HMC457QS16G / 457QS16GE
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1 v3.97 HMC47QS16G / 47QS16GE Typical Applications The HMC47QS16G / HMC47QS16GE is ideal for applications requiring a high dynamic range amplifi er: CDMA & W-CDMA GSM, GPRS & Edge Base Stations & Repeaters Functional Diagram Features Output IP3: +46 dbm Gain: MHz 48% +32 dbm Pout +2 dbm W-CDMA Channel - dbc ACPR Integrated Power Control (Vpd) QSOP16G SMT Package: 29.4 mm 2 Included in the HMC-DK2 Designer s Kit General Description The HMC47QS16G & HMC47QS16GE are high dynamic range GaAs InGaP Heterojunction Bipolar Transistor (HBT) 1 watt MMIC power amplifi ers operating between 1.7 and 2.2 GHz. Packaged in a miniature 16 lead QSOP plastic package, the amplifi er gain is typically 27 db from 1.7 to 2. GHz and 2 db from 2. to 2.2 GHz. Utilizing a minimum number of external components, the amplifi er output IP3 can be optimized to +4 dbm. The power control (Vpd) can be used for full power down or RF output power/ current control. The high output IP3 and PAE make the HMC47QS16G & HMC47QS16GE ideal power amplifi ers for Cellular/3G base station & repeater applications. Electrical Specifications, T A = +2 C, Vs= +V, Vpd = +V, Vbias = +V [1] Parameter Min. Typ. Max. Min. Typ. Max. Units Frequency Range MHz Gain 27 2 db Gain Variation Over Temperature db / C Input Return Loss db Output Return Loss 8 db Output Power for 1dB Compression (P1dB) dbm Saturated Output Power (Psat) dbm Output Third Order Intercept (IP3) [2] dbm Noise Figure 6 db Supply Current (Icq) ma Control Current (Ipd) 4 4 ma Bias Current (Vbias) ma [1] Specifi cations and data refl ect HMC47QS16G measured using the respective application circuits for each designated frequency band found herein. Contact the HMC Applications Group for assistance in optimizing performance for your application. [2] Two-tone output power of +1 dbm per tone, 1 MHz spacing. - Alpha Road, Chelmsford, MA 18 Phone: Fax:
2 HMC47QS16G / 47QS16GE v3.97 Broadband Gain & Return 19 MHz 2 Gain vs. 19 MHz RESPONSE (db) 1 - S21 S S GAIN (db) C +8C -4C Input Return Loss vs. 19 MHz RETURN LOSS (db) C +8C -4C PldB vs. 19 MHz Output Return Loss vs. 19 MHz RETURN LOSS (db) C +8C -4C Psat vs. 19 MHz 32 P1dB (dbm) +2 C +8 C -4 C Psat (dbm) +2 C +8 C -4 C Alpha Road, Chelmsford, MA 18 Phone: Fax:
3 HMC47QS16G / 47QS16GE v3.97 Output IP3 vs. 19 MHz Noise Figure vs. 19 MHz 48 9 OIP3 (dbm) C +8 C -4 C NOISE FIGURE (db) C +8 C -4 C Gain, Power & IP3 vs. Supply 19 MHz GAIN (db), P1dB (dbm), Psat (dbm), OIP3 (dbm) Gain P1dB Psat OIP Vs (Vdc) Power 19 MHz Pout (dbm), GAIN (db), PAE (%) Pout (dbm) Gain (db) PAE (%) INPUT POWER (dbm) Gain, Power & IP3 vs. Supply 19 MHz* GAIN (db), P1dB (dbm), Psat (dbm), OIP3 (dbm) Gain P1dB Psat OIP Icq (ma) ACPR vs. Supply 196 MHz CDMA, 9 Channels Forward ACPR (dbc) CDMA Frequency: 1.96 GHz Integration BW: 1.8 MHz Forward Link, SR1, 9 Channels 4.V.V Source ACPR Channel Power (dbm) V * Icq is controlled by varying Vpd. - 2 Alpha Road, Chelmsford, MA 18 Phone: Fax:
4 HMC47QS16G / 47QS16GE v3.97 Broadband Gain and Return 2 MHz Gain vs. 2 MHz 2 RESPONSE (db) S S21 S GAIN (db) 18 +2C +8C -4C Input Return Loss vs. 2 MHz RETURN LOSS (db) C +8C -4C PldB vs. 2 MHz Output Return Loss vs. 2 MHz RETURN LOSS (db) C +8C -4C Psat vs. 2 MHz 32 P1dB (dbm) +2 C +8 C -4 C Psat (dbm) +2 C +8 C -4 C Alpha Road, Chelmsford, MA 18 Phone: Fax:
5 HMC47QS16G / 47QS16GE v3.97 Output IP3 vs. 2 MHz Noise Figure vs. 2 MHz 48 9 OIP3 (dbm) C +8 C -4 C NOISE FIGURE (db) C +8 C -4 C Gain, Power & IP3 vs. Supply 2 MHz GAIN (db), P1dB (dbm), Psat (dbm), OIP3 (dbm) Gain P1dB Psat OIP Vs (Vdc) Power 2 MHz Pout (dbm), GAIN (db), PAE (%) Pout (dbm) Gain (db) PAE (%) INPUT POWER (dbm) Gain, Power & IP3 vs. Supply 2 MHz* GAIN (db), P1dB (dbm), Psat (dbm), OIP3 (dbm) Gain P1dB Psat OIP Icq (ma) ACPR vs. Supply 214 MHz W-CDMA, 64 DPCH (Uplink) ACPR (dbc) W-CDMA Frequency: 2.14 GHz Integration BW: 3.84 MHz 64 DPCH 4.V -7 Source ACPR Channel Power (dbm) V.V *Icq is controlled by varying Vpd - 4 Alpha Road, Chelmsford, MA 18 Phone: Fax:
6 HMC47QS16G / 47QS16GE v3.97 Power Dissipation Absolute Maximum Ratings POWER DISSIPATION (W) 3 Max +8C MHz MHz INPUT POWER (dbm) Typical Supply Current vs. Supply Voltage Vs (V) Icq (ma) Collector Bias Voltage (Vcc) +6 Vdc Control Voltage (Vpd) +.4 Vdc RF Input Power (RFIN)(Vs = Vpd = + Vdc) +1 dbm Junction Temperature 1 C Continuous Pdiss (T = 8 C) (derate 42.9 mw/ C above 8 C) 2.78 W Thermal Resistance (junction to ground paddle) 23.3 C/W Storage Temperature -6 to +1 C Operating Temperature -4 to +8 C ELECTROSTATIC SENSITIVE DEVICE OBSERVE HANDLING PRECAUTIONS Alpha Road, Chelmsford, MA 18 Phone: Fax:
7 v3.97 HMC47QS16G / 47QS16GE Outline Drawing Package Information 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 [3] [1] H47 HMC47QS16G Low Stress Injection Molded Plastic Sn/Pb Solder MSL1 XXXX [2] H47 HMC47QS16GE RoHS-compliant Low Stress Injection Molded Plastic % matte Sn MSL1 XXXX [1] Max peak refl ow temperature of 23 C [2] Max peak refl ow temperature of C [3] 4-Digit lot number XXXX - 6 Alpha Road, Chelmsford, MA 18 Phone: Fax:
8 v3.97 HMC47QS16G / 47QS16GE Pin Descriptions Pin Number Function Description Interface Schematic 1 Vcc 2, 4,, 7, 9, 16 GND Power supply voltage for the fi rst amplifier stage. External bypass capacitors are required as shown in the application schematic. Ground: Backside of package has exposed metal ground slug that must also be connected to RF/DC ground. Vias under the device are required. 3 Vbias Power Supply for Bias Circuit 6 RFIN 8 Vpd This pin is AC coupled and matched to Ohms Power control pin. For maximum power, this pin should be connected to +V. A higher voltage is not recommended. For lower idle current, this voltage can be reduced. - 1 RFOUT RF output and DC bias for the output stage. Alpha Road, Chelmsford, MA 18 Phone: Fax:
9 v3.97 HMC47QS16G / 47QS16GE 19 & 2 MHz Application Circuit This circuit was used to specify the performance for 19 & 2 MHz operation. Contact the HMC Applications Group for assistance in optimizing performance for your application. TL1 TL2 Impedance Ohm Ohm Physical Length.17.8 Electrical Length 9 PCB Material: mil Rogers 43, Er = 3.48 Recommended Component Values 19 MHz 2 MHz C1 - C4 pf pf C, C6 pf pf C7 2.2 μf 2.2 μf C8 33 pf 33 pf C9 3.9 pf 2.7 pf L1, L2 3.9 nh 3.9 nh R1 16 Ohm 16 Ohm - 8 Alpha Road, Chelmsford, MA 18 Phone: Fax:
10 v3.97 HMC47QS16G / 47QS16GE Evaluation PCB List of Materials for Evaluation PCB , 71-2 [1] Item Description J1, J2 PCB Mount SMA Connector J3, J4 2 mm DC Header C1 - C4 pf Capacitor, 42 Pkg. C, C6 pf Capacitor, 63 Pkg. C7 2.2 μf Capacitor, Tantalum C8 33 pf Capacitor, 42 Pkg. C9 3.9 pf Capacitor, 63 Pkg MHz C9 2.7 pf Capacitor, 63 Pkg. - 2 MHz L1, L2 3.9 nh Inductor, 63 Pkg. R1 16 Ohm Resistor, 63 Pkg. U1 HMC47QS16G / HMC47QS16GE PCB [2] 98 Evaluation PCB, mils [1] Reference one of these numbers when ordering complete evaluation PCB depending on frequency of operation. [2] Circuit Board Material: Rogers 43, Er = 3.48 The circuit board used in this 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 board should be mounted to an appropriate heat sink. The evaluation circuit board shown is available from Hittite upon request. Alpha Road, Chelmsford, MA 18 Phone: Fax:
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Typical Applications Low noise MMIC VCO w/buffer Amplifi er for C-Band applications such as: UNII & Pt. to Pt. Radios 802.a & HiperLAN WLAN VSAT Radios Features Pout: + dbm Phase Noise: -0 dbc/hz @100
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v1.611 Typical Applications The is ideal for: EW Receivers Weather & Military Radar Satellite Communications Beamforming Modules Phase Cancellation Functional Diagram Features Low RMS Phase Error: 1.2
More informationFeatures. = +25 C, Vcc = +3V
Typical Applications Low noise MMIC VCO w/buffer Amplifi er for: Wireless Local Loop (WLL) VSAT & Microwave Radio Test Equipment & Industrial Controls Military Features Pout: +4.9 dbm Phase Noise: -3 dbc/hz
More informationFeatures. = +25 C, Vcc1, Vcc2, Vcc3 = +5V. Parameter Min. Typ. Max. Units Frequency Range GHz
Typical Applications Low noise MMIC VCO w/divide-by-16 for: VSAT Radio Point to Point/Multipoint Radio Test Equipment & Industrial Controls Military End-Use Automotive Radar Features Pout: + dbm Phase
More informationHMC1040LP3CE. Amplifiers - Low Noise - smt. GaAs phemt MMIC LOW NOISE AMPLIFIER, GHz. Features. Typical Applications. General Description
v.112 HMC14LP3CE AMPLIFIER, 24-43. GHz Typical Applications This HMC14LP3BE is ideal for: Point-to-Point Radios Test Instrumentation SatCom Transponders & VSAT Industrial Sensors EW & ECM Subsystems Functional
More informationFeatures. Parameter Min Typ. Max Min Typ. Max Min Typ Max Units Frequency Range GHz Gain
Typical Applications The is ideal for: Point-to-Point Radios Point-to-Multi-Point Radios VSAT & SATCOM Marine Radar Military EW & ECM Functional Diagram Features High Saturated Output Power: dbm @ % PAE
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More informationFeatures. = +25 C, Vcc = +5V. Parameter Min. Typ. Max. Units Fo Fo/2 RFOUT RFOUT/2
v4.11 HMC5LP5 / 5LP5E OUTPUT 7.3 -.2 GHz Typical Applications Low noise MMIC VCO w/half Frequency, for: VSAT Radio Point to Point/Multi-Point Radio Test Equipment & Industrial Controls Military End-Use
More informationFeatures = +5V. = +25 C, Vdd 1. = Vdd 2
v1.11 HMC51LP3 / 51LP3E POWER AMPLIFIER, 5-1 GHz Typical Applications The HMC51LP3(E) is ideal for: Microwave Radio & VSAT Military & Space Test Equipment & Sensors Fiber Optics LO Driver for HMC Mixers
More informationParameter Min. Typ. Max. Units Frequency Range GHz
v.312 27-31. GHz Typical Applications The is ideal for: Point-to-Point Radio Point-to-Multi-Point Radio EW & ECM Subsystems Ka-Band Radar & VSAT Test Equipment Functional Diagram Features Wide Gain Control
More informationFeatures. = +25 C, Vcc = 5V, Vpd = 5V. Parameter Min. Typ. Max. Min. Typ. Max. Units
v2.717 MMIC AMPLIFIER, 4 - GHz Typical Applications The is ideal for: Cellular / PCS / 3G Fixed Wireless & WLAN CATV, Cable Modem & DBS Microwave Radio & Test Equipment IF & RF Applications Functional
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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 HMC440QS16G(E)
More informationOBSOLETE. = +25 C, Vdd = Vs= +5V, Vctl= 0/ +5V. Parameter Frequency Min. Typ. Max. Units DC GHz 37. db Gain (Maximum Gain State)
v.1212.5 db LSB GaAs MMIC 6-BIT DIGITAL Typical Applications The is ideal for: IF & RF Applications Cellular/3G Infrastructure WiBro / WiMAX / 4G Microwave Radio & VSAT Test Equipment and Sensors Functional
More informationFrequency vs. Tuning Voltage, Vcc = +5V OUTPUT FREQUENCY (GHz) Frequency vs. Tuning Voltage, T= 25 C OUTPUT F
Typical Applications The HMC734LP5(E) is ideal for: Point-to-Point/Multi-Point Radio Test Equipment & Industrial Controls SATCOM Military End-Use Functional Diagram Features Dual Output: Fo = Fo/4 = 2.15-2.55
More informationHMC546MS8G / 546MS8GE
v6.89 HMC546MS8G / 546MS8GE GaAs MMIC 2W FAILSAFE SWITCH.2-2.2 GHz Typical Applications The HMC546MS8G(E) is ideal for: LNA Protection, WiMAX, WiBro Cellular/PCS/3G Infrastructure Private Mobile Radio
More informationFeatures. = +25 C, Vdd1 = Vdd2 = +3.5V, Idd = 70 ma
v2.61 Typical Applications This is ideal for: Point-to-Point Radios Point-to-Multi-Point Radios Military & Space Test Instrumentation Functional Diagram Features Low Noise Figure: 2.5 db Gain: 13 db P1dB
More informationFeatures. = +25 C, Vdd1 = Vdd2 = +3.5V, Idd = 45 ma
v2.61 Typical Applications This is ideal for: Point-to-Point Radios Point-to-Multi-Point Radios Military & Space Test Instrumentation Functional Diagram Features Low Noise Figure: 2. db High Gain: 22 db
More informationHMC368LP4 / 368LP4E FREQ. MULTIPLIERS - ACTIVE - SMT. SMT GaAs PHEMT MMIC AMP-DOUBLER-AMP, 9-16 GHz OUTPUT. Typical Applications.
v3.5 Typical Applications Microwave Radios & VSAT Fiber Optic Infrastructure Military Communications & Radar Functional Diagram Features Output Power: +15 dbm Wide Input Power Range: to +1 dbm 1 khz SSB
More informationFeatures. = +25 C, Vcc (Dig), Vcc (Amp), Vcc (RF) = +5V. Parameter Min. Typ. Max. Units Fo Fo/4 RFOUT RFOUT/4
.6-10.2 GHz Typical Applications The HMC734LP5(E) is ideal for: Point-to-Point/Multi-Point Radio Test Equipment & Industrial Controls SATCOM Military End-Use Functional Diagram Features Dual Output: Fo
More informationFeatures. = +25 C, 50 Ohm System, Vcc= +3V
v.1 HMC32 / 32E Typical Applications Prescaler for DC to C Band PLL Applications: UNII, Point-to-Point & VSAT Radios 82.11a & HiperLAN WLAN Fiber Optic Cellular / 3G Infrastructure Functional Diagram Features
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More informationFeatures. = +25 C, Vcc1, Vcc2 = +5V. Parameter Min. Typ. Max. Units Fo Fo/2 RFOUT RFOUT/2 RFOUT/4
v4.11 Typical Applications Low noise MMIC VCO w/half Frequency, Divide-by-4 Outputs for: VSAT Radio Point to Point/Multipoint Radio Test Equipment & Industrial Controls Military End-Use Functional Diagram
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More informationFeatures = +5V. = +25 C, Vdd 1. = Vdd 2
v7.11 HMC1LC3 POWER AMPLIFIER, - GHz Typical Applications The HMC1LC3 is ideal for use as a medium power amplifier for: Microwave Radio & VSAT Military & Space Test Equipment & Sensors Fiber Optics LO
More informationFeatures OBSOLETE. = +25 C, 50 Ohm System, Vcc= 3V
Typical Applications Prescaler for DC to 4. GHz PLL Applications: DBS/CATV Tuners 82.11x & HiperLAN WLAN Fixed Wireless & WLL Microwave & VSAT Radios Cellular & 3G Functional Diagram v.93 HMC42MS8 / 42MS8E
More informationFeatures. = +25 C, Vcc1, Vcc2 = +3V. Parameter Min. Typ. Max. Units Fo Fo/2 RFOUT RFOUT/2 RFOUT/4
v4.11 Typical Applications Low noise MMIC VCO w/half Frequency, Divide-by-4 Outputs for: VSAT Radio Point to Point/Multipoint Radio Test Equipment & Industrial Controls Military End-Use Functional Diagram
More informationv Features = +25 C, 50 Ohm System, Vcc = 5V
Typical Applications Prescaler for DC to X band PLL applications: Satellite communication systems Fiber optic Point-to-point and point-to-multi-point radios VSAT Functional Diagram Features Ultra low SSB
More informationFeatures OBSOLETE. Isolation DC GHz db
Typical Applications Features - 224 The is ideal for: Cellular / 4G Infrastructure WiMAX, WiBro & Fixed Wireless Automotive Telematics Mobile Radio Test Equipment Functional Diagram Input P1dB: + @ Vdd
More informationFeatures. = +25 C, Vcc = +5V. Parameter Min. Typ. Max. Units Fo Fo/2 RFOUT RFOUT/2
Typical Applications Low noise MMIC VCO w/half Frequency, for: VSAT Radio Point to Point/Multi-Point Radio Test Equipment & Industrial Controls Military End-Use Functional Diagram Features Dual Output:
More informationOBSOLETE. Parameter Frequency (GHz) Min. Typ. Max. Units DC GHz GHz. Attenuation Range DC - 3 GHz 31 db
5 Typical Applications The HMC47LP3(E) is ideal for: Cellular; UMTS/3G Infrastructure ISM, MMDS, WLAN, WiMAX Microwave Radio & VSAT Test Equipment and Sensors Functional Diagram HMC47LP3 / 47LP3E v4.118
More informationParameter Frequency (GHz) Min. Typ. Max. Units DC GHz GHz GHz GHz Attenuation Range DC - 5.
5 Typical Applications HMC54LP3 / 54LP3E v.65 1 LSB GaAs MMIC 4-BIT DIGITAL Features The HMC54LP3 / HMC54LP3E is ideal for both RF and IF applications: Cellular Infrastructure ISM, MMDS, WLAN, WiMAX, WiBro
More informationOBSOLETE. Parameter Frequency (GHz) Min. Typ. Max. Units DC GHz GHz GHz Attenuation Range DC - 5.
5 Typical Applications HMC54LP3 / 54LP3E v.65 1 LSB GaAs MMIC 4-BIT DIGITAL Features The HMC54LP3 / HMC54LP3E is ideal for both RF and IF applications: Cellular Infrastructure ISM, MMDS, WLAN, WiMAX, WiBro
More informationHMC948LP3E POWER DETECTORS - SMT. 54 db, LOGARITHMIC DETECTOR, 1-23 GHz. Typical Applications. Features. Functional Diagram. General Description
v.9 HMC948LPE DETECTOR, - GHz Typical Applications The HMC948LPE is ideal for: Point-to-Point Microwave Radio VSAT Wideband Power Monitoring Receiver Signal Strength Indication (RSSI) Test & Measurement
More informationOBSOLETE HMC5846LS6 AMPLIFIERS - LINEAR & POWER - SMT. Electrical Specifications, T A. Features. Typical Applications. General Description
v1.414 Typical Applications The HMC846LS6 is ideal for: Point-to-Point Radios Point-to-Multi-Point Radios VSAT & SATCOM Military & Space Functional Diagram Electrical Specifications, T A = +2 C Vdd = Vdd1,
More informationFeatures. = +25 C, Vdd= 8V, Idd= 75 ma*
HMC46LC5 Typical Applications v3.11 AMPLIFIER, DC - 2 GHz Features The HMC46LC5 is ideal for: Noise Figure: 2.5 db @ 1 GHz Telecom Infrastructure Microwave Radio & VSAT Military & Space Test Instrumentation
More informationHMC437MS8G / 437MS8GE
v5.1211 HMC37MS8G / 37MS8GE Typical Applications Prescaler for DC to C Band PLL Applications: UNII, Point-to-Point & VSAT Radios 82.11a & HiperLAN WLAN Fiber Optic Cellular / 3G Infrastructure Functional
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More informationFeatures. = +25 C, Vcc (Dig), Vcc (Amp), Vcc (RF) = +5V
Typical Applications The HMC734LP5(E) is ideal for: Point-to-Point/Multi-Point Radio Test Equipment & Industrial Controls SATCOM Military End-Use Functional Diagram Features Dual Output: Fo = Fo/4 = 2.15-2.55
More informationFeatures. = +25 C, Vcc (Dig), Vcc (Amp), Vcc (RF) = +5V. Parameter Min. Typ. Max. Units Fo Fo/2 RFOUT RFOUT/2 RFOUT/4
HMC54LP5 / 54LP5E Typical Applications Low noise MMIC VCO w/half Frequency, Divide-by-4 Outputs for: Point to Point/Multipoint Radio Test Equipment & Industrial Controls SATCOM Military End-Use Functional
More informationOBSOLETE. = +25 C, With Vdd = +5V & Vctl = 0/+5V. Parameter Frequency Min. Typ. Max. Units DC - 4 GHz GHz Attenuation Range DC - 10 GHz 10 db
Typical Applications The HMC8LP3E is ideal for: Test Equipment and Sensors ISM, MMDS, WLAN, WiMAX, WiBro Microwave Radio & VSAT Cellular Infrastructure Functional Diagram HMC8LP3E v.11 1 GaAs MMIC 1-BIT
More informationFeatures. = +25 C, Vdd1, 2, 3 = 5V, Idd = 250 ma*
v.4 HMC498LC4 Typical Applications Features The HMC498LC4 is ideal for use as a LNA or Driver amplifier for: Point-to-Point Radios Point-to-Multi-Point Radios & VSAT Test Equipment & Sensors Military End-Use
More information