IDTF1100NBGI8 F1100 DATASHEET GENERAL DESCRIPTION FEATURES COMPETITIVE ADVANTAGE DEVICE BLOCK DIAGRAM PART# MATRIX ORDERING INFORMATION
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1 F 6-15 MHz FNBGI GENERAL DESCRIPTION This document describes the specifications for the IDTF Zero-Distortion TM RF to IF Downconverting Mixer. This device is part of a series of downconverting mixers covering all UTRA bands. See the Part# Matrix for the details of all devices in the series. The F dual channel device operates with a single 5V supply. It is optimized for operation in a Multicarrier BaseStation Receiver for RF bands from 6 to 15 MHz with High Side Injection. IF frequencies from 15 to MHz are supported. Nominally, the device offers +41 dbm Output IP3 with ma of I CC. COMPETITIVE ADVANTAGE In typical basestation receivers the mixer limits the linearity performance for the entire receive system. The F with Zero-Distortion technology dramatically improves the maximum IM 3 interference that the BTS can withstand at a desired Signal to Noise Ratio (SNR.) FEATURES Dual Path for Diversity Systems Ideal for Multi-Carrier Systems MIMO friendly: -6 dbm min LO drive db Gain Ultra linear: +41 dbm IP3 O ( MHz IF) Low NF ~1 db 2 Ω output impedance Ultra high +13 dbm P1dB I Pin Compatible w/existing solutions 6x6 36 pin package Power Down mode Standard Mode: I CC = ma DEVICE BLOCK DIAGRAM RF IN_A IFOUT_A IP3 O : 7 db Allows for higher RF gain improving Sensitivity RF VCO RF IN_B Bias Control 2 STBY LOADJ IFOUT_B PART# MATRIX Part# RF freq range F 6-15 F1 4-1 F F52-22 UTRA bands 5,6,,,13,,17,1,2 5,6,,,13,,17,1,2 1,2,3,4,,1, 33, 34,, 36, 37,3 1,2,3,4,,1, 21 1, 24 1, 33, 34,, 36, 37,3 IF freq range Typ. Gain Injection 15 - High Side 5-3. Both High Side Low Side F ,3,4, Both ORDERING INFORMATION Omit IDT prefix. mm height package IDTFNBGI Tape & Reel 1 with High side injection RF product Line Green Industrial Temp range IDT Zero-Distortion TM Mixer 1 RevO, Feb 213
2 F 6-15 MHz FNBGI ABSOLUTE MAXIMUM RATINGS to GND -.3V to +5.5V STBY -.3V to (_ +.3V) IF_A+, IF_B+, IF_A-, IF_B-, LO1_ADJ, LO2_ADJ -.3V to (_ +.3V) LO_IN, LO_IN_ALT, RF_A, RF_B -.3V to +.3V IF_BiasA, IF_BiasB to GND -.3V to +.3V RF Input Power (RF_A, RF_B) +2dBm Continuous Power Dissipation 2.2W θ JA (Junction Ambient) + C/W θ JC (Junction Case) The Case is defined as the exposed paddle +2.5 C/W Operating Temperature Range (Case Temperature) T C = -4 C to +1 C Maximum Junction Temperature 15 C Storage Temperature Range -65 C to +15 C Lead Temperature (soldering, 1s). +26 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.. IDT Zero-Distortion TM Mixer 2 RevO, Feb 213
3 F 6-15 MHz FNBGI IDTF SPECIFICATION (6 15 MHZ MIXER W/HIGH SIDE INJECTION) Specifications apply at V CC = +5.V, F RF = 5 MHz, F IF = MHz, Hi-Side Inj., P LO = dbm, T CASE = + C, STBY = GND, Trace and Transformer Losses de-embedded unless otherwise noted. Parameter Comment Symbol min typ max units Logic Input High For Standby Pin V IH 2 V Logic Input Low For Standby Pin V IL. V Logic Current For Standby Pin I IH, I IL +5 µa Supply Voltage(s) All V CC pins V CC Operating Temperature Case Temperature 4.75 to 5. Supply Current Total V CC Both Channels I STD ma Supply Current Standby Mode STBY = V IH Total Both Channels T CASE RF Freq Range Operating Range F RF IF Freq Range Operating Range F IF LO Freq Range Operating Range F LO -4 to +1 V degc I STBY 2 ma 6 to to 4 to 1365 LO Power Operating Range P LO -6 to +6 dbm RF Input Impedance IF Output Impedance LO port Impedance Gain (low freq) Gain (high freq) Single Ended Return Loss > 15 db Differential Return Loss > 15 db Single Ended Return Loss > 15 db Conversion Gain F RF = 6 MHz F IF = MHz EVB trace and transformer loss =. db Conversion Gain F RF = 15 MHz F IF = MHz EVB trace and transformer loss =. db MHz MHz MHz Z RF 5 Ω Z IF 2 Ω Z LO 5 Ω G db G db IDT Zero-Distortion TM Mixer 3 RevO, Feb 213
4 F 6-15 MHz FNBGI IDTF SPECIFICATION (CONTINUED) Parameter Comment Symbol min typ max units Noise Figure F RF = 5 MHz F IF = MHz NF STD 1 db NF w/blocker Output IP3 Narrowband Output IP3 Wideband 2RF X 2LO rejection 3RF X 3LO rejection 5 MHz offset blocker P IN = +1 dbm F IF = MHz F RF = MHz P IN = dbm per tone KHz Tone Separation F IF = MHz F RF = 5 MHz P IN = dbm per tone 15 MHz Tone Separation F IF = MHz P RF = dbm F IF = MHz F LO = MHz F SPUR = F LO - ½ F IF P RF = dbm F IF = MHz F LO = MHz F SPUR = F LO 1 / 3 F IF NF BLK 2.3 db IP3 O dbm IP3 O2 41 dbm 2x2 - dbc 3x3-2 dbc 1 db Compression Input referred F IF = MHz P1dB I dbm Channel Isolation IF_B Pout vs. IF_A w/ RF_A input ISO C 6 db LO to IF leakage ISO LI dbm RF to IF leakage Pin = dbm ISO RI dbm LO to RF leakage ISO LR -4 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 Centering TYPICAL OPERATING CONDITIONS Unless Otherwise Noted: Dotted Lines: MHz IF / Solid Lines: MHz IF High Side Injection KHz Channel Spacing Average of ChA, ChB Pin = dbm Trace & Transformer Losses de-embedded IDT Zero-Distortion TM Mixer 4 RevO, Feb 213
5 F 6-15 MHz FNBGI TYPICAL OPERATING CONDITIONS (-1-) Gain vs. T CASE 1 Gain vs. V CC 1 Gain (db) 7 Gain (db) degc / 5. V / dbm / MHz -4 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz 6 5 degc / 5. V / dbm / MHz degc / 5. V / dbm / MHz degc / 4.75 V / dbm / MHz degc / 4.75 V / dbm / MHz 4 Gain vs. LO Level 4 Output IP3 vs. T CASE 5 Gain (db) 1 7 Output IP3 (dbm) degc / 5. V / 6 dbm / MHz degc / 5. V / 6 dbm / MHz -4 degc / 5. V / dbm / MHz -4 degc / 5. V / dbm / MHz 5 degc / 5. V / -3 dbm / MHz degc / 5. V / -3 dbm / MHz 1 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz 4 Output IP3 vs. V CC 5 2 Output IP3 vs. LO Level 5 Output IP3 (dbm) 4 3 Output IP3 (dbm) 4 3 degc / 5. V / dbm / MHz degc / 5. V / dbm / MHz degc / 5. V / 6 dbm / MHz degc / 5. V / 6 dbm / MHz degc / 4.75 V / dbm / MHz degc / 4.75 V / dbm / MHz degc / 5. V / -3 dbm / MHz degc / 5. V / -3 dbm / MHz 2 2 IDT Zero-Distortion TM Mixer 5 RevO, Feb 213
6 F 6-15 MHz FNBGI TYPICAL OPERATING CONDITIONS (-2-) P1dB vs. T CASE 15 P1dB vs. V CC 15 Input P 1dB (dbm) degc / 5. V / dbm / MHz -4 degc / 5. V / dbm / MHz Input P 1dB (dbm) 13 1 degc / 5. V / dbm / MHz degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz degc / 4.75 V / dbm / MHz degc / 4.75 V / dbm / MHz P1dB vs. LO Level 2RF x 2LO rejection vs. T CASE 15 Input P 1dB (dbm) 13 1 degc / 5. V / 6 dbm / MHz degc / 5. V / 6 dbm / MHz degc / 5. V / -3 dbm / MHz degc / 5. V / -3 dbm / MHz 2 x 2 Rejection (dbc) P IN = dbm -4 degc / 5. V / dbm / MHz -4 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz 2RF x 2LO Rejection vs. V CC 2RF x 2LO Rejection vs. LO Level P IN = dbm P IN = dbm 2 x 2 Rejection (dbc) degc / 5. V / dbm / MHz degc / 5. V / dbm / MHz degc / 4.75 V / dbm / MHz degc / 4.75 V / dbm / MHz 2 x 2 Rejection (dbc) degc / 5. V / 6 dbm / MHz degc / 5. V / 6 dbm / MHz degc / 5. V / -3 dbm / MHz degc / 5. V / -3 dbm / MHz - - IDT Zero-Distortion TM Mixer 6 RevO, Feb 213
7 F 6-15 MHz FNBGI TYPICAL OPERATING CONDITIONS (-3-) I CC vs. T CASE.3.3 I CC vs. V CC.3.3 Total I CC (Amps) Total I CC (Amps) degc / 5. V / dbm / MHz -4 degc / 5. V / dbm / MHz.33 degc / 5. V / dbm / MHz degc / 5. V / dbm / MHz.32 1 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz.32 degc / 4.75 V / dbm / MHz degc / 4.75 V / dbm / MHz.31 I CC vs. LO Level.3.31 LO-IF Leakage vs. T CASE.3 Total I CC (Amps) degc / 5. V / 6 dbm / MHz degc / 5. V / 6 dbm / MHz degc / 5. V / -3 dbm / MHz degc / 5. V / -3 dbm / MHz LO to IF Leakage (dbm) degc / 5. V / dbm / MHz -4 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz.31 LO-IF Leakage vs. V CC LO-IF Leakage vs. LO Level LO to IF Leakage (dbm) degc / 5. V / dbm / MHz degc / 5. V / dbm / MHz LO to IF Leakage (dbm) degc / 5. V / 6 dbm / MHz degc / 5. V / 6 dbm / MHz - degc / 4.75 V / dbm / MHz degc / 4.75 V / dbm / MHz - degc / 5. V / -3 dbm / MHz degc / 5. V / -3 dbm / MHz IDT Zero-Distortion TM Mixer 7 RevO, Feb 213
8 F 6-15 MHz FNBGI TYPICAL OPERATING CONDITIONS (-4-) RF-IF Leakage vs. T CASE RF-IF Leakage vs. V CC P IN = dbm P IN = dbm RF to IF Leakage (dbm) degc / 5. V / dbm / MHz -4 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz RF to IF Leakage (dbm) degc / 5. V / dbm / MHz degc / 5. V / dbm / MHz degc / 4.75 V / dbm / MHz degc / 4.75 V / dbm / MHz - - RF-IF Leakage vs. LO Level 3RF X 3LO Rejection vs. T CASE P IN = dbm P IN = dbm RF to IF Leakage (dbm) degc / 5. V / 6 dbm / MHz degc / 5. V / 6 dbm / MHz degc / 5. V / -3 dbm / MHz degc / 5. V / -3 dbm / MHz 3 x 3 Rejection (dbc) degc / 5. V / dbm / MHz -4 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz - - 3RF X 3LO Rejection vs. V CC 3RF X 3LO Rejection vs. LO Level P IN = dbm P IN = dbm 3 x 3 Rejection (dbc) degc / 5. V / dbm / MHz degc / 5. V / dbm / MHz degc / 4.75 V / dbm / MHz degc / 4.75 V / dbm / MHz 3 x 3 Rejection (dbc) degc / 5. V / 6 dbm / MHz degc / 5. V / 6 dbm / MHz degc / 5. V / -3 dbm / MHz degc / 5. V / -3 dbm / MHz - - IDT Zero-Distortion TM Mixer RevO, Feb 213
9 F 6-15 MHz FNBGI TYPICAL OPERATING CONDITIONS (-) Channel Isolation vs. T CASE 7 65 Channel Isolation vs. V CC 7 65 Channel Isolation (dbc) degc / 5. V / dbm / MHz -4 degc / 5. V / dbm / MHz Channel Isolation (dbc) degc / 5. V / dbm / MHz degc / 5. V / dbm / MHz 3 1 degc / 5. V / dbm / MHz 1 degc / 5. V / dbm / MHz 3 degc / 4.75 V / dbm / MHz degc / 4.75 V / dbm / MHz Channel Isolation vs. LO Level 7 Noise Figure vs. T CASE ( MHz IF, RF trace de-embedded) 15 Channel Isolation (dbc) degc / 5. V / 6 dbm / MHz degc / 5. V / 6 dbm / MHz Noise Figure (db) degc - ChA -4 degc - ChB degc - ChA degc - ChB 1 degc - ChA 1 degc - ChB 3 degc / 5. V / -3 dbm / MHz degc / 5. V / -3 dbm / MHz Noise Figure vs. T CASE ( MHz IF, RF trace de-embedded) NF vs. Blocker (RF = MHz, IF = MHz, T A = C) 15-4 degc - ChA -4 degc - ChB degc - ChA degc - ChB ChA ChB Noise Figure (db) degc - ChA 1 degc - ChB Noise Figure (db) Blocker Level (dbm) IDT Zero-Distortion TM Mixer RevO, Feb 213
10 F 6-15 MHz FNBGI TYPICAL OPERATING CONDITIONS [Extreme Conditions: low Supply, low LO level -6 dbm] (-6-) Gain Output IP3 5 1 Gain (db) degc / 4.75 V / -6 dbm / MHz -4 degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz Output IP3 (dbm) degc / 4.75 V / -6 dbm / MHz -4 degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz 4 2x2 Rejection 2 3x3 Rejection P IN = dbm P IN = dbm 2 x 2 Rejection (dbc) degc / 4.75 V / -6 dbm / MHz -4 degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz 3 x 3 Rejection (dbc) degc / 4.75 V / -6 dbm / MHz -4 degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz - - Input P1dB 15 LO to IF Leakage Input P 1dB (dbm) degc / 4.75 V / -6 dbm / MHz -4 degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz LO to IF Leakage (dbm) degc / 4.75 V / -6 dbm / MHz -4 degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz 1 degc / 4.75 V / -6 dbm / MHz IDT Zero-Distortion TM Mixer 1 RevO, Feb 213
11 F 6-15 MHz FNBGI TYPICAL OPERATING CONDITIONS [General] (-7-) IP3 O vs. f (T A = C, Freq = 5 MHz, IF = MHz) 5 IP3 O vs. P IN (T A = C, Freq = 5 MHz, IF = MHz) 5 Output IP3 (dbm) 4 3 IP3 (lower sideband) - ChA IP3 (lower sideband) - ChB Output IP3 (dbm) 4 3 IP3 (lower sideband) - ChA IP3 (lower sideband) - ChB IP3 (upper sideband) - ChA IP3 (upper sideband) - ChB IP3 (upper sideband) - ChA IP3 (upper sideband) - ChB Tone Spacing (KHz) EVkit Input RF Trace Loss (T A = C) RF input Power (dbm) TC4-6T Transformer Loss. RF A & RF B input trace loss (db) Balun Loss (db) degc -4 degc 5 degc -.4 EVkit IF Port Match (T A = C) IF Frequency (MHz) EVkit RF & LO Port Match (T A = C) IF_A IF_B LO RF_A RF_B IF Return Loss (db) Return Loss (db) IF Frequency (MHz) Frequency (MHz) IDT Zero-Distortion TM Mixer RevO, Feb 213
12 6-15 MHz FNBGI PACKAGE DRAWING (6X6 QFN) F IDT Zero-Distortion TM Mixer RevO, Feb 213
13 F 6-15 MHz FNBGI PINOUTS Black Text denotes recommended external connection Red Text denotes internal Function or Connection - DB GND = Downbonded to Paddle - Internal = Pin not connected Please Note! - Only connect to one LO feed - Choose Either Pin 1 or Pin 27 - Do not connect the unused LO pin to ensure good LO return loss GND [DB GND] LO2_ADJ [internal ] IF_A- IF_A+ [internal ] IF_BiasA RF_A 1 27 LO_in_alt GND [RFA_rtn] GND [DB GND] [internal ] GND [DB GND] [internal ] B I A S C T R L GND [internal ] GND [DB GND] LO_SW [internal ] GND [STBY] GND [DB GND] 7 21 V CC GND [RFB_rtn] 2 GND [LO_rtn] RF_B 1 LO_in IF_BiasB [internal ] IF_B+ IF_B- [internal ] LO1_ADJ GND [DB GND] IDT Zero-Distortion TM Mixer 13 RevO, Feb 213
14 F 6-15 MHz FNBGI PIN DESCRIPTIONS Pin Name Function 1 RF_A 2,, 2 3, 5, 7, 1, 24, 2 4, 6,, 15, 31, 23, 26, 34 1, 16, 21, 3, 36 RF_Artn, RF_Brtn, LO_rtn GND N.C. Main Channel RF Input. Internally matched to 5Ω. DO NOT apply DC to these pins Transformer Ground Returns. Ground these pins. Ground these pins. No Connection. Not internally connected. OK to connect to. OK to connect to GND Power Supply. Bypass to GND with capacitors shown in the Typical Application Circuit as close as possible to pin. RF_B Diversity Channel RF Input. Internally matched to 5Ω IF_BiasB 13, IFB+, IFB- 17 LO1_ADJ 1, 27 LO_in LO_in_alt 22 STBY 2 LO2_ADJ 32, 33 IFA-, IFA+ IF_BiasA EP 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 Diversity Mixer Differential IF Output. Connect pullup inductors from each of these pins to (see the Typical Application Circuit). Connect the specified resistor for either Standard or LC mode from this pin to ground to set the LO common buffer Icc Local Oscillator Input. Connect the LO to this port through the recommended coupling capacitor. Note that you can only drive one LO port at a time. Remove the series capacitor from the unused port. Make Certain this pin is not connected. It is normally reserved for selecting low current mode which the F does not offer STBY Mode. Pull this pin high for Standby mode (~2 ma). Pull low or Ground for normal Operation Connect the specified resistor for either Standard or LC mode from this pin to ground to set the LO drive buffers Icc Main Mixer Differential IF Output. Connect pullup inductors from each of these pins to (see the Typical Application Circuit). 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 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. IDT Zero-Distortion TM Mixer RevO, Feb 213
15 F 6-15 MHz FNBGI EVKIT SCHEMATIC C1 C2 4:1 Balun J2 C4 J1 L1 L2 C3 T1 C5 R15 R16 C6 R17 R1 J3 IF_BiasA IF_A+ IF_A- LO2_ADJ GND C7 JP R R J4 C RF_A 1 27 LO_in_alt JP RF_A rtn GND GND B I A S C T R L LCMODE GND R1 STBY GND 7 21 J5 C1 RF_B rtn RF_B LO_rtn LO_in C C J6 IF_BiasB IF_B+ IF_B- LO1_ADJ GND C R R C13 R R13 L3 L4 T2 J7 C C15 4:1 Balun C16 IDT Zero-Distortion TM Mixer 15 RevO, Feb 213
16 F 6-15 MHz FNBGI EVKIT PICTURE/LAYOUT/OPERATION Place Jumpers in Outer Positions Do Not Place Jumper Remove C and Place C7 to use Alternate LO port (LO2) Place Jumpers in Outer Positions Place Jumper for Normal Operation Remove Jumper to turn OFF IDT Zero-Distortion TM Mixer 16 RevO, Feb 213
17 F 6-15 MHz FNBGI EVKIT BOM For Normal Operation, Make sure the LC MODE jumper is open and that the dual jumpers are set to the outer position. F PCB Rev 5 BOM Rev 2 Item # Value Size Desc Mfr. Part # Mfr. Part Reference Qty 1 1nF 42 CAP CER 1PF 16V 1% X7R 42 GRM155R71C13KA1D MURATA C1,5,6,,,13, pF 42 CAP CER 1PF 5V CG 42 GRM1555C1HJA1D MURATA C2,3,, pF 42 CAP CER 15PF 5V CG 42 GRM1555C1H151JA1D MURATA C,1, pF NOTE: C7 and C cannot be installed together. C7 for Pin27 LO feed. C for Pin1 LO feed C uF 63 CAP CER 1UF 6.3V X5R 63 GRM1R6J16ME47D MURATA C4 1 6 Header 2 Pin TH 2 CONN HEADER VERT SGL 2POS GOLD AR 3M JP1,2,3 3 7 Header 3 Pin TH 3 CONN HEADER VERT SGL 3POS GOLD AR 3M JP4,5,6,7 4 SMA_END_LAUH.62 SMA_END_LAUH (Small) Emerson Johnson J1,2,7 3 SMA_END_LAUH.62 SMA_END_LAUH (Big) Emerson Johnson J3,4,5, nH 5 5CS (2) Ceramic Chip Inductor 5CS-271XJLB COILCRAFT L1,2,3, RES 2 OHM 1/1W 1% 42 SMD ERJ-2RKF27RX Panasonic R, RES 4.2 OHM 1/1W 1% 42 SMD ERJ-2RKF4R2X Panasonic R K 42 RES 1.21K OHM 1/1W 1% 42 SMD ERJ-2RKFX Panasonic R K 42 RES 47.K OHM 1/16W 1% 42 SMD RC42FR-747KL Yageo R, RES. OHM 1/1W 42 SMD ERJ-2GERX Panasonic R1,2,3,4,5,6,7,1 16 4:1 Balun SM-22 4:1 Center Tap Balun TC4-6TG2+ Mini Circuits T1, F QFN-36 DUAL RF MIXER FNBGI IDT U1 1 1 PCB EV Kit FXX EV Kit Rev 5 1 Total 52 TOPMARKINGS IDTF NBGI YCA Part Number Q6A3M Lot Code Date Code: [xxyywwx] (Work Week of 2) NOTE: Production Devices are DateCode or later. IDT Zero-Distortion TM Mixer 17 RevO, Feb 213
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Analog Devices Welcomes Hittite Microwave Corporation NO CONTENT ON THE ATTACHED DOCUMENT HAS CHANGED www.analog.com www.hittite.com THIS PAGE INTENTIONALLY LEFT BLANK Typical Applications The is ideal
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HMCBLPE v.. -. GHz Typical Applications The HMCBLPE is ideal for: Point-to-Point and Point-to-Multi-Point Radios Military Radar, EW & ELINT Satellite Communications Features Conversion Gain: db Image Rejection:
More informationFeatures OBSOLETE. = +25 C, IF = 1.45 GHz, LO = +13 dbm [1]
v2.614 Typical Applications The HMC412AMS8G / HMC412AMS8GE is ideal for: Long Haul Radio Platforms Microwave Radio VSAT Functional Diagram Features General Description Parameter Min. Typ. Max. Units Frequency
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Typical Applications High Dynamic Range Infrastructure: GSM, GPRS & EDGE CDMA & W-CDMA Cable Modem Termination Systems Functional Diagram Features +34 dbm Input IP3 Conversion Loss: db Low LO Drive: -2
More informationFeatures. PFD Output Voltage 2000 mv, Pk - Pk. PFD Gain Gain = Vpp / 2π Rad khz 100 MHz Square Wave Ref.
HMC98LP5 / 98LP5E Typical Applications The HMC98LP5(E) is ideal for: Satellite Communication Systems Point-to-Point Radios Military Applications Sonet Clock Generation Functional Diagram Features Ultra
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Typical Applications The Hmc86LC is ideal for: Point-to-Point and Point-to-Multi-Point Radio Military Radar, EW & ELINT Satellite Communications Functional Diagram Features Electrical Specifications, T
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Typical Applications The HMC423MS8 / HMC423MS8E is ideal for: Base Stations Portable Wireless CATV/DBS ISM Functional Diagram Electrical Specifications, T A = +25 C Features Integrated LO Amplifi er w/
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FEATURES Passive: no dc bias required Conversion loss: 1 db typical Input IP3: 21 dbm typical RoHS compliant, ultraminiature package: 8-lead MSOP APPLICATIONS Base stations Personal Computer Memory Card
More informationFeatures. Parameter Min. Typ. Max. Units
Typical Applications The is ideal for: Point-to-Point and Point-to-Multi-Point Radios Military Radar, EW & ELINT Satellite Communications Features Conversion Gain: db Image Rejection: dbc Input Third-Order
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CMD18C3 2-32 GHz Fundamental Mixer Features Functional Block Diagram Low conversion loss High isolation Wide IF bandwidth Passive double balanced topology Pb-free RoHs compliant 3x3 mm SMT package Description
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Features Functional Block Diagram Low conversion loss High isolation Wide IF bandwidth Passive double balanced topology Pb-free RoHs compliant 3x3 mm SMT package Description The CMD178C3 is a general purpose
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DATA SHEET SKY67180-306LF: 1.5 to 3.8 GHz Two-Stage, High-Gain Low-Noise Amplifier Applications LTE, GSM, WCDMA, HSDPA macro-base and micro-base stations S and C band ultra-low-noise receivers Cellular
More informationFeatures. = +25 C, As a Function of LO Drive & Vdd. IF = 1 GHz LO = -4 dbm & Vdd = +4V
v4.414 Typical Applications Features The is ideal for: Point-to-Point Radios Point-to-Multi-Point Radios & VSAT Test Equipment & Sensors Military End-Use Functional Diagram Integrated LO Amplifier: -4
More information50~100MHz. 100~210MHz C2 1nF. Operating Case Temperature -40 to +85 Storage Temperature -55 to +155 Junction Temperature +126 Operating Voltage
0.7~1.4GHz High IIP3 GaAs MMIC with Integrated LO AMP Device Features +31.7 dbm Input IP3 8.8dB Conversion Loss Integrated LO Driver -2 to +2dBm LO drive level Available 3.3V to 5V single voltage MSL 1,
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Features Functional Block Diagram Low conversion loss High IP3 Image rejection: 3 db Wide IF bandwidth Pb-free RoHs compliant 4x4 mm SMT package Description The is a high IP3 I/Q mixer in a leadless surface
More information* Notices. Operating Case Temperature -40 to +85 Storage Temperature -55 to +155 Junction Temperature +126 Operating Voltage.
1.7~2.7GHz High IIP3 GaAs MMIC with Integrated LO AMP Device Features +33.9 dbm Input IP3 8.3dB Conversion Loss Integrated LO Driver -2 to +4dBm LO drive level Available 3.3V to 5V single voltage MSL 1,
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19-4031; Rev 0; 2/08 General Description The is a low-power video amplifier with a Y/C summer and chroma mute. The device accepts an S-video or Y/C input and sums the luma (Y) and chroma (C) signals into
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Product Features 18 24 MHz 24.7 db Gain +3 dbm P1dB +46 dbm Output IP3 +V Single Positive Supply Internal Active Bias Lead-free/ RoHS-compliant SOIC-8 & 4xmm DFN Package Applications Mobile Infrastructure
More informationAnalog Devices Welcomes Hittite Microwave Corporation NO CONTENT ON THE ATTACHED DOCUMENT HAS CHANGED
Analog Devices Welcomes Hittite Microwave Corporation NO CONTENT ON THE ATTACHED DOCUMENT HAS CHANGED www.analog.com www.hittite.com THIS PAGE INTENTIONALLY LEFT BLANK v4.414 Typical Applications Features
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v.91 HMC4MS8G / 4MS8GE MIXER, 9. - 15. GHz Typical Applications The HMC4MS8G / HMC4MS8GE is ideal for: Long Haul Radio Platforms Microwave Radio VSAT Features Conversion Loss: 8. db Noise Figure: 8. db
More informationFeatures. = +25 C, IF= 100 MHz, LO= +15 dbm* Parameter Min. Typ. Max. Min. Typ. Max. Units
v3.514 MIXER, 5.5-14. GHz Typical Applications The is ideal for: Point-to-Point Radios Point-to-Multi-Point Radios Test Equipment & Sensors Military End-Use Functional Diagram Features Passive Double Balanced
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HMCBMSGE v1.1 Typical Applications The HMCBMSGE is ideal for: Long Haul Radio Platforms Microwave Radio VSAT Functional Diagram Features Conversion Loss: db Noise Figure: db LO to RF Isolation: db LO to
More informationFeatures. = +25 C, Vs = 5V, Vpd = 5V
v1.117 HMC326MS8G / 326MS8GE AMPLIFIER, 3. - 4. GHz Typical Applications The HMC326MS8G / HMC326MS8GE is ideal for: Microwave Radios Broadband Radio Systems Wireless Local Loop Driver Amplifier Functional
More informationAnalog Devices Welcomes Hittite Microwave Corporation NO CONTENT ON THE ATTACHED DOCUMENT HAS CHANGED
Analog Devices Welcomes Hittite Microwave Corporation NO CONTENT ON THE ATTACHED DOCUMENT HAS CHANGED www.analog.com www.hittite.com HMC148* Product Page Quick Links Last Content Update: 11/1/216 Comparable
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More informationFeatures. = +25 C, Vdd = +7V, Idd = 820 ma [1]
Typical Applications The is ideal for use as a power amplifier for: Point-to-Point Radios Point-to-Multi-Point Radios Test Equipment & Sensors Military End-Use Space Functional Diagram Features Saturated
More informationFeatures. = +25 C, IF = 0.5 GHz, LO = +15 dbm* Parameter Min. Typ. Max. Min. Typ. Max. Units
v1.514 Typical Applications The is ideal for: Point-to-Point Radios Point-to-Multi-Point Radios & VSAT Test Equipment & Sensors Military End-Use Functional Diagram Features Passive: No DC Bias Required
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MGA-43024 2.4 GHz WLAN Power Amplifier Module Data Sheet Description Avago Technologies MGA-43024 is a fully matched power amplifier for use in the WLAN band (2401-2484 MHz). High linear output power at
More information= +25 C, IF= 100 MHz, LO = +15 dbm*
v3.514 Typical Applications Features The is ideal for: Point-to-Point and Point-to-Multi-Point Radio Digital Radio VSAT Functional Diagram Wide IF Bandwidth: DC - 3.5 GHz Image Rejection: 35 db LO to RF
More informationAnalog Devices Welcomes Hittite Microwave Corporation NO CONTENT ON THE ATTACHED DOCUMENT HAS CHANGED
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AH42 Product Features 4 27 MHz +3.7 dbm P1dB -49 dbc ACLR @ 26 dbm db Gain @ 2 MHz 8 ma Quiescent Current + V Single Supply MTTF > 1 Years Lead-free/green/RoHS-compliant 12-pin 4xmm DFN Package Applications
More information= +25 C, IF= 100 MHz, LO = +15 dbm*
v4.514 HMC62LC4 Typical Applications The HMC62LC4 is ideal for: Point-to-Point Point-to-Multi-Point Radio WiMAX & Fixed Wireless VSAT Functional Diagram Features General Description Electrical Specifications,
More information= +25 C, IF= 100 MHz, LO = +15 dbm*
v3.514 HMC52LC4 6-1 GHz Typical Applications Features The HMC52LC4 is ideal for: Point-to-Point and Point-to-Multi-Point Radio Digital Radio VSAT Functional Diagram Wide IF Bandwidth: DC - 3.5 GHz Image
More informationAnalog Devices Welcomes Hittite Microwave Corporation NO CONTENT ON THE ATTACHED DOCUMENT HAS CHANGED
Analog Devices Welcomes Hittite Microwave Corporation NO CONTENT ON THE ATTACHED DOCUMENT HAS CHANGED www.analog.com www.hittite.com THIS PAGE INTENTIONALLY LEFT BLANK v2.514 MIXER, 2.5-7. GHz Typical
More informationCMD183C GHz I/Q Mixer. Features. Functional Block Diagram. Description
Features Functional Block Diagram Low conversion loss High isolation Image rejection: 26 db Wide IF bandwidth Pb-free RoHs compliant 4x4 mm SMT package Description The CMD183C4 is a compact I/Q mixer in
More information= +25 C, IF= 100 MHz, LO = +17 dbm*
v3.514 Typical Applications Features The is ideal for: Point-to-Point Radios Point-to-Multi-Point Radios & VSAT Test Equipment & Sensors Military End-Use Functional Diagram Wide IF Bandwidth: DC - 3.5
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v4.712 Typical Applications The HMC422MS8 / HMC422MS8E is ideal for: MMDS & ISM Wireless Local Loop WirelessLAN Cellular Infrastructure Functional Diagram Electrical Specifications, T A = +2 C Features
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More informationParameter Min. Typ. Max. Min. Typ. Max. Units
v1.214 HMC163LP3E Typical Applications The HMC163LP3E is ideal for: Point-to-Point and Point-to-Multi-Point Radio Military Radar, EW & ELINT Satellite Communications Sensors Functional Diagram Features
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850MHz 1 Watt Power Amplifier with Active Bias SPA-2118(Z) 850MHz 1 WATT POWER AMPLIFIER WITH ACTIVE BIAS RoHS Compliant and Pb-Free Product (Z Part Number) Package: ESOP-8 Product Description RFMD s SPA-2118
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PW21 Wideband Block Features to 6MHz 21.4dB @ 7MHz P1dB 16.3dBm @ 23MHz OIP3 3.6dBm @ 19MHz Lead-free / Green / compliant SOT-89 Package Applications Base station / Repeater / Mobile / Automotive / Military
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More informationFeatures OBSOLETE. LO = +19 dbm, IF = 100 MHz Parameter
Typical Applications The HMC351S8 / HMC351S8E is ideal for: Cellular Basestations Cable Modems Fixed Wireless Access Systems Functional Diagram Electrical Specifications, T A = +25 C Features Conversion
More informationAbsolute Maximum Ratings Parameter Rating Unit Max Supply Current (I C1 ) at V CC typ. 150 ma Max Supply Current (I C2 ) at V CC typ. 750 ma Max Devic
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More informationFeatures OBSOLETE. = +25 C, As a Function of LO Drive. LO = +10 dbm. IF = 70 MHz
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Typical Applications v.411 The is ideal for: Basestations, Repeaters & Access Points WiMAX, WiBro & Fixed Wireless Portables & Subscribers PLMR, Public Safety & Telematics Functional Diagram Features Passive
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REVISIONS LTR DESCRIPTION DTE PPROVED Prepared in accordance with SME Y14.24 Vendor item drawing REV PGE REV PGE REV STTUS OF PGES REV PGE 1 2 3 4 5 6 7 8 9 10 11 PMIC N/ PREPRED BY Phu H. Nguyen DL LND
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More informationParameter Min. Typ. Max. Min. Typ. Max. Units
Typical Applications The is ideal for: Point-to-Point and Point-to-Multi-Point Radio Military Radar, EW & ELINT Satellite Communications Functional Diagram Features db Conversion Gain Image Rejection:
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More informationParameter Min Typ Max Units Frequency Range, RF
Features Low conversion loss High isolation Ultra wide IF bandwidth Passive double balanced topology Small die size Description The is a general purpose double balanced mixer die with ultra wide IF bandwidth
More informationTypical Performance 1. 1 Device performance _ measured on a BeRex evaluation board at 25 C, 50 Ω system.
Device Features NF = 0.91 db @ 900MHz at RF connectors of Demo board Gain = 22.0 db @ 900 MHz OIP3 = 36.0 dbm @ 1900MHz, 38.0 dbm @ 2450MHz Output P1 db = 20.5 dbm @ 900/1900/2140 MHz 5V/75mA, MTTF > 100
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More informationNot recommended for new designs
Device Features NF = 0.7 db @ 900MHz at RF connectors of Demo board Gain = 19.0 db @ 900 MHz OIP3 = 36.0 dbm @ 1900MHz, 2450MHz Output P1 db = 21.0 dbm @ 900MHz, 22.0 dbm @2450MHz 5V/48mA, MTTF > 100 Years,
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More informationTypical Performance 1. 1 Device performance _ measured on a BeRex evaluation board at 25 C, 50 Ω system.
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