CMY210_15 TRIQUINT | Alldatasheet

Document overview

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Technical content

Features

  • Very High Input IP3 of 24 dBm typical
  • Very Low LO Power demand of 0 dBm typical; Wide input range
  • Wide LO Frequency Range: <500 MHz to >2.5 GHz
  • Single-Ended Ports
  • RF- and IF-Port Impedance 50 ohms
  • Operating Voltage Range: <3 to 6 V
  • Very Low Current Consumption: 6 mA typical
  • All Gold Metalization Package Outline, MW-6

Description

The CMY210 is an all port, single-ended, general purpose up- and down-converter. It combines small conversion losses and excellent intermodulation characteristics with a low demand of LO- and DC-power. The internal level controlled LO-buffer enables good performance over a wide range of LO level inputs. The mixer configuration allows RF or IF feed to either pin 1 or 6 and thus requires a frequency separation circuit on the pc board. GND GND RF or IF LO in IF or RF V DD For additional information and latest specifications, see our website: www.triquint.com 2 Revision E, September 12, 2006

For additional information and latest specifications, see our website: www.triquint.com 3 Revision E, September 12, 2006 Maximum Ratings Parameter Port Symbol Value Unit min max Supply Voltage 4 VDD 0 6 V DC-Voltage at LO Input 3 V3 -3 0,5 V DC-Voltage at RF-IF Ports 2) 1, 6 V1,6 - 0,5 + 0,5 V Power into RF-IF Ports 1, 6 Pin,RF 17 dBm Power into LO Input 3 Pin,LO 10 dBm Channel Temperature TCh 150 °C Storage Temperature Tstg -55 150 °C Thermal Resistance Channel to Soldering Point (GND) RthChS ≤100 K/W 1) For detailed dimensions see page 7. 2) For DC test purposes only, no DC vo ltages at pins 1, 6 in application

For additional information and latest specifications, see our website: www.triquint.com 4 Revision E, September 12, 2006

Electrical Characteristics

Test conditions: Ta = 25°C; VDD= 3V, see test circuit; fRF = 808MHz; fLO = 965MHz; PLO = 0dBm; fIF = 157MHz, unless otherwise specified: Parameter, Test Conditions Symbol min typ max Unit Operating Current Iop - 6.0 8.0 mA Conversion Loss Lc - 5.7 7.0 dB SSB Noise Figure Fssb - 6.0 - dB

2 Tone 3rd Order IMD

PRF1 = PRF2 = -3dBm fRF1 = 806MHz; fRF2 = 810MHz; fLO =965MHz dIM3 - 54 - dBc 3rd Order Input Intercept Point IP3in 20 24 - dBm P-1dB Input Power P-1dB - 14 - dBm LO Leakage at RF/IF-Port (1,6) PLO 1,6 - -8 - dBm Applications Information Test circuit / application example in/ out RF

50 Ohm

2,54 Notes for external elements: L1, C1: Filter for upper frequency; C2, L2: Filter for lower frequency; each filter is a throughpath for the desired frequency (RF or IF) and isolates the other frequency (IF or RF) and its harmonics. These two filters must be connected to pin 1 and pin 6 directly. Parasitic capacitances at the ports 1 and 6 must be as small as possible. L4 and C4 are optimized by indicating lowest Iop at used LO- frequency; same procedure for L3. The ports 1, 3 and 6 must be DC open. Lumped element values for 800MHz test and application circuit: f LO F RF F IF L1 C1 L2 C2 L3 C3 L4 C4 MHz MHz MHz nH pF nH pF nH pF nH pF

For additional information and latest specifications, see our website: www.triquint.com 5 Revision E, September 12, 2006 Applications Information (cont) PCB-Layout for 800MHz test and application circuit: 8.2nH 8.2nH 6.8nH 33pF33pF 15nH CMY2103.3pF 3.9pF Actual size Typical lumped element values for different RF-frequencies: f RF L1 C1 L2 C2 MHz nH pF nH pF 400 12 15 12 12 450 12 12 12 10 900 8.2 3.9 8.2 3.3 1500 3.3 2.7 3.3 2.2 1800 3.3 2.2 3.3 1.8 2000 3.3 1.8 3.3 1.2 2400 1.8 2.7 1.8 1.5 Typical lumped element values for different LO-frequencies: f LO L3 C3 L4 C4 MHz nH pF nH pF 500 15 82 47 82 750 6.8 33 22 33 800 6.8 33 18 33 950 6.8 27 15 27 1100 6.8 27 12 27 1400 6.8 22 6.8 22 1600 6.8 18 4.7 18 1800 6.8 15 3.3 15 2000 6.8 12 2.2 12 2100 6.8 12 1.8 12 2300 4.7 12 1.2 12

For additional information and latest specifications, see our website: www.triquint.com 6 Revision E, September 12, 2006 General description and notes The CMY 210 is an all port single ended general purpose Up- and Down-Converter. It combines small conversion losses and excellent intermodulation characteristics with a low demand of LO- and DC-power. The internal level controlled LO-Buffer enables a good performance over a wide LO level range. The internal mixers principle with one port RF and IF requires a frequency separation at pin 1 and 6 respectively. Note 1: Best performance with lowest conversion loss is achieved when each circuit or device for the frequency separation meets the following requirements: Input Filter: Throughpass for the signal to be mixed; reflection of the mixed signal and the harmonics of both. Output Filter: Throughpass for the mixed signal and reflection of the signal to be mixed and the harmonics of both. The impedance for the reflecting frequency range of each filter toward the ports 1 and 6 should be as high as possible. In the simplest case a series- and a parallel- resonator circuit will meet these requirements but also others as appropriate drop in filters or micro stripline elements can be used. The two branches with filters should meet immediately at the package leads of the port 1 and 6. Parasitic capacitances at these ports must be kept as small as possible. The mixer also can be driven with a source- and load impedance different to 50Ω, but performance will degrade at larger deviations. Note 2: The LO-Buffer needs an external inductor L4 at port 4; the value of inductance depends on the LO frequency. It is tuned for minimum Iop consumption into port 4. At lower LO frequencies it can be reduced by an additional capacitor C5. Note 3: The LO Input impedance at Port 3 can be matched with a series inductor. It also can be tuned for a minimum current Iop into port 4. C3 is a DC blocking capacitor. Since the input impedance of port 3 can be slightly negative, the source reflection coefficient should be kept below 0.8 ( Z0 = 50 Ω ). The Conversion Noise Figure Fssb is corresponding with the value of Conversion Loss Lc. The LO signal must be clean of noise and spurious at the frequencies fLO ± f IF.

For additional information and latest specifications, see our website: www.triquint.com 7 Revision E, September 12, 2006 Electrical Characteristics (cont) -10 -8 -6 -4 -2 0 2 4 6 8 10 PLOdBm Third Order IP3 IP3in = f (PLO) Pin = 2 x -3dBm; fIF = 40/45MHz VDD = 3V; fLO = Parameter; IP3in dBm 2.5GHz 0,5 1,5 2,0 2.5GHz 2.0 1.5 1.0 0.5 -10 -8 -6 -4 -2 0 2 4 6 8 10 PLOdBm Operating Current Iop = f (PLO) VDD = 3V fLO = Parameter Iop mA 2.5GHz 2.0 -10 -8 -6 -4 -2 0 2 4 6 8 10 PLOdBm Lc dB 1.5 Conversion Loss Lc = f (PLO) VDD = 3V; fIF = 120MHz fLO = Parameter 0 1 234 56 78 9 10 VDDV Lc dB Conversion Loss Lc = f (VDD) PLO = 0dBm fLO = 1500MHz; fIF = 120MHz

For additional information and latest specifications, see our website: www.triquint.com 8 Revision E, September 12, 2006 Electrical Characteristics (cont) GHz fLO LO-Leakage at Port 1, 6 PLO1,6 = f (fLO) PLO = 0dBm VDD = 3V PLO1,6 dBm -10 -12 -14 -16 -18 -20 0 1 234 567 8 9 10 VDDV Iop mA Operating Current Iop = f (VDD) PLO = 0dBm fLO = 1500MHz

For additional information and latest specifications, see our website: www.triquint.com 9 Revision E, September 12, 2006 Semiconductor Device Outline MW-6 Dim. min. nom. max. Gradient Remark A 1.1 A1 0.1 A2 1.0 b 0.3 b1 0.6 c 0.08 0.15 D 2.8 3.0 E 1.2 1.4 |e| 0.95 |e1| 1.9 HE 2.6 LE 0.6 a max 10° 1 q 2°...30° 1. Applicable on all case top sides

For additional information and latest specifications, see our website: www.triquint.com 10 Revision E, September 12, 2006 Part Marking Part Orientation on Reel

Ordering Information

(tape and reel) Package 1) CMY210 210 CMY210 MW-6 Additional Information This part is compliant with RoHS directive (Restrictions on the Use of Certain Hazardous Substances in Electrical and Electronic Equipment). The part is rated Moisture Sensitivity Level 1 at 260°C per JEDEC standard IPC/JEDEC J-STD-020. ESD: Electrostatic discharge sensitive device. Observe handling Precautions. For latest specifications, additional product information, worldwide sales and distribution locations, and information about TriQuint: Web: www.triquint.com Tel: (503) 615-9000 Email: info_wireless@tqs.com Fax: (503) 615-8902 For technical questions and additional information on specific applications: Email: info_wireless@tqs.com The information provided herein is believed to be reliable; TriQuint assumes no liability for inaccuracies or omissions. TriQuint assumes no responsibility for the use of this information, and all such information shall be entirely at the user's own risk. Prices and specifications are subject to change without notice. No patent rights or licenses to any of the circuits described herein are implied or granted to any third party. TriQuint does not authorize or warrant any TriQuint product for use in life-support devices and/or systems. Copyright © 2005 TriQuint Semiconductor, Inc. All rights reserved.