The Datasheet Archive

Top Results (6)

Part Manufacturer Description Datasheet Download Buy Part
LTM8022IV#PBF-ES Linear Technology 1A, 36V DC/DC Module
LTM8020IV#PBF-ES Linear Technology 200mA, 36V DC/DC Module
LTM8023IV#PBF-ES Linear Technology 2A, 36V DC/DC Module
LT5528EUF#3BTPBF Linear Technology 1.5GHz to 2.4GHz High Linearity Direct Quadrature Modulator
LT5528EUF#3BTTRPBF Linear Technology 1.5GHz to 2.4GHz High Linearity Direct Quadrature Modulator
LT5568EUF#TR Linear Technology RF/Microwave Modulator/Demodulator, 700 MHz - 1050 MHz RF/MICROWAVE I/Q MODULATOR, 4 X 4 MM, PLASTIC, MO-220WGGC, QFN-16

AV RF modulator Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
1998 - VGA Splitter block diagram

Abstract: AV RF modulator AD7720 AV to rf converter AV to VGA converter digital Serial FIR Filter AD7015 2 Port VGA Splitter
Text: Modulator AV DD AG N D DV D D DG N D REF 1 2. 5 V Refer ence REF 2 ADA TA ASC LK FEATURES · 13 MHz , Filter ASIC AD7724 Sigma Delta Modulator External RC Filter 0o RF to IF Down Converter Digital , Quadrature Modulator Modulator D/A(s) D/A(s) Gain Block Power Power Controller Controller Logamp , Atten/ VGA 90° Q Gain Block Quadrature Quadrature Modulator Modulator a Logamp Power Power Controller Controller AD7720: CMOS Sigma-Delta Modulator AVDD AGND DVDD DGND REF1 FEATURES


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PDF AD7720 AD7724 AD7339 VGA Splitter block diagram AV RF modulator AD7720 AV to rf converter AV to VGA converter digital Serial FIR Filter AD7015 2 Port VGA Splitter
2001 - AV RF modulator

Abstract: tcm RF modulator RF modulator ML6416 ML6416CS
Text: AV Notch Attenuation (Note 3) At 4.2MHz -17 dB Tpd Group Delay, RF Modulator Output , Y, C, and CV Better than 1dB flatness to 4.5 MHz on Y, C, and CV RF Modulator output differential , VCC 5V supply 8 YOUT Luminance output Luminance input Output to RF modulator driver , output pin) can be driven without stability or slew issues. RF Modulator Output The RF modulator , tSKEW Skew Between Y & C Outputs at 1MHz 0 ns Tpd Group Delay RF Modulator Output f


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PDF ML6416 ML6416 DS30006416 AV RF modulator tcm RF modulator RF modulator ML6416CS
2000 - MQE 550-902

Abstract: quadrature mixer MQE MURATA RF133 mqe550 Murata MQE 550-902 AV RF modulator 550-902 murata intermediate frequency filter for GSM900 MURATA MQE
Text: RF133 RF /IF Transceiver For GSM Applications The RF133 RF /IF Transceiver is a highly integrated , amplifiers. The transmit path of the device consists of an I/Q modulator and a frequency translation loop , between the RF input, Local Oscillator (LO), and IF inputs. · Quadrature demodulator for , for the transmit path · Broad RF and IF range for multi-band operation · Integrated selectable local , Change 100776A October 8, 1999 +20 dB +20 dB +18 dB RXIFF­ LPFADJ RF /IF Transceiver


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PDF RF133 RF133 MQE 550-902 quadrature mixer MQE MURATA mqe550 Murata MQE 550-902 AV RF modulator 550-902 murata intermediate frequency filter for GSM900 MURATA MQE
AV RF modulator

Abstract: LM2889 22-16 R9 5.1 CHANNEL CIRCUIT DIAGRAM AUDIO lm1889 circuit diagram 4 channel RF modulator LM1889
Text: compatible with LM1889 RF section Low distortion FM sound modulator (less than 1% THD) Video clamp for , sound subcarrier oscillator and FM modulator , video clamp, and RF oscillators and modulators for two , Modulator Deviation i 2 v) Min Typ 3.4 Max Units Vp-p Hz/mV mVp-p mVp-p mVrms/V Conditions Af/ AV |N , Maximum Operating Frequency (Temperature Stability Degraded) RF Modulator Carrier Suppression (Adjust , 13 14 15 16 17 18 SUPPLY VOLTAGE (V) I Z « (9 /7% w i | % 1 0 i RF Modulator


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PDF LM2889 LM1889 LM2889 AV RF modulator 22-16 R9 5.1 CHANNEL CIRCUIT DIAGRAM AUDIO lm1889 circuit diagram 4 channel RF modulator
2000 - Not Available

Abstract: No abstract text available
Text: 27MHz on Y, C, and CV n Better than 1dB flatness to 4.5 MHz on Y, C, and CV n RF Modulator output , to RF modulator driver Ground Chrominance input Chrominance output Composite video output 5V supply , driven without stability or slew issues. RF MODULATOR OUTPUT The RF modulator output is capable of , Delay Deviation from Flatness (Y, C, and CV) Skew Between Y & C Outputs Group Delay RF Modulator Output , , C, CV, and modulator outputs can drive 2Vp-p into a 150W load (1Vp-p 75W coax load). The Y, C, CV


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PDF ML6415 ML6415 ML6415CS DS6415-02
2008 - MM74HC943

Abstract: MC145442B MC145442BDW MC145442BP MC145443B MC145443BDW MC145443BP ML145442 ML145443
Text: formula AV = ­ Rf /RDSI (where Rf 20 k). For example, a 20 k resistor for RDSI will provide unity gain ( AV , bringing SQT (pin 14) to a logic high level. DSI must be left open if not used. AV = ­ Rf R DSI In , resistor RDSI (see Figure 6). The voltage gain, AV , is determined by the equation: where Rf 20 k , 0.1 µF CDT C CDT 0.1 µF Figure 5. Carrier Detect Circuit MODULATOR OUTPUT R 0 = Rf R DSI , keying (FSK) modulator , demodulator, and filter. These devices are compatible with CCITT V (ML145442


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PDF ML145442 ML145443 MC145442B, MC145443B ML145442 ML145443 ML145442) ML145443) MM74HC943 MC145442B MC145442BDW MC145442BP MC145443B MC145443BDW MC145443BP
2005 - AV RF modulator

Abstract: FSK modulator and demodulator 20tlA MC145443BDW MC145443B MC145442BP MC145442BDW MC145442B MM74HC943 LANSDALE SEMICONDUCTOR
Text: formula AV = ­ Rf /RDSI (where Rf 20 k). For example, a 20 k resistor for RDSI will provide unity gain ( AV , bringing SQT (pin 14) to a logic high level. DSI must be left open if not used. AV = ­ Rf R DSI In , resistor RDSI (see Figure 6). The voltage gain, AV is determined by the equation: , where Rf 20 k , 0.1 µF CDT C CDT 0.1 µF Figure 5. Carrier Detect Circuit MODULATOR OUTPUT R 0 = Rf R DSI , keying (FSK) modulator , demodulator, and filter. These devices are compatible with CCITT V (ML145442


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PDF ML145442 ML145443 MC145442B, MC145443B ML145442 ML145443 ML145442) ML145443) AV RF modulator FSK modulator and demodulator 20tlA MC145443BDW MC145443B MC145442BP MC145442BDW MC145442B MM74HC943 LANSDALE SEMICONDUCTOR
2005 - Not Available

Abstract: No abstract text available
Text: high level. The voltage gain, AV , is calculated by the formula AV = ­ Rf /RDSI (where Rf 20 k). For , ) to a logic high level. DSI must be left open if not used. AV = ­ Rf R DSI In addition, the DSI , (see Figure 6). The voltage gain, AV , is determined by the equation: where Rf 20 k. Example: A , Detect Circuit MODULATOR OUTPUT R 0 = Rf R DSI DSI 1 ExI 18 VAG 19 Ri R0 Rf ­ + TxA 17 Figure 6 , keying (FSK) modulator , demodulator, and filter. These devices are compatible with CCITT V .21 (ML145442


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PDF ML145442 ML145443 MC145442B, MC145443B ML145443 ML145442) ML145443) ML14ight
2000 - Not Available

Abstract: No abstract text available
Text: CV Better than 1dB flatness to 4.5 MHz on Y, C, and CV RF Modulator output differential group delay , 2 3 4 5 6 7 8 YIN RF MOD GND CIN COUT CVOUT VCC YOUT Luminance input Output to RF modulator , driven without stability or slew issues. RF MODULATOR OUTPUT The RF modulator output is capable of , from Flatness (Y, C, and CV) Skew Between Y & C Outputs Group Delay RF Modulator Output Differential , , C, CV, and modulator outputs can drive 2Vp-p into a 150 load (1Vp-p 75 coax load). The Y, C, CV, and


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PDF ML6415 300KHz ML6415 ML6415CS DS6415-01
2000 - AV RF modulator

Abstract: 27mhz transmitter circuit modulator VCR rf channel trap circuit VCR modulator ML6415 rf modulator tv rf modulator TA 2092 N Micro Linear
Text: attenuation at 27MHz on Y, C, and CV n Better than 1dB flatness to 4.5 MHz on Y, C, and CV n RF Modulator , Signal Name Description YOUT Luminance input Output to RF modulator driver Ground Composite , issues. RF MODULATOR OUTPUT The RF modulator output is capable of driving a 600 load to 2VP-P, but is , outputs are AC coupled. The Y, C, CV, and modulator outputs can drive 2Vp-p into a 150 load (1Vp-p 75 , YOUT + 1V ×2 6 CVOUT 2 RF MOD 5 COUT + gM CIN 4 1V 4TH ­


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PDF ML6415 ML6415 ML6415CS DS6415-01 AV RF modulator 27mhz transmitter circuit modulator VCR rf channel trap circuit VCR modulator rf modulator tv rf modulator TA 2092 N Micro Linear
2000 - Not Available

Abstract: No abstract text available
Text: attenuation at 27MHz on Y, C, and CV n Better than 1dB flatness to 4.5 MHz on Y, C, and CV n RF Modulator , MODULATOR OUTPUT The RF modulator output is capable of driving a 600Ω load to 2VP-P, but is primarily , Tpd Group Delay RF Modulator Output f = 3.58MHz (referenced to 3MHz) dG Differential Gain , outputs are AC coupled. The Y, C, CV, and modulator outputs can drive 2Vp-p into a 150Ω load (1Vp-p 75â , 8 YOUT 6 CVOUT 2 RF MOD 5 COUT + 1V Σ ×2 + gM CIN 4


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PDF ML6415 ML6415 ML6415CS DS6415-01
2001 - AV RF modulator

Abstract: ML6415CS ML6415
Text: Y, C, and CV Better than 1dB flatness to 4.5 MHz on Y, C, and CV RF Modulator output differential , VCC 5V supply 8 YOUT Luminance output Luminance input Output to RF modulator driver , output pin) can be driven without stability or slew issues. RF Modulator Output The RF modulator , Between Y & C Outputs 0 ns at 1MHz Tpd Group Delay RF Modulator Output f = 3.58MHz , 2.0MHz 0.5 MCF Modulator Channel Flatness (Note 2) at 3.75MHz AV Notch Attenuation (Note 2


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PDF ML6415 ML6415 DS30006415 AV RF modulator ML6415CS
2000 - Not Available

Abstract: No abstract text available
Text: Y, C, and CV n Better than 1dB flatness to 4.5 MHz on Y, C, and CV n RF Modulator output , 1 2 3 4 5 6 7 8 YIN RF MOD GND CIN COUT CVOUT VCC YOUT Luminance input Output to RF modulator , driven without stability or slew issues. RF MODULATOR OUTPUT The RF modulator output is capable of , Flatness (Y, C, and CV) Skew Between Y & C Outputs Group Delay RF Modulator Output Differential Gain , , C, CV, and modulator outputs can drive 2Vp-p into a 150 load (1Vp-p 75 coax load). The Y, C, CV, and


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PDF ML6415
tv video modulator

Abstract: No abstract text available
Text: tp u t Q 1 R F Tank Chroma Osc. In p u t Q 2 14 ^ RF Modulator Output 4 13 □ V , Chroma Modulator Linearity — fiA — 5 kii 6 % pF RF Modulator (T om Circuit 2 , . Sound Carrier Input is also added to this IC, and a color TV RF modulator is composed by adding the , to be complicated. • RF modulator for color TV Fig. 3 shows the basic operation circuit of , . 6-18 New ^apaa R adio Co,lid NJM2208 (Fig. 1) Application of video RF modulator (color


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PDF NJM2208 NJM2208, NJM2208 58MHz tv video modulator
1995 - ne5532 thd

Abstract: AV RF modulator ADMOD79 ADMOD79JQ 7905 and 7805 circuit diagram OP275 NE5532 C1882 uA 7805 ADM0D79
Text: a FEATURES High-Performance ADC Building Block Fifth-Order, 64 Times Oversampling Modulator with Patented Noise-Shaping Modulator Clock Rate to 3.57 MHz 103 dB Dynamic Range (for 20 kHz Input , ADMOD79 Sigma-Delta () modulator is a building block which can be used to build a superior , two-channel, fully differential modulator . Each channel consists of a fifth-order one-bit noise shaping modulator . An on-chip voltage reference provides a voltage source to both channels that is stable over


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PDF ADMOD79 C1882 28-Lead ADMOD79 ADMOD79JQ ne5532 thd AV RF modulator ADMOD79JQ 7905 and 7805 circuit diagram OP275 NE5532 uA 7805 ADM0D79
1995 - LB219

Abstract: FSK modulator and demodulator MC145442P MC145443P MC145443DW MC145443 MC145442DW MC145442 MC145407 MC14544
Text: modulator should be squelched by bringing SQT (Pin 14) to a logic high level. The voltage gain, AV , is calculated by the formula AV = ­ Rf /RDSI (where Rf 20 k). For example, a 20 k resistor for RDSI will , RDSI (see Figure 6). The voltage gain, AV , is determined by the equation: AV = ­ Rf RDSI where Rf 20 k. Example: A resistor value of 20 k for RDSI will provide unity gain. AV = ­ (20 k/20 k , MODULATOR OUTPUT R0 = Rf RDSI DSI 1 R0 Rf ExI 18 VAG 19 ­ TxA 17 + Ri


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PDF MC145442 MC145443 300-Baud MC145442 MC145443 MC145442) MC145443) MC145442/D* LB219 FSK modulator and demodulator MC145442P MC145443P MC145443DW MC145442DW MC145407 MC14544
1995 - 7905 and 7805 circuit diagram diagram

Abstract: NE5532 TOTAL HARMONIC distortion ADMOD79JQ
Text: a FEATURES High-Performance ADC Building Block Fifth-Order, 64 Times Oversampling Modulator with Patented Noise-Shaping Modulator Clock Rate to 3.57 MHz 103 dB Dynamic Range (for 20 kHz Input Bandwidth , Imaging Sonar Signal Processing Instrumentation PRODUCT OVERVIEW BACK Dual-Channel Modulator , DAC VINR­ The ADMOD79 Sigma-Delta () modulator is a building block which can be used to build a , ADMOD79 is a two-channel, fully differential modulator . Each channel consists of a fifth-order one-bit


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PDF ADM0D79* ADMOD79 ADMOD79 28-Lead C1882 7905 and 7805 circuit diagram diagram NE5532 TOTAL HARMONIC distortion ADMOD79JQ
1995 - AV RF modulator

Abstract: NE5532- 34 ADM0D79 ADMOD79 ADMOD79JQ C1882 NE5532 OP275
Text: a FEATURES High-Performance ADC Building Block Fifth-Order, 64 Times Oversampling Modulator with Patented Noise-Shaping Modulator Clock Rate to 3.57 MHz 103 dB Dynamic Range (for 20 kHz Input , ADMOD79 Sigma-Delta () modulator is a building block which can be used to build a superior , two-channel, fully differential modulator . Each channel consists of a fifth-order one-bit noise shaping modulator . An on-chip voltage reference provides a voltage source to both channels that is stable over


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PDF ADMOD79 ADMOD79 C1882 28-Lead AV RF modulator NE5532- 34 ADM0D79 ADMOD79JQ NE5532 OP275
1995 - LB219

Abstract: FSK modulator and demodulator MC145442DW MC145443 MC145442 MC145407 MC145443p mc145442p current limiter 4A 48 v dc Nippon capacitors
Text: modulator should be squelched by bringing SQT (Pin 14) to a logic high level. The voltage gain, AV , is calculated by the formula AV = ­ Rf /RDSI (where Rf 20 k). For example, a 20 k resistor for RDSI will , Figure 6). The voltage gain, AV , is determined by the equation: AV = ­ Rf RDSI where Rf 20 k , CDT CCDT 0.1 µF Figure 5. Carrier Detect Circuit MODULATOR OUTPUT R0 = Rf RDSI DSI 1 , modems contain a complete frequency shift keying (FSK) modulator , demodulator, and filter. These devices


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PDF MC145442/D MC145442 MC145443 300-Baud MC145442 MC145443 MC145442) MC145443) LB219 FSK modulator and demodulator MC145442DW MC145407 MC145443p mc145442p current limiter 4A 48 v dc Nippon capacitors
2000 - LB219

Abstract: k1317 20tlA MM74HC943 MC145443BP MC145443BDW MC145443B MC145442BP MC145442BDW MC145442B
Text: high level. The voltage gain, AV , is calculated by the formula AV = ­ Rf /RDSI (where Rf 20 k). For , voltage gain, AV , is determined by the equation: AV = ­ Rf RDSI where Rf 20 k. Example: A , 0.1 µF Figure 5. Carrier Detect Circuit MODULATOR OUTPUT R0 = Rf RDSI DSI 1 R0 Rf , ­ speed modems contain a complete frequency shift keying (FSK) modulator , demodulator, and filter. These , SMOOTHING FILTER 2 13 DEMOD * 18 CDT CDA CD RxD FB DSI TxA ExI 11 MODULATOR


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PDF MC145442B/D MC145442B MC145443B 300-Baud MC145442B MC145443B MC145442B) MC145443B) LB219 k1317 20tlA MM74HC943 MC145443BP MC145443BDW MC145442BP MC145442BDW
2004 - ML6416

Abstract: ML6416CS ML6416CSX
Text: , C, and CV Better than 1dB flatness to 4.5 MHz on Y, C, and CV RF Modulator output differential , Luminance input Output to RF modulator driver Chrominance output Composite video output Functional , stability or slew issues. RF Modulator Output The RF modulator output is capable of driving a 600 load , channel. The outputs are AC coupled. The Y, C, CV, and modulator outputs can drive 2VP-P into a 150 load , FILTER ×2 gM 8 YOUT 6 CVOUT 2 RF MOD 5 COUT + 1V ×2 + gM


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PDF ML6416 ML6416 ML6416CS ML6416CSX
2000 - EXL 00

Abstract: digital ic LB 1270 MC145443BP MC145443BDW MC145443B MC145442BP MC145442BDW MC145442B MC145407 RXA1
Text: high level. The voltage gain, AV , is calculated by the formula AV = ­ Rf /RDSI (where Rf 20 k). For , equivalent Rf AV = ­ voltage of 1.2 V and an output impedance of 100 k. When RDSI using the internal 1.2 , MODULATOR FR N C. 0.1 µF OUTPUT R0 = Rf RDSI DSI 1 R0 Rf ExI 18 VAG 19 ­ , ­ speed modems contain a complete frequency shift keying (FSK) modulator , demodulator, and filter. These , * C. ­ 17 CDT CDA CD RxD FB DSI TxA ExI N ,I R 11 TxD TO MODULATOR ANALOG


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PDF MC145442B/D MC145442B MC145443B 300-Baud MC145442B MC145443B MC145442B) MC145443B) EXL 00 digital ic LB 1270 MC145443BP MC145443BDW MC145442BP MC145442BDW MC145407 RXA1
2000 - 550-902

Abstract: CX74016 C-865 MQE 550-902 MQE MURATA vco quadrature mixer C870 RM008 RF212 MQE vco
Text: CX74016 RF /IF Transceiver For GSM Applications Product Description Features The CX74016 RF , high phase accuracy · Reduced filtering requirements for the transmit path · Broad RF and IF range , an In-Phase and Quadrature-Phase (I/Q) modulator and a frequency translation loop designed to , /frequency detector, a charge-pump, a mixer, and buffers for the required isolation between the RF section , . No. 100778A July 25, 2000 RXIFF- LPFADJ RF /IF Transceiver RXIFF+ CX74016 +20 dB


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PDF CX74016 CX74016 550-902 C-865 MQE 550-902 MQE MURATA vco quadrature mixer C870 RM008 RF212 MQE vco
AV RF modulator

Abstract: ha11560 kyocera antenna switch kyocera saw
Text: HA11560FP VCR/VDP RF Modulator T his chip is designed for ap plication as an RF m odulator in VCRs and VDPs. A new type RF o s c illa to r p ro v id e s s u p e r io r h a rm o n ic characteristics. Functions · · · · · · · Video modulator RF carrier oscillator W hite clip Channel switch Audio carrier , 80 k 80 k ; {TM r '6 0 k White clip circuit Video modulator RF oscillator 1k , . 262 HA11560FP Pin Functions Pin No. Symbol 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 GND AUDIO RF


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PDF HA11560FP KAR91CS 291ACS-4060Z 62-pF 369SN-1458Z 920-kHz AV RF modulator ha11560 kyocera antenna switch kyocera saw
TDA8720

Abstract: sot266a philips PLL FM MODULATOR KA609
Text: programmable modulator which has been designed to generate an RF TV channel from a baseband video signal and a , external components C3, L3 and R3 (see Fig.5). The RF part of the modulator consists of: · an oscillator , INTEGRATED CIRCUITS ©Am s^ E i TDA8720T; TDA8720M I C-bus programmable modulator for , specification l2C-bus programmable modulator for negative video modulation and FM sound _ . TDA8720T , circuit which allows handling of video signals between 0.7 and 1.4 V (p-p) · FM sound modulator ·


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PDF TDA8720T; TDA8720M SCD24 3955B TDA8720 sot266a philips PLL FM MODULATOR KA609
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