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Technical content

FEATURES

  • WIDEBAND RESPONSE: fu = 2.9 GHz TYP at 3dB bandwidth
  • NOISE FIGURE: NF = 2.3 dB TYP at f = 1.5 GHz
  • POWER GAIN: GP = 20.5 dB TYP at f = 1.5 GHz
  • SUPPLY VOLTAGE: VCC = 4.5 to 5.5 V
  • HIGH DENSITY SURFACE MOUNTING: 6-pin super mini-mold package UPC3215TB 5V, SUPER MINIMOLD BIPOLAR ANALOG INTEGRATED CIRCUIT SI MMIC WIDEBAND AMPLIFIER VCC = 5.0 V PIN = -30 dBm 1.00.30.1 3.0 Frequency, f (GHz) G ,niaG S )Bd( INSERTION POWER GAIN vs. FREQUENCY

DESCRIPTION

The UPC3215TB is a Silicon Monolithic IC designed as a wideband amplifier. The UPC3215TB is suitable for systems requiring wideband operation from HF to L band. This IC is manufactured using a 30 GHz fmax UHS0 (Ultra High Speed Process) silicon bipolar process. The pack- age is 6-pin super minimold suitable for surface mount. The UPC3215TB is manufactured according to stringent quality assurance standards to ensure highest reliability and consistent superior performance.

APPLICATIONS

  • Systems requiring wideband operation from HF to L band.
  • DBS receivers and tuners ELECTRICAL CHARACTERISTICS (TA = 25°C, VCC = 5.0 V, ZS = ZL = 50 Ω) BT5123CPUREBMUN TRAP 60SENILTUO EGAKCAP SEULAV ECNEREFERSCITSIRETCARAHC DRADNATSSLOBMYS PSAT Saturated Output Power, PIN 5.3+mBdmBd 0 = OIP3 Output Intercept Point f1 = 1.5 GHz, f2 01+mBdzHG 105.1 = ΔGP 0.1BdzHG 51.2 ot 1.0 = f,ssentalF niaG ELECTRICAL CHARACTERISTICS (TA = 25°C, VCC = 5.0 V, ZS = ZL = 50 Ω) BT5123CPUREBMUN TRAP 60SENILTUO EGAKCAP XAMPYTNIMSTINUSNOITIDNOC DNA SRETEMARAPSLOBMYS ICC 5.710.415.01Am)langis on( tnerruC tiucriC GP P ,zHG 5.1 = f,niaG rewoP IN -5.025.81BdmBd 03- = 0.33.2-BdzHG 5.1 = f,erugiF esioNFN fu Upper Limit Operating Frequency (The gain at fu is 3 dB down from the gain at 100 MHz) GHz 2.5 2.9 - -4493BdzHG 5.1 = f,noitalosILOSI RLIN -5101BdzHG 5.1 = f,ssoL nruteR tupnI RLOUT -5.95.6BdzHG 5.1 = f,ssoL nruteR tuptuO P1dB -5.1-4-mBdzHG 5.1 = f,tnioP noisserpmoC Bd 1

CIRCUIT CURRENT vs. VOLTAGE VCC = 4.5 V VCC = 5.0 V VCC = 5.5 V PIN = -30 dBm 1.00.30.1 3.0 Supply Voltage, VCC (V) Circuit Current, I CC (mA) CIRCUIT CURRENT vs. OPERATING AMBIENT TEMPERATURE +75+500-25-50 +100+25 No input signal VCC = 5 V Circuit Current, I CC (mA) Operating Ambient Temperature (°C) Frequency, f (GHz) Gain, G S (dB) Noise Figure, NF (dB) INSERTION POWER GAIN vs. FREQUENCY TYPICAL PERFORMANCE CURVES (TA = 25°C) UPC3215TB ABSOLUTE MAXIMUM RATINGS1 (TA = 25°C) SYMBOLS PARAMETERS UNITS RATINGS VCC Supply Voltage V 6.0 ICC Total Supply Current mA 30 PIN Input Power dBm +10 PT Total Power Dissipation2 mW 270 TOP Operating Temperature °C -40 to +85 TSTG Storage Temperature °C -55 to +150 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, with copper patterning on both sides. (TA = 85°C). RECOMMENDED OPERATING CONDITIONS SYMBOLS PARAMETERS UNITS MIN TYP MAX VCC Supply Voltage V 4.5 5.0 5.5 TA Operating Ambient °C -40 +25 +85 Temperature PIN Input Power dBm 0 fIN Input Frequency GHz 2.9 TEST CIRCUIT VCC 1000 pF C2C1 2,3,5 1000 pF1000 pF 50 Ω 50 Ω IN OUT 54210 No input signal TA = -40°C TA = +25°C TA = +85°C INSERTION POWER GAIN vs. FREQUENCY Insertion Power Gain, GP (dB) Frequency, f (GHz) TA = -40°C TA = +25°C TA = +85°C PIN = -30 dBm 1.00.30.1 3.0 VCC = 5.0 V

TYPICAL PERFORMANCE CURVES (TA = 25°) OUTPUT POWER vs. INPUT POWER Input Power, PIN (dBm) Output Power, P OUT (dBm) 1.00.30.1 3.0 TA = -40°C TA = +25°C TA = +85°C VCC = 5.0 V VCC = 4.5 V VCC = 5.0 V VCC = 5.5 V PIN = -30 dBm 1.00.30.1 -10 -20 -30 -40 -50 3.0 Frequency, f (GHz) Noise Figure, NF (dB) NOISE FIGURE vs. FREQUENCY 1.00.30.1 3.0 VCC = 4.5 V VCC = 5.0 V VCC = 5.5 V VCC = 4.5 V VCC = 5.0 V VCC = 5.5 V PIN = -30 dBm 1.00.30.1 -10 -20 -30 -40 -50 3.0 VCC = 4.5 V VCC = 5.0 V VCC = 5.5 V fIN = 1 GHz +10 0-20-40 -10 -20 -30 -10 +10-30 VCC = 4.5 V VCC = 5.0 V VCC = 5.5 V PIN = -30 dBm 1.00.30.1 -10 -20 -30 -40 -50 3.0 Frequency, f (GHz) Noise Figure, NF (dB) NOISE FIGURE vs. FREQUENCY Frequency, f (GHz) Isolation, ISOL (dB) ISOLATION vs. FREQUENCY Frequency, f (GHz) Input Return Loss, RL IN (dB) INPUT RETURN LOSS vs. FREQUENCY Frequency, f (GHz) Output Return Loss, RL OUT (dB) OUTPUT RETURN LOSS vs. FREQUENCY

+10 0-20-40 -10 -20 -30 -10 +10 VCC = 4.5 V VCC = 5.0 V VCC = 5.5 V fIN = 1.5 GHz -30 +10 0-20-40 -10 -20 -30 -10 +10 VCC = 4.5 V VCC = 5.0 V VCC = 5.5 V fIN = 2.15 GHz -30 +10 0-20-40 -10 -20 -30 -10 +10 VCC = 4.5 V VCC = 5.0 V VCC = 5.5 V fIN = 2.4 GHz -30 VCC = 5 V f1 = 1000 MHz f2 = 1001 MHz +20 -60 -80 -40 -20 VCC = 5 V f1 = 1500 MHz f2 = 1501 MHz +20 -60 -80 -40 -20 VCC = 5 V f1 = 2150 MHz f2 = 2151 MHz +20 -60 -80 -40 -20 UPC3215TB OUTPUT POWER vs. INPUT POWER Output Power, P OUT (dBm) Input Power, PIN (dBm) OUTPUT POWER vs. INPUT POWER AND VOLTAGE Input Power, PIN (dBm) Output Power, P OUT (dBm) TYPICAL PERFORMANCE CURVES (TA = 25°) OUTPUT POWER vs. INPUT POWER Output Power, P OUT (dBm) Input Power, PIN (dBm) OUTPUT POWER OF EACH TONE vs. INPUT POWER OF EACH TONE Output Power of Each Tone, P OUT(each) (dBm) Input Power of Each Tone, PIN(each) (dBm) OUTPUT POWER OF EACH TONE vs. INPUT POWER OF EACH TONE Output Power of Each Tone, P OUT(each) (dBm) Input Power of Each Tone, PIN(each) (dBm) OUTPUT POWER OF EACH TONE vs. INPUT POWER OF EACH TONE Output Power of Each Tone, P OUT(each) (dBm) Input Power of Each Tone, PIN(each) (dBm)

VCC = 5 V f1 = 2400 MHz f2 = 2401 MHz +20 -60 -80 -40 -20 TYPICAL PERFORMANCE CURVES (TA = 25°) EXAMPLE OF APPLICATION CIRCUIT VCC 2,3,5 1000 pF1000 pF 50 Ω 50 to 200 Ω IN OUT 1000 pF Please connect these component to stabilize operation. 2,3,5 1000 pF 1000 pF1000 pF 50 Ω OUTPUT POWER OF EACH TONE vs. INPUT POWER OF EACH TONE Output Power of Each Tone, P OUT(each) (dBm) Input Power of Each Tone, PIN(each) (dBm)

FREQUENCY S 11 S21 S12 S22 K GHz MAG ANG MAG ANG MAG ANG MAG ANG VCC = VOUT = 5.0 V, ICC = 16 mA TYPICAL SCATTERING PARAMETERS (TA = 25°C)

0.1 GHz

3.1 GHz

S11 Frequency S22 Frequency UPC3215TB Start: 0.1 GHz Stop: 3.1 GHz Start: 0.1 GHz Stop: 3.1 GHz

OUTLINE DIMENSIONS (Units in mm) UPC3215TB PACKAGE OUTLINE S06 LEAD CONNECTIONS H3C 1. INPUT 2. GND 3. GND 4. OUTPUT 5. GND 6. VCC (Top View) (Bottom View) +0.1 DOT ON BACK SIDE +0.1 -0.50 ~0.1 0.2 0.15 1 6 40.65 1.3 2.0±0.2 0.65 2.1±0.1 1.25±0.1 0.9 ± 0.1 0.7 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 Internet: http://WWW.CEL.COM 09/04/2001 DATA SUBJECT TO CHANGE WITHOUT NOTICE YTQREBMUN TRAP UPC3215TB-E3-A 3K/Reel

ORDERING INFORMATION

Note: Embossed Tape, 8 mm wide. Pins 1, 2 and 3 face perforated side of tape. lanretnInoitpircseDniPdeilppAniPniP No. Name Voltage Voltage Equivalent tiucriC)V( 1 Input — 0.82 Signal input pin. An internal matching circuit, configured with resistors, enables 50 Ω connection over a wide band. A multi-feedback circuit is designed to cancel the deviations of hFE and resistance. This pin must be coupled to the signal source with capacitor for DC cut. 2 GND 0 — Ground pins. These pins should be connected to system eht no nrettap dnuorG .ecnatcudni muminim htiw dnuorg3 dnuorg eht llA .elbissop sa ediw sa demrof eb dluohs draob5 pins must be connected together with wide ground pattern to decrease impedance difference. 4 Output — 3.8 Signal output pin. An internal matching circuit, configured with resistors, enables 50 Ω connection over a wide band. This pin must be coupled to next stage with capacitor for DC cut. 6 VCC 4.5 to 5.5 — Power supply pin. This pin should be externally equipped with a bypass capacitor to minimize ground impedance. PIN DESCRIPTION 32 5 GND GND IN OUT VCC