Features. Parameter Min. Typ. Max. Units
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1 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: dbc Input Third-Order Intercept (IP): dbm Input Power for db Compression (PdB): - dbm Noise Figure: db LO to RF Isolation: db Single. V Supply Operation Lead mm x mm SMT Package Functional Diagram General Description The HMCBLPE is a compact GaAs MMIC I/Q downconverter in a leadless RoHS compliant SMT package. This device provides a small signal conversion gain of db with a noise figure of db and dbc of image rejection across the frequency band. The HMCBLPE utilizes an low noise amplifier (LNA) followed by an image reject mixer which is driven by an LO buffer amplifier. The image reject mixer eliminates the need for a filter following the LNA and removes thermal noise at the image frequency. I and Q mixer outputs are provided and an external hybrid is needed to select the required sideband. The HMCBLPE is a much smaller alternative to hybrid style image reject mixer downconverter assemblies and is compatible with surface mount manufacturing techniques. Electrical Specifications, T A = + C IF = MHz, LO = + dbm, VDRF = VDLO = VDLO =. V, LSB [] Parameter Min. Typ. Max. Units RF Frequency Range.. GHz LO Frequency Range.. GHz IF Frequency Range DC. GHz Conversion Gain db Noise Figure. db Image Rejection dbc Input Power for db Compression (PdB) - dbm LO to RF Isolation db LO to IF Isolation db Input Third-Order Intercept (IP) - dbm Amplitude Balance []. db Phase Balance [] ± Degree Total Supply Current (IDRF + IDLO) ma [] Unless otherwise noted, all data taken as IRM with external Hybrid at the IF ports. Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. Specifications subject to change without notice. No license is granted by implication or otherwise under any patent or patent rights of Analog Devices. Trademarks and registered trademarks are the property of their respective owners. For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
2 HMCBLPE v.. -. GHz Data Taken as IRM Downconverter with External IF Hybrid, IF = MHz Conversion Gain vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB + C + C - C Image Rejection vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB IMAGE REJECTION (dbc) LO Return Loss vs. Frequency at Various Temperatures, LO Drive = + dbm + C + C - C Conversion Gain vs. Frequency at Various LO Drives, LSB - dbm - dbm dbm RF Return Loss vs. Frequency at Various Temperatures, LO Drive = + dbm RETURN LOSS (db) IF Return Loss vs. IF Frequency, LO Drive = + dbm + dbm + dbm C + C - C RETURN LOSS (db) RETURN LOSS (db) LO FREQUENCY (GHz) + C + C - C IF FREQUENCY (GHz) IF IF For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
3 HMCBLPE v.. -. GHz Data Taken as IRM Downconverter with External IF Hybrid, IF = MHz Isolations vs. Frequency ISOLATION (db) Input IP vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB IP (dbm) C + C - C Noise Figure vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB LO-TO-RF RF-TO-IF LO-TO-IF RF-TO-IF LO-TO-IF Input PdB vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB PdB (dbm) C + C - C Input IP vs. Frequency at Various LO Drives, LSB IP (dbm) dbm dbm + dbm + dbm Noise Figure vs. Frequency at Various LO Drives, LSB C + C - C - dbm - dbm dbm + dbm + dbm For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
4 HMCBLPE v.. -. GHz Quadrature Channel Data Taken as Without External IF Hybrid Conversion Gain and Return Loss vs. IF Frequency, LO Drive = + dbm RESPONSE (db) IF FREQUENCY (GHz) CONVERSION GAIN RETURN LOSS Amplitude Balance vs. Frequency at Various LO Drives AMPLITUDE BALANCE (db) Phase Balance vs. Frequency at Various LO Drives - dbm dbm + dbm + dbm Amplitude Balance vs. Frequency at Various Temperatures, LO Drive = + dbm AMPLITUDE BALANCE (db) C + C - C Phase Balance vs. Frequency at Various Temperatures, LO Drive = + dbm PHASE BALANCE (deg) C + C - C PHASE BALANCE (deg) dbm dbm + dbm + dbm For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
5 HMCBLPE v.. -. GHz Data Taken as IRM Downconverter with External IF Hybrid, IF = MHz Conversion Gain vs. Frequency at Various Temperatures, LO Drive = + dbm, USB + C + C - C Image Rejection vs. Frequency at Various Temperatures, LO Drive = + dbm, USB IMAGE REJECTION (dbc) Input IP vs. Frequency at Various Temperatures, LO Drive = + dbm, USB IP (dbm) C + C - C - Conversion Gain vs. Frequency at Various LO Drives, USB - dbm - dbm dbm + dbm + dbm Input PdB vs. Frequency at Various Temperatures, LO Drive = + dbm, USB PdB (dbm) C + C - C Input IP vs. Frequency at Various LO Drives, USB IP (dbm) C + C - C - dbm dbm + dbm + dbm For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
6 HMCBLPE v.. -. GHz Noise Figure vs. Frequency at Various Temperatures, LO Drive = + dbm, USB Data Taken as IRM Downconverter with External IF Hybrid, IF = MHz C + C - C Noise Figure vs. Frequency at Various LO Drives, USB dbm - dbm dbm + dbm + dbm For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
7 HMCBLPE v.. -. GHz Data Taken as IRM Downconverter with External IF Hybrid, IF = MHz Conversion Gain vs. Frequency at Various Conversion Gain vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB LO Drives, LSB Image Rejection vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB IMAGE REJECTION (dbc) + C + C - C Input IP vs. Frequency at Various Temperature, LO Drive = + dbm, LSB IP (dbm) C + C - C - Input PdB vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB PdB (dbm) C + C - C Input IP vs. Frequency at Various LO Drives, LSB IP (dbm) dbm - dbm dbm - + dbm + dbm + C + C - C - dbm dbm + dbm + dbm For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
8 HMCBLPE v.. -. GHz Noise Figure vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB Data Taken as IRM Downconverter with External IF Hybrid, IF = MHz C + C - C Noise Figure vs. Frequency at Various LO Drives, LSB dbm - dbm dbm + dbm + dbm For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
9 HMCBLPE v.. -. GHz Data Taken as IRM Downconverter with External IF Hybrid, IF = MHz Conversion Gain vs. Frequency at Various Temperatures, LO Drive = + dbm, USB + C + C - C Image Rejection vs. Frequency at Various Temperatures, LO Drive = + dbm, USB IMAGE REJECTION (dbc) Input IP vs. Frequency at Various Temperatures, LO Drive = + dbm, USB + C + C - C Conversion Gain vs. Frequency at Various LO Drives, USB - dbm - dbm dbm + dbm + dbm Input PdB vs. Frequency at Various Temperatures, LO Drive = + dbm, USB PdB (dbm) Input IP vs. Frequency at Various LO Drives, USB + C + C - C IP (dbm) - IP (dbm) C + C - C - dbm dbm + dbm + dbm For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
10 HMCBLPE v.. -. GHz Noise Figure vs. Frequency at Various Temperatures, LO Drive = + dbm, USB Data Taken as IRM Downconverter with External IF Hybrid, IF = MHz C + C - C Noise Figure vs. Frequency at Various LO Drives, USB dbm - dbm dbm + dbm + dbm For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
11 HMCBLPE v.. -. GHz Data Taken as IRM Downconverter with External IF Hybrid, IF = MHz Conversion Gain vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB + C + C - C Image Rejection vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB IMAGE REJECTION (dbc) Input IP vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB IP (dbm) - + C + C - C - Conversion Gain vs. Frequency at Various LO Drives, LSB Input PdB vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB PdB (dbm) dbm dbm - + dbm + dbm + C + C - C Input IP vs. Frequency at Various LO Drives, LSB IP (dbm) C + C - C dbm + dbm + dbm For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
12 HMCBLPE v.. -. GHz Noise Figure vs. Frequency at Various Temperatures, LO Drive = + dbm, LSB Data Taken as IRM Downconverter with External IF Hybrid, IF = MHz C + C - C Noise Figure vs. Frequency at Various LO Drives, LSB dbm - dbm dbm + dbm + dbm For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
13 HMCBLPE v.. -. GHz MxN Spurious Outputs Absolute Maximum Ratings nlo VDD (VDRF, VDLO). V mrf RF =. GHz at RF input power = - dbm LO =. GHz at LO input power = + dbm All values in dbc from IF output power level (LO - RF) Spur values are (M x RF) - (N x LO) Outline Drawing LO Drive + dbm Channel Temperature C Continuous Pdiss (T= C derate. mw/ C above C) Thermal Resistance (R TH ) (channel to package bottom). W C/W Storage Temperature Range - to + C Operating Temperature Range - C to + C ESD Sensitivity (HBM) V (Class ) ELECTROSTATIC SENSITIVE DEVICE OBSERVE HANDLING PRECAUTIONS Part Number Package Body Material Lead Finish MSL Rating Package Marking [] [] HB HMCBLPE RoHS-compliant Low Stress Injection Molded Plastic % matte Sn MSL XXXX [] Max peak reflow temperature of C [] -Digit lot number XXXX For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
14 HMCBLPE v.. -. GHz Pin Descriptions Pin Number Function Description Interface Schematic,,,, -,, - NIC VDRF VDLO VDLO LOIN,,, GND No internal connection. These pins are not connected internally. However, all data shown herein was measured with these pins connected to RF/dc ground externally. Power supply for the low noise amplifier (LNA). External bypass capacitors of pf,. µf and. µf are recommended. Power supply for the second stage of the LO amplifier. External bypass capacitors of pf,. µf and. µf are recommended. Power Supply for the first stage of the LO amplifier. External bypass capacitors of pf,. µf and. µf are recommended. Local Oscillator input. This pin is ac coupled and matched to Ohms. Ground connect. These pins and the exposed ground paddle must be connected to RF/dc ground. IF Intermediate Frequency ports. These pins are dc coupled. For applications not requiring operation to dc, block these pins externally using a series capacitor with a value chosen to pass the necessary frequency range. For operation to dc, these pins must not sink / source more than ma of current or part non-function and possible IF failure may result. RFIN EPAD Radio Frequency Input. This pin is ac coupled and matched to Ohms. Exposed Paddle. Connect to a low impedance thermal and electrical ground plane. For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
15 HMCBLPE v.. -. GHz Application Circuit For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
16 HMCBLPE v.. -. GHz Evaluation PCB List of Materials for Evaluation PCB EVHMCBLP [] Item J Description PCB Mount SMA RF Connector, SRI J, J PCB Mount K Connector, SRI J - J DC Pins C, C, C pf Capacitor, Pkg. C, C, C nf Capacitor, Pkg. C, C, C. µf Capacitor, Case A Pkg. U PCB [] HMCBLPE Evaluation Board PCB The circuit board used in the application should use 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 Analog Devices upon request. [] Reference this number when ordering complete evaluation PCB [] Circuit Board Material: Rogers For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box, Norwood, MA - Phone: -- Order online at Application Support: Phone: --ANALOG-D
Features. 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
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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More informationOBSOLETE HMC908LC5 MIXERS - I/Q MIXERS, IRMS & RECEIVERS - SMT. GaAs MMIC I/Q DOWNCONVERTER 9-12 GHz. Typical Applications. Functional Diagram
v3.1 HMC98LC Typical Applications The HMC98LC is ideal for: Point-to-Point and Point-to-Multi-Point Radio Military Radar, EW & ELINT Satellite Communications Maritime & Mobile Radio Functional Diagram
More informationThe Hmc869LC5 is ideal for: Point-to-Point and Point-to-Multi-Point Radio. Parameter Min. Typ. Max. Units
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
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:
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 informationParameter Min. Typ. Max. Min. Typ. Max. Units
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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
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 information= +25 C, IF= 100 MHz, LO = +15 dbm*
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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, 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 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. = +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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More information6 GHz to 26 GHz, GaAs MMIC Fundamental Mixer HMC773A
FEATURES Conversion loss: 9 db typical Local oscillator (LO) to radio frequency (RF) isolation: 37 db typical LO to intermediate frequency (IF) isolation: 37 db typical RF to IF isolation: db typical Input
More informationFeatures. = +25 C, As a Function of LO Drive & Vdd. IF = 1 GHz LO = -4 dbm & Vdd = +4V
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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
More informationFeatures. = +25 C, Vdd = +4.5V, +4 dbm Drive Level
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
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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
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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. = +25 C, IF = 100 MHz, LO = 0 dbm, Vcc1, 2, 3, = +5V, G_Bias = +3.5V*
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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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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 informationFeatures. = +25 C, 50 Ohm System
v1.111 47 Analog Phase Shifter, Typical Applications The is ideal for: EW Receivers Military Radar Test Equipment Satellite Communications Beam Forming Modules Features Wide Bandwidth: 47 Phase Shift Low
More informationFeatures. = +25 C, IF= 100 MHz, LO = +17 dbm*
v2.31 HMC-C44 1-23 GHz Typical Applications The HMC-C44 is ideal for: Point-to-Point Radios Point-to-Multi-Point Radios & VSAT Test Equipment & Sensors Military End-Use Functional Diagram Features Wide
More informationHMC219AMS8 / 219AMS8E. Features OBSOLETE. = +25 C, As a Function of LO Drive. LO = +13 dbm IF = 100 MHz
Typical Applications The HMC219AMS8 / HMC219AMS8E is ideal for: UNII & HiperLAN ISM Microwave Radios Functional Diagram Features Ultra Small Package: MSOP8 Conversion Loss: 8.5 db LO / RF Isolation: 25
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More informationFeatures OBSOLETE. = +25 C, As a Function of LO Drive. LO = +13 dbm IF = 100 MHz
v.211 HMC22AMS8 / 22AMS8E Typical Applications Features The HMC22AMS8 / HMC22AMS8E is ideal for: Microwave Radios VSAT Functional Diagram Ultra Small Package: MSOP8 Conversion Loss: 8.5 db Wideband IF:
More informationFeatures OBSOLETE. = +25 C, As a Function of LO Drive. LO = +13 dbm IF = 70 MHz
Typical Applications Functional Diagram The HMC28AMS8 / HMC28AMS8E is ideal for: Base Stations PCMCIA Transceivers Cable Modems Portable Wireless Features Ultra Small Package: MSOP8 Conversion Loss: db
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 informationParameter Min. Typ. Max. Min. Typ. Max. Units
v2.89 Typical Applications The is ideal for: Point-to-Point and Point-to-Multi-Point Radio Military Radar, EW & ELINT Satellite Communications Functional Diagram Features Conversion Gain: 8 db Image Rejection:
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 informationCMD179C GHz Fundamental Mixer. Features. Functional Block Diagram. Description
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 CMD179C3 is a general purpose
More informationCMD180C GHz Fundamental Mixer. Features. Functional Block Diagram. Description
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
More informationFeatures. = +25 C, As a Function of LO Drive
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
More informationFeatures. = +25 C, 50 Ohm System
v.211 18 Analog Phase Shifter, 2-2 GHz Typical Applications The is ideal for: EW Receivers Military Radar Test Equipment Satellite Communications Beam Forming Modules Features Wide Bandwidth: 2-2 GHz 18
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 Conversion Gain: 11 db Image Rejection:
More informationHMC613LC4B POWER DETECTORS - SMT. SUCCESSIVE DETECTION LOG VIDEO AMPLIFIER (SDLVA), GHz
v.54 HMC6LC4B AMPLIFIER (SDLVA),. - GHz Typical Applications The HMC6LC4B is ideal for: EW, ELINT & IFM Receivers DF Radar Systems ECM Systems Broadband Test & Measurement Power Measurement & Control Circuits
More informationFeatures. = +25 C, IF= 100 MHz, LO= +13 dbm* Parameter Min. Typ. Max. Min. Typ. Max. Units
Features Passive Double Balanced Topology High LO/RF Isolation: 48 db Low Conversion Loss: 7 db Wide IF Bandwidth: DC - GHz Robust 1,000V esd, Class 1C Typical Applications The is ideal for: Point-to-Point
More informationCMD197C GHz Distributed Driver Amplifier
Features Functional Block Diagram Wide bandwidth High linearity Single positive supply voltage On chip bias choke Pb-free RoHs compliant 4x4 mm SMT package Description The CMD197C4 is a wideband GaAs MMIC
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
More informationFeatures. = +25 C, As a Function of LO Drive. LO = +10 dbm IF = 100 MHz
v4.6 HMC218MS8 / 218MS8E Typical Applications The HMC218MS8 / HMC218MS8E is ideal for: Basestations, Repeaters & Access Points WiMAX, WiBro & Fixed Wireless Portables & Subscribers PLMR, Public Safety
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, IF = 1 GHz, LO = +13 dbm*
v.5 HMC56LM3 SMT MIXER, 24-4 GHz Typical Applications Features The HMC56LM3 is ideal for: Test Equipment & Sensors Point-to-Point Radios Point-to-Multi-Point Radios Military & Space Functional Diagram
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 v1.55 Typical Applications The is
More informationFMMX9004 DATA SHEET. Field Replaceable SMA IQ Mixer From 15 GHz to 23 GHz With an IF Range From DC to 3.5 GHz And LO Power of +17 dbm.
FMMX94 Field Replaceable SMA IQ Mixer From 15 GHz to 23 GHz With an IF Range From DC to 3.5 GHz And LO Power of +17 dbm FMMX94 is an I/Q double balanced millimeter-wave mixer module that operates across
More informationFMMX9002 DATA SHEET. Field Replaceable SMA IQ Mixer From 8.5 GHz to 13.5 GHz With an IF Range From DC to 2 GHz And LO Power of +19 dbm.
FMMX92 Field Replaceable SMA IQ Mixer From 8.5 GHz to 13.5 GHz With an IF Range From DC to 2 GHz And LO Power of +19 dbm FMMX92 is an I/Q double balanced millimeter-wave mixer module that operates across
More informationFeatures OBSOLETE. = +25 C, As an IRM. IF = MHz. Frequency Range, RF GHz. Frequency Range, LO
v.17 Typical Applications The is ideal for: Microwave Radio & VSAT Test Instrumentation Military Radios Radar & ECM Space Functional Diagram Electrical Specifications, T A = +25 C, As an IRM Parameter
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Typical Applications Features The HMC958LC5 is ideal for: SONET OC-192 and 1 GbE 16G Fiber Channel 4:1 Multiplexer Built-In Test Broadband Test & Measurement Functional Diagram Supports High Data Rates:
More informationTGC2610-SM 10 GHz 15.4 GHz Downconverter
Applications VSAT Point-to-Point Radio Test Equipment & Sensors -pin 5x5 mm QFN package Product Features Functional Block Diagram RF Frequency Range: 15. GHz IF Frequency: DC GHz LO Frequency: 19 GHz LO
More informationSUNSTAR 微波光电 TEL: FAX: v HMC750LP4 / 750LP4E 12.5 Gbps LIMITING AMPLIFIER
Typical Applications The HMC75LP4(E) is ideal for: OC-192 Receivers Gbps Ethernet Receivers Gbps Fiber Channel Receivers Broadband Test & Measurement Functional Diagram Features Electrical Specifications,
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,
More informationFeatures. = +25 C, IF= 1 GHz, LO= +13 dbm* Parameter Min. Typ. Max. Units
Features Passive: No DC Bias Required Input IP3: +2 dbm LO/RF Isolation: 3 db Wide IF Bandwidth: DC - 8 GHz Typical Applications The is ideal for: Telecom Infrastructure Military Radio, Radar & ECM Space
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,
More informationFMMX9000 DATA SHEET. Field Replaceable SMA IQ Mixer From 4 GHz to 8.5 GHz With an IF Range From DC to 3.5 GHz And LO Power of +15 dbm.
FMMX9 Field Replaceable SMA IQ Mixer From 4 GHz to 8.5 GHz With an IF Range From DC to 3.5 GHz And LO Power of +15 dbm FMMX9 is an I/Q double balanced millimeter-wave mixer module that operates across
More informationFeatures. = +25 C, IF= 1 GHz, LO= +13 dbm* Parameter Min. Typ. Max. Units
Typical Applications The is ideal for: Telecom Infrastructure Military Radio, Radar & ECM Space Systems Test Instrumentation Functional Diagram Features Wide IF Bandwidth: DC - 13 GHz Passive: No DC Bias
More informationCMD GHz Fundamental Mixer
Features Low conversion loss High isolation Wide IF bandwidth Passive double balanced topology Small die size Functional Block Diagram LO RF 1 2 Description The CMD177 is a general purpose double balanced
More informationFeatures. = +25 C, LO = 36.1 GHz, LO = +15 dbm, LSB [1] Parameter Min. Typ. Max. Min. Typ. Max Min. Typ. Max Units
v1.314 HMC116 Typical Applications The HMC116 is ideal for: Microwave Point-to-Point Radios VSAT & SATCOM Test Equipment & Sensors Military End-Use Automotive Radar Functional Diagram Features Passive:
More informationCMD176P GHz 4-Bit Digital Phase Shifter. Features. Functional Block Diagram. Description
Features Functional Block Diagram Low phase error Low insertion loss 36 phase shift, LSB = 22.5 Single bit positive logic Pb-free RoHs compliant 4x4 QFN package Description The CMD176P4 is a GaAs MMIC
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 v2.17 HMC55 MIXER, 11-2 GHz Typical
More informationFeatures. = +25 C, IF = 1GHz, LO = +13 dbm*
v2.312 HMC6 MIXER, 24-4 GHz Typical Applications Features The HMC6 is ideal for: Test Equipment & Sensors Microwave Point-to-Point Radios Point-to-Multi-Point Radios Military & Space Functional Diagram
More informationParameter LO RF IF Min Typ Max Diode Option (GHz) (GHz) (GHz) LO drive level (dbm)
Page MMIQHSM The MMIQHSM is a miniaturized, surface-mount multi-octave.7. GHz IQ mixer. It features matched double balanced mixers connected with an integrated LO hybrid and power divider. It can be used
More informationHMC-C078. SDLVAs. Features. Typical Applications. General Description. Functional Diagram
HMC-C8 v. MODULE w/ LIMITED RF OUTPUT, - GHz Typical Applications The HMC-C8 is ideal for: EW, ELINT & IFM Receivers DF Radar Systems ECM Systems Broadband Test & Measurement Power Measurement & Control
More informationFeatures. Gain Variation Over Temperature db/ C
v4.3 MODULE,. - 5 GHz Features Typical Applications The Wideband PA is ideal for: Telecom Infrastructure Microwave Radio & VSAT Military & Space Test Instrumentation Fiber Optics Functional Diagram Gain:
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 informationParameter LO RF IF Min Typ Max Diode Option (GHz) (GHz) (GHz) LO drive level (dbm)
MM-726HSM The MM-726HSM is a passive GaAs double balanced MMIC mixer suitable for both up and down-conversion applications. As with all Marki Microwave mixers, it features excellent conversion loss, isolation
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More informationv SUCCESSIVE DETECTION LOG VIDEO AMPLIFIER (SDLVA) 1-20 GHz Features Parameter Conditions Typ. Units Input Frequency Range 1-20 GHz
HMC-C88 v.6 - GHz Features to GHz Operation Typical Applications The HMC-C88 is ideal for: EW, ELINT & IFM Receivers DF Radar Systems ECM Systems Broadband Test & Measurement Power Measurement & Control
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Page 1 The is a highly linear passive GaAs double balanced MMIC mixer suitable for both up and down-conversion applications. As with all Marki Microwave mixers, it features excellent conversion loss, isolation
More informationGaAs MMIC Double Balanced Mixer
Page 1 The is a passive GaAs double balanced MMIC mixer suitable for both up and down-conversion applications. As with all Marki Microwave mixers, it features excellent conversion loss, isolation and spurious
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DATASHEET ISL008 NOT RECOMMENDED FOR NEW DESIGNS RECOMMENDED REPLACEMENT PART ISL01 Data Sheet MMIC Silicon Bipolar Broadband Amplifier FN21 Rev 0.00 The ISL00, ISL007, ISL008 and ISL009, ISL0, ISL011
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Product Features +3 dbm IIP3 RF: 1 2 MHz LO: 1 1 MHz IF: 2 MHz +1 dbm Drive Level Lead-free/green/RoHS-compliant SOIC- SMT package No External Bias Required Applications 2.G and 3G GSM/CDMA/wCDMA Optimized
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Features 46. dbm OIP3 @.8 GHz 1. db Gain @ 2 GHz.0 db Gain @ 6 GHz 30.0 dbm P1dB SOT-89 Package Functional Block Diagram General Description The X is a high linearity Hetrojunction Field Effect Transistor
More informationFeatures. LO = +13 dbm, IF = 1 GHz Parameter. Units Min. Typ. Max. Frequency Range, RF & LO GHz Frequency Range, IF DC - 8 GHz
v.17 MIXER, 25 - GHz Typical Applications The is ideal for: LMDS Microwave Point-to-Point Radios SATCOM Functional Diagram Features Passive: No DC Bias Required Input IP3: +19 dbm LO/RF Isolation: 2 db
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DATASHEET ISL551 MMIC Silicon Bipolar Broadband Amplifier NOT RECOMMENDED FOR NEW DESIGNS RECOMMENDED REPLACEMENT PART ISL551 FN28 Rev. The ISL551 is a high performance gain block featuring a Darlington
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