HMC274QS16 / 274QS16E. Features OBSOLETE. = +25 C, Vdd = +3V to +5V & Vctl = 0/Vdd. Parameter Frequency Min. Typical Max. Units
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1 Typical Applications Functional Diagram v1. The HMC274QS16 / HMC274QS16E is ideal for: Cellular/PCS/3G Infrastructure 2.4 GHz ISM Radios Wireless Data HMC274QS16 / 274QS16E 1 LSB GaAs IC -BIT DIGITAL ATTENUATOR, GHz Features 1 LSB Steps to 31 Single Positive Control (+3 to +V) Per Bit ±. Typical Bit Error Small QSOP16 Plastic Package Included in the HMC-DK4 Designer s Kit General Description The HMC274QS16 & HMC274QS16E are broadband -bit positive control GaAs IC digital attenuators in 16 lead QSOP plastic packages. Covering.7 to 2.7 GHz the insertion loss is typically less than 2.3. The attenuator bit values are 1 (LSB), 2, 4, 8, and 16 for a total attenuation of 31. Accuracy is excellent at ±. typical with an IIP3 of up to + m. Five bit control voltage inputs, toggled between and +3 to + volts, are used to select each attenuation state. A single Vdd bias of +3 to + volts applied through an external K Ohm resistor is required. Electrical Specifications, T A = +2 C, Vdd = +3V to +V & Vctl = /Vdd Insertion Loss Parameter Frequency Min. Typical Max. Units GHz GHz GHz Attenuation Range GHz 31 Return Loss (RF1 & RF2, All Atten. States) Attenuation Accuracy: (Referenced to Insertion Loss) All Attenuation States All Attenuation States All Attenuation States Input Power for.1 Compression Input Third Order Intercept Point (Two-tone Input Power = m Each Tone) Switching Characteristics Vdd = V Vdd = 3V Vdd = V Vdd = 3V GHz GHz GHz GHz GHz GHz GHz ±.3 + % of Atten. Setting Max ±.2 + 3% of Atten. Setting Max ±.3 + % of Atten. Setting Max m m m m trise, tfall (1/9% RF) ton, toff (% CTL to 1/9% RF) GHz 6 6 ns ns - 28 Application Support: Phone: 1-8-ANALOG-D
2 Insertion Loss v1. 1 LSB GaAs IC -BIT DIGITAL ATTENUATOR, GHz Return Loss RF1, RF2 INSERTION LOSS () C +8 C -4 C Normalized Attenuation NORMALIZED ATTENUATION () Bit Error vs. Frequency BIT ERROR () RETURN LOSS () Bit Error vs. Attenuation State BIT ERROR () GHz 1.9 GHz 2.4 GHz ATTENUATION STATE () Relative Phase vs. Frequency RELATIVE PHASE (deg) I.L Note: All Data Typical Over Voltage (+3V to +V). Application Support: Phone: 1-8-ANALOG-D - 29
3 Compression Point & IP3 v1. 1 LSB GaAs IC -BIT DIGITAL ATTENUATOR, GHz Attenuation Control Input P1 (m) Input P.1 (m) Input IP3 (m) State () Voltage (V) +2C +8C -4C +2C +8C -4C +2C +8C -4C Application Circuit Truth Table V1 16 V2 8 Control Voltage Input V3 4 V4 2 V 1 DC blocking capacitors C1 & C2 are required on RF1 & RF2. Choose C1 = C2 = 1 ~ 3 pf to allow lowest customer specifi c frequency to pass with minimal loss. R1 = K Ohm is required to supply voltage to the circuit through either PIN 9 or PIN 16. Attenuation Setting RF1 - RF2 High High High High High Reference I.L. High High High High Low 1 High High High Low High 2 High High Low High High 4 High Low High High High 8 Low High High High High 16 Low Low Low Low Low 31 Max. Atten. Any combination of the above states will provide an attenuation approximately equal to the sum of the bits selected. - 3 Application Support: Phone: 1-8-ANALOG-D
4 Absolute Maximum Ratings v1. HMC274QS16 / 274QS16E 1 LSB GaAs IC -BIT DIGITAL ATTENUATOR, GHz Control Voltages Control Voltage (V1 - V) Vdd +. Vdc State Bias Condition Bias Voltage (Vdd) +8. Vdc Low to ua Max Storage Temperature -6 to +1 C High Vdd 1 ua Max Operating Temperature -4 to +8 C Note: Vdd = +3V to V ±.2V RF Input Power ( GHz) +3 m ELECTROSTATIC SENSITIVE DEVICE OBSERVE HANDLING PRECAUTIONS Outline Drawing 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 MUST BE SOLDERED TO PCB RF GROUND. Package Information Part Number Package Body Material Lead Finish MSL Rating Package Marking [3] [1] HMC274 HMC274QS16 Low Stress Injection Molded Plastic Sn/Pb Solder MSL1 XXXX [2] HMC274 HMC274QS16E RoHS-compliant Low Stress Injection Molded Plastic 1% matte Sn MSL1 XXXX [1] Max peak refl ow temperature of 23 C [2] Max peak refl ow temperature of 26 C [3] 4-Digit lot number XXXX Application Support: Phone: 1-8-ANALOG-D - 31
5 Pin Descriptions v1. 1 LSB GaAs IC -BIT DIGITAL ATTENUATOR, GHz Pin Number Function Description Interface Schematic 1, 2, 8, 1-1 GND This pin must be DC grounded. 3-7 V1 - V See truth table and control voltage table. 9 RF1 16 RF1 This pin is DC coupled and matched to Ohm. Blocking capacitors are required. This pin is DC coupled and matched to Ohm. Blocking capacitors are required Application Support: Phone: 1-8-ANALOG-D
6 Evaluation PCB v1. 1 LSB GaAs IC -BIT DIGITAL ATTENUATOR, GHz List of Materials for Evaluation PCB [1] Item J1 - J2 J3 - J11 R1 R2 - R6 C1, C2 U1 PCB [2] Description PCB Mount SMA Connector DC Pin k Ohm Resistor, 42 Chip 1 Ohm Resistor, 42 Chip 42 Chip Capacitor, Select for Lowest Frequency of Operation HMC274QS16 / HMC274QS16E Digital Attenuator Evaluation PCB [1] Reference this number when ordering complete evaluation PCB [2] Circuit Board Material: Rogers 43 * R2 - R6 = 1 Ohm. These resistors are optional and may be used to enhance decoupling of the RF path from the control inputs. The circuit board used in the fi nal application should use RF circuit design techniques. Signal lines should have ohm impedance while the package ground leads should be connected directly to the ground plane similar to that shown below. A sufficient number of via holes should be used to connect the top and bottom ground planes. The evaluation circuit board as shown is available from Hittite Microwave Corporation upon request. Application Support: Phone: 1-8-ANALOG-D - 33
Features. = +25 C, Vdd = +3V to +5V & Vctl = 0/Vdd (Unless Otherwise Stated)
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More information= +25 C, With Vee = -5V & VCTL= 0/-5V
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More information= +25 C, with Vcc = +5V. Parameter Frequency (GHz) Min. Typ. Max. Units DC GHz GHz GHz Attenuation Range DC GHz 31.
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More informationFeatures. Parameter Frequency (GHz) Min. Typ. Max. Units GHz GHz GHz. Attenuation Range GHz 15.
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More informationFeatures. = +25 C, With 0/-5V Control, 50 Ohm System. Parameter Frequency Min. Typ. Max. Units DC GHz
Typical Applications This switch is suitable for usage in 50- Ohm or 75-Ohm systems: Broadband Fiber Optics Switched Filter Banks Wireless below 8 GHz Functional Diagram Features Broadband Performance:
More informationFeatures. = +25 C, With 0/-5V Control, 50 Ohm System. Parameter Frequency Min. Typ. Max. Units
Typical Applications The is ideal for: Basestation Infrastructure Fiber Optics & Broadband Telecom Microwave Radio & VSAT Military Radios, Radar, & ECM Test Instrumentation Functional Diagram Features
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More informationFeatures. = +25 C, With 0/-5V Control, 50 Ohm System. Parameter Frequency Min. Typ. Max. Units
v03.15 Typical Applications The is ideal for: Telecom Infrastructure Microwave Radio & VSAT Military Radios, Radar & ECM Test Instrumentation Features Isolation: 55 @ 2 GHz 43 @ 6 GHz Insertion Loss: 1.6
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More informationFeatures. = +25 C, With Vdd = Vdd1 = +5V, Vss = -5V. Parameter Frequency (GHz) Min. Typ. Max. Units GHz GHz
v1.1116 Typical Applications The is ideal for: Features 1. LSB Steps to 3 Fiber Optics & Broadband Telecom Microwave Radio & VSAT Military Radios, Radar & ECM Space Applications Sensors Test & Measurement
More informationFeatures. = +25 C, 50 Ohm system. DC - 10GHz DC - 14 Ghz DC - 10 GHz DC - 14 GHz Return Loss DC - 14 GHz 5 10 db
Typical Applications v2.717 Features The is ideal for: Basestation Infrastructure Fiber Optics & Broadband Telecom Microwave Radio & VSAT Military Radios, Radar, & ECM Test Instrumentation Functional Diagram
More informationFeatures. = +25 C, With 0/-5V Control, 50 Ohm System. Parameter Frequency Min. Typ. Max. Units
Typical Applications The is ideal for: Telecom Infrastructure Microwave Radio & VSAT Military Radios, Radar & ECM Test Instrumentation Features Isolation: 50 @ 2.5 GHz 3 @ 8 GHz Insertion Loss: 2 Typical
More informationHMC471MS8G / 471MS8GE. Features OBSOLETE. DC GHz GHz GHz GHz GHz
v1.65 Typical Applications The HMC471MSG / HMC471MSGE is a dual RF/IF gain block & LO or PA driver: Cellular / PCS / 3G Fixed Wireless & WLAN CATV, Cable Modem & DBS Microwave Radio & Test Equipment Functional
More informationv02.06 Insertion Loss INSERTION LOSS () C +85 C -40 C Isolation ISOLATION () Return Loss RETURN LOSS ()
v02.06 Typical Applications The is ideal for: Telecom Infrastructure Microwave Radio & VSAT Military Radios, Radar & ECM Space Systems Test Instrumentation Features Isolation: 55 @ 2 GHz 42 @ 6 GHz Insertion
More informationHMC629ALP4E. 3 db LSB GaAs MMIC 4-BIT DIGITAL ATTENUATOR, DC - 10GHz. Typical Applications. Functional Diagram. General Description
Typical Applications The is ideal for: Cellular/3G Infrastructure WiBro / WiMAX / 4G Microwave Radio & VSAT Test Equipment and Sensors IF & RF Applications Functional Diagram Features 3 LSB Steps to 45
More informationHMC454ST89 / 454ST89E. Features. = +25 C, Vs= +5V [1]
Typical Applications The HMC44ST8 / HMC44ST8E is ideal for applications requiring a high dynamic range amplifi er: GSM, GPRS & EDGE CDMA & W-CDMA CATV/Cable Modem Fixed Wireless & WLL Features Output IP3:
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 Typical Applications Transmit & Receive
More information= +25 C, Vdd = Vs= P/S= +5V
v3. HMC68LP5 / 68LP5E.5 db LSB GaAs MMIC 6-BIT DIGITAL VARIABLE GAIN AMPLIFIER w/ SERIAL CONTROL, DC - GHz Variable gain amplifiers - digital - SMT Typical Applications The HMC68LP5(E) is ideal for: IF
More informationFeatures. = +25 C, With 0/-5V Control, 50 Ohm System. Parameter Frequency Min. Typ. Max. Units
Typical Applications The is ideal for: Telecom Infrastructure Microwave Radio & VSAT Military Radios, Radar & ECM Space Systems Test Instrumentation Features Isolation: 48 @ 2 GHz 34 @ 6 GHz Insertion
More informationHMC480ST89 / 480ST89E
v2.7 HMCST9 / ST9E Typical Applications The HMCST9 / HMCST9E is an ideal RF/IF gain block & LO or PA driver for: Cellular / PCS / 3G Fixed Wireless & WLAN CATV, Cable Modem & DBS Microwave Radio & Test
More informationHMC454ST89 / 454ST89E
HMC44ST8 / 44ST8E Typical Applications The HMC44ST8 / HMC44ST8E is ideal for applications requiring a high dynamic range amplifi er: GSM, GPRS & EDGE CDMA & W-CDMA CATV/Cable Modem Fixed Wireless & WLL
More informationFeatures
HMC37SC7E v1.1.3-3. GHz Typical Applications The HMC37SC7E is ideal for: Cellular/PCS/3G WCS, mmds & ism Fixed Wireless & WLAN Private Land Mobile Radio Functional Diagram Features Single Supply: Vdd =
More informationHMC173MS8 ATTENUATORS - SMT. GaAs MMIC VOLTAGE-VARIABLE ATTENUATOR, GHz. Features. Typical Applications. General Description
v1.81 ATTENUATOR,.8 -. GHz Typical Applications The is ideal for.8 -. GHz Applications: Base Station Infrastructure Portable Wireless Features Single Positive Voltage Control: to +3V High Attenuation Range:
More information= +25 C, With Vee = -5V & Vctl = 0/-5V
v.46.5db LSB GaAs MMIC 6-BIT DIGITAL Typical Applications Features The HMC44AG6 is ideal for: Telecom Infrastructure Military Radios, Radar & ECM Space Applications Test Instrumentation Functional Diagram.5
More information= +25 C, Vdd = Vs= P/S= +5V
v.3.5 db LSB GaAs MMIC 6-BIT DIGITAL VARIABLE GAIN Typical Applications The HMC68ALP5E is ideal for: IF & RF Applications Cellular/3G Infrastructure WiBro / WiMAX / 4G Microwave Radio & VSAT Test Equipment
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
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 v.41 Typical Applications The HMC649ALP6E
More informationHMC457QS16G / 457QS16GE
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
More informationHMC1095LP4E v db LSB GaAs MMIC 6-BIT 75 Ohms DIGITAL ATTENUATOR, DC - 3 GHz. Typical Applications. Functional Diagram. General Description
v1.713 Typical Applications The is ideal for: CATV/ Sattelite Set Top Boxes CATV Modems CATV Infrastructure Data Network Equipment Functional Diagram Features.5 db LSB Steps to Power-Up State Selection
More informationHMC656LP2E TO HMC658LP2E v
Typical Applications The HMC656LP2E - HMC65LP2E are ideal for: Fiber Optics Microwave Radio Military & Space Test & Measurement Scientifi c Instruments RF / Microwave Circuit Prototyping Features 3 Attenuator
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 v3.38 POWER AMPLIFIER, 2-2 GHz Typical
More informationFeatures. = +25 C, Vs = +5V. Parameter Min. Typ. Max. Min. Typ. Max. Units Frequency Range MHz Gain
Typical Applications Functional Diagram The HMC32LP3 / HMC32LP3E is ideal for basestation receivers: GSM, GPRS & EDGE CDMA & W-CDMA Private Land Mobile Radio HMC32LP3 / 32LP3E AMPLIFIER, 00-1000 MHz Features
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 v3.1211 45 Analog Phase Shifter,
More informationHMC629ALP4E. 3 db LSB GaAs MMIC 4-BIT DIGITAL ATTENUATOR, DC - 10GHz. Typical Applications. Functional Diagram. General Description
v1.716 DIGITAL ATTENUATOR, DC - 1GHz Typical Applications The is ideal for: Cellular/3G Infrastructure WiBro / WiMAX / 4G Microwave Radio & VSAT Test Equipment and Sensors IF & RF Applications Functional
More informationOBSOLETE. Output Power for 1 db Compression dbm Output Third Order Intercept Point (Two-Tone Output Power= 12 dbm Each Tone)
Designer s Kit Available v.211t Typical Applications The is ideal for: Cellular/3G Infrastructure WiBro / WiMAX / 4G Microwave Radio & VSAT Test Equipment and Sensors IF & RF Applications Functional Diagram
More informationFeatures OBSOLETE. DC GHz GHz GHz GHz GHz
v2.71 HMC75ST9 / 75ST9E Typical Applications The HMC75ST9 / HMC75ST9E is an ideal RF/IF gain block & LO or PA driver: Cellular / PCS / 3G Fixed Wireless & WLAN CATV, Cable Modem & DBS Microwave Radio &
More informationFeatures. = +25 C, Vdd = +5V, Rbias = 10 Ohms*
Typical Applications Functional Diagram The HMC36LP3 / HMC36LP3E is ideal for: Cellular/3G Infrastructure Base Stations & Repeaters CDMA, W-CDMA, & TD-SCDMA Private Land Mobile Radio GSM/GPRS & EDGE UHF
More information