F1150NBGI IDT | Alldatasheet
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RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 1 Rev2, July 2012 DATASHEET G ENERAL DESCRIPTION This document describes the specifications for the IDTF1150 ZeroBDistortion TM RF to IF Downconverting Mixer. This device is part of a series of downconverting mixers offered with high side or low side injection options for all UTRA bands. See the Part# Matrix for the details of all devices in this series. The F1150 dual channel device is designed to operate with a single 5V supply. It is optimized for operation in a MultiBmode, MultiBcarrier BaseStation Receiver for RF bands from 1700 B 2200 MHz with High Side Injection. IF frequencies from 50 to 450 MHz are supported. Nominally, the device offers +40 dBm Output IP3 with 335 mA of I CC . Alternately one can adjust 4 resistor values and a toggle pin to run the device in low current mode with +36 dBm Output IP3 and 235 mA of I CC . COMPETITIVE ADVANTAGE In typical basestation receivers the RF to IF mixer dominates the linearity performance for the entire receive system. ZeroBDistortion mixers dramatically improve the maximum signal levels (IM 3 tones) that the BTS can withstand at a desired Signal to Noise Ratio (SNR.) Alternately, one can run the device in Low Current Mode to reduce Power consumption significantly. IDT’s innovative design allows realization of either benefit. /checkbld IP3 O: ⇑⇑ ⇑⇑ 5 dB STD Mode , ⇑⇑ ⇑⇑ 2 dB LC Mode /checkbld Dissipation: ⇓⇓ ⇓⇓ 40% LC Mode , ⇓⇓ ⇓⇓ 12% STD Mode /checkbld Allows for higher RF gain improving Sensitivity PART # M ATRIX Part# RF freq range UTRA bands IF freq range Typ. Gain Injection F1100 698 - 915 5,6,8,12,13,14,17 ,19,20 50 - 450 8.5 High Side F1102 698 - 915 5,6,8,12,13,14,17 ,19,20 50 - 250 8.5 Both FF 11 11 5500 11 770000 -- 22 22 0000 11 ,,22 ,,33,,44,,99,,11 00,, 3333,, 3344,,3355,, 3366,, 3377,,3399 5500 -- 445500 88..55 HHiigghh SSiiddee F1152 1400 - 2200 1,2,3,4,9,10,11 21 1 , 24 1 , 33, 34,35, 36, 37,39 50 - 350 8.4 Low Side F1162 2200 – 2700 7,38,40,41 2 50 – 500 8.9 Both F EATURES
- Dual Path for Diversity Systems
- Ideal for MultiBCarrier Systems
- 8.5 dB Gain (200 MHz IF)
- Ultra linear +38 dBm IP3 O (350 MHz IF)
- Ultra linear ++ 4400 ddBBmm IIPP33OO ((22 00 00 MM HH zz IIFF))
- • Low NF < 10 dB
- 200 Ω output impedance
- Ultra high +13 dBm P1dB I
- PPiinn CCoommppaattiibbllee with existing solutions
- 6x6 36 pin package
- PPoowweerr DDoowwnn mmooddee
- < 200 nsec settling from Power Down
- Minimizes Synth pulling in Standby Mode
- Low Current Mode : IICCCC == 22 3355 mmAA
- Standard Mode: ICC = 335 mA D EVICE BLOCK DIAGRAM O RDERING INFORMATION 1 – with High side injection 2 – With High side or Low side injection RF IN_A IF OUT_A RF VCO LO ISET LC MODE RF IN_B IF OUT_B Bias Control STBY IDT F1150NB GI8 0.8 mm height package Green Industrial Temp range Tape & Reel Omit IDT prefix RF product Line
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 2 Rev2, July 2012 DATASHEET A BSOLUTE M AXIMUM RATINGS VCC to GND B0.3V to +5.5V STBY, LC MODE B0.3V to (VCC_ + 0.3V) IF_A+, IF_B+, IF_AB, IF_BB, LO_IN B0.3V to (VCC_ + 0.3V) LO1_ADJ, LO2_ADJ, IF_BiasA, IF_BiasB to GND B0.3V t o +1.2V RF Input Power (RF_IN[A+, AB, B+, BB]) +20dBm Continuous Power Dissipation 2.2W θJA (Junction – Ambient) +35°C/W θJC (Junction – Case) The Case is defined as the exposed paddle +2.1°C/W Operating Temperature Range (Case Temperature) T C = B40°C to +100°C Maximum Junction Temperature 150°C Storage Temperature Range B65°C to +150°C Lead Temperature (soldering, 10s) . +260°C Stresses above those listed above may cause permanent damage to the device. Functional operation of the device at these or any other conditions above those indicated in the operational section of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 3 Rev2, July 2012 DATASHEET IDTF1150 SPECIFICATION (1700 – 2200 MH Z M IXER W/H IGH SIDE INJECTION ) Specifications apply at V CC = +5.0V, F RF = 1850 MHz , F IF = 350MHz , P LO = 0 dBm, T C = +25°C, STBY = GND, LC MODE = V IH (STD Mode), EVKit BOM = Standard Mode, Transformer Loss included (not derembedded) unless otherwise noted. Parameter Comment Symbol min typ max units Logic Input High For Standby, LC MODE Pins VIH 2 V Logic Input Low For Standby, LC MODE Pins VIL 0.8 V Logic Current For Standby, LC MODE Pins IIH, IIL N30 +30 µA Supply Voltage(s) All V CC pins V CC 4.75 to 5.25 V Operating Temperature Range Case Temperature T CASE r40 to +100 degC Supply Current Total V CC , STD Mode /square4 Total Both Channels ISTD 334 375 mA Supply Current Total V CC , LC Mode /square4 LC MODE = GND /square4 EVkit BOM = LC Mode /square4 Total Both Channels ILC 235 260 mA Supply Current Standby Mode /square4 STBY = V IH /square4 Total Both Channels ISTBY 23 30 mA RF Freq Range Operating Range F RF 1700 to
2200 MHz
IF Freq Range Operating Range F IF 50 to 450 MHz LO Freq Range High Side Injection FLO 1750 to
2650 MHz
LO Power P LO r3 to +6 dBm RF Input Impedance Single Ended Return Loss ~17 dB ZRF 50 Ω IF Output Impedance Differential Return Loss ~ 13 dB ZIF 200 Ω LO port Impedance Single Ended Return Loss ~15 dB ZLO 50 Ω Settling Time
- Pin = r13 dBm
- Gate STBY from V IH to V IL
- Time for IF Signal to settle to within 0.1 dB of final value TSETT 0.155 µsec Gain STD Mode Conversion Gain
- FRF = 1710 MHz
- LC MODE = VIH
- EVkit BOM = STD Mode
- FIF = 350 MHz GSTD 7.0 8.1 8.6 dB Gain LC Mode Conversion Gain
- FRF = 2050 MHz
- LC MODE = GND
- EVkit BOM = LC Mode
- FIF = 200 MHz GLC 7.2 8.2 8.8 dB NF STD Mode Noise Figure NF STD 10 dB
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 4 Rev2, July 2012 DATASHEET IDTF1150 SPECIFICATION (C ONTINUED ) Parameter Comment Symbol min typ max units NF LC Mode Noise Figure
- LC MODE = GND
- EVkit BOM = LC Mode
- FIF = 200 MHz NF LC 9.6 dB NF w/Blocker /square4 r100 MHz offset blocker /square4 PIN = +4 dBm /square4 FIF = 250 MHz NF BLK 17.5 dB Output IP3 – Narrowband /square4 PIN = r10 dBm per tone /square4 800 KHz Tone Separation IP3 O1 36 38 dBm Output IP3 – Wideband /square4 PIN = r10 dBm per tone /square4 30 MHz Tone Separation IP3 O2 37 dBm Output IP3 – LC MODE /square4 PIN = r5 dBm per tone /square4 FRF = 1850 MHz /square4 FIF = 200 MHz /square4 800 KHz Tone Separation /square4 LC MODE = GND /square4 EVKit BOM = LC Mode IP3 O3 33 36 dBm 2RF – 2LO rejection /square4 PRF = r10 dBm /square4 Frequency = F RF + ½ F IF 2x2 r74 r64 dBc 1 dB Compression /square4 Input referred P1dB I1 12 12.8 dBm 1 dB Compression r LC MODE /square4 Input referred /square4 LC MODE = GND /square4 EVKit BOM = LC Mode /square4 FIF = 200 MHz P1dB I2 8 10.6 dBm Gain Comp. w/blocker /square4 Blocker /barb2right unmodulated tone /square4 PIN = +8 dBm, r100 MHz offset /square4 Signal Pin Tone = r20 dBm /square4 Measure ∆G of signal /square4 FIF = 250 MHz ∆G AC 0.15 dB Channel Isolation IF_B Pout vs. IF_A w/ RF_A input ISO C 52 dB LO to IF leakage ISO LI r39 r35 dBm RF to IF leakage Pin = r10 dBm ISO RI r30 r22.5 dBm LO to RF leakage ISO LR r40 dBm 1 – Items in min/max columns in bold italics are Guaranteed by Test 2 – All other Items in min/max columns are Guaranteed by Design Characterization
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 5 Rev2, July 2012 DATASHEET T YPICAL OPERATING CONDTIONS Unless otherwise Noted, the following Apply /square4 High Side Injection, 350 MHz IF & 200 MHz IF /square4 RF frequency = 1850 MHz for single point measurements /square4 Average of Channel A & Channel B /square4 Pin = -10 dBm, 800KHz Tone Spacing /square4 Use the Decoder example below for the Typ Op graphs on pages 6 – 10 & 13 - 17 RF Freq (Hz) Conversion Gain (dB) Typical T CASE = 25C V SUPPLY = 5.0V LO LEVEL = 0 dBm Hot or Low T CASE = 85C or V SUPPLY = 4.75V or LO LEVEL = r3 dBm Cold or High T CASE = r40C or V SUPPLY = 5.25V or LO LEVEL = +6 dBm
350 MHz IF
(solid line)
200 MHz IF
(dotted line)
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 6 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS STD M ODE (1) – SEE TRACE DECODER ON PAGE 5 Gain vs. Temperature Gain vs. LO Level Output IP3 vs. V CC Gain vs. V CC Output IP3 vs. Temperature Output IP3 vs. LO Level RF Freq (Hz) Conversion Gain (dB) RF Freq (Hz) Conversion Gain (dB) RF Freq (Hz) Output IP3 (dBm) RF Freq (Hz) Conversion Gain (dB) RF Freq (Hz) Output IP3 (dBm) RF Freq (Hz) Output IP3 (dBm)
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 7 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS STD M ODE (2) - SEE TRACE DECODER ON PAGE 5 P1dB vs. Temperature P1dB vs. LO Level 2RF x 2LO Rejection vs. V CC P1dB vs. V CC 2RF x 2LO rejection vs. Temperature 2RF x 2LO rejection vs. LO Level RF Freq (Hz) Input P1dB (dBm) RF Freq (Hz) Input P1dB (dBm) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 2RF X 2LO [Pin = -10] response (dBc) RF Freq (Hz) Input P1dB (dBm) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 2RF X 2LO [Pin = -10] response (dBc) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 2RF X 2LO [Pin = -10] response (dBc)
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 8 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS STD M ODE (3) – SEE TRACE DECODER ON PAGE 5 I CC vs. Temperature ICC vs. LO Level LO-IF Leakage vs. V CC I CC vs. V CC LO-IF Leakage vs. Temperature LO-IF Leakage vs. LO Level 0.200 0.220 0.240 0.260 0.280 0.300 0.320 0.340 0.360 0.380 0.400 RF Freq (Hz) Total Icc (A) 0.200 0.220 0.240 0.260 0.280 0.300 0.320 0.340 0.360 0.380 0.400 RF Freq (Hz) Total Icc (A) -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) LO to IF Leakage (dBm) 0.200 0.220 0.240 0.260 0.280 0.300 0.320 0.340 0.360 0.380 0.400 RF Freq (Hz) Total Icc (A) -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) LO to IF Leakage (dBm) -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) LO to IF Leakage (dBm)
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 9 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS STD M ODE (4) – SEE TRACE DECODER ON PAGE 5 RF-IF Leakage vs. Temperature RF-IF Leakage vs. LO Level 3RF X 3LO Rejection vs. V CC RF-IF Leakage vs. V CC 3RF X 3LO Rejection vs. Temperature 3RF X 3LO Rejection vs. LO Level -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) RF to IF Leakage [Pin = -10 dBm] (dBm) -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) RF to IF Leakage [Pin = -10 dBm] (dBm) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 3RF X 3LO [Pin = -10] response (dBc) -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) RF to IF Leakage [Pin = -10 dBm] (dBm) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 3RF X 3LO [Pin = -10] response (dBc) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 3RF X 3LO [Pin = -10] response (dBc)
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 10 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS STD M ODE (5) – SEE TRACE DECODER ON PAGE 5 Channel Isolation vs. Temperature Channel Isolation vs. LO Level Noise Figure vs. V CC Channel Isolation vs. V CC Noise Figure vs. Temperature Noise Figure ChA vs. ChB RF Freq (Hz) Channel Isolation (dBc) RF Freq (Hz) Channel Isolation (dBc) RF Freq (Hz) Noise Figure (dB) RF Freq (Hz) Channel Isolation (dBc) RF Freq (Hz) Noise Figure (dB) RF Freq (Hz) Noise Figure (dB)
200 MHz IF only
ChA (Dotted Line) ChB (Solid Line) -40C +25C +85C
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 11 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS – G ENERAL (-1-) NF v. Blocker (RF = 1850 MHz, IF = 250 MHz, T A = 25C) Settling Time (STBY -> V IL ) EVKit LO Port Match (T A = 25C, PMEAS = 0 dBm) 5x-4 Spur (+5 dBm Pin, IF = 350 MHz, STD Mode) Settling Time (STBY -> V IH ) EVkit RF Port Match (T A = 25C) -30 -22 -14 -6 2 10 Blocker Level (dBm) Noise Figure (dB) STD Mode (Green) LC Mode (Blue) ChA (Solid Line) ChB (Dotted Line) -0.5 -0.3 -0.1 0.1 0.3 0.5 -40 0 40 80 120 160 200 Time (nsec) Vrf Out (Volts) STBY Logic Pin (Volts) Vrf VSTBY Turn On Settling Time: 155 nsec -25 -20 -15 -10 LO Freq (Hz) LO Port Gamma (dB) STD Mode LC Mode LC STBY STD STBY -115 -110 -105 -100 -95 -90 -85 -80 -75 -70 -65 Spur Freq (Hz) 5XRF - 4XLO spur (dBc) Solid Lines - Channel A Dotted Lines B Channel B Blue: -40C T C Green: 25C T C Red: 85C T C -0.5 -0.3 -0.1 0.1 0.3 0.5 -40 0 40 80 120 160 Time (nsec) Vrf Out (Volts) STBY Logic Pin (Volts) Vrf VSTBY Turn Off Settling Time: 30 nsec -25 -20 -15 -10 RF Freq (Hz) RF Port Gamma (dB) ChA STD Mode ChB STD Mode ChA LC Mode ChB LC Mode
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 12 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS – G ENERAL (-2-) EVkit IF Port Match (T A = 25C) IP3 O vs. Tone ∆∆ ∆∆f (T A = 25C, Freq = 1850 MHz) Gain Distribution (N = 2348, F RF = 1710M , F IF = 350M) Small Signal Compression (IF = 250 MHz, STD Mode) IP3 O vs. RF Power (T A = 25C, Freq = 1850 MHz) IP3 O Distribution (N = 2348, F RF = 1850M , F IF = 200M) -25 -20 -15 -10 IF Freq (Hz) IF Port Gamma (dB) ChA STD Mode ChB STD Mode ChA LC Mode ChB LC Mode Tone Separation (Hz) Output IP3 (dBm) STD Mode (Green) LC Mode (Blue) IP3+ (Solid Lines) IP3- (Dotted Lines) 10% 15% 20% 25% 30% Percentage Gain Bin (dB) Channel B Channel A Standard Mode -30 -22 -14 -6 2 10 Large Signal Blocker Level (dBm) Small Signal Gain (dB) Channel B Channel A Pin (dBm/Tone) Output IP3 (dBm) STD Mode (Green) LC Mode (Blue) 350 MHz (Solid Lines)
200 MHz (Dotted Lines)
10% 15% 20% 25% 30% 35% Percentage IP3O Bin (dBm) Channel B Channel A Low Current Mode
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 13 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS LC M ODE (1) – SEE TRACE DECODER ON PAGE 5 Gain vs. Temperature Gain vs. LO Level Output IP3 vs. V CC Gain vs. V CC Output IP3 vs. Temperature Output IP3 vs. LO Level RF Freq (Hz) Conversion Gain (dB) RF Freq (Hz) Conversion Gain (dB) RF Freq (Hz) Output IP3 (dBm) RF Freq (Hz) Conversion Gain (dB) RF Freq (Hz) Output IP3 (dBm) RF Freq (Hz) Output IP3 (dBm)
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 14 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS LC M ODE (2) - SEE TRACE DECODER ON PAGE 5 P1dB vs. Temperature P1dB vs. LO Level 2RF x 2LO Rejection vs. V CC P1dB vs. V CC 2RF x 2LO rejection vs. Temperature 2RF x 2LO rejection vs. LO Level RF Freq (Hz) Input P1dB (dBm) RF Freq (Hz) Input P1dB (dBm) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 2RF X 2LO [Pin = -10] response (dBc) RF Freq (Hz) Input P1dB (dBm) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 2RF X 2LO [Pin = -10] response (dBc) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 2RF X 2LO [Pin = -10] response (dBc)
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 15 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS LC M ODE (3) – SEE TRACE DECODER ON PAGE 5 I CC vs. Temperature ICC vs. LO Level LO-IF Leakage vs. V CC I CC vs. V CC LO-IF Leakage vs. Temperature LO-IF Leakage vs. LO Level 0.200 0.220 0.240 0.260 0.280 0.300 0.320 0.340 0.360 0.380 0.400 RF Freq (Hz) Total Icc (A) 0.200 0.220 0.240 0.260 0.280 0.300 0.320 0.340 0.360 0.380 0.400 RF Freq (Hz) Total Icc (A) -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) LO to IF Leakage (dBm) 0.200 0.220 0.240 0.260 0.280 0.300 0.320 0.340 0.360 0.380 0.400 RF Freq (Hz) Total Icc (A) -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) LO to IF Leakage (dBm) -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) LO to IF Leakage (dBm)
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 16 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS LC M ODE (4) – SEE TRACE DECODER ON PAGE 5 RF-IF Leakage vs. Temperature RF-IF Leakage vs. LO Level 3RF X 3LO Rejection vs. V CC RF-IF Leakage vs. V CC 3RF X 3LO Rejection vs. Temperature 3RF X 3LO Rejection vs. LO Level -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) RF to IF Leakage [Pin = -10 dBm] (dBm) -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) RF to IF Leakage [Pin = -10 dBm] (dBm) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 3RF X 3LO [Pin = -10] response (dBc) -50 -45 -40 -35 -30 -25 -20 -15 -10 RF Freq (Hz) RF to IF Leakage [Pin = -10 dBm] (dBm) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 3RF X 3LO [Pin = -10] response (dBc) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 RF Freq (Hz) 3RF X 3LO [Pin = -10] response (dBc)
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 17 Rev2, July 2012 DATASHEET TYPICAL OPERATING CONDITIONS LC M ODE (5) – SEE TRACE DECODER ON PAGE 5 Channel Isolation vs. Temperature Channel Isolation vs. LO Level Noise Figure vs. V CC Channel Isolation vs. V CC Noise Figure vs. Temperature Noise Figure ChA vs. ChB RF Freq (Hz) Channel Isolation (dBc) RF Freq (Hz) Channel Isolation (dBc) RF Freq (Hz) Noise Figure (dB) RF Freq (Hz) Channel Isolation (dBc) RF Freq (Hz) Noise Figure (dB) RF Freq (Hz) Noise Figure (dB) ChA (Dotted Lines) ChB (Solid Lines) -40C +25C +85C
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 18 Rev2, July 2012 DATASHEET HH IIGG HH TTEEMM PP OPERATING CONDITIONS [200 MH Z IF ] (1) Gain [EVKit de-embedded] 2RF x 2LO rejection LO - IF leakage Output IP3 [EVkit de-embedded] Input 1dB Compression 3RF x 3LO rejection Gain (dB) RF Freq (GHz) 25C case - 200 MHz IF - STD 25C case - 200 MHz IF - LC 25C ambient - 200 MHz IF - STD 25C ambient - 200 MHz IF - LC 100C case - 200 MHz IF - STD 100C case - 200 MHz IF - LC EVkit effects deNembedded, corrected for:
- TC4N1T transformer loss (graph on page 20)
- RF input trace loss (graph on page 20) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10
2 X 2 Rejection [Pin = -10] (dBc)
RF Freq (GHz) 25C case - 200 MHz IF - STD 25C case - 200 MHz IF - LC 25C ambient - 200 MHz IF - STD 25C ambient - 200 MHz IF - LC 100C case - 200 MHz IF - STD 100C case - 200 MHz IF - LC -50 -45 -40 -35 -30 -25 -20 -15 -10 LO to IF leakage (dBm) RF Freq (GHz) 25C case - 200 MHz IF - STD 25C case - 200 MHz IF - LC 25C ambient - 200 MHz IF - STD 25C ambient - 200 MHz IF - LC 100C case - 200 MHz IF - STD 100C case - 200 MHz IF - LC Output IP3 (dBm) RF Freq (GHz) 25C case - 200 MHz IF - STD 25C case - 200 MHz IF - LC 25C ambient - 200 MHz IF - STD 25C ambient - 200 MHz IF - LC 100C case - 200 MHz IF - STD 100C case - 200 MHz IF - LC EVkit effects deNembedded, corrected for:
- TC4N1T transformer loss (graph on page 20) Input P1dB (dBm) RF Freq (GHz) 25C case - 200 MHz IF - STD 25C case - 200 MHz IF - LC 25C ambient - 200 MHz IF - STD 25C ambient - 200 MHz IF - LC 100C case - 200 MHz IF - STD 100C case - 200 MHz IF - LC -100 -90 -80 -70 -60 -50 -40 -30 -20 -10
3 X 3 Rejection [Pin =-10] (dBc)
RF Freq (GHz) 25C case - 200 MHz IF - STD 25C case - 200 MHz IF - LC 25C ambient - 200 MHz IF - STD 25C ambient - 200 MHz IF - LC 100C case - 200 MHz IF - STD 100C case - 200 MHz IF - LC
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 19 Rev2, July 2012 DATASHEET HH IIGG HH TTEEMM PP OPERATING CONDITIONS [350 MH Z IF ] (2) Gain [EVKit de-embedded] 2RF x 2LO rejection LO - IF leakage Output IP3 [EVkit de-embedded] Input 1dB Compression RF – IF leakage Gain (dB) RF Freq (GHz) 25C case - 350 MHz IF - STD 25C case - 350 MHz IF - LC 25C ambient - 350 MHz IF - STD 25C ambient - 350 MHz IF - LC 100C case - 350 MHz IF - STD 100C case - 350 MHz IF - LC EVkit effects deNembedded, corrected for:
- TC4N1T transformer loss (graph on page 20)
- RF input trace loss (graph on page 20) -100 -90 -80 -70 -60 -50 -40 -30 -20 -10
RF Freq (GHz) 25C case -350 MHz IF -STD 25C case -350 MHz IF -LC 25C ambient - 350 MHz IF - STD 25C ambient - 350 MHz IF - LC 100C case -350 MHz IF -STD 100C case -350 MHz IF -LC -50 -45 -40 -35 -30 -25 -20 -15 -10 LO to IF leakage (dBm) RF Freq (GHz) 25C case - 350 MHz IF - STD 25C case - 350 MHz IF - LC 25C ambient - 350 MHz IF - STD 25C ambient - 350 MHz IF - LC 100C case - 350 MHz IF - STD 100C case - 350 MHz IF - LC Output IP3 (dBm) RF Freq (GHz) 25C case - 350 MHz IF - STD 25C case - 350 MHz IF - LC 25C ambient - 350 MHz IF - STD 25C ambient - 350 MHz IF - LC 100C case - 350 MHz IF - STD 100C case - 350 MHz IF - LC EVkit effects deNembedded, corrected for:
- TC4N1T transformer loss (graph on page 20) Input P1dB (dBm) RF Freq (GHz) 25C case - 350 MHz IF - STD 25C case - 350 MHz IF - LC 25C ambient - 350 MHz IF - STD 25C ambient - 350 MHz IF - LC 100C case - 350 MHz IF - STD 100C case - 350 MHz IF - LC -70 -65 -60 -55 -50 -45 -40 -35 -30 -25 -20 RF to IF leakage [Pin = -10] (dBm) RF Freq (GHz) 25C case - 350 MHz IF - STD 25C case - 350 MHz IF - LC 25C ambient - 350 MHz IF - STD 25C ambient - 350 MHz IF - LC 100C case - 350 MHz IF - STD 100C case - 350 MHz IF - LC
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 20 Rev2, July 2012 DATASHEET HH IIGG HH TTEEMM PP OPERATING CONDITIONS [G ENERAL ] (3) Channel Isolation Noise Figure [EVkit de-embedded] EVkit RF trace loss Output IP2 Output 1dB Compression [EVkit de-embedded] EVkit Transformer Loss ChA to ChB Isolation (dBc) RF Freq (GHz) 25C case - 200 MHz IF - STD 25C case - 200 MHz IF - LC 25C ambient - 200 MHz IF - STD 25C ambient - 200 MHz IF - LC 100C case - 200 MHz IF - STD 100C case - 200 MHz IF - LC 1800 1850 1900 1950 2000 Noise Figure (dB) RF Freq (MHz) -40 degC - ChA -40 degC - ChB 25 degC - ChA 25 degC - ChB 100 degC -ChA 100 degC -ChB EVkit RF input trace loss de-embedded Low Current Mode (LC) -0.5 -0.4 -0.3 -0.2 -0.1 0.0 1500 1600 1700 1800 1900 2000 2100 2200 2300 2400 RF Trace Loss [ChA & ChB] (dB) RF Freq (MHz) RF_-40C RF_25C RF_100C Output IP2 (dBm) RF Freq (GHz) 25C case - 200 MHz IF - STD 25C case - 200 MHz IF - LC 25C ambient - 200 MHz IF - STD 25C ambient - 200 MHz IF - LC 100C case - 200 MHz IF - STD 100C case - 200 MHz IF - LC Output P1dB (dBm) RF Freq (GHz) 25C case - 350 MHz IF - STD 25C case - 350 MHz IF - LC 25C ambient - 350 MHz IF - STD 25C ambient - 350 MHz IF - LC 100C case - 350 MHz IF - STD 100C case - 350 MHz IF - LC EVkit effects deNembedded, corrected for:
- TC4N1T transformer loss (graph on page 20) -1.4 -1.2 -1.0 -0.8 -0.6 -0.4 -0.2 0.0 TC4-1T Transformer Loss (dB) Frequency (Hz) -40C +25C +100C See Mixer Device Gain plots. This Data is used to de-embed the EVKit measured data
RF to IF Dual Downconverting Mixer IDT Zero-Distortion TM Mixer PACKAGE DRAWING (6X6 QFN) RF to IF Dual Downconverting Mixer 1700 - 2200 MHz
2200 MHz F1150NBGI
Rev2, July 2012 DATASHEET
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 22 Rev2, July 2012 DATASHEET PINOUTS 36 35 34 33 32 31 30 29 28 RF_B NC [internal NC] 4NC [internal NC] GND [DB GND] GND [RFA_rtn] RF_A
18 GND [DB GND]
17 LO1_ADJ
16 VCC
15 GND [internal NC]
14 IF_B-
13 IF_B+
12 GND [internal NC]
11 IF_BiasB
10 VCC
19 LO_in
GND [internal NC] VCC GND [LC MODE ] GND [STBY] LO_SW [internal NC] GND [DB GND] NC [internal NC]27 B I A S C T R L GND [DB GND] LO2_ADJ VCC GND [internal NC] IF_A- IF_A+ GND [internal NC] IF_BiasA VCC GND [DB GND] GND [DB GND] GND [RFB_rtn] GND [LO_rtn] Black Text denotes recommended external connection Red Text denotes internal Function or Connection - DB GND = Downbonded to Paddle - Internal NC = Pin not connected
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 23 Rev2, July 2012 DATASHEET PIN DESCRIPTIONS Pin(s) Name Function 1 RF_A Main Channel RF Input. Internally matched to 50Ω. DO NOT apply DC to these pins 2, 8, 20 RF_Artn, RF_Brtn, LO_rtn Transformer Ground Returns. Ground these pins. 3, 5, 7,18, 22, 24, 28 GND Ground these pins. 4, 6, 12, 15, 31, OK to connect to GND 10, 16, 21, 30, 36 VCC Power Supplies. Bypass to GND with capacitors shown in the Typical Application Circuit as close as possible to pin. 9 RF_B Diversity Channel RF Input. Internally matc hed to 50Ω Connect the specified resistor from this pin to ground to set the bias for the Diversity IF amplifier. This is NOT a current set resistor 13, 14 IFB+, IFBr Diversity Mixer Differential IF Output. Connect pullup inductors from each of these pins to VCC (see the Typical Application Circuit).
17 LO1_ADJ Connect the specified resistor for either Standard or LC mode
from this pin to ground to set the LO common buffer Icc 19 LO_in Local Oscillator Input. Connect the LO to this port through a series 3 pF capacitor
25 LC_MODE
Low_Current Mode. Set this pin to low or ground for LC mode. Set to high or NorConnect for Standard mode. There is an internal pullrup resistor. 22 STBY STBY Mode. Pull this pin high for Standby mode (~20 mA). Pull low or Ground for normal Operation
29 LO2_ADJ Connect the specified resistor for either Standard or LC mode
from this pin to ground to set the LO drive buffers Icc 32, 33 IFAr, IFA+ Main Mixer Differential IF Output. Connect pullup inductors from each of these pins to VCC (see the Typical Application Circuit).
35 IF_BiasA Connect the specified resistor from this pin to ground to set the
bias for the Main IF amplifier. This is NOT a current set resistor — EP Exposed Pad. Internally connected to GND. Solder this exposed pad to a PCB pad that uses multiple ground vias to provide heat transfer out of the device into the PCB ground planes. These multiple via grounds are also required to achieve the noted RF performance.
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 24 Rev2, July 2012 DATASHEET EV KIT SCHEMATIC 36 35 34 33 32 31 30 29 28 RF_B RF_B rtn NC 4NC GND RF_A rtn RF_A
18 GND
15 GND
12 GND
21 VCC
LO_rtn B I A S C T R L C8J4 C10 C12 Vcc C13 R12 R11 C14 L3 L4 C15 Vcc R14 R13 C16 Vcc Vcc GND LO2_ADJ VCC GND IF_A- IF_A+ GND IF_BiasA VCC Vcc C6 R15 R16 L1 L2 C2 J2 Vcc R17 R18 Vcc 4:1 Balun 4:1 Balun C11 JP JP Vcc R9 R8 Vcc GND GND R10
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 25 Rev2, July 2012 DATASHEET EV KIT PICTURE /L AYOUT /O PERATION Outer Position for STD Mode (R15, R17 ) Close for Mixer Operation Open to turn Mixer Off Close for LC Mode Open for STD Mode Inner Position for LC Mode (R16, R18) Outer Position for STD Mode (R11, R13) Inner Position for LC Mode (R12, R14) Unused Monitor VCC Here Apply VCC Here
RF to IF Dual Downconverting Mixer 1700 - 2200 MHz F1150NBGI IDT Zero-Distortion TM Mixer 26 Rev2, July 2012 DATASHEET EVK IT BOM For Standard Mode, Open the LC MODE jumper in conjunction with positioning the 4 dual jumpers to select the resistors in red. For Low Current Mode close the LC MODE jumper in conjunction with positioning the 4 dual jumpers to select the resistors in blue. TOP M ARKINGS Item # Value Size Desc Mfr. Part # Mfr. Part Reference Qty 1 10nF 0402 CAP CER 10000PF 16V 10% X7R 0402 GRM155R71C103KA01D MURATA C1,5,6,9,12,13,16 7 2 1000pF 0402 CAP CER 1000PF 50V C0G 0402 GRM1555C1H102JA01D MURATA C2,3,14,15 4 3 1.2nH 0402 0402CSr1N2XJLU Ceramic Chip Inductor 0402CSr1N2XJLU COILCRAFT C8,10 2 4 3pF 0402 CAP CER 3PF 0402 GRM1555C1H3R0CZ01D MURATA C11 1 5 10uF 0603 CAP CER 10UF 6.3V X5R 0603 GRM188R60J106ME47D MURATA C4 1
6 Header 2 Pin TH 2 CONN HEADER VERT SGL 2POS GOLD 961102r6404rAR 3M JP1,2,3 3
7 Header 3 Pin TH 3 CONN HEADER VERT SGL 3POS GOLD 961103r6404rAR 3M JP4,5,6,7 4
8 SMA_END_LAUNCH .062 SMA_END_LAUNCH 142r0711r821 Emerson Johnson J1,2,3,4,5,6,7 7 9 270nH 0805 0805CS (2012) Ceramic Chip Inductor 0805CSr271XJLB COILCRAFT L1,2,3,4 4 10 27 0402 RES 27 OHM 1/10W 1% 0402 SMD ERJr2RKF27R0X Panasonic R11,15 2 11 63 0402 RES 63 OHM 1/10W 1% 0402 SMD ERJr2RKF63R0X Panasonic R12,16 2 12 91 0402 RES 91.0 OHM 1/10W 1% 0402 SMD ERJr2RKF91R0X Panasonic R13 1 13 180 0402 RES 180 OHM 1/10W 1% 0402 SMD ERJr2RKF1800X Panasonic R14 1 14 1.91K 0402 RES 1.91K OHM 1/10W 1% 0402 SMD ERJr2RKF1911X Panasonic R18 1 15 1.21K 0402 RES 1.21K OHM 1/10W 1% 0402 SMD ERJr2RKF1211X Panasonic R17 1 16 47K 0402 RES 47.0K OHM 1/16W 1% 0402 SMD RC0402FRr0747KL Yageo R8,9 2 17 0 0402 RES 0.0 OHM 1/10W 0402 SMD ERJr2GE0R00X Panasonic R1,2,3,4,5,6,7,10 10 18 4:1 Balun SMr22 4:1 Center Tap Balun TC4r1TG2+ Mini Circuits T1,2 2
19 F1150ZM (021) QFNr36 Diversity Downconverter IDT U1 1
20 PCB F1150 EVKit Rev5 1
Date Code : [xxYYWWx ] (Work Week 6 of 2012) Lot Code NOTE: Production Devices are DateCode 1206 or later.