MICROLITHIC™ DOUBLE-BALANCED MIXER ML1-0113 The ML1-0113 is a Microlithic™ double balanced mixer. As with all Microlithic™ mixers (patent pending), it features excellent conversion loss, isolations, and spurious performance across a broad bandwidth and in a miniaturized form factor. Accurate, nonlinear software models are available for Microwave Office through the Marki Microwave PDK. The ML1-0113 is available as a wire bondable chip or an SMA connectorized package. The surface mount version of this mixer can be found here: ML1-0110SM. The ML1-0113 is an excellent alternative to Marki Microwave M1 and M3 mixers packaged in drop-in carriers such as the E carrier and ES carrier. Features Compact Chip Style Package (0.152” x 0.090”x0.010”) CAD Optimized for Superior Isolation and Spurious Response Broadband Performance Excellent Unit-to-Unit Repeatability Surface Mount Version: ML1-0110SM Fully nonlinear software models available with Marki PDK for Microwave Office RoHS Compliant Mixer Line Suitable Replacement for Models M1 M1-0204, M1-0208, M1-0212, M1-0310, M1-0408, M1-0412 M3 M3-0309, M3-0312, M3-0408, M3-0412 M8 M8-0412, M8-4595 Electrical Specifications - Specifications guaranteed from -55 to +100C, measured in a 50Ω system. Parameter LO RF IF (GHz) (GHz) (GHz) Conversion Loss (dB) Min Max Diode Option LO drive level (dBm) DC-1 1-2 Isolation (dB) LO-RF LO-IF RF-IF Typ 7 9 10 11 -45 -20 -30 1.5-13 Input 1 dB Compression (dBm) +3 +9 L (+10 to +13) I (+15 to +19) Input Two-Tone Third Order Intercept Point (dBm) +14 L (+10 to +13) +21 I (+15 to +19) Part Number Options Please specify diode level and package style by adding to model number. Package Styles 1 Connectorized 2 Chip (RoHS) Examples S CH-2 ML1-0113LCH-2, ML1-0113LS ML1-0113 (Model) L (Diode Option) CH-2 (Package) 1 Connectorized package consists of chip package wire bonded to a substrate, equivalent to an evaluation board. Chip package connects to external circuit through wire bondable gold pads. 2 215 Vineyard Court, Morgan Hill, CA 95037 | Ph: 408.778.4200 | Fax 408.778.4300 | info@markimicrowave.com 7/10/14 MICROLITHIC™ DOUBLE-BALANCED MIXER ML1-0113 Page 2 LO/RF 1.5 to 13 GHz IF DC to 2 GHz Typical Performance IF Response (dB) High Side LO Conversion Loss (dB) 0 0 -2 -2 -4 -4 -6 -6 -8 -8 -10 -10 -12 -12 -14 L Diode I diode -14 0 3 6 9 12 15 0 0.5 1 RF Frequency (GHz) -2 0 -5 -10 -15 -20 -25 -30 -35 -40 -45 -50 -55 -60 -4 -6 -8 -10 -12 -14 0.5 1 1.5 2 2.5 3 1 3 5 6 9 11 13 RF-IF Isolation (dB) 0 -5 -10 -15 -20 -25 -30 -35 -40 -45 -50 L diode I Diode 4 7 LO Frequency (GHz) LO-IF Isolation (dB) 0 -5 -10 -15 -20 -25 -30 -35 -40 -45 -50 2 3 L diode I Diode IF Frequency (GHz) 0 2.5 LO-RF Isolation (dB) L diode I diode 0 2 RF Frequency (GHz) IF Response (dB) Low Side LO 0 1.5 8 10 12 L diode I Diode 0 2 4 LO Frequency (GHz) 6 8 10 12 RF Frequency (GHz) LO Return Loss (dB) RF Return Loss (dB) 0 0 L diode -4 -2 I Diode -4 -8 -6 -12 -8 -10 -16 -12 -20 -14 1 3 5 7 9 RF Frequency (GHz) 11 13 0 3 6 9 12 15 RF Frequency (GHz) 7/10/14 MICROLITHIC™ DOUBLE-BALANCED MIXER ML1-0113 Page 3 LO/RF 1.5 to 13 GHz IF DC to 2 GHz Typical Performance IF Return Loss (dB) Input IP3 (dBm) 30 0 L Diode I diode -5 25 20 -10 15 -15 10 -20 5 L-Diode I-Diode 0 -25 -5 -30 0 0.5 1 1.5 -10 2 1 3 5 7 IF Frequency (GHz) Conversion Loss (dB) Various Diode Options / LO Drive Levels 0 -4 -6 -4 -6 -8 -10 -10 -12 -12 10 dBm (L) 13 dBm (L) 15 dBm (I) 18 dBm (I) -14 -14 3 6 9 12 0 15 3 6 9 12 15 RF Frequency (GHz) RF Frequency (GHz) LO Even Harmonic to RF Isolation (dB) L and I Diode Options 0 13 -2 -8 0 11 RF Return Loss (dB) Various Diode Options / LO Drive Levels 0 10 dBm (L) 13 dBm (L) 15 dBm (I) 18 dBm (I) -2 9 RF Frequency (GHz) LO Even Harmonic to IF Isolation (dB) L and I Diode Options 0 -10 -10 -20 -20 -30 -30 -40 L 2xLO to RF I 2xLO to RF L 4xLO to RF I 4xLO to RF -40 -50 -50 L 2xLO to RF I 2xLO to RF L 4xLO to RF I 4xLO to RF -60 -70 -80 1 3 -60 -70 -80 5 7 9 11 LO Harmonic Frequency (GHz) 13 1 -20 7 9 -10 -20 -30 -40 -40 -50 -50 -60 -60 -70 -70 -80 L 3xLO to IF I 3xLO to IF L 5xLO to IF I 5xLO to IF -80 3 5 7 9 LO Frequency (GHz) 13 LO Odd Harmonic to IF Isolation (dB) -30 1 11 0 L 3xLO to RF I 3xLO to RF L 5xLO to RF I 5xLO to RF -10 5 LO Harmonic Frequency (GHz) LO Odd Harmonic to RF Isolation (dB) 0 3 11 13 1 3 5 7 9 LO Frequency (GHz) 11 13 7/10/14 MICROLITHIC™ DOUBLE-BALANCED MIXER ML1-0113 Page 4 LO/RF 1.5 to 13 GHz IF DC to 2 GHz PROJECTION INCH [MM] .152 [3.86] Ground pad, 6 PL .090 L [2.29] R .045 I [1.14] .005 sq. minimum bonding pad, 3 PL .076 [1.93] .005 [.13] min clearance .010 [.25] .086 [2.18] .148 [3.76] Outline Drawing – CH-2 package* *CH Substrate material is .010 thick Ceramic. I/O traces and ground plane finish is 2.5 microns Au over .05 microns WTi. Wire Bonding - Ball or wedge bond with 0.025 mm (1 mil) diameter pure gold wire. Thermosonic wirebonding with a nominal stage temperature of 150 °C and a ball bonding force of 40 to 50 grams or wedge bonding force of 18 to 22 grams is recommended. Use the minimum level of ultrasonic energy to achieve reliable wirebonds. Wirebonds should be started on the chip and terminated on the package or substrate. All bonds should be as short as possible <0.31 mm (12 mils). ________________________________________________________________________________________________________________ PROJECTION .560 INCH [MM] [14.22] .042 [1.07] .240 .38 [6.10] .160 [9.6] [4.06] Typ .260 .520 .436 [6.60] [13.21] [11.07] microwave L R D/C I Port LO RF IF .06 [1.5] Rad 4 PL Connector Type SMA Female SMA Female SMA Female Note: S-Package Connectors are not removeable. Ø.067 Thru, 4 PL .280 [1.70] [7.11] .39 .20 [9.9] [5.0] Outline Drawing – S package 7/10/14 MICROLITHIC™ DOUBLE-BALANCED MIXER ML1-0113 Page 5 LO/RF 1.5 to 13 GHz IF DC to 2 GHz Downconversion Spurious Suppression Spurious data is taken by selecting RF and LO frequencies (+mLO+nRF) within the 1.5 to 13 GHz RF/LO bands, which create a 100 MHz IF spurious output. The mixer is swept across the full spurious band and the mean is calculated. The numbers shown in the table below are for a -10 dBm RF input. Spurious suppression is scaled for different RF power levels by (n-1), where “n” is the RF spur order. For example, the 2RFx2LO spur is 67 dBc for a -10 dBm input, so a -20 dBm RF input creates a spur that is (2-1) x (-10 dB) dB lower, or 77 dBc. 5 Typical Downconversion Spurious Suppression (dBc): I diode (L diode) LO -10 dBm RF Input 0xLO 0xRF ------------- 1xRF 24 (23) Reference 30 (27) 10 (10) 31 (30) 20 (20) 2xRF 70 (65) 60 (53) 67 (60) 55 (50) 61 (60) 50 (50) 3xRF 90 (83) 69 (55) 80 (69) 70 (59) 80 (70) 66 (58) 4xRF >100 ( >100) >100 (95) >100 (98) >100 (95) >100 (95) >100 (85) 5xRF >100 ( >100) >100 (>100) >100 (>100) >100 (95) >100 (>100) >100 (95) 1xLO 2xLO 3xLO 4xLO 5xLO See LO to IF Isolation and LO Harmonic to IF Isolation Plots (Page 3) Upconversion Spurious Suppression Spurious data is taken by mixing a 100 MHz IF with LO frequencies (+mLO+nIF), which creates an RF within the 1.5 to 13 GHz RF band. The mixer is swept across the full spurious output band and the mean is calculated. The numbers shown in the table below are for a -10 dBm IF input. Spurious suppression is scaled for different IF input power levels by (n-1), where “n” is the IF spur order. For example, the 2IFx1LO spur is typically 65 dBc for a -10 dBm input, so a -20 dBm IF input creates a spur that is (2-1) x (-10 dB) dB lower, or 75 dBc. 5 Typical Upconversion Spurious Suppression (dBc): I diode (L diode) LO -10 dBm IF Input 0xLO 0xIF ------------- 1xIF 25 (25) Reference 25 (30) 9 (10) 30 (35) 14 (14) 2xIF 57 (55) 65 (62) 56 (55) 60 (65) 44 (48) 55 (60) 3xIF 83 (83) 68 (75) 78 (60) 62 (60) 75 (72) 62 (55) 4xIF >100 ( >100) >100 ( >100) 95 (92) 95 (>100) 90 (85) 95 (92) 5xIF >100 (>100) >100 ( >100) >100 ( >100) >100 (95) >100 ( >100) 95 (95) 1xLO 2xLO 3xLO 4xLO 5xLO See LO to RF Isolation and LO Harmonic to RF Isolation Plots (Page 3) 7/10/14 MICROLITHIC™ DOUBLE-BALANCED MIXER ML1-0113 Page 6 LO/RF 1.5 to 13 GHz IF DC to 2 GHz Port Description DC Interface Schematic LO The LO port is DC short to ground and AC matched to 50 Ohms from 1.5 GHz to 13 GHz. Blocking capacitor is optional. LO RF The RF port is DC short to ground and AC matched to 50 Ohms from 1.5 GHz to 13 GHz. Blocking capacitor is optional. RF IF The IF port is DC coupled to the diodes. Blocking capacitor is optional. IF Absolute Maximum Ratings Parameter Maximum Rating RF DC Current 1 Amp LO DC Current 1 Amp IF DC Current 50 mA RF Power Handling (RF+LO) +25 dBm at +25°C, derated linearly to +20 dBm at +100°C Operating Temperature -55ºC to +100ºC Storage Temperature -65ºC to +125ºC DATA SHEET NOTES: 1. Mixer Conversion Loss Plot IF frequency is 100 MHz. 2. Mixer Noise Figure typically measures within 0.5 dB of conversion loss for IF frequencies greater than 5 MHz. 3. Conversion Loss typically degrades less than 0.5 dB for LO drives 2 dB below the lowest and 3 dB above highest nominal LO drive levels. 4. Conversion Loss typically degrades less than 0.5 dB at +100°C and improves less than 0.5 dB at -55°C. 5. Unless otherwise specified L diode data taken with 13 dBm LO drive, I diode data taken with 17 dBm LO drive. 6. Specifications are subject to change without notice. Contact Marki Microwave for the most recent specifications and data sheets. 7. Catalog mixer circuits are continually improved. Configuration control requires custom mixer model numbers and specifications. Marki Microwave reserves the right to make changes to the product(s) or information contained herein without notice. Marki Microwave makes no warranty, representation, or guarantee regarding the suitability of its products for any particular purpose, nor does Marki Microwave assume any liability whatsoever arising out of the use or application of any product. © Marki Microwave, Inc. 215 Vineyard Court, Morgan Hill, CA 95037 | Ph: 408.778.4200 | Fax 408.778.4300 | info@markimicrowave.com www.markimicrowave.com 7/10/14