High power handling Specifiacations: Parameters Reflect Channel Wavelength Range Finisar
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AF101

Abstract: HY24A o Yâ'" LL < CTI National Active Filters Jtiâ Semiconductor o v^ï AF101 High Band Splitter Filter General Description The AF101 is a fourth order high pass elliptic filter designed to pass frequencies above 1200 Hz. This filter is used to separate the high band of frequencies from the low band in a Dual Tone Multi Frequency (DTMF) Touch Tone® receiver. The unit is fully tuned and requires no external components â'" only power supply, input, and output connections. Features â  Fully
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HY24A AF101CJ 4th-order elliptic high pass filter at1336 Circuit diagram of fourth order low pass 1660H

d 1548

Abstract: stability < 1.0 pm / °C Applications DWDM channel add / drop multiplexing DWDM band splitter/combiner O , Wavelength nm 1550 nm window, ITU grid wavelengths C or L band available Passband (@ - 0.5 dB Bandwidth , Max. dB 1.2 reflect band Isolation Input-Drop ( Adjacent ) Min. dB 22 24/30 30
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d 1548 ADM-15 400GH

at1336

Abstract: 4th-order elliptic high pass filter o Yâ'" LL < CTI National Ã'jê Semiconductor Active Filters AFI01 High Band Splitter Filter General Description The AF101 is a fourth order high pass elliptic filter designed to pass frequencies above 1200 Hz. This filter is used to separate the high band of frequencies from the low band in a Dual Tone Multi Frequency (DTMF) Touch Tone® receiver. The unit is fully tuned and requires no external components â'" only power supply, input, and output connections. Features â  Fully tuned â  High input impedance â  Low
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h941 fourth order low pass filter fourth order band pass filter

DWDM demux

Abstract: wdm Mux 25 (H) DROP UA UA C/L Band Combiner UL UC Ch i * * Ch j Ch 15 Ch 16 C/L Band Splitter Ch 31 Ch 32 UL Ch 17 Ch 18 * * Ch 31 Ch 32 Key Performance dBm , X X A XXX Band Grade Starting Fre. C L A X 510: 195.1THz 520 , channels) ITU ITU Grid 1528 - 1565 ITU Grid (L Band) 1570 - 1610 - 3.0 dB Bandwidth , 1.0 dB Bandwidth Reference Level Insertion Loss Insertion Loss ITU Grid (C Band) -21
Avanex
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DWDM demux wdm Mux DWDM TECHNOLOGY dwdm mux dwdm* avanex 16 channel demux 200GH

wdm Mux 32 channel

Abstract: Avanex wavelength processor Channels 3: 100GHz 016 3 016 Unit D: DEMUX M: MUX X X A XXX Band Grade , ± 1.0 ± 1.5 Within Channel Passband ± 0.2 Ripple Isolation ITU Grid (L Band) Insertion Loss Insertion Loss ITU Grid (C Band) ± 0.25 Passband Flatness(k)(dB/nm) Wavelength , Wavelength (nm) Ch 1 Ch 2 Ch 3 Ch 4 UB UR UB Blue/Red Band Combiner Blue/Red Band Splitter UR Ch 5 Ch 6 Ch 7 Ch 8 Ch 1 Ch 2 Ch 3 Ch 4 Ch 5 Ch 6 Ch 7 Ch 8 Avanex
Avanex
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wdm Mux 32 channel Avanex wavelength processor 100GH

ch455

Abstract: Avanex Temperature (°C) 0 UB Blue/Red Band Splitter Blue/Red Band Combiner 65 -40 Ch 1 Ch 2 , Unit Channels 4: 200GHz 4 D: DEMUX M: MUX X X A XXX Band Grade , Parameters TM Channel Number Wavelength Specifications Min Typ Max ITU Grid (L Band , Grid (C Band) Wavelength Insertion Loss Variation (between channels) Reference Level
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ch455 Avanex

Avanex

Abstract: Avanex Power Mux 16 UB Blue/Red Band Splitter Blue/Red Band Combiner 65 -40 Ch 1 Ch 2 Ch 3 Ch 4 , Unit Channels 4: 200GHz 4 D: DEMUX M: MUX X X A XXX Band Grade , Bandwidth ± 0.45 Isolation 1528 - 1565 ITU Grid (L Band) Channel Passband (nm) Wavelength , (1.6 nm) Spacing ITU Grid (C Band) ITU ITU Grid Common Port 1­ Port 8 MUX: 3.0 DEMUX
Avanex
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Avanex Power Mux 16 avanex mux

AF103CJ

Abstract: AF103 AF103 National Semiconductor Active Filters AF103 Low Band Splitter General Description The A F103 is a fo u rth order e llip tic low pass filte r designed to reject frequencies above 1200 Hz and pass signals below 950 Hz. This filte r is used to separate the low band o f frequencies from the high band in a Dual Tone M ulti Frequency (DTM F) Touch Tone® receiver. The u n it is fu lly tuned and requires no exter nal components - on ly power supply, input and o u tp u t connections
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AF103CJ PJ 1209 in941 1200H

RX-28

Abstract: RX-2 -G s express port) realizes lower insertion loss for each channel. Configuration C or L band signals Blue / Red band splitter Demux Rx 1 Rx 2 Rx 3 Rx 4 Rx 5 Rx 6 Rx 7 Rx 8 MDM-15 8ch , with an additional band splitting filter to enable device cascading in DWDM systems. Model Variations
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RX-28 RX-2 -G s

SL2101 Application

Abstract: DVB-T front-end amplifier Tuner Direct Conversion Multi-Band Tuner Example SL2150 SL2610 Hi Band Mid Band Lo Band IF Input ADC Clock RF Input LNA & AGC Band Splitter SL2009 Dual Stage IF Amplifier with AGC 36/43MHz , . Industry's fastest auto scan capability (complete UHF band acquisition in under 6 seconds). Easy to program , . The RF input signal is passed through the SL2150 power splitter which provides four buffered outputs
Zarlink Semiconductor
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SL2101 Application DVB-T front-end amplifier MT352 36/43MH SL2101 PP5849

mk5102

Abstract: Mostek tone SCenmetek â u microelectronics D n- 7 CH1295/1296 O DTMF GROUP FILTERS GENERAL DESCRIPTION The Cermetek Filters CH1295 and CH1296 are band splitter filters designed for use as the front end of a DTMF receiver. When used in conjunction with a limiter and digital filter/ DTMF integrated circuit such as the Collins/ Rockwell CRC8030 or the Mostek MK5102, the combination produces the complete functions of a dual-tone multi-frequency receiver. Inasmuch as the specifications for receivers vary with
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K5102 Mostek tone CRC8 Mostek DTMF Mostek rockwell collins CHI19

MK5102

Abstract: CRC8030 SCenmetek â u microelectronics D n- 7 CH1295/1296 O DTMF GROUP FILTERS GENERAL DESCRIPTION The Cermetek Filters CH1295 and CH1296 are band splitter filters designed for use as the front end of a DTMF receiver. When used in conjunction with a limiter and digital filter/ DTMF integrated circuit such as the Collins/ Rockwell CRC8030 or the Mostek MK5102, the combination produces the complete functions of a dual-tone multi-frequency receiver. Inasmuch as the specifications for receivers vary with
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Increasing the Maximum Transmit Power Rating of a Power Amplifier Using a Power Combining Technique

Abstract: combiner THEORY phase mismatch is only due to the power splitter, PA, combiner, and board layout. A narrow band splitter/combiner can easily achieve less than a 5 degree phase imbalance while the PA contribution (such , is reversible and can be used as a power splitter when using the combined output as the input. There , combiner. Note that the power splitter insertion loss has no impact on OP1dB because it is placed before , sure the traces that connect each side of the splitter and combiner to the PAs have the same length
Skyworks Solutions
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Increasing the Maximum Transmit Power Rating of a Power Amplifier Using a Power Combining Technique combiner THEORY SKY65152-11

an10133

Abstract: Garage Door Opener remote circuit diagrams Industrial-Scientific-Medical (ISM) band for applications like wireless communication, LAN and video/TV signal transmission. It , Front-End together with Philips' SA2400A for 2.45 GHz ISM band 3rd edition RF Manual APPENDIX , ERC, CEPT Band Plan Start frequency NUS/EU=2402 (All)=2402 NUS/EU=2480 (All)=2495 78 , Front-End Demoboard BGA6589, BGU2003, BAP51-02 FEATURES § § § § § 2.4GHz ISM band operation , dB dB dB dB dB dB dB CHARACTERISTICS: LNA out of band gain For characterisation
Philips Components
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an10133 Garage Door Opener remote circuit diagrams capacitor 100nf 16v x7r 10 1005 murata philips rf manual TEA5767/68 balanced modulator ic 1496 BB202 BF1107/8

MOSFET TRANSISTOR SMD MARKING CODE nh

Abstract: Kathrein Antennas -33D Figure 2: The Generic Front-End together with Philips' SA2400A for 2.45GHz ISM band 4th edition RF , )=2495 ERC, CEPT Band Plan 2400MHz 2450MHz 2425MHz 50/ acc. CEPT Austria regulation , and matching RX band pass input filtering TX low pass spurious filtering Antenna connector, SMA , =wave-length inside the used µStrip 4 substrate within the pass band (center frequency). As explained in , 2.4GHz ISM band operation 50 female SMA connectors LNA, PA and SPDT on one board Supply control
Philips Components
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MOSFET TRANSISTOR SMD MARKING CODE nh Kathrein Antennas ASR-10SS Kathrein gsm ANTENNA murata filter cfm 455 d TRANSISTOR C 6090 EQUIVALENT BGA2715-17

201208A

Abstract: combiner THEORY from the same RF source, the phase mismatch is only due to the power splitter, PA, combiner, and board layout. A narrow band splitter/combiner can easily achieve less than a 5 degree phase imbalance , is reversible and can be used as a power splitter when using the combined output as the input , the power splitter insertion loss has no impact on OP1dB because it is placed before the PA, but does , splitter and combiner to the PAs have the same length, which will help to minimize any phase difference
Skyworks Solutions
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201208A passive RF splitter 2 way rf splitter circuit diagram wifi 2.4 ghz combiner wifi 2.4 ghz pcb layout

Nortel OC-48 TransportNode

Abstract: Nortel OC-48 classic . 57 Eight-Wavelength, 200-GHz Wavelength Grid DWDM Coupler with Per Band Access Building Block . 58 viii Contents Sixteen-Wavelength, 200-GHz Wavelength Grid DWDM Coupler with Per Band , with Per Band Access Building Block . 59 Two-Wavelength Add/Drop with MOR , amplifier) Red Band 1R 1B DWDM Coupler Red Band DWDM Coupler Extended reach via cascaded MORs/MOR Pluses OC-48/192 OC-48/192 Blue Band Red Band 16R Blue Band 16R Single
Nortel Networks
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Nortel OC-48 TransportNode Nortel OC-48 classic junglemux Lucent truewave Lucent truewave classic Lucent truewave plus 320-G OC-192

STA380BW

Abstract: . . . . . . . . . . . . . . . . . . . . . . . 28 4.3.1 4.3.2 Band splitter . . . . . . . . . . , . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 37 STC band splitter filters
STMicroelectronics
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STA380BW VQFN48 ID024543

sta381

Abstract: . . . . . . . . . . . . . . . . . . . . . 42 5.1 2/174 Band splitter . . . . . . . . . . . . , . . . . . . . . . . . . . . . 40 STC band splitter filters memory map. . . . . . . . . . . . . . .
STMicroelectronics
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sta381 STA381BW ID018835
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