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TVP9900PFP Texas Instruments VSB/QAM Demodulator / Receiver For Digital TV Applications 80-HTQFP 0 to 70 visit Texas Instruments
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64-QAM-

Catalog Datasheet MFG & Type PDF Document Tags

COFDM Tuner demodulator application note

Abstract: Full NIM Tuner , GI = 1/4 -97.3 -94.6 16QAM, 8k, CR = 3/4, GI = 1/4 -88.5 -85.1 64QAM, 8k, CR = 7/8 , , GI = 1/4 -87.9 -82.6 64QAM, 8k, CR = 7/8, GI = 1/4 -79.6 -74.7 64-QAM, 8k, CR = 2/3, GI = 1/8 Maximum Input, Gaussian Channel 64-QAM, 8k, CR = 2/3, GI = 1/4 (VHF-III Band) 64-QAM, 8k, CR = 3/4, GI = 1/8 >0 -35 >0 -35 >0 -35 64-QAM, 8k, CR = 2/3, GI = 1/8 Maximum Input, Gaussian Channel 64-QAM, 8k, CR = 2/3, GI = 1/4 (UHF Band) 64-QAM, 8k, CR = 3/4, GI = 1/8
Maxim Integrated Products
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MAX3580 AN4173 APP4173 COFDM Tuner demodulator application note Full NIM Tuner gi 837 DVB-T full nim C3929 170MH 230MH 470MH 870MH

msc 5530

Abstract: s-parameters of an 60GHz transistor 4.90 4.95 5.15 Gain S21 33 EVM @ POUT = +21dBm EVM 64QAM / 54Mbps 2.5 EVM @ POUT = 22dBm EVM 64QAM , Frequency Range f 4.90 4.95 5.15 Gain S21 31 EVM @ POUT = +19dBm EVM 64QAM / 54Mbps 2.5 EVM @ POUT = +20dBm EVM 64QAM / 54Mbps 3.5 Total Current @ POUT = +20dBm IC 99% Duty Cycle 250 Quiescent Current ICQ 150 , ) Pout (dBm) Typical EVM vs. Pout over 4.90-5.85GHz at Room Temperature (Vc=5.0V, Icq=250mA, 64QAM , =250mA, 64QAM / 54Mbps, 99% Duty Cycle) EVM OVER TEMPERATURE, 4.90GHZ +25C 8.0 7.0 6.0 -40C +85C EVM OVER
Microsemi
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LX5530 msc 5530 s-parameters of an 60GHz transistor 33EVM msc5530 LX5530LQ-TR
Abstract: ̇ DSSS (DBPSK, DQPSK, CCK) ̇ OFDM (BPSK, QPSK, 16-QAM, 64-QAM) o 802.11ng ̇ â'¢ OFDM (BPSK, QPSK, 16-QAM, 64-QAM) Channel Spacing: 5MHz 1.5 Warranty â'¢ One Year 1.6 , -QAM 1/2 -16 -24 16-QAM 3/4 -19 -26 64-QAM 2/3 -22 -28 64-QAM 3/4 , -13 -24 (MCS3) 16-QAM 1/2 -16 -24 (MCS4) 16-QAM 3/4 -19 -24 (MCS5) 64-QAM 2/3 -22 -26 (MCS6) 64-QAM 3/4 -25 -28 (MCS7) 64-QAM 5/6 -28 -30 Connect One
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DVB-T Terrestrial Schematic

Abstract: GB20600 Performance for Chinese terrestrial (GB20600) Figure 4. MAX2165 sensitivity for 4QAM and 64QAM. Figure 4 shows that the sensitivity is at least -95dBm for 4QAM with 0.4 CR, and at least -81dBm for 64QAM with 0.8 CR. Page 4 of 7 Figure 5. MAX2165 maximum signal with LNA off for 4QAM and 64QAM. Figure 5 , -81dBm for 64QAM, 0.8 code rate (CR). Introduction This single-loop AGC control solution uses the , . Sensitivity is -81dBm for 64QAM, 0.8 code rate (CR). Single-loop AGC control schematic Figure 1
Maxim Integrated Products
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APP4259 DVB-T Terrestrial Schematic AN4259

partsnic

Abstract: DVB-T nim , 16QAM, 64QAM · Convolutional code rates : 1/2, 2/3, 3/4, 5/6, 7/8 · Guard interval : 1/4, 1/8, 1/16, 1 , 13 Protection from Image channel PAL 46 65 Desired input -50m 64QAM, 8K ,2/3 Refer to Note 1 Desired input -60m 64QAM, 8K, 2/3 Refer to Note 1 No. Item 14 Protection , unit Notes Desired input -50m 64QAM, G/I = 1/32 P/R = 2/3 Refer to Note 1 46 Desired input -50m 64QAM, G/I = 1/32 P/R = 2/3 Refer to Note 1 Protection from adjacent DVB-T 30
Partsnic
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MT352 PDNTF03D partsnic DVB-T nim ALL DIGITAL ECHO IC convolutional Decoder 5 to 32 single ic PDNTF06D 860MH P3C24S
Abstract: VCC1, 2 = 3.3 V, Venable = 2.8 V, Pout = 18 dBm (OFDM : 64QAM/54 Mbps) GP = 28 dB TYP. @ VCC1, 2 = 3.3 V, Venable = 2.8 V, Pout = 18 dBm (OFDM : 64QAM/54 Mbps) GP = 0.8 dB TYP. @ f = 2.42.5 GHz, VCC1, 2 = 3.3 V, Venable = 2.8 V, Pout = 18 dBm (OFDM : 64QAM/54 Mbps) EVM = 2.5% TYP. @ VCC1, 2 = 3.3 V, Venable = 2.8 V, Pout = 18 dBm (OFDM : 64QAM/54 Mbps) 2f0 = 30 dBc TYP. @ VCC1, 2 = 3.3 V, Venable = 2.8 V, Pout = 18 dBm (OFDM : 64QAM/54 Mbps) 6 TSON 1.5 NEC
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PG2318T5N 64QAM/54 PG2318T5N-E2 PG2318T5N-E2-A PG10668JJ03V0DS IR260
Abstract: â'¢ Under Vc=3.3V, Vref=2.85V, Ta=25ºC PARAMETER CONDITION Pout=19dBm, 64QAM/54Mbps Pout , 2.5 GHz 130 208 mA 19 dBm Linear Output Power EVM , =24dBm, CCK/11Mbps -51 dBc 2:1 Input VSWR 2.5:1 Output VSWR Pout=16dBm, 64QAM/54Mbps Pout RFIC Technology
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AP1093 5M-1994 MO-220

LX5506

Abstract: LX5506-LQ RELIMINARY D ATA S HEET KEY FEATURES DESCRIPTION For OFDM operation (64QAM, 54Mbps), the PA provides , 64QAM/ 54Mbps OFDM(3.3V) EVM ~ 3% at Pout=21dBm for 64QAM/ 54Mbps OFDM(4.5V) P1dB ~ +26dBm(3.3V , Gp 5.15 25 64QAM/54Mbps For Icq=100mA Over 200MHz o -40 to +85 C Pout = 18dBm Pout = , ) Typical EVM and Total Current vs. Pout at Vc = 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) 17 18 , 100mA, 64QAM / 54Mbps) EVM VS POUT FREQ=5.15GHZ EVM VS POUT FREQ=5.85GHZ 8 300 7 8
Microsemi
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LX5506 LX5506-LQ LX5506-LQT 64QAM/ VNJR-11

LX5506E-LQ

Abstract: LX5506E-LQT InGaP HBT Single-Polarity Voltage Supply EVM ~ 2.5% at Pout=18dBm for 64QAM/ 54Mbps OFDM (3.3V , 64QAM/54Mbps Total Current at Pout=18dBm Quiescent Current Icq 105 105 mA Iref 2.3 , , Freq= 5.15GHz, 64QAM / 54MBps) 120 10 11 12 13 14 15 16 17 18 19 20 , 105mA, Freq = 5.85GHz, 64QAM / 54Mbps Notes: All EVM data are for OFDM signal of 64QAM/54Mbps from , 105mA, POUT = 18dBm, 64QAM / 54MBps) (VC = 3.3V, VREF = 2.9V, ICQ = 105mA, 64QAM / 54Mbps, 30MHz
Microsemi
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LX5506E LX5506E-LQ LX5506E-LQT
Abstract: Specifications Parameter Min Frequency Pout, 802.11g, 64QAM, 3.8% EVM 15.5 Typ Max Units , , Halogen-free, MSL-1 package dBm mA 4900 Pout, 802.11a, 64QAM, 3.5% EVM IEEE802.11a/b/g/n WLAN/BT , x 4.0 x 0.5 mm SMT Pb-Free Minimum Pout = 20.5dBm 802.11b and 15.5dBm 802.11g OFDM 64QAM at 3.8% EVM Minimum Pout = 15.0dBm 802.11a OFDM 64QAM at 3.5% EVM Typ Max 5850 Units MHz 17.0 TriQuint Semiconductor
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TQP6M9002 ETSLP-24

LX5506E

Abstract: LX5506ELQ InGaP HBT Single-Polarity Voltage Supply EVM ~ 2.5% at Pout=18dBm for 64QAM/ 54Mbps OFDM (3.3V , 23 20 2.5 3 % Ic_total EVM at Pout=18dBm 200 210 mA 64QAM/54Mbps , 2.9V, ICQ = 105mA, Freq= 5.15GHz, 64QAM / 54MBps) 120 10 11 12 13 14 15 16 17 , , VREF = 2.9V, ICQ = 105mA, Freq = 5.85GHz, 64QAM / 54Mbps Notes: All EVM data are for OFDM signal of 64QAM/54Mbps from Yokogawa VG6000, and are actual measured data without any de-embedding. Source EVM is
Microsemi
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LX5506ELQ
Abstract: ~ 2.5% at Pout=18dBm for 64QAM/ 54Mbps OFDM (3.3V) Power Gain ~ 23dB at 5.25GHz & Pout=18dBm Power , GHz dBm dB % mA mA mA dB dB dB dB dB dB dBc dBc V ns 64QAM/54Mbps Ic_total Icq For Icq=105mA Iref , Current vs. POUT @ 5.15GHz (VC = 3.3V, FREV = 2.9V, ICQ = 105mA, Freq= 5.15GHz, 64QAM / 54MBps) Pout , 5.85GHz, 64QAM / 54Mbps Notes: All EVM data are for OFDM signal of 64QAM/54Mbps from Yokogawa VG6000 , Current vs. Frequency (VC = 3.3V, FREV = 2.9V, ICQ = 105mA, POUT = 18dBm, 64QAM / 54MBps) Typical ACPR Microsemi
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at 2003

Abstract: MARKING CCK =25ºC PARAMETER CONDITION Total current Pout=19dBm, 64QAM/54Mbps Pout=24dBm, CCK/11Mbps MIN. f , Linear Output Power EVM , Input VSWR 2:1 Output VSWR 2.5:1 PAE @ linear power Pout=16dBm, 64QAM/54Mbps Pout
RF Integrated
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at 2003 MARKING CCK MARKING CCK -SDRAM AT2003 metal detector cck diagram 5M1994

QCA9880-BR4A

Abstract: local regulations 802.11a: OFDM (BPSK, QPSK,16-QAM, 64-QAM) / 802.11b: DSSS (DBPSK, DQPSK, CCK) 802.11g: OFDM (BPSK, QPSK,16-QAM, 64-QAM) / 802.11n: OFDM (BPSK, QPSK,16-QAM, 64-QAM) 802.11ac: OFDM (BPSK, QPSK,16-QAM, 64-QAM, 256-QAM) 802.11a: 15dBm ± 2dBm@54Mbps / 802.11b: 18dBm ± 2dBm@11Mbps
SparkLAN Communications
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QCA9880-BR4A QCA9880 WPEA-352ACN MSC15 20/40/80MH MCS23

ACP33

Abstract: AN8260 IQ AD8349 DAC ADL5330 0° 90° RF VGA QPSK16QAM64QAM OFDM 13dBmmax CW 64QAM , 64QAM OFDM 31.4dB SNR AD986012AD986214 70dBSNR 1MHz6MHz SFDR-76dBc DC OFDM , -16dBm 64QAM OFDM EVM2.7 rms PLL PLL 1°rms REV. A 7 AN-826 N2.3GHz RFN PLL PFD , AD834950VGA 120nH -3dBm 15dB 802.16 64QAM OFDM 1.5 EVM OPHI 120nH 100pF POUT = ­1dBm MAX , AN-826 3 2.5 64QAM 2/3 64QAM 3/4 10dB 2.7nH ­1 0 ­2 ­40 ­30 ­20
Analog Devices
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AD8362 ADF4153 ACP33 AN8260 TCXO10 OFDM QPSK 64-QAM-OFDM 826 5v AD9860-62 128MSPS12/14 5V360 3V165

rfic

Abstract: Characteristics (Vcc = 3.3V; Vref = 2.8V; RF Modulation = IEEE 802.11g, 54Mbps data rate, 64QAM signal; TA = , Power Gain 31 dB Linear Power 19 23 dBm < 2.5% EVM with 54Mbps, 64QAM modulation 1 , Current Consumption 145 210 mA mA @19dBm with 54Mbps, 64QAM modulation @23dBm with 1 Mbps DSSS modulation PAE 16 28 % % @19dBm with 54Mbps, 64QAM modulation @23dBm with 1 Mbps , IEEE 802.11g, 54Mbps data rate, 64QAM signal; TA = 25oC; unless otherwise noted.) Specification
RFIC Technology
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rfic AP1294 QFN-12

802.11AC

Abstract: 802.11n TQP6M9017 Data Sheet 802.11ac/a/b/g/n WLAN/BT High Performance Front-End Module Functional Block Diagram Features Fully Integrated, 802.11ac/a/b/g/n + BT high performance front-end module. Internally matched input/output Integrated directional detectors Temperature Compensated Bias Network Typical 2.4GHz Pout = 23.5dBm 802.11b, 19.0dBm 802.11g 54Mbps 64QAM at 3.5% EVM, 18.0dBm 802.11n MCS7 64QAM at 2.8% EVM Typical 5GHz Pout = 20.0dBm 802.11a 54Mbps 64QAM at 3.5% EVM, 19.0dBm 802.11n MCS7 64QAM at
TriQuint Semiconductor
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802.11AC 802.11n RF 2.4GHz cmos Front-End LNA 2.4GHZ bluetooth 802.11n evm mcs7
Abstract: operation (64QAM, 54Mbps), the PA provides +18dBm linear output power with a very low EVM (Error-Vector , ‡ Single-Polarity 3.3V Supply ̇ EVM ~ 3% at Pout=18dBm for 64QAM/ 54Mbps OFDM ̇ P1dB ~ +26dBm ̇ Power Gain , Gp 5.15 25 21 64QAM/54Mbps For Icq=100mA Over 200MHz o -40 to +85 C Pout = 18dBm , 100mA, 64QAM / 54Mbps) 19 20 21 210 EVM_Measured EVM_Deembedded Ictotal 205 4 , 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) 5 4.5 17 WWW . Microsemi .C OM 240 10 Microsemi
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LX5506LQ
Abstract: KEY FEATURES Advanced InGaP HBT Single-Polarity 3.3V Supply EVM ~ 3% at Pout=18dBm for 64QAM , matching capacitor pair. For OFDM operation (64QAM, 54Mbps), the PA provides +18dBm linear output power , dB dB dBc dBc ns 64QAM/54Mbps Ictotal Icq Iref S21 S21 S21 S11 S22 S12 For Icq=100mA Over , ) Typical EVM and Total Current vs. Pout at Vc = 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) Pout (dBm) Typical EVM and Total Current vs. Pout at Vc = 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) EVM VS Microsemi
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Abstract: DESCRIPTION For OFDM operation (64QAM, 54Mbps), the PA provides +18dBm linear output power with a very , Single-Polarity 3.3V Supply EVM ~ 3% at Pout=18dBm for 64QAM/ 54Mbps OFDM P1dB ~ +26dBm Power Gain ~ 23dB at , Symbol Min. f Pout Gp 5.15 25 21 64QAM/54Mbps For Icq=100mA Over 200MHz o -40 to , Vc = 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) Pout (dBm) Typical EVM and Total Current vs. Pout at Vc = 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) EVM VS FREQUENCY CURRENT VS FREQUENCY Microsemi
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ACA0862

Abstract: 64 QAM diagram 64QAM 4 CH. 3 CH. 2 CH. 1 CH. MER - 64QAM 4 CH. 3 CH. 2 CH. 1 CH. 20 15 56 58 60 62 64 66 68 70 , 543MHz CHANNEL UNDER TEST = 543MHz MER - 64QAM 4 CH. 3 CH. 2 CH. 1 CH. MER - 64QAM 4 CH. 3 CH , ) MER - 64QAM 4 CH. 3 CH. 2 CH. 1 CH. MER - 64QAM 4 CH. 3 CH. 2 CH. 1 CH. 56 58 60 62
Anadigics
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ACA0862 64 QAM diagram ACA0861 ACA0862B ACA0862D ACA1206 ACA0862B/D

HP3764A

Abstract: BER SER 32QAM modulation 1.1 2 Eo Eo 3Eo 64QAM constellation diagram 7 5Eo 7Eo Philips Semiconductors , 16QAM 1 4 QAM 32QAM 64QAM 2 16 QAM 3 32 QAM 4 64 QAM 0.1 0.01 BER versus PsPn 1 4QAM 16QAM 1 4 QAM 32QAM 64QAM 2 16 QAM 3 32 QAM 4 64 QAM 0.1 0.01 0.001 BER BER 0.001 , PsPn (dB) 18 20 22 24 SER versus EbNo 1 4QAM 16QAM 32QAM 64QAM 1 4 QAM 2 16 QAM , 64QAM 2 16 QAM 3 32 QAM 4 64 QAM 0.1 0.01 0.001 SER SER 0.001 0.0001 0.0001
Philips Semiconductors
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TDA8045 HP3764A BER SER 32QAM modulation ne602 32 QAM Transmitter block diagram BLOCK DIAGRAM NE602 AN95088 10T0T010T0T0 10T00100100T 10T001010T 1000T001001

ACA0862

Abstract: ACA0862D 64QAM 4 CH. 3 CH. 2 CH. 1 CH. MER - 64QAM 4 CH. 3 CH. 2 CH. 1 CH. 20 15 56 58 60 62 64 66 68 70 , 543MHz CHANNEL UNDER TEST = 543MHz MER - 64QAM 4 CH. 3 CH. 2 CH. 1 CH. MER - 64QAM 4 CH. 3 CH , ) MER - 64QAM 4 CH. 3 CH. 2 CH. 1 CH. MER - 64QAM 4 CH. 3 CH. 2 CH. 1 CH. 56 58 60 62
Anadigics
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ACA0862BRS7P2 ACA0862DRS7P2

LX5506

Abstract: LX5506-LQ DESCRIPTION For OFDM operation (64QAM, 54Mbps), the PA provides +18dBm linear output power with a very , Single-Polarity 3.3V Supply EVM ~ 3% at Pout=18dBm for 64QAM/ 54Mbps OFDM P1dB ~ +26dBm Power Gain ~ 23dB at , Symbol Min. f Pout Gp 5.15 25 21 64QAM/54Mbps For Icq=100mA Over 200MHz o -40 to , Vc = 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) Pout (dBm) Typical EVM and Total Current vs. Pout at Vc = 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) EVM VS FREQUENCY CURRENT VS FREQUENCY
Microsemi
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LX5506

Abstract: LX5506-LQ DESCRIPTION For OFDM operation (64QAM, 54Mbps), the PA provides +18dBm linear output power with a very , Single-Polarity 3.3V Supply EVM ~ 3% at Pout=18dBm for 64QAM/ 54Mbps OFDM P1dB ~ +26dBm Power Gain ~ 23dB at , Symbol Min. f Pout Gp 5.15 25 21 64QAM/54Mbps For Icq=100mA Over 200MHz o -40 to , Vc = 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) Pout (dBm) Typical EVM and Total Current vs. Pout at Vc = 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) EVM VS FREQUENCY CURRENT VS FREQUENCY
Microsemi
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rxq2

Abstract: AT86RF535B Modulation up to 64QAM Ultra-fast Fractional-N Synthesizer Sensitivity < -74 dBm at 64-QAM, CR=¾, 7MHz BW , Supports OFDM up to 64QAM 3.5GHz WiMAX Transceiver AT86RF535B Preliminary Description Atmel , Sensitivity 64QAM PRF TX Output Power Integrated Phase Noise of Synthesizer Operating Ambient , =3.5MHz, CR=½, S/N=9.4dB BW=7MHz, CR=¾, S/N=24.4dB FRF= 3.5 GHz, 15dB back off for 64QAM, EVM=-34dB, incl , QPSK 1/2 Sensitivity 64QAM 3/4 Maximum Input Power Noise Figure Single Side Band RX Chain: Gain
Atmel
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rxq2 DLNA WiMAX RF Transceiver dlna circuit AT86RF535 AT46000

rxq2

Abstract: AT86RF525B up to 64QAM Ultra-fast Fractional-N Synthesizer Sensitivity < -74dBm at 64-QAM, CR=¾, 7MHz BW , Band Wireless Communication Devices · IEEE® 802.16-2004 Radios · Supports OFDM up to 64QAM 2.5GHz , Supply Current IDDSTB Supply Current SENS Sensitivity QPSK Sensitivity 64QAM PRF TX , =24.4dB FRF= 2.5 GHz, 64QAM, EVM=34dB, incl. Balun Integrated over Frequency Range 50kHz . 1MHz 3.0 , Differential Impedance at LNA Input Sensitivity QPSK Sensitivity 64QAM Maximum Input Power Noise Figure
Atmel
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AT86RF525B WiMAX RF CMOS Transceiver 30VtX

fine and coarse gain control

Abstract: ofdm modulator 64qam integrated circuit AN-826 3 2.5 64QAM, RATE 2/3 QPSK, RATE 3/4 16QAM, RATE 3/4 2.0 64QAM, RATE 3/4 , , 64 QAM OFDM Modulated Signal) Rev. A | Page 15 of 16 AN-826 3 2.5 QPSK, RATE 1/2 64QAM, RATE 2/3 2.0 16QAM, RATE 1/2 QPSK, RATE 3/4 16QAM, RATE 3/4 64QAM, RATE 3/4 2 ­1
Analog Devices
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fine and coarse gain control ofdm modulator 64qam integrated circuit ofdm transmitter modulator OFDM ofdm equations ofdm modulator AD9860/AD9862 AN05790-0-7/06

rxq2

Abstract: AT86RF535B Modulation up to 64QAM Ultra-fast Fractional-N Synthesizer Sensitivity < -74 dBm at 64-QAM, CR=¾, 7MHz BW , Supports OFDM up to 64QAM Description Atmel®'s AT86RF535B is a fully integrated, low cost RF 3.5GHz , SENS Sensitivity QPSK Sensitivity 64QAM PRF TX Output Power Integrated Phase Noise of , , 64QAM, EVM=34dB, incl. Balun Integrated over Frequency Range 50kHz . 1MHz 3.0 3.3 270 360 , Impedance at LNA Input Sensitivity QPSK Sensitivity 64QAM Maximum Input Power Noise Figure Single Side
Atmel
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TX carrier cancellation on RX vco 77 ghz sige dga1 analog divider 5190B

5007T

Abstract: SE5007TEV1 DESCRIPTION For OFDM operation (64QAM, 54Mbps), the PA provides +18dBm linear output power with a very , Single-Polarity 3.3V Supply EVM ~ 3% at Pout=18dBm for 64QAM/ 54Mbps OFDM P1dB ~ +26dBm Power Gain ~ 23dB at , Symbol Min. f Pout Gp 5.15 25 21 64QAM/54Mbps For Icq=100mA Over 200MHz o -40 to , Vc = 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) Pout (dBm) Typical EVM and Total Current vs. Pout at Vc = 3.3V (Vc = 3.3V, Icq = 100mA, 64QAM / 54Mbps) EVM VS FREQUENCY CURRENT VS FREQUENCY
SiGe Semiconductor
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5007T SE5007TEV1 S2138 SE5007T DST-00383
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