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A5 gnb

Abstract: A5 gnb 100 LC74HC21
Text: « : V c Cm» * /'/' ^ V I Nun * V OUT»» « I OUTaax llÜ/JtlÜ I C C/I Gnb sif I K ^ Pdnfkj Ts , 5.5 A.5 5-0 5.5 Q.á 1.35 1-5 1.65 1.8 4-4 4.9 5-4 4.1 4.6 5.1 V V V V V V V V V V V Nà , t » /|€h » Vphl » c in vcc «In typ »ix un 11 A.5 0.1 V 5.0 0.1 V 5-5 0-1 V 4-5 0. A , 4.5. A. 0 V 5.0 A.5 V 5.0 V ■¿.5 0-1 V 5.0 0.1 V 5.5 0.1 V A.5 a.5 V 5.0 a.5 V


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PDF LC74HC21 74HC2 74LS2 LS/74LSai 17A3-3/4 Nq1743-4/4 A5 gnb A5 gnb 100 LC74HC21
A5 gnb

Abstract: No abstract text available
Text: 5C □ 16 B3 A4 5 ] 16 B3 A5 e : ] 15 B4 A5 6£ ] 15 B4 A6 ] 14 , . 5 Vült=V(_-q or GNB V j\=V çq or GND . 5. 5 5.5 \'iv -V |x or GND T a= -40—b5X. UNIT


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PDF TC74AC245P/F/FW TC74AC640P/F/FW TC74AC643P/F/FW TC74AC245, TC74AC245/643 TC74AC640 TC74AC245 643P/F/FW-4 A5 gnb
A5 gnb

Abstract: No abstract text available
Text: Registers C, D, and E on the GNA<5:0> bits for the A-channel and GNB <5:0> bits for the B-channel. Unity gain is set at default for GNA<5:0> = 100,000 and GNB <5:0> = 100,000. For values of GNA<5:0> and GNB , (G ugca = 1 ancl G ugcb = 1 )to either Y or C channels (see Table 4 and GNA and GNB bits) â , Sets User Defined Gain Level for A Channel See Table 4 DO GN A5 Sets User Defined Gain , A5 Sets User Defined Gain Level for A Channel (See Table 4) D1 011 0 STD B0 C1 D


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PDF ML6411 ML6411 MC44200 ML6421 -vwR10 H44-14 44-Pin A5 gnb
Not Available

Abstract: No abstract text available
Text: II I I II I I II I I I 7 6 9 10111314151617181920212223 L060 S99S Pin 24 GNb = Pin 12 , Select ( £5 ) input prevents clocking and forc­ es the Serial Input/Output (Sl/O) 3-State buffer into


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PDF 74F673A 16-Bit 300mil-wide 24-Pin 130MHz 106mA
d546

Abstract: A5 gnb PM44 CYM9260 CYM9261B CYM9262A CYM9263
Text: dp5 vcc3 D46 D44 gnd d42 D40 gnd D39 gnB D35 D33 gnd clk3 gnd dp, D30 vcc3 D28 D26 gnd d24 D23 , a5 gnd A3 aj_ adsp gnd clko gnd we6 we4 gnd we2 weo YCC3 oeo cso gnd 0 cc3 This


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PDF 168-position CYM9260, CYM9261, CYM9262, CYM9263 CYM9260 CYM9261B CYM9262A CYM9263 d546 A5 gnb PM44
A5 gnb 100

Abstract: A5 gnb OEB47 cerdip 300mil N74F30640N N74F30640F N74F30245N N74F30245F 74F30640 74F30245
Text: °0 B1 ®2 B3 ®4 ®5 ®6 °7 T/R OE Aj A3 A4 A5 A, A7 TTTTTTTT 1 2 3 4 9 10 11 12 LS09413S F30245 , *0 A, *j *3 A, As A. A, TTTTTTTT Vcc -Pi" 18' 19 GNb - Pin 5. 6, 7, e FUNCTION TABLE INPUTS


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PDF 74F30245, 74F30640 F30245 000764IS F30245 F30640 20/mA 500ns A5 gnb 100 A5 gnb OEB47 cerdip 300mil N74F30640N N74F30640F N74F30245N N74F30245F 74F30640 74F30245
2005 - Not Available

Abstract: No abstract text available
Text: -dB Noise Figure, Typical Input Third Order Intercept of 0 dBm, Typical Input P-1 dB of –5 dBm, Typical , VC > 1.5 V 400 480 16 18 dB 10 dB GNB Gaub fkatbess / 6 MHz 0.2 dB , −5 Input IP3 at Vc = 1.5 V 0 Input IP3 at Vc = 0 V −5 Input IP3 at Vc = 1 V Input IP3 , LO RETURN LOSS AT 25°C 0 −5 RF Return Loss −10 Return Loss − dB Input P−12dB â


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PDF TRF1115 SLWS174B
2005 - Not Available

Abstract: No abstract text available
Text: -dB Noise Figure, Typical Input Third Order Intercept of 0 dBm, Typical Input P-1 dB of –5 dBm, Typical , control range VC > 1.5 V 400 480 16 18 dB 10 dB GNB Gaub fkatbess / 6 MHz , ˆ’ dBm Input P−1dB at Vc = 1.5 V 0 Input P−1dB at Vc = 1 V −5 Input IP3 at Vc = 1.5 V 0 Input IP3 at Vc = 0 V −5 Input IP3 at Vc = 1 V Input IP3 at Vc = 0.5 V −10 −10 Input Pâ , G003 G004 Figure 5. Figure 6. RF AND LO RETURN LOSS AT 25°C 0 −5 RF Return Loss â


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PDF TRF1115 SLWS174B
2005 - Not Available

Abstract: No abstract text available
Text: -dB Noise Figure, Typical Input Third Order Intercept of 0 dBm, Typical Input P-1 dB of –5 dBm, Typical , VC > 1.5 V 400 480 16 18 dB 10 dB GNB Gaub fkatbess / 6 MHz 0.2 dB , −5 Input IP3 at Vc = 1.5 V 0 Input IP3 at Vc = 0 V −5 Input IP3 at Vc = 1 V Input IP3 , LO RETURN LOSS AT 25°C 0 −5 RF Return Loss −10 Return Loss − dB Input P−12dB â


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PDF TRF1115 SLWS174B
2005 - Not Available

Abstract: No abstract text available
Text: -dB Noise Figure, Typical Input Third Order Intercept of 0 dBm, Typical Input P-1 dB of –5 dBm, Typical , VC > 1.5 V 400 480 16 18 dB 10 dB GNB Gaub fkatbess / 6 MHz 0.2 dB , −5 Input IP3 at Vc = 1.5 V 0 Input IP3 at Vc = 0 V −5 Input IP3 at Vc = 1 V Input IP3 , LO RETURN LOSS AT 25°C 0 −5 RF Return Loss −10 Return Loss − dB Input P−12dB â


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PDF TRF1115 SLWS174B
2005 - Not Available

Abstract: No abstract text available
Text: -Ω differential load 8.5 10 GHG Gain flatness full band Any 200-MHz band GNB Gain flatness , , RFATTN enabled -1 VAGC = 1.5 V, RFATTN disabled –5 VAGC = 1.5 V, RFATTN enabled 5 , °C Input P1dB − dBm 0 −5 Attenuator Enabled, VAGC = 1.5 V Attenuator Enabled, VAGC = 0 V , −5 Attenuator Disabled, VAGC = 0 V −10 −15 3300 3350 3400 3450 3500


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PDF TRF1216 SLWS172A 10-dB
2005 - Not Available

Abstract: No abstract text available
Text: 10 GHG Gain flatness full band Any 200-MHz band GNB Gain flatness / 6 MHz Any 6 , = 1.5 V, RFATTN disabled –5 VAGC = 1.5 V, RFATTN enabled 5 IIP3 Input 3rd order , for Different Frequencies, (TA = 25°C) 5 TA = 25°C Input P1dB − dBm 0 −5 , Attenuator Enabled, VAGC = 0 V Attenuator Disabled, VAGC = 1.5 V −5 Attenuator Disabled, VAGC = 0 V


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PDF TRF1216 SLWS172A 10-dB
2005 - Not Available

Abstract: No abstract text available
Text: 5.25 V 170 185 mA –5 –4.75 3 6 V mA 28 2.5 5 V 0.8 300 , –5 V, External Filter loss = 2 dB, TA = 25°C PARAMETER TEST CONDITIONS MIN FIF IF , attenuator range TYP 325 2100 GNB Output power at 1 dB compression, high gain OIP3 dB 16


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PDF TRF1122 SLWS173B 16-dB
2005 - Not Available

Abstract: No abstract text available
Text: 10 GHG Gain flatness full band Any 200-MHz band GNB Gain flatness / 6 MHz Any 6 , = 1.5 V, RFATTN disabled –5 VAGC = 1.5 V, RFATTN enabled 5 IIP3 Input 3rd order , for Different Frequencies, (TA = 25°C) 5 TA = 25°C Input P1dB − dBm 0 −5 , Attenuator Enabled, VAGC = 0 V Attenuator Disabled, VAGC = 1.5 V −5 Attenuator Disabled, VAGC = 0 V


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PDF TRF1216 SLWS172A 10-dB
2005 - Not Available

Abstract: No abstract text available
Text: MAX 4.75 5 5.25 UNIT V 170 185 mA –5 –4.75 3 6 VDD IDD , VDD = 5.0 V, VNEG = –5 V, External Filter loss = 2 dB, TA = 25°C PARAMETER TEST CONDITIONS , range TYP 325 2100 UNIT MHz 2700 MHz dB 16 17 0.2 dB GNB Gain flatness


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PDF TRF1122 SLWS173B 16-dB
BD309

Abstract: gds c50 BD668 A5 gnb 74ACT375 BD567 J68-J69 bd16-16 J731 BD163
Text: !uk A1 A2 A3 A4 A5 A6 A7 AS A9 A10 A1 1 A12 A13 A14 A15 A16 A1 7 A1H A19 A20 A21 A22 A23 A24 A25 A26 , ) D1 17 02 16 □ 3 15 D4 14 D5 13 □6 12 □ 7 11 R1 A1 B2 H 3 A2 A3 R4 A4 B5 Rfi A5 AS R7 A7 BS AS DIR G o |-) A(6:311 A1 A? Y1 Y2 A3 Y3 A4 Y4 A5 Y5 A« Yfi A7 Y7 AH YR TTT C2 14 BALE-A 12 BCE1A" 2 , 12 R1 A1 B2 R3 A2 A3 R4 A4 B5 Rfi A5 Afi R7 A7 BS AS DIR G D17 17 □ 18 16 □ 19 15 D2B 14 D21 13 □22 12 □ 23 1 1 R1 A1 B2 R3 A2 A3 R4 A4 B5 Rfi A5 Afi R7 A7 BS AS DIR G D25 17 □26 16 □ 27


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PDF RSV/IR07 U57/CE2H MPC860ADS BD309 gds c50 BD668 A5 gnb 74ACT375 BD567 J68-J69 bd16-16 J731 BD163
1999 - analog ics

Abstract: a1 gnb "A/D Converters" M65533FP MITSUBISHI ADC
Text: DoG2 48 17 BVRB DoG3 49 16 GNB DoG4 50 15 GVRT DoG5 51 14 , A5 A4 A3 A2 A1 A0 A3 A2 A1 A0 1 0 1 0 1 1 0 0 0 , -bit 80MHz A/D Converters M65533FP IIC-BUS CONTROL TABLE (1) Slave address : A6 A5 A4 A3 A2 A1 A0 R/W 1


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PDF M65533FP 80MHz M65533FP 700mW analog ics a1 gnb "A/D Converters" MITSUBISHI ADC
Not Available

Abstract: No abstract text available
Text: i/o , n 1 /0 4 10 5 we 1= kE cs3 c gnB c i/ o « E I/O 17 c i/o 1 8 1= I/O ,9 i z , –¡ I/O 26 u □ □ □ □ □ □ □ □ □ □ □ I/O 27 A3 A4 A5 V CC A6 , basis. 20 p F o n Ü5 , 70 p F all o th ers. AC Test Loads and Waveforms R1 481Q R1 481 5V O


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PDF CYM1841 CYM1841A CYM1841/1841A 32-bit 64-Pin 1841PM 72-Pin 1841PN
2005 - Not Available

Abstract: No abstract text available
Text: MAX 4.75 5 5.25 UNIT V 170 185 mA –5 –4.75 3 6 VDD IDD , VDD = 5.0 V, VNEG = –5 V, External Filter loss = 2 dB, TA = 25°C PARAMETER TEST CONDITIONS , range TYP 325 2100 UNIT MHz 2700 MHz dB 16 17 0.2 dB GNB Gain flatness


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PDF TRF1122 SLWS173B 16-dB
A5 gnb 100

Abstract: A5 gnb CYM1841AP7-25C
Text: 59 61 63 65 67 69 71 CS3 gnB I/Oie i/o!; 1/018 1/019 A10 An A12 A -)3 I/O20 , A3 I/O24 I/O25 I/O26 I/O27 I/O27 A5 VCc Ae A5 Yc c Ae A l3 d l/0 28 I/O29 I


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PDF CYM1841 CYM1841A 32-bit 72-pin CYM1851) CYM1841/1841A 256Kx A5 gnb 100 A5 gnb CYM1841AP7-25C
2005 - Not Available

Abstract: No abstract text available
Text: Negative power supply –5 V. Used to set gate voltage. This voltage must be sequenced with VDD. See (1). , flatness full band GNB Gain flatness / 2 MHz OP-1dB Output power at 1-dB compression 30


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PDF TRF1123 SLWS167B 30-dB 16-dB TRF1123
2005 - Not Available

Abstract: No abstract text available
Text: amplifier, dc blocked internally 6 VNEG I Power Negative power supply –5 V. Used to set , At a single frequency, full gain GHG Gain flatness full band F = 3300 MHz to 3800 MHz GNB


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PDF TRF1223 SLWS166C 30-dB 3300-MHz 3800-MHz 16-dB TRF1223
2006 - Not Available

Abstract: No abstract text available
Text: Freescale Semiconductor Technical Data MW4IC915N Rev. 7, 5/2006 RF LDMOS Wideband Integrated Power Amplifiers The MW4IC915NB/ GNB wideband integrated circuit is designed for GSM and GSM EDGE base station applications. It uses Freescale’s newest High Voltage (26 to 28 Volts) LDMOS IC technology and integrates a multi - stage structure. Its wideband On- Chip design makes it usable from 750 , , 869 MHz960 MHz ∆IQT — ±5 — % Gain Flatness in 40 MHz Bandwidth @ Pout


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PDF MW4IC915N MW4IC915NB/GNB MW4IC915NBR1 MW4IC915GNBR1
2005 - Not Available

Abstract: No abstract text available
Text: supply –5 V. Used to set gate voltage. This voltage must be sequenced with VDD. See (1). 9 VPOS , Gain flatness full band GNB Gain flatness / 2 MHz OP-1dB Output power at 1-dB compression


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PDF TRF1123 SLWS167B 30-dB 16-dB TRF1123
2006 - Not Available

Abstract: No abstract text available
Text: Freescale Semiconductor Technical Data MW4IC915N Rev. 8, 3/2011 RF LDMOS Wideband Integrated Power Amplifiers The MW4IC915NB/ GNB wideband integrated circuit is designed for GSM and GSM EDGE base station applications. It uses Freescale’s newest High Voltage (26 to 28 Volts) LDMOS IC technology and integrates a multi-stage structure. Its wideband On-Chip design makes it usable from 750 to , — ±5 — % Gain Flatness in 40 MHz Bandwidth @ Pout = 3 W CW GF — 0.2 â


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PDF MW4IC915N MW4IC915NB/GNB MW4IC915NBR1 MW4IC915GNBR1
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