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108MHz

Catalog Datasheet MFG & Type PDF Document Tags

NE564

Abstract: fsk ne564 INTEGRATED CIRCUITS AN1801 10.8MHz FSK decoder with NE564 1987 Feb Philips Semiconductors Philips Semiconductors Application note 10.8MHz FSK decoder with NE564 AN1801 as a DC offset , . Figure 3 shows an unmodulated 10.8MHz input signal and the VCO output. Note the approximate 90° phase , frequency of 10.8MHz. The value of the timing capacitance required was estimated from Figure 4a to be approximately 40pF. A trimmer capacitor was added to fine tune fO' to 10.8MHz. Figure 2b indicates that the
Philips Semiconductors
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SL01044 fsk ne564 FSK DEcoder 108MHz circuit fsk modulation and demodulation pll 564 datasheet SL01042 SL01043 SL01045 SL01046

3717d

Abstract: 108MHz 110 108 52 120 45 Return Loss: Insertion Loss: -6.11dB @ 52MHz -6.20dB @ 108MHz -20.04dB @ 52MHz -20.28dB @ 108MHz Return Loss: Insertion Loss: -6.13dB @ 45MHz -6.21dB @ 120MHz , Loss: -6.11dB @ 52MHz -6.20dB @ 108MHz -38.81dB @ 52MHz -30.95dB @ 108MHz Insertion Loss , Isolation (near): Isolation (near): -22.83dB @ 52MHz -25.43dB @ 108MHz -21.08dB @ 45MHz -22.83dB @ 120MHz Isolation (far): Isolation (far): -37.17dB @ 52MHz -32.39dB @ 108MHz DS98009B
RFGain
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3717d 108MHz vhf power combiner power divider combiner 2108d 2283d DC04Y01VLA DS98009B-01 108MH 120MH

AN1801

Abstract: Signetics NE564 Signetics AN1801 10.8MHz FSK Decoder With NE564 Application Note Linear Products FSK , designed for input frequency deviations of ± 1.0MHz centered around a free-running fre quency of 10.8MHz , trimmer capacitor was added to fine tune fo ' to 10.8MHz. Figure 2b indicates that the 1 1 OMHz fre quency , frequencies were measured for a Pin 2 b ia s c u r r e n t of 3 7 5 p A and fo' = 10.8MHz as: u c = ? :% , DC voltage would act as a DC offset to shift fo' from 10.8MHz. Balanced biasing with the 1.0ki2
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OCR Scan
Signetics NE564 kdk0

108MHZ

Abstract: 2436D 130 150 170 MHz IL 52 108 120 45 Insertion Loss: -3.12dB @ 52MHz -3.20dB @ 108MHz Return Loss: -26.51dB @ 52MHz -24.17dB @ 108MHz Isolation: Insertion Loss: -3.30dB @ 45MHz , -23.20dB @ 108MHz -26.12dB @ 45MHz -23.16dB @ 120MHz IL IS RL -2.4 30 15 -2.6 , Insertion Loss: -3.12dB @ 52MHz -3.20dB @ 108MHz Return Loss: -26.49dB @ 52MHz -34.17dB @ 108MHz , : -24.36dB @ 45MHz -90.13dB @ 120MHz Isolation: -32.53dB @ 52MHz -23.20dB @ 108MHz Isolation
RFGain
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2436D 312-DB 52MHz 3417D DC02Y10VLA DS98007B-01

108MHz

Abstract: LPF88A ~ 108 3.0 (88MHz ~ 108MHz) LPF88B 88 ~ 108 3.0 (88MHz ~ 108MHz) LPF88A5 88 ~ 108 3.0 (88MHz ~ 108MHz) 3.5 (76MHz ~ 88MHz) LPF76K 76 ~ 108 3.0 (76MHz ~ 108MHz) Part Number
Chequers Electronic
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LPF88A 88-108 Chequers Electronic 88-MHz b88ac C 3205 2002/95/EC 170MH 250MH
Abstract: 50â"¦, FM gain connected to ground, tuned for 87MHz to 108MHz, TA = +25°C.) (Note 2) PARAMETER , to 108MHz (Note 3) 0.5 162.5MHz relative to 97MHz Gain Flatness dB 3.2 dB Noise , 107 Relative to 97MHz tone (76MHz to 108MHz) ±0.3 dBµV dB Min and max values are , Application Circuit, VDD = 5V, tuned for 87MHz - 108MHz, FM gain connected to ground, TA = +25°C, unless , toc04 3.8 6 FREQUENCY (MHz) NOISE FIGURE vs. FREQUENCY 87MHz TO 108MHz TUNING 4.0 7 Maxim Integrated Products
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MAX2181A T1633

MAX2181

Abstract: MAX2181A 87MHz to 108MHz, TA = +25°C.) (Note 2) PARAMETER Frequency Range fIN = 97MHz, FMGAIN connected to VDD , Threshold (See Table 2) AGC Threshold Variation 87MHz to 108MHz (Note 3) 162.5MHz relative to 97MHz fIN = , 100.5MHz tones Minimum output threshold Maximum output threshold Relative to 97MHz tone (76MHz to 108MHz , Application Circuit, VDD = 5V, tuned for 87MHz - 108MHz, FM gain connected to ground, TA = +25°C, unless otherwise noted.) GAIN vs. FREQUENCY 87MHz TO 108MHz TUNING 57 56 SUPPLY CURRENT (mA) 55 GAIN (dB) 8 7 6
Maxim Integrated Products
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MAX2181

32V siemens PLC

Abstract: 22pf 108MHz PUSH­PULL FEATURES · SIMPLIFIED AMPLIFIER DESIGN E (4 pls) F I N M O J K · , VGS = 20V ID = 10mA VDS = 10V PO = 400W VDS = 28V f = 108MHz IDQ = 2A ID = 100mA VGS = 0 VDS = 0 VDS = , 20 19 18 17 16 15 0 50 Class C 32V Class A/B 32V Class C 28V Class A/B 28V f = 108MHz 0 2 4 6 8 10 12 14 16 Class C 32V Class A/B 32V Class C 28V Class A/B 28V f = 108MHz 100 150 200 250 300 , OPTIMUM SOURCE AND LOAD IMPEDANCE Class C 32V Class A/B 32V Class C 28V Class A/B 28V f = 108MHz
Semelab
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32V siemens PLC 22pf RF amplifier output 400W input 10 w D1040UK F//68 B62152A1X1

LB070DS23

Abstract: Linearity(f0±10.8MHz) deg - 7 12 Group Delay Variation(f0±10.8MHz) nsec - 50 100 , 65 70 75 80 85 Group Delay Variation(f0±10.8MHz) Phase Linearity(f0±10.8MHz
SIPAT
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LB070DS23 SMD13

Crystal Oscillator 14.31818MHz

Abstract: 74FXX VSSOSC 4 13 10_8MHz/SEL10_8* T VSSB1 5 12 12MHz/VDD_SEL* v 24.576MHz/SST0* T 6 , VSSB1: 24.576MHz. VDDB2 ­ VSSB2: 27MHz, 10_8MHz, and 12MHz. VDD25M ­ VSS25M: 25MHz, (10_8MHz, 12MHz , _8 10_8MHz ( pin 13 ) Table 2. POWER SELECTION TABLE Output Frequency M VDD25M 8MHz 1 , 24.576MHz (pin7) 24.576MHz (pin6) 25MHz 12MHz PLL2 10_8MHz SEL10_8 Note 1: In order to use VDD25M as power source for 10_8MHz (pin 13), 24 .576MHz (pin 7), and 12MHz (pin 12), it is necessary to
PhaseLink
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PLL702-02XCR PLL702-02XC Crystal Oscillator 14.31818MHz 74FXX AC97 14.31818MHZ PLL702-02 318MH 576MH IEEE1394 IEEE802
Abstract:  108MHz PUSHÂPULL E (4 pls) F I FEATURES • SIMPLIFIED AMPLIFIER DESIGN N O M , Tolerance f = 108MHz IDQ = 2A PER SIDE Ciss Input Capacitance VDS = 28V VGS = â'"5V f = , Class A/B 28V f = 108MHz 300 200 100 0 20 19 17 16 15 0 2 4 6 8 Pin (W) 10 12 14 Class C 32V Class A/B 32V Class C 28V Class A/B 28V f = 108MHz 18 16 0 , 60 50 Class C 32V Class A/B 32V Class C 28V Class A/B 28V f = 108MHz 40 30 20 Semelab
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D1040UK

Abstract: 108MHz 400W ­ 28V ­ 108MHz PUSH­PULL E (4 pls) F FEATURES I · SIMPLIFIED AMPLIFIER DESIGN N , 108MHz IDQ = 2A PER SIDE Ciss Input Capacitance VDS = 28V VGS = ­5V f = 1MHz 380 pF , 400 Class C 32V Class A/B 32V Class C 28V Class A/B 28V f = 108MHz 300 200 100 0 Gain , Class C 32V Class A/B 32V Class C 28V Class A/B 28V f = 108MHz 18 16 0 50 Figure 1 , 32V Class A/B 32V Class C 28V Class A/B 28V f = 108MHz 40 30 20 Frequency MHz ZS W
Semelab
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power dissipation fet 400W 064R UT85

108MHz

Abstract: TD 1.65MHz 108MHz SAW Filter 1.65MHz Bandwidth China Electronics Technology Group Corporation No.26 Research Institute SIPAT Co., Ltd. Part Number: www.sipatsaw.com LBS10802 Specifications , / sawmkt@sipat.com 108MHz SAW Filter 1.65MHz Bandwidth China Electronics Technology Group Corporation No , Rev. 1.0 Fax: +86-23-62805284 Page 2/4 www.sipatsaw.com / sawmkt@sipat.com 108MHz , www.sipatsaw.com / sawmkt@sipat.com 108MHz SAW Filter 1.65MHz Bandwidth China Electronics Technology Group
SIPAT
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TD 1.65MHz 922359 DIP3512 775KH
Abstract: 400W ­ 28V ­ 108MHz PUSH­PULL FEATURES · SIMPLIFIED AMPLIFIER DESIGN E (4 pls) F I N M O , VGS = 0 VDS = 28V VGS = 20V ID = 10mA VDS = 10V PO = 400W VDS = 28V f = 108MHz IDQ = 2A ID = 100mA VGS , 28V Class A/B 28V f = 108MHz 0 2 4 6 8 10 12 14 16 Class C 32V Class A/B 32V Class C 28V Class A/B 28V f = 108MHz 100 150 200 250 300 350 400 450 500 550 Pin (W) Pout (W) Figure 1 Output , 28V Class A/B 28V f = 108MHz Frequency MHz 108 ZS 1.5 + j3.5 ZL 1.5 - j0.4 Pout (W Semelab
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GTVSB3

Abstract: soshin SOSHIN ELECTRIC CO., LTD. Page 1 of 3 GTVSB3 FMTV Separator Applocation for Spurious reduction Characteristics GTVSB3 Zin/Zout Pass Band Insertion Loss 75 ohm Nominal Low 59 up to 108MHz High 162 up to 216MHz Low 3.0dB max (76 up to 108MHz) High 3.0dB max (162 up to 216MHz) Low 15dB min (162 up to 216MHz) Attenuation High 10dB min (59 up to 108MHz) High 15dB min (350 up to 500MHz) Number of ordered pieces 2000pcs/Reel Dimensions http://info.tactnet.co.jp/cgi-bin/soshin
Soshin Electric
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GTVSB3 soshin Soshin Electric Co 216MH 500MH

UT85 coaxial

Abstract: 43 toroid core 400W ­ 28V ­ 108MHz PUSH­PULL E (4 pls) F I FEATURES · SIMPLIFIED AMPLIFIER DESIGN N O , Drain Efficiency VDS = 28V VSWR Load Mismatch Tolerance f = 108MHz IDQ = 2A PER SIDE , Class C 28V Class A/B 28V f = 108MHz 300 200 100 0 Gain dB Pout (W) 21 400 20 19 , C 28V Class A/B 28V f = 108MHz 18 16 0 50 Figure 1 Output Power vs. Input Power , 28V Class A/B 28V f = 108MHz 40 20 Frequency MHz 10 0 0 100 200 300
Semelab
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UT85 coaxial 43 toroid core D10-40 UT85 coax UT85 COAXIAL CABLE siemens plc

SD1460

Abstract: 150 W - 108MHz VHF POWER TRANSISOTR 108MHz 150 Watt Pout 28V Supply lOdB Gain Gold , Common-Emitter Amplifier Gain (VCE=28V, pout=150W, f= 108MHz) cob 9.2 Collector Efficiency (VCE = 28V, pout=150W, f -108MHz) Eff 70 Typ LOAD Mismatch (VCE=28V, pout=150W, fM 08MHz) Load VSWR =
New Jersey Semiconductor
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SD1460

SMPTE-274M

Abstract: SMPTE-293M HD YPrPb HD RS-170 HD RS-343A SD RGB CVBS SD YUV S-Video (Y/C) 8x SD 108MHz 4x PS 108MHz , -343A SD RGB CVSB SD YUV S-Video (Y/C) 8x SD 108MHz 4x PS 108MHz 2x HDTV 148.5MHz yes no A
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T-1004 SMPTE-274M SMPTE-293M SMPTE-296M smpte 296m SMPTE 170M SMPTE296M ADV7300A ADV7301A ADV7304A ADV7305A BT1358

24.576MHZ

Abstract: xtal 12MHz 3 14 VSSB2 VSSOSC 4 13 10_8MHz/SEL10_8* T VSSB1 5 12 12MHz/VDD_SEL* v , digital part. VDDB1 ­ VSSB1: 24.576MHz. VDDB2 ­ VSSB2: 27MHz, 10_8MHz, and 12MHz. VDD25M ­ VSS25M: 25MHz, (10_8MHz, 12MHz, 24.576MHz when power VDDB1, VDDB2 not present). +/- 0.5 % 0 16 +/- , . FREQUENCY SELECTION TABLE SEL10_8 10_8MHz ( pin 13 ) Table 2. POWER SELECTION TABLE Output , ) VDD25M 25MHz VDD25M VDDB2 12MHz PLL2 VDD25M VDDB2 10_8MHz SEL10_8 Note 1: In order to use
PhaseLink
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24.576MHZ xtal 12MHz

MX69V28F64BBXJW

Abstract: MX69V28F64 MX69V28F64BBXJW 128Mb 108MHz 108MHz Boot Sector Type 7.7x6.2x1.2 56-TFBGA Bottom MX69V28F64BBXLW 128Mb 108MHz 108MHz 7.7x6.2x1.05 56-TFBGA Bottom MX69V28F64MBXLW 128Mb 108MHz 108MHz 7.7x6.2x1.05 56-TFBGA Bottom Device Flash Density Flash Speed P/N:PM1751 pSRAM
Macronix International
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MX69V28F64 128M-BIT

blf574

Abstract: Anzac CH132 INTEGRATED CIRCUITS AN1801 10.8MHz FSK decoder with NE564 1987 Feb Philips Semiconductors Philips Semiconductors Application note 10.8MHz FSK decoder with NE564 AN1801 as a DC offset , . Figure 3 shows an unmodulated 10.8MHz input signal and the VCO output. Note the approximate 90° phase , frequency of 10.8MHz. The value of the timing capacitance required was estimated from Figure 4a to be approximately 40pF. A trimmer capacitor was added to fine tune fO' to 10.8MHz. Figure 2b indicates that the
NXP Semiconductors
Original
blf574 Anzac CH132 amidon BN-61-202 ATC100B6R8CT500X NARDA 3020A bn-61-202 AN10714 BLF574

blf578

Abstract: BN-61-202 3 14 VSSB2 VSSOSC 4 13 10_8MHz/SEL10_8* T VSSB1 5 12 12MHz/VDD_SEL* v , digital part. VDDB1 ­ VSSB1: 24.576MHz. VDDB2 ­ VSSB2: 27MHz, 10_8MHz, and 12MHz. VDD25M ­ VSS25M: 25MHz, (10_8MHz, 12MHz, 24.576MHz when power VDDB1, VDDB2 not present). +/- 0.5 % 0 16 +/- , . FREQUENCY SELECTION TABLE SEL10_8 10_8MHz ( pin 13 ) Table 2. POWER SELECTION TABLE Output , ) VDD25M 25MHz VDD25M VDDB2 12MHz PLL2 VDD25M VDDB2 10_8MHz SEL10_8 Note 1: In order to use
NXP Semiconductors
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AN10800 blf578 BLF578 fm band cw 7808 ATC100B391 BN61202 ATC100B391JT500X BLF578

NIPPON CAPACITORS

Abstract: MRF6VP2600HR6 110 108 52 120 45 Return Loss: Insertion Loss: -6.11dB @ 52MHz -6.20dB @ 108MHz -20.04dB @ 52MHz -20.28dB @ 108MHz Return Loss: Insertion Loss: -6.13dB @ 45MHz -6.21dB @ 120MHz , Loss: -6.11dB @ 52MHz -6.20dB @ 108MHz -38.81dB @ 52MHz -30.95dB @ 108MHz Insertion Loss , Isolation (near): Isolation (near): -22.83dB @ 52MHz -25.43dB @ 108MHz -21.08dB @ 45MHz -22.83dB @ 120MHz Isolation (far): Isolation (far): -37.17dB @ 52MHz -32.39dB @ 108MHz DS98009B
Freescale Semiconductor
Original
MRF6VP2600HR6 NIPPON CAPACITORS Tantalum chip Capacitor 226 20k Nippon chemi MRF6VP2600HR6 application notes MRF6VP2600H

MRF6VP2600H

Abstract: ATC100B101JT500XT BUSINESS UNIT MULTIMEDIA MPEG2 decoder with 20 Mbit embedded SDRAM RAMPEG MB87P2030 High Performance System / Low System Cost < Very high Level of Integration < embedded SDRAM - 20 Mbit < two ARCs @ 108MHz < High Performance Display Controller < two Color Encoder < two Transport Stream Interfaces < High , FEATURE (2) High Performance Processors < System ARC, 32 bit RISC CPU @ 108MHz, 4KByte I-Cache, 2KByte , Optimized Low Level API Function from Fujitsu User ARC, 32 bit RISC CPU @ 108MHz, 4KByte I-Cache
Freescale Semiconductor
Original
ATC100B101JT500XT DVB-T Schematic ferrite transformer 0.14 ratio push pull an power 88-108 mhz transformer calculator ATC200B103KT50XT

PF38F5060M0Y0C0

Abstract: Migration Guide for Intel StrataFlash Memory J VSSOSC 4 13 10_8MHz/SEL10_8* T VSSB1 5 12 12MHz/VDD_SEL* v 24.576MHz/SST0* T 6 , VSSB1: 24.576MHz. VDDB2 ­ VSSB2: 27MHz, 10_8MHz, and 12MHz. VDD25M ­ VSS25M: 25MHz, (10_8MHz, 12MHz , _8 10_8MHz ( pin 13 ) Table 2. POWER SELECTION TABLE Output Frequency M VDD25M 8MHz 1 , 24.576MHz (pin7) 24.576MHz (pin6) 25MHz 12MHz PLL2 10_8MHz SEL10_8 Note 1: In order to use VDD25M as power source for 10_8MHz (pin 13), 24 .576MHz (pin 7), and 12MHz (pin 12), it is necessary to
Intel
Original
PF38F5060M0Y0C0 Migration Guide for Intel StrataFlash Memory J strataflash 512mbit PF38F4060 3093* intel PF38F4050M0Y0C0 512-M 256-M 256-K 128-M 309823-005US ECR14

MRF6VP2600H

Abstract: T1Z20 130 150 170 MHz IL 52 108 120 45 Insertion Loss: -3.12dB @ 52MHz -3.20dB @ 108MHz Return Loss: -26.51dB @ 52MHz -24.17dB @ 108MHz Isolation: Insertion Loss: -3.30dB @ 45MHz , -23.20dB @ 108MHz -26.12dB @ 45MHz -23.16dB @ 120MHz IL IS RL -2.4 30 15 -2.6 , Insertion Loss: -3.12dB @ 52MHz -3.20dB @ 108MHz Return Loss: -26.49dB @ 52MHz -34.17dB @ 108MHz , : -24.36dB @ 45MHz -90.13dB @ 120MHz Isolation: -32.53dB @ 52MHz -23.20dB @ 108MHz Isolation
Freescale Semiconductor
Original
T1Z20 j185 EKME630ELL471MK25S MOSFET IRL A114 A115
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