Features low conversion loss, 6.11 db typ. excellent L-R isolation, 44 db typ. CONVERSION LOSS (db) Mid-Band m. Range f L. Conversion Loss (db)
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1 Surface Mount Level 13 ( Power +13dBm) 2 to 500 MHz Maximum Ratings Operating Temperature -40 C to 85 C Storage Temperature -55 C to 100 C RF Power Pin Connections 1 RF 4 IF 5 GROUND 2,3,6 Outline Drawing 200mW IF Current 40mA Permanent damage may occur if any of these limits are exceeded. Features low conversion loss, 6.11 db typ. excellent L-R isolation, 44 db typ. Applications VHF/UHF instrumentation FREQUENCY 1 db COMP.: +9 dbm typ. CONVERSION SS Mid-Band m Electrical Specifications -RF ISOLATION CASE STYLE: QQQ130 +RoHS Compliant The +Suffix identifies RoHS Compliance. See our web site for RoHS Compliance methodologies and qualifications Available Tape and Reel at no extra cost Reel Size Devices/Reel 7 10, 20, 50, 100, IF ISOLATION IP3 at center band (dbm) /RF IF Total L M U L M U Range f L -f U X σ Max. Max. Typ. Min. Typ. Min. Typ. Min. Typ. Min. Typ. Min. Typ. Min. Typ DC L = low range [f L to 10 f L ] M = mid range [10 f L to f U /2] U = upper range [f U /2 to f U ] m= mid band [2f L to f U /2] PCB Land Pattern Suggested Layout, Tolerance to be within ±.002 inch Outline Dimensions ( mm ) A B C D E F G H J K L M wt grams Demo Board MCL P/N: TB-44+ Suggested PCB Layout (PL-083) RF Frequency Conversion Loss +13dBm Typical Performance Data VSWR RF Port (:1) +13dBm Frequency Isolation L-R +13dBm Isolation L-I +13dBm VSWR Port (:1) +13dBm Electrical Schematic Notes A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, Standard Terms ); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits website at Mini-Circuits P.O. Box , Brooklyn, NY (718) sales@minicircuits.com REV. D M DJ/FL/CP/AM Page 1 of 2
2 Performance Charts CONVERSION SS at IF Freq of 30 MHz CONVERSION SS =+10 dbm =+13 dbm =+16 dbm ISOLATION LRMS-1M L-R ISOLATION =+10 dbm =+13 dbm =+16 dbm FREQUENCY FREQUENCY ISOLATION L-I ISOLATION =+10 dbm =+13 dbm =+16 dbm VSWR RF VSWR =+10 dbm =+13 dbm =+16 dbm FREQUENCY FREQUENCY 3.5 VSWR 3.0 at Freq of 470 MHz IF VSWR 3.0 =+10 dbm =+13 dbm =+16 dbm 2.5 =+10 dbm =+13 dbm =+16 dbm VSWR FREQUENCY VSWR FREQUENCY Notes A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, Standard Terms ); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits website at Mini-Circuits P.O. Box , Brooklyn, NY (718) sales@minicircuits.com Page 2 of 2
3 Typical Performance Data RF (IN) CONVERSION SS (dbm) RF (IN) IP3 INPUT (dbm) RF (IN) (dbm) Page 1 of 5
4 Typical Performance Data IF (OUT) CONVERSION SS VS. (dbm) IF (OUT) CONVERSION SS VS. (dbm) IF (OUT) CONVERSION SS VS. (dbm) Page 2 of 5
5 Typical Performance Data -RF (dbm) -IF (dbm) RF (IN) RF-IF (dbm) Page 3 of 5
6 Typical Performance Data RF (IN) RF VSWR (dbm) VSWR (dbm) IF (OUT) IF (dbm) Page 4 of 5
7 Harmonics Tables RF HARMONICS ORDER (-dbm) (-dbc) > > > > > > > > RF CAL Test conditions: RF IN: MHz; 4.00 dbm. IN: MHz; dbm IF OUT: MHz; dbm HARMONICS ORDER RF HARMONICS ORDER (-dbm) (-dbc) > > > > >100 >88 >88 >88 >88 87 > >100 >88 >88 >88 >88 >88 >88 >88 84 >88 >88 >88 8 >100 >88 >88 >88 >88 >88 >88 >88 85 >88 >88 >88 9 >100 >88 >88 >88 >88 >88 >88 >88 >88 66 >88 >88 10 >100 >88 >88 >88 >88 >88 >88 >88 >88 >88 78 >88 RF CAL Test conditions: RF IN: MHz; dbm. IN: MHz; dbm IF OUT: MHz; dbm HARMONICS ORDER Notes: 1. All Harmonics are in (dbc) relative to IF OUTPUT entry denotes harmonics are in (dbc) above IF OUTPUT. 3. RF Cal represent the Harmonics level of the RF input signal to the mixer. Page 5 of 5
8 Typical Performance Curves Conversion Loss = +10dBm Conversion IF=30MHz = +13dBm = +16dBm RF Frequency Conversion Loss Conversion Loss vs. RF=250.1MHz = +13dBm IF Frequency Conversion Loss vs. RF=10.1MHz Conversion Loss vs. RF=500.1MHz Conversion Loss = +13dBm IF Frequency Conversion Loss = +13dBm IF Frequency IP3 Input RF IN=+9dBm = +10dBm 4.5 = +10dBm IP3 Input (dbm) = +13dBm = +16dBm Compression = +13dBm = +16dBm RF Frequency RF Frequency Page 1 of 3
9 Typical Performance Curves -IF Isolation RF VSWR RF Isolation IF Isolation 0 = +10dBm = +13dBm = +16dBm Frequency RF VSWR -RF Isolation 0 = +10dBm = +13dBm = +16dBm 0.0 RF Frequency IF VSWR Frequency RF-IF Isolation IF VSWR = +10dBm = +13dBm = +16dBm VSWR RF-IF Isolation IF Frequency = +10dBm = +13dBm = +16dBm = +10dBm = +13dBm = +16dBm RF Frequency VSWR = +10dBm = +13dBm = +16dBm 0.0 Frequency Page 2 of 3
10 Harmonics Tables RF HARMONICS ORDER (-dbm) (-dbc) > > > > > > > > RF CAL Test conditions: RF IN: MHz; 4.00 dbm. IN: MHz; dbm IF OUT: MHz; dbm HARMONICS ORDER RF HARMONICS ORDER (-dbm) (-dbc) > > > > >100 >88 >88 >88 >88 87 > >100 >88 >88 >88 >88 >88 >88 >88 84 >88 >88 >88 8 >100 >88 >88 >88 >88 >88 >88 >88 85 >88 >88 >88 9 >100 >88 >88 >88 >88 >88 >88 >88 >88 66 >88 >88 10 >100 >88 >88 >88 >88 >88 >88 >88 >88 >88 78 >88 RF CAL Test conditions: RF IN: MHz; dbm. IN: MHz; dbm IF OUT: MHz; dbm HARMONICS ORDER Notes: 1. All Harmonics are in (dbc) relative to IF OUTPUT entry denotes harmonics are in (dbc) above IF OUTPUT. 3. RF Cal represent the Harmonics level of the RF input signal to the mixer. Page 3 of 3
11 Case Style Outline Dimensions QQQ QQQ130 (non-waterproof) QQQ828 (washable) PCB Land Pattern Suggested Layout, Tolerance to be within ±.002 CASE# A B C D E F G H J K L M WT, GRAM QQQ130 QQQ (10.16).31 (7.87).200 (5.08).050 (1.27).10 (2.54).010 (.25).100 (2.54).050 (1.27).420 (10.67).120 (3.05).060 (1.52).100 (2.54).020 (.51) Dimensions are in inches (mm). Tolerances: 2 Pl. ±.01; 3 Pl. ±.005 Notes: 1. Case material: Ceramic. 2. Termination finish: For RoHS Case Styles: For RoHS-5 Case Styles: Tin plate over Nickel plate. Tin-Lead plate. 98-QQQ Rev.: L (11/24/09) M File: 98-QQQ.doc Sheet 1 of 3 This document and its contents are the property of Mini-Circuits
12 Tape & Reel Packaging TR-F10 Tape Width, mm Device Cavity Pitch, mm Reel Size, Devices per Reel inches 7 10,20,50,100, Mini-Circuits carrier tape materials provide protection from ESD (Electro-Static Discharge) during handling and transportation. Tapes are static dissipative and comply with industry standards EIA-481/EIA-541. Go to: Note: Please consult individual model data sheet to determine device per reel availability. 98-TR-F10 Rev.: B (03/15/17) M File: 98-TR-F10.doc Sheet 1 of 1 This document and its contents are the property of Mini-Circuits.
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15 Mini-Circuits Environmental Specifications ENV02T1 All Mini-Circuits products are manufactured under exacting quality assurance and control standards, and are capable of meeting published specifications after being subjected to any or all of the following physical and environmental test. Specification Test/Inspection Condition Reference/Spec Operating Temperature -40 to 85 C Ambient Environment Individual Model Data Sheet Storage Temperature -55 to 100 C Ambient Environment Individual Model Data Sheet Humidity 90 to 95% RH, 240 hours, 50 C MIL-STD-202, Method 103, Condition A, Except 50 C and end-point electrical test done within 12 hours Thermal Shock -55 to 100 C, 100 cycles MIL-STD-202, Method 107, Condition A-3, except +100 C Solder Reflow Heat Sn-Pb Eutetic Process: 225 C peak Pb-Free Process C peak J-STD-020, Table 4-1, 4-2 and 5-2, Figure 5-1 Solderability 10X Magnification J-STD-002, 95% Coverage Vibration (High Frequency) 20g peak, Hz, 12 times in each of three perpendicular directions (total 36) MIL-STD-202, Method 204, Condition D Mechanical Shock 50g, 11 ms, 1/2-sine, 18 shocks: 3 each direction, each of 3 axes MIL-STD-202, Method 213, Condition A Marking Resistance to Solvents Isopropyl alcohol + mineral spirits at 25 C; terpene defluxer at 25 C; distilled water + proylene glycol monomethyl ether + monoethanolamine at 63 C to 70 C MIL-STD-202, Method 215 ENV02T1 Rev: B 02/25/11 M File: ENV02T1.pdf This document and its contents are the property of Mini-Circuits. Page: 1
Features low conversion loss, 5.94 db typ. aqueous washable J-leads for strain relief. CONVERSION LOSS (db) Mid-Band m. Range f L.
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Device Features OIP3 = 41.5 dbm @ 500 MHz Gain = 27 db @ 140 MHz Output P1 db = 21 dbm @ 140 MHz NF = 2.7 @ 70MHz at Demo Board Product Description BeRex s BIG8 is a high performance InGaP/ GaAs HBT MMIC
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More informationTypical Performance 1. 1 Device performance _ measured on a BeRex evaluation board at 25 C, 50 Ω system.
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More informationMini-Circuits Engineering Department P. O. Box , Brooklyn, NY ; (718) , FAX: (718)
WiMAX MIXER PROVIDES HIGH IP3 Upconverter Mixer Makes Most of LTCC for WiMAX Applications This high-performance mixer leverages LTCC, semiconductor technology, and patented circuit techniques to achieve
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