UPC8106TB CEL | Alldatasheet
Document overview
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Technical content
FEATURES
3 V SILICON RFIC
- RECOMMENDED OPERATING FREQUENCY: fRFout = 0.4 GHz to 2.0 GHz fIFin = 100 MHz to 400 MHz
- SUPPLY VOLTAGE: VCC = 2.7 to 5.5 V
- HIGH DENSITY SURFACE MOUNTING: 6 pin super mini mold package
- LOW CARRIER LEAKAGE: Due to double balanced mixer
- BUILT-IN POWER SAVE FUNCTION INTERNAL BLOCK DIAGRAM
DESCRIPTION
NEC's UPC8106TB is a silicon RFIC designed as a frequency upconverter for cellular/cordless telephone transmitter stages and features improved intermodulation. This device is housed in a 6 pin super mini mold or SOT-363 package making it ideal for reducing system size. The UPC8106TB is manufactured using NEC's 20 GHz f T NESATTM III silicon bipolar pro- cess. NEC's stringent quality assurance and test procedures ensure the highest reliability and performance.
ELECTRICAL CHARACTERISTICS
(TA = 25°C, VCC = VRFout = 3 V, fIFin = 240 MHz, PLOin = -5 dBm, VPS ≥ 2.7 V unless otherwise specified) UPC8106TB California Eastern Laboratories PART NUMBER UPC8106TB PACKAGE OUTLINE S06 SYMBOLS PARAMETERS AND CONDITIONS UNITS MIN TYP MAX ICC Circuit Current at VPS ≥ 2.7 V mA 4.5 9 13.5 VPS = 0 V µA1 0 CG Conversion Gain at f RFout = 0.9 GHz, PIFin = -30 dBm dB 6 9 12 fRFout = 1.9 GHz, PIFin = -30 dBm dB 4 7 10 PSAT Saturated Output Power at fRFout = 0.9 GHz, PIFin = 0 dBm dBm -4 -2 fRFout = 1.9 GHz, PIFin = 0 dBm dBm -6.5 -4 OIP3 Output Third-Order Intercept Point at fIFin1 = 240.0 MHz fIFin2 = 240.4 MHz fRFout = 0.9 GHz dBm +5.5 PIFin = -20 dBm fRFout = 1.9 GHz dBm +2.0 IM3 Third-Order Intermodulation Level at fIFin1 = 240 MHz fIFin2 = 240.4 MHz fRFout = 0.9 GHz dBc -31 PIFin = -20 dBm fRFout = 1.9 GHz dBc -30 NF SSB Noise Figure, f RFout = 0.9 GHz dB 8.5 TPS(RISE) Power Save Rise Time at VPS: GND→VCC µS 2.0 TPS(FALL) Power Save Fall Time at VPS: VCC →GND µS 2.0 LO Input IF Input GND VPS RF Output VCC (Top View)
- CELLULAR/CORDLESS TELEPHONE APPLICATION
SYMBOLS PARAMETERS UNITS RATINGS VCC Supply Voltage Pins 5 & 6 V 6.0 VPS Power Save Voltage V 6.0 PT Total Power Dissipation2 mW 200 TOP Operating Temperature °C -40 to +85 TSTG Storage Temperature °C -55 to +150 PIN Input Power dBm +10 ABSOLUTE MAXIMUM RATINGS1 (TA = 25°C) Notes: 1. Operation in excess of any one of these parameters may result in permanent damage. 2. Mounted on a 50 x 50 x 1.6 mm epoxy glass PWB (TA = +85°C). SYMBOLS PARAMETERS UNITS MIN TYP MAX VCC Supply Voltage1 V 2.7 3.0 5.5 TOP Operating Temperature °C -40 +25 +85 PLO LO Input Level2 dBm -10 -5 0 fRFout RF Output Frequency3 GHz 0.4 2.5 fIFin IF Input Frequency MHz 100 400 RECOMMENDED OPERATING CONDITIONS UPC8106TB Notes: 1. The same voltage should be supplied to pin 5 and 6. 2. Z S = 50 Ω (without matching). 3. With external matching circuit. TYPICAL PERFORMANCE CURVES (TA = +25°C, VCC = VRFout) Cuurent, I CC (mA) CURRENT vs. VOLTAGE Voltage, VCC (V) 543216 8 7 No Signal V CC = VPS Cuurent, I CC (mA) CURRENT vs. POWER SAVE VOLTAGE Power Save Voltage, VPS (V) VCC = 5.5 V VCC = 3.0 V 543216 Cuurent, I CC (mA) CURRENT vs. TEMPERATURE Temperature, TA (°C) —60 100 806040200—20—40 V CC = VPS = 3.0 V No Signal Conversion Gain, CG (dB) CONVERSION GAIN vs. VOLTAGE Voltage, VCC (V) 5432 fRFout = 900 MHz fRFout = 1.9 GHz VCC = VPS
Conversion Gain, CG (dB) CONVERSION GAIN vs. LOCAL INPUT LEVEL Local Input Level, PLOin (dBm) -25 15 1050-5-10-15-20 f RFout = 900 MHz fLOin = 1140 MHz VCC = VPS = 3.0 V Conversion Gain, CG (dB) Local Input Level, PLOin (dBm) fRFout = 1.9 GHz fLOin = 1.66 GHz VCC = VPS = 3.0 V -10 -25 15 1050-5-10-15-20 RF Output level of Each Tone P RFout , (dBm) Third Order Intermodulation Distortion, IM3 (dBm) RF OUTPUT LEVEL AND IM3 vs. IF INPUT LEVEL IF Input Level, PIFin (dBm) 100-10-20-30-40 -80 -70 -60 -50 -40 -30 -20 -10 f RFout = 900 MHz fIFin1 = 240 MHz fIFin2 = 240.4 MHZ fLOin = 1440 MHz PLOin = -5 dBm VCC = VPS = 3.0 V POUT IM3 RF Output level of Each Tone P RFout , (dBm) Third Order Intermodulation Distortion, IM3 (dBm) RF OUTPUT LEVEL AND IM3 vs. IF INPUT LEVEL IF Input Level, PIFin (dBm) 100-10-20-30-40 -80 -70 -60 -50 -40 -30 -20 -10 f RFout = 1.9 GHz fIFin1 = 240 MHz fIFin2 = 240.4 MHZ fLOin = 1660 MHz PLOin = -5 dBm VCC = VPS = 3.0 V POUT IM3 Local Leakage at IF Pin, LO if (dBm) LOCAL LEAKAGE AT IF PIN vs. LOCAL INPUT FREQUENCY Local Input Frequency, fLOin (MHz) fRFout = 1.9 GHz PLOin = -5 dBm VCC = VPS = 3.0 V -50 -40 -30 -20 -10 3.50.5 Local Leakage at RF Pin, LO rf (dBm) LOCAL LEAKAGE AT RF PIN vs. LOCAL INPUT FREQUENCY Local Input Frequency, fLOin (MHz) fRFout = 1.9 GHz PLOin = -5 dBm VCC = VPS = 3.0 V -50 -40 -30 -20 -10 3.50.5 TYPICAL PERFORMANCE CURVES (TA = +25°C, VCC = VRFout) UPC8106TB CONVERSION GAIN vs. LOCAL INPUT LEVEL
IF Leakage at RF Pin, IF rf (dBm) IF Input Frequency, fIFin (MHz) fRFout = 1.9 GHz fLOin = 1.66 GHz PLOin = -5 dBm fIFin = -30 dBm VCC = VPS = 3.0 V 5004003002001000 -50 -40 -30 -20 -10 600 MARKER 1
1.15 GHz
1.65 GHz
REF 1.0 Units 2 200.0 mUnits/ ∇ 21.201 Ω -53.748 Ω hp START 0.4 GHz STOP 1.9 GHz 2 1 TYPICAL PERFORMANCE CURVES (TA = +25°C, VCC = VRFout) S-PARAMETERS FOR EACH PORT (VCC = VPS = VRFout = 3.0 V ) MARKER 1
900 MHz
1.9 GHz
REF 1.0 Units 2 200.0 mUnits/ ∇ 26.961 Ω -87.312 Ω hp START 0.4 GHz STOP 1.9 GHz IF LEAKAGE AT RF PIN vs. IF INPUT FREQUENCY
S-PARAMETERS FOR EACH PORT (VCC = VPS = VRFout = 3.0 V ) UPC8106TB MARKER 1
240 MHz
REF 1.0 Units 1 200.0 mUnits/ ∇ 194.16 Ω -579.53 Ω hp START 0.1 GHz STOP 0.4 GHz MARKER 1 S-PARAMETERS FOR MATCHED RF OUTPUT (VCC = VPS = VRFout = 3.0 V ) - with TEST CIRCUITS 1 and 2 - (S22 data is monitored at RF connector on board.)
900 MHz (LC-matched) in test circuit
REF 0.0 dB 1 10.0 dB/ ∇ -19.567 dB hp MARKER 1
1.9 GHz (LC-matched) in test circuit
REF 0.0 dB 1 10.0 dB/ ∇ -15.213 dB hp START 100 MHz STOP 3000 MHz START 100 MHz STOP 3000 MHz MARKER 1 REF 1.0 Units 1 200.0 mUnits/ ∇ 36.59 Ω 2.9355 Ω hp START 100 MHz STOP 3000 MHz MARKER 1 REF 1.0 Units 1 200.0 mUnits/ ∇ 58.191 Ω -4.1191 Ω hp START 100 MHz STOP 3000 MHz
Pin No. Symbol Supply Pin 1 Description Equivalent Circuit Voltage Voltage (V) (V) 1 IF Input – 1.3
2 GND 0 –
IN – 2.4 5V CC 2.7 to 5.5 – 6 RF Output 2.7 to 3.6 – 4V PS VCC/GND – PIN FUNCTIONS This pin is the IF input to the double balanced mixer. The input is a high impedance. GND pin. Ground pattern on the board should be as wide as possible. Trace length should be kept as short as possible to minimize ground impedance. LO input pin. Recommended input level is -10 to 0 dBm. Supply voltage pin. This pin is the RF output. This pin is designed as an open collector. Due to the high impedance output, this pin requires an external LC matching circuit. Power save control pin. Bias controls operation as follows: Pin Bias Control V CC ON GND Power Save Note: 1. Each pin voltage is measured with VCC = VPS = VRFout = 3.0 V VCC GND UPC8106TB
Q I Q 90˚ TX SW PA PLL VCO EXAMPLE OF DECT 900 MHz Cordless Phone SYSTEM APPLICATION EXAMPLE UPC8106TB
TEST CIRCUIT 1 (RFOUT = 900 MHz) UPC8106TB 100 pF 10 nH 0.1 µF1000 pF 1.0 pF 0.1 µF 100 pF (Top View) Note 1 Note: 1. In case of unstable operation, connect 100 pF capacitor between pins 4 and 5. TEST CIRCUIT 2 (RFOUT = 1.9 GHz) Note: 1. In case of unstable operation, connect 100 pF capacitor between pins 4 and 5. 100 pF 100 nH 0.1 µF1000 pF 2.2 pF 1000 pF LOin IFin GND VPS RFout VCC 0.1 µF 100 pF (Top View) Note 1 TL = 5 nH
OUTLINE DIMENSIONS (Units in mm) Note: All dimensions are typical unless otherwise specified. PACKAGE OUTLINE S06 LEAD CONNECTIONS 1. IF INPUT 2. GND 3. LO INPUT 4. POWER SAVE 5. V CC 6. RF OUTPUT UPC8106TB-E3-A 3K/Reel
ORDERING INFORMATION
Note: Embossed Tape, 8 mm wide, Pins 1, 2, and 3 face tape perforation side. PART NUMBER QTY +0.1 DOT ON BACK SIDE +0.1 -0.50 ~0.1 0.2 0.15 3 4 0.65 1.3 2.0±0.2 0.65 2.1±0.1 1.25±0.1 0.9 ± 0.1 0.7 (Top View) (Bottom View) 6C2D EXCLUSIVE NORTH AMERICAN AGENT FOR RF, MICROWAVE & OPTOELECTRONIC SEMICONDUCTORS CALIFORNIA EASTERN LABORATORIES • Headquarters • 4590 Patrick Henry Drive • Santa Clara, CA 95054-1817 • (408) 988-3500 • Telex 34-6393 • FAX (408) 988-0279 24-Hour Fax-On-Demand: 800-390-3232 (U.S. and Canada only) • Internet: http://WWW.CEL.COM 07/17/2000DATA SUBJECT TO CHANGE WITHOUT NOTICE Life Support Applications These NEC products are not intended for use in life support devices, appliances, or systems where the malfunction of these products can reasonably be expected to result in personal injury. The customers of CEL using or selling these products for use in such applications do so at their own risk and agree to fully indemnify CEL for all damages resulting from such improper use or sale.
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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 -AZLead (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 substan ce 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 t o better integrate information from third parties. CEL has taken and continues to take reasonable steps to provide representative and ac curate 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.