UPG2158T5K_0512 CEL | Alldatasheet

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Technical content

DESCRIPTION

The µPG2158T5K is a GaAs MMIC for L, S-band SPDT (Single Pole Double Throw) switch which was developed for mobile phone and another L, S-band application. This device can operate 2 control switching by control voltage 1.8 to 5.3 V. This device can operate frequency from 0.05 to 3.0 GHz, having the low insertion loss and high isolation. This device is housed in a 6-pin plastic T SSON ( Thin Shrink Small Out-line Non-leaded) package. And this package is able to high-density surface mounting.

FEATURES

  • Switch control voltage : Vcont (H) = 1.8 to 5.3 V (2.7 V TYP.) : Vcont (L) = −0.2 to +0.2 V (0 V TYP.)
  • High isolation : ISL1 = 27 dB TYP. @ f = 0.05 to 1.0 GHz, Vcont (H) = 2.7 V, Vcont (L) = 0 V : ISL2 = 19 dB TYP. @ f = 1.0 to 2.0 GHz, Vcont (H) = 2.7 V, Vcont (L) = 0 V : ISL3 = 17 dB TYP. @ f = 2.0 to 2.5 GHz, Vcont (H) = 2.7 V, Vcont (L) = 0 V : ISL4 = 17 dB TYP. @ f = 2.5 to 3.0 GHz, Vcont (H) = 2.7 V, Vcont (L) = 0 V
  • High-density surface mounting : 6-pin plastic TSSON package (1.0 × 1.0 × 0.37 mm)

APPLICATIONS

  • L, S-band digital cellular or cordless telephone
  • W-LAN, WLL and BluetoothTM etc.

ORDERING INFORMATION

Part Number Order Number Package Marking Supplying Form µPG2158T5K-E2 µPG2158T5K-E2-A 6-pin plastic TSSON (Pb-Free) Note G2 • Embossed tape 8 mm wide

  • Pin 1, 6 face the perforation side of the tape
  • Qty 5 kpcs/reel Note With regards to terminal solder (the solder contains lead) plated products (conventionally plated), contact your nearby sales office. Remark To order evaluation samples, contact your nearby sales office. Part number for sample order: µPG2158T5K-A Caution Observe precautions when handling because these devices are sensitive to electrostatic discharge. L, S-BAND SPDT SWITCH GaAs INTEGRATED CIRCUIT µPG2158T5K Document No. PG10578EJ02V0DS (2nd edition) Date Published December 2005 CP(K) The mark  shows major revised points.

PIN CONNECTIONS AND INTERNAL BLOCK DIAGRAM Pin No. Pin Name

1 OUTPUT1

2 GND

3 OUTPUT2

4 Vcont2

5 INPUT

(Top View) (Bottom View) 3 4 3 4 (Top View)

6 Vcont1

Vcont1 Vcont2 INPUT−OUTPUT1 INPUT−OUTPUT2 Low High OFF ON High Low ON OFF ABSOLUTE MAXIMUM RATINGS (TA = +25°C, unless otherwise specified) Parameter Symbol Ratings Unit Switch Control Voltage Vcont +6.0 Note V Input Power Pin +31 dBm Operating Ambient Temperature TA −45 to +85 °C Storage Temperature Tstg −55 to +150 °C Note ⎪Vcont1 − Vcont2⎪ ≤ 6.0 V RECOMMENDED OPERATING RANGE (TA = +25°C, unless otherwise specified) Parameter Symbol MIN. TYP. MAX. Unit Switch Control Voltage (H) Vcont (H) 1.8 2.7 5.3 V Switch Control Voltage (L) Vcont (L) −0.2 0 +0.2 V Data Sheet PG10578EJ02V0DS 2 µPG2158T5K

ELECTRICAL CHARACTERISTICS 1 (TA = +25°C, Vcont (H) = 2.7 V, Vcont (L) = 0 V, DC cut capacitors = 56 pF, unless otherwise specified) Parameter Symbol Test Conditions MIN. TYP. MAX. Unit Insertion Loss 1 LINS1 f = 0.05 to 1.0 GHz Note 1 − 0.40 0.45 Insertion Loss 2 LINS2 f = 1.0 to 2.0 GHz − 0.45 0.50 Insertion Loss 3 LINS3 f = 2.0 to 2.5 GHz − 0.47 0.55 Insertion Loss 4 LINS4 f = 2.5 to 3.0 GHz − 0.53 0.60 dB Isolation 1 ISL1 f = 0.05 to 1.0 GHz Note 1 23 27 − Isolation 2 ISL2 f = 1.0 to 2.0 GHz 16 19 − Isolation 3 ISL3 f = 2.0 to 2.5 GHz 14 17 − Isolation 4 ISL4 f = 2.5 to 3.0 GHz 14 17 − dB Input Return Loss RLin f = 0.05 to 3.0 GHz Note 1 15 20 − dB Output Return Loss RLout f = 0.05 to 3.0 GHz Note 1 15 20 − dB Input Power Note 2 f = 0.5 to 3.0 GHz − +29.0 − dBm 1 dB Loss Compression Input Power Note 3 Pin (1 dB) f = 0.5 to 3.0 GHz − +30.5 − dBm 2nd Harmonics 2f0 f = 2.0/2.5 GHz, Pin = +20 dBm 65 75 − dBc 3rd Harmonics 3f0 f = 2.0/2.5 GHz, Pin = +20 dBm 65 75 − dBc Input 3rd Order Distortion Intercept Point IIP3 f = 0.5 to 3.0 GHz 2 tone 5 MHz spacing − +60 − dBm Switch Control Current Icont No signal − 0.2 20 µA Switch Control Speed tSW 50% CTL to 90/10% RF − 50 500 ns Notes 1. DC cut capacitors = 1 000 pF at f = 0.05 to 0.5 GHz 2. P in (0.1 dB) is measured the input power level when the insertion loss increases more 0.1 dB than that of linear range. 3. P in (1 dB) is measured the input power level when the insertion loss increases more 1 dB than that of linear range. Caution This device is used it is necessary to use DC cut capacitors. The value of DC cut capacitors should be cho sen to accommodate the fr equency of operation, bandwidth, switching speed and the condition with actual board of your system. The range of recommended DC cut capacitor value is less than 100 pF. Data Sheet PG10578EJ02V0DS 3 µPG2158T5K

ELECTRICAL CHARACTERISTICS 2 (TA = +25°C, Vcont (H) = 1.8 V, Vcont (L) = 0 V, DC cut capacitors = 56 pF, unless otherwise specified) Parameter Symbol Test Conditions MIN. TYP. MAX. Unit Insertion Loss 1 LINS1 f = 0.05 to 1.0 GHz Note 1 − 0.40 0.47 Insertion Loss 2 LINS2 f = 1.0 to 2.0 GHz − 0.46 0.52 Insertion Loss 3 LINS3 f = 2.0 to 2.5 GHz − 0.48 0.57 Insertion Loss 4 LINS4 f = 2.5 to 3.0 GHz − 0.54 0.62 dB Isolation 1 ISL1 f = 0.05 to 1.0 GHz Note 1 23 27 − Isolation 2 ISL2 f = 1.0 to 2.0 GHz 16 19 − Isolation 3 ISL3 f = 2.0 to 2.5 GHz 14 17 − Isolation 4 ISL4 f = 2.5 to 3.0 GHz 14 17 − dB Input Return Loss RLin f = 0.05 to 3.0 GHz Note 1 15 20 − dB Output Return Loss RLout f = 0.05 to 3.0 GHz Note 1 15 20 − dB Input Power Note 2 f = 0.5 to 3.0 GHz − +22.0 − dBm 1 dB Loss Compression Input Power Note 3 Pin (1 dB) f = 0.5 to 3.0 GHz − +25.0 − dBm Switch Control Current Icont No signal − 0.2 20 µA Switch Control Speed tSW 50% CTL to 90/10% RF − 50 500 ns Notes 1. DC cut capacitors = 1 000 pF at f = 0.05 to 0.5 GHz 2. P in (0.1 dB) is measured the input power level when the insertion loss increases more 0.1 dB than that of linear range. 3. P in (1 dB) is measured the input power level when the insertion loss increases more 1 dB than that of linear range. Caution This device is used it is necessary to use DC cut capacitors. The value of DC cut capacitors should be cho sen to accommodate the fr equency of operation, bandwidth, switching speed and the condition with actual board of your system. The range of recommended DC cut capacitor value is less than 100 pF. Data Sheet PG10578EJ02V0DS 4 µPG2158T5K

Remark C 0 : 0.05 to 0.5 GHz 1 000 pF : 0.5 to 3.0 GHz 56 pF The application circuits and their parameters are for reference only and are not intended for use in actual design-ins. Data Sheet PG10578EJ02V0DS 5 µPG2158T5K

ILLUSTRATION OF THE TEST CIRCUIT ASSEMBLED ON EVALUATION BOARD Vcont2 OUTPUT2 INPUT OUTPUT1 Vcont1 USING THE NEC EVALUATION BOARD Symbol Values C1, C2, C3 56 pF C4, C5 1 000 pF Data Sheet PG10578EJ02V0DS 6 µPG2158T5K

TYPICAL CHARACTERISTICS (TA = +25°C, Vcont (H) = 2.7 V, Vcont (L) = 0 V, DC cut capacitors = 56 pF, using test fixture, unless otherwise specified) 2.0 2.5 1.0 0.5 –1.0 –2.0 –2.5 1.5 –0.5 –1.5 3 4 5 1: –0.380 dB

1.0 GHz

2: –0.411 dB

1.5 GHz

3: –0.442 dB

2.0 GHz

4: –0.468 dB

2.5 GHz

5: –0.513 dB

3.0 GHz

1: –0.380 dB 2: –0.413 dB 3: –0.446 dB 4: –0.468 dB 5: –0.511 dB –20 –40 –50 –10 –30 1: –27.327 dB 2: –23.924 dB 3: –21.519 dB 4: –19.691 dB 5: –18.176 dB –20 –40 –50 –10 –30 1: –27.239 dB 2: –23.849 dB 3: –21.47 dB 4: –19.834 dB 5: –18.109 dB –20 –40 –50 –10 –30 3 4 5 1: –24.828 dB 2: –27.749 dB 3: –29.57 dB 4: –29.588 dB 5: –27.86 dB –20 –40 –50 –10 –30 1: –25.098 dB 2: –27.928 dB 3: –28.894 dB 4: –28.293 dB 5: –26.879 dB 2.0 2.5 1.0 0.5 –1.0 –2.0 –2.5 1.5 –0.5 –1.5 Insertion Loss LINS (dB) Frequency f (GHz) INPUT-OUTPUT1 INSERTION LOSS vs. FREQUENCY Insertion Loss LINS (dB) Frequency f (GHz) INPUT-OUTPUT2 INSERTION LOSS vs. FREQUENCY Isolation ISL (dB) Frequency f (GHz) INPUT-OUTPUT1 ISOLATION vs. FREQUENCY Isolation ISL (dB) Frequency f (GHz) INPUT-OUTPUT2 ISOLATION vs. FREQUENCY Input Return Loss RLin (dB) Frequency f (GHz) INPUT-OUTPUT1 INPUT RETURN LOSS vs. FREQUENCY Input Return Loss RLin (dB) Frequency f (GHz) INPUT-OUTPUT2 INPUT RETURN LOSS vs. FREQUENCY Remark The graphs indicate nominal characteristics. Data Sheet PG10578EJ02V0DS 7 µPG2158T5K

–20 –40 –50 –10 –30 2 3 4 5 1: –24.907 dB 2: –27.235 dB 3: –27.784 dB 4: –26.52 dB 5: –24.38 dB –20 –40 –50 –10 –30 1: –25.825 dB 2: –28.812 dB 3: –28.916 dB 4: –26.585 dB 5: –23.762 dB +35 +30 +25 +20 +15 +10 f = 2.0 GHz Output Return Loss RLout (dB) Frequency f (GHz) INPUT-OUTPUT1 OUTPUT RETURN LOSS vs. FREQUENCY Output Return Loss RLout (dB) Frequency f (GHz) INPUT-OUTPUT2 OUTPUT RETURN LOSS vs. FREQUENCY Output Power Pout (dBm) Input Power Pin (dBm) OUTPUT POWER vs. INPUT POWER Remark The graphs indicate nominal characteristics. Data Sheet PG10578EJ02V0DS 8 µPG2158T5K

6-PIN PLASTIC TSSON (UNIT: mm) 1.0±0.1 0.35±0.060.35±0.06 0.45 ±0.1 0.13±0.07 0.15+0.07 –0.05 0.23±0.07 0.175±0.075 (Bottom View) (Top View) 1.0±0.1 1.0±0.1 1.0±0.1 0.37+0.03 –0.05 0.15+0.07 –0.05 Data Sheet PG10578EJ02V0DS 9 µPG2158T5K

RECOMMENDED SOLDERING CONDITIONS This product should be soldered and mounted under the following recommended conditions. For soldering methods and conditions other than those recommended below, contact your nearby sales office. Soldering Method Soldering Conditions Condition Symbol Infrared Reflow Peak temperature (package surface temperature) : 260 °C or below Time at peak temperature : 10 seconds or less Time at temperature of 220°C or higher : 60 seconds or less Preheating time at 120 to 180°C : 120±30 seconds Maximum number of reflow processes : 3 times Maximum chlorine content of rosin flux (% mass) : 0.2%(Wt.) or below IR260 Wave Soldering Peak temperature (molten solder temperature) : 260° C or below Time at peak temperature : 10 seconds or less Preheating temperature (package surface temperature) : 120 °C or below Maximum number of flow processes : 1 time Maximum chlorine content of rosin flux (% mass) : 0.2%(Wt.) or below WS260 Partial Heating Peak temperature (terminal temperature) : 350°C or below Soldering time (per side of device) : 3 seconds or less Maximum chlorine content of rosin flux (% mass) : 0.2%(Wt.) or below HS350 Caution Do not use different soldering met hods together (except for partial heating). Data Sheet PG10578EJ02V0DS 10 µPG2158T5K

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Santa Clara, CA 95054-1817 Telephone: (408) 919-2500 Facsimile: (408) 988-0279 Subject: Compliance with EU Directives CEL certifies, to its knowledge, that semiconductor and laser products detailed below are compliant with the requirements of European Union (EU) Directive 2002/95/EC Restriction on Use of Hazardous Substances in electrical and electronic equipment (RoHS) and the requirements of EU Directive 2003/11/EC Restriction on Penta and Octa BDE. CEL Pb-free products have the same base part number with a suffix added. The suffix –A indicates that the device is Pb-free. The –AZ suffix is used to designate devices containing Pb which are exempted from the requirement of RoHS directive (*). In all cases the devices have Pb-free terminals. All devices with these suffixes meet the requirements of the RoHS directive. This status is based on CEL’s understanding of the EU Directives and knowledge of the materials that go into its products as of the date of disclosure of this information. Restricted Substance per RoHS Concentration Limit per RoHS (values are not yet fixed) Concentration contained in CEL devices -A -AZ Lead (Pb) < 1000 PPM Not Detected (*) Mercury < 1000 PPM Not Detected Cadmium < 100 PPM Not Detected Hexavalent Chromium < 1000 PPM Not Detected PBB < 1000 PPM Not Detected PBDE < 1000 PPM Not Detected If you should have any additional questions regarding our devices and compliance to environmental standards, please do not hesitate to contact your local representative. Important Information and Disclaimer: Information provided by CEL on its website or in other communications concerting the substance content of its products represents knowledge and belief as of the date that it is provided. CEL bases its knowledge and belief on information provided by third parties and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better integrate information from third parties. CEL has taken and continues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals. CEL and CEL suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release. In no event shall CEL’s liability arising out of such information exceed the total purchase price of the CEL part(s) at issue sold by CEL to customer on an annual basis. See CEL Terms and Conditions for additional clarification of warranties and liability.