No need for gain flatness compensation over 8 GHz band to realize published gain flatness.

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1 Surface Mount Monolithic Amplifier 50Ω DC to 8 GHz The Big Deal Low Gain Good Gain flatness, ±0.9 Broadband matched Micro-X, diameter Product Overview (RoHS compliant) is wideband current driven amplifier fabricated using HBT technology. In addition, the, has good input and output return loss over a broad frequency range without the need for external matching components. Lead finish is SnAgNi. It has repeatable performance from lot to lot and is enclosed in a diameter micro-x package for very good thermal performance. Key Features Feature Broadband, DC* to 8 GHz (* Low frequency cut off determined by external coupling capacitors) Advantages A single amplifier covering DC* to 8 band. Reduced component inventory Ideal for wideband applications such as instrumentation and military Low gain: 8.6 typ. at 0. GHz and 6.9 at 8 GHz Ideal for increasing the gain of amplifier chain by low value. Typically small gain change may need two components; an amplifier and an attenuator. Use of reduces component count. Good Gain Flatness: ±0.9 No need for gain flatness compensation over 8 GHz band to realize published gain flatness. Wideband matched Input return loss: 8-5 typ. Output return loss: -7 typ. No external matching required to realize published return loss. P.O. Box 5066, Brooklyn, NY (78) sales@minicircuits.com Page of

2 Surface Mount Monolithic Amplifier Product Features DC-8 GHz Gain, 8. typ. at GHz Good gain flatness, ±0.9 typ. Output power,.8 m typ. at GHz Internally Matched to 50 Ohms Aqueous washable Protected by US Patent 6,9,69 Typical Applications Cellular PCS Communication receivers & transmitters Satellite communication, military DC-8 GHz CASE STYLE: WW07 +RoHS Compliant The +Suffix identifies RoHS Compliance. See our web site for RoHS Compliance methodologies and qualifications General Description (RoHS compliant) is a wideband current driven low gain, amplifier offering medium dynamic range. It has repeatable performance from lot to lot. It is enclosed in a diameter micro-x package. simplified schematic and pin description RF IN RF-OUT and DC-IN RF-OUT and DC-IN GND GND GROUND RF IN Function Pin Number Description RF IN RF-OUT and DC-IN GND, RF input pin. This pin requires the use of an external DC blocking capacitor chosen for the frequency of operation. RF output and bias pin. DC voltage is present on this pin; therefore a DC blocking capacitor is necessary for proper operation. An RF choke is needed to feed DC bias without loss of RF signal due to the bias connection, as shown in Recommended Application Circuit. Connections to ground. Use via holes as shown in Suggested Layout for PCB Design to reduce ground path inductance for best performance. P.O. Box 5066, Brooklyn, NY (78) sales@minicircuits.com REV. A M507 RS/CP/AM 7098 Page of

3 Electrical Specifications at 5 C and 50mA, unless noted Parameter Condition (GHz) Min. Typ. Max. Units Frequency Range* DC 8 GHz Gain Input Return Loss Output Return Loss Output IP m Output compression m Noise Figure Recommended Device Operating Current (Id) 50 ma Device Operating Voltage (Vd).6.0. V Device Voltage Variation vs. Temperature at 50 ma -.6 mv/ C Device Voltage Variation vs. Current at 5 C 7.5 mv/ma Thermal Resistance, junction-to-case 8 C/W *Low frequency cut off determined by external coupling capacitors. Absolute Maximum Ratings Parameter Ratings Operating Temperature* -0 C to 85 C Storage Temperature -65 C to 50 C Operating Current Input Power 7 ma 6 m (5 min max.) 5 m (continuous) Note: Permanent damage may occur if any of these limits are exceeded. These ratings are not intended for continuous normal operation. Case is defined as ground leads. P.O. Box 5066, Brooklyn, NY (78) sales@minicircuits.com Page of

4 Characterization Test Circuit Supply Current (Id) RF-IN BLK-8+, DUT TB-89 Vd Bias- Tee ZX85-G-S+ RF-OUT Fig. Block Diagram of Test Circuit used for characterization. (DUT soldered on Mini-Circuits Characterization test board TB-89) Gain, Return loss, Output power at compression (P ), output IP (OIP) and noise figure measured using Agilent s N5A PNA-X microwave network analyzer. Conditions:. Gain and Return loss: Pin= -5m. Output IP (OIP): Two tones, spaced MHz apart, -5 m/tone at output. Recommended Application Circuit Index R bias (R equired) V cc C bypass IN C block Ibias R FC (Optional) V d C block OUT Test Board includes case, connectors, and components (in bold) soldered to PCB Product Marking E9 index over pin Markings in addition to model number designation may appear for internal quality control purposes. Vcc R BIAS % Res. Values (ohms) for Optimum Biasing P.O. Box 5066, Brooklyn, NY (78) sales@minicircuits.com Page of

5 Additional Detailed Technical Information additional information is available on our dash board. To access this information click here Data Table Performance Data Swept Graphs S-Parameter (SP Files) Data Set (.zip file) Case Style Tape & Reel Standard quantities available on reel WW07, Plastic micro-x body diameter, lead finish: tin-silver over nickel F 7 Reels with 0, 50, 00, 00, 500, K devices Suggested Layout for PCB Design Evaluation Board Environmental Ratings 98-PL-075 TB-08-9SM+ ENV08T ESD Rating Human Body Model (HBM): Class B (500 to <000V) in accordance with ANSI/ESD STM Machine Model (MM): Class M(5V) in accordance with ANSI/ESD STM MSL Rating Moisture Sensitivity: MSL in accordance with IPC/JEDEC J-STD-00D MSL Test Flow Chart Start Visual Inspection Electrical Test SAM Analysis Reflow cycles, 60 C Soak 85 C/85RH 68 hours Bake at 5 C, hours Visual Inspection Electrical Test SAM Analysis Stop P.O. Box 5066, Brooklyn, NY (78) sales@minicircuits.com Page 5 of

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