Features. = +25 C, Vdd = +4.5V, +4 dbm Drive Level
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1 Typical Applications The is ideal for: Clock Generation Applications: SONET OC-192 & SDH stm-64 Point-to-Point & VSAT Radios Test Instrumentation Military & Space Sensors Features High Output Power: +21 dbm Low Input Power Drive: to +6 dbm Fo Isolation: >4 dbc Single Supply: 214 ma 24 Lead 4x4 mm SMT Package: 16 mm² Functional Diagram General Description The is a x2 active broadband frequency multiplier utilizing GaAs phemt technology in a leadless RoHS compliant SMT package. When driven by a +4 dbm signal, the multiplier provides +17 dbm typical output power from 13 to 24.6 GHz. The Fo and 3Fo isolations are > dbc at 19 GHz. The is ideal for use in LO multiplier chains for Pt-to-Pt & VSAT Radios yielding reduced parts count vs. traditional approaches. Electrical Specifications, T A = +2 C, Vdd = +4.V, +4 dbm Drive Level Parameter Min. Typ. Max. Min. Typ. Max. Units Frequency Range, Input GHz Frequency Range, Output GHz Output Power dbm Fo Isolation (with respect to output level) dbc Input Return Loss db Output Return Loss 6 12 db Supply Current (Idd1 & Idd2) ma - 1 Phone: Fax: Phone: Order On-line at Application Support: Phone: Application or apps@hittite.com
2 Output Power vs. +4 dbm Drive Level 2 Output Power vs. Drive Level C +8C -4C dbm 1 dbm 2 dbm 3 dbm 4 dbm dbm 6 dbm Output Power vs. Supply +4 dbm Drive Level V 4.V.V Output Power vs. Input Power dbm Drive Level GHz 26 GHz 28 GHz 3 GHz 31 GHz Fo 2Fo INPUT POWER (dbm) Phone: Fax: Phone: Order On-line at Application Support: Phone: Application or apps@hittite.com - 2
3 Input Return Loss vs. Temperature Output Return Loss vs. Temperature RETURN LOSS (db) C +8C -4C RETURN LOSS (db) C +8C -4C FREQUENCY (GHz) FREQUENCY (GHz) - 3 Phone: Fax: Phone: Order On-line at Application Support: Phone: Application or apps@hittite.com
4 Absolute Maximum Ratings Typical Supply Current vs. Vdd RF Input (Vdd = +V) Supply Voltage (Vdd1, Vdd2) Outline Drawing + dbm +. Vdc Channel Temperature 17 C Continuous Pdiss (T= 8 C) (derate 16.4 mw/ C above 8 C) Thermal Resistance (channel to ground paddle) 1.48 W 6 C/W Storage Temperature -6 to + C Operating Temperature -4 to +8 C ESD Sensitivity (HBM) Package Information Class 1B Vdd (Vdc) Idd (ma) Note: Multiplier will operate over full voltage range shown above. ELECTROSTATIC SENsitiVE DEVICE OBserVE HANDLING precautions NOTES: 1. leadframe MAteriAL: COpper ALLOY 2. DIMENSIONS ARE IN INCHES [MilliMeters] 3. DIMENSION DOES NOT INCLUDE MOLDFLASH OF.1mm per side. 4. DIMENSION DOES NOT INCLUDE MOLDFLASH OF.2mm per side.. ALL GROUND leads AND GROUND PADDLE Must BE SOLDereD TO PCB RF GROUND. Part Number Package Body Material Lead Finish MSL Rating Package Marking [1] [2] H942 RoHS-compliant Low Stress Injection Molded Plastic % matte Sn MSL1 XXXX [1] 4-Digit lot number XXXX [2] Max peak reflow temperature of 26 C Phone: Fax: Phone: Order On-line at Application Support: Phone: Application or apps@hittite.com - 4
5 Pin Description Pin Number Function Description Interface Schematic 1, 3,, 6, 7, 12, 13, 14, 16, 18, 19, 24 GND Package bottom must also be connected to RF/DC ground. 4 RFIN 2, 8, 9,, 11, 17,, 21, 23 N/C 1 RFOUT 22 Vdd Application Circuit Component C1 C2 Value pf 1, pf C3 4.7 µf This pin is DC coupled and matched to Ohms. These pins are not connected internally; however, all data shown herein was measured with these pins connected to RF/ DC ground. This pin is AC coupled and matched to Ohms. Supply voltage 4.V ±.V. External bypass capacitors of pf, 1, pf and 2.2 µf are recommended. - Phone: Fax: Phone: Order On-line at Application Support: Phone: Application or apps@hittite.com
6 Evaluation PCB List of Materials for Evaluation PCB 1362 [1] Item J1 - J2 J C1 C2 C3 U1 PCB [2] Description PCB Mount sri K Connector DC Pin pf Capacitor, 42 Pkg. 1, pf Capacitor, 63 Pkg. 4.7 µf Tantalum Capacitor x2 Active Multiplier Eval Board [1] Reference this number when ordering complete evaluation PCB [2] Circuit Board Material: Rogers 43 or Arlon 2FR The circuit board used in the application should be generated with proper RF circuit design techniques. Signal lines should have Ohm impedance while the package ground leads and exposed paddle should be connected directly to the ground plane similar to that shown. A sufficient number of via holes should be used to connect the top and bottom ground planes. The evaluation circuit board shown is available from Hittite upon request. Phone: Fax: Phone: Order On-line at Application Support: Phone: Application or apps@hittite.com - 6
HMC814LC3B FREQ. MULTIPLIERS - ACTIVE - SMT. SMT GaAs MMIC x2 ACTIVE FREQUENCY MULTIPLIER, GHz OUTPUT. Features. Typical Applications
Typical Applications The is ideal for: Clock Generation Applications: SONET OC-192 & SDH STM-64 Point-to-Point & VSAT Radios Test Instrumentation Military & Space Sensors Functional Diagram Features High
More informationHMC576LC3B MULTIPLIERS - ACTIVE - SMT. SMT GaAs MMIC x2 ACTIVE FREQUENCY MULTIPLIER, GHz OUTPUT. Features. Typical Applications
v2.514 Typical Applications The is suitable for: Clock Generation Applications: SONET OC-192 & SDH STM-64 Point-to-Point & VSAT Radios Test Instrumentation Military & Space Functional Diagram Features
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More informationFeatures. = +25 C, 50 Ohm System
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More informationHMC187AMS8 / 187AMS8E. Features OBSOLETE. = +25 C, As a Function of Drive Level
v.41 DOUBLER,.8-2. GHz INPUT Typical Applications Features The HMC187AMS8(E) is ideal for: Wireless Local Loop LMDS, VSAT, and Point-to-Point Radios UNII & HiperLAN Test Equipment Functional Diagram *
More informationFeatures. = +25 C, Vdd = +7V, Idd = 820 ma [1]
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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
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
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More informationOBSOLETE HMC215LP4 / 215LP4E. GaAs MMIC MIXER w/ INTEGRATED LO AMPLIFIER, GHz. Typical Applications. Features. Functional Diagram
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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
More informationFeatures. Parameter Min. Typ. Max. Min. Typ. Max. Units
v. DOWNCONVERTER, - GHz Typical Applications The is ideal for: Point-to-Point and Point-to-Multi-Point Radios Military Radar, EW & ELINT Satellite Communications Maritime & Mobile Radios Features Conversion
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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 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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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 OBSOLETE. = +25 C, As a Function of LO Drive. LO = +10 dbm. IF = 70 MHz
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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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Typical Applications The is Ideal for: Cellular/3G & LTE/WiMAX/4G Basestations & Repeaters GSM, CDMA & OFDM Transmitters and Receivers Features High Input IP3: +38 dbm 8 db Conversion Loss @ 0 dbm LO Optimized
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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 informationParameter Min. Typ. Max. Min. Typ. Max. Units
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More information= +25 C, IF= 100 MHz, LO = +15 dbm*
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More informationFeatures. = +25 C, LO = 0 dbm, Vcc = Vcc1, 2, 3 = +5V, G_Bias = +2.5V *
Typical Applications The is Ideal for: Cellular/3G & LTE/WiMAX/4G Basestations & Repeaters GSM, CDMA & OFDM Transmitters and Receivers Features High Input IP3: +38 dbm 8 db Conversion Loss @ 0 dbm LO Optimized
More information= +25 C, IF= 100 MHz, LO = +15 dbm*
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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 informationParameter Min. Typ. Max. Min. Typ. Max. Units
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More informationFeatures. = +25 C, Input Drive Level = +15 dbm. Parameter Min. Typ. Max Min. Typ. Max. Units. Frequency Range Input GHz
Typical Applications The is ideal for: Microwave Test Equipment Microwave/mmWave Radios E-Band Radios Military and Space Functional Diagram Features Passive: No DC Bias Required Conversion Loss: 12 dbm
More informationParameter Min. Typ. Max. Min. Typ. Max. Units
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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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