UPC3228T5S CEL | Alldatasheet

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Technical content

DESCRIPTION

The +PC3228T5S is a silicon bipolar monolithic IC designed for use as IF down-converter for digital TV, digital CATV. This IC consists of AGC amplifier, mixer and video amplifier. The package is 32-pin plastic QFN (Quad Flat Non-lead) package suitable for surface mount. This IC is manufactured using our 30 GHz f max UHS0 (Ultra High Speed Process) silicon bipolar process. This process uses silicon nitride passivation film. This material can protect chip surface from external pollution and prevent corrosion/migration. Thus, this IC has excellent performance, uniformly and reliability.

FEATURES

I:ecnamrofreplatoT• CC = 85 mA TYP. @ VCC =5V

  • AGC AMPLIFIER + MIXER + DRIVER BLOCK : f RF (BW) = 20 to 800 MHz .PYTBd82=GC: .PYTBd07=RCG: : IM3 = 47 dBc MIN./57 dBc TYP. @Single Ended-OUT = 0.5 Vp-p/tone
  • VIDEO AMPLIFIER BLOCK : G V = 59 dB TYP. f: IF (BW) = 20 to 100 MHz : IM3 = 45 dBc MIN./55 dBc TYP. @ Output = 110 dBu/tone, Differential-out
  • High-density surface mounting : 32-pin plastic QFN package (5.0 = 5.0 = 0.75 mm) APPLICATION
  • Digital CATV
  • Cable modem receivers

ORDERING INFORMATION

Part Number Order Number Package Marking Supplying Form +PC3228T5S-E2 +PC3228T5S-E2-A 32-pin plastic QFN (Pb-Free) C3228 % Embossed tape 12 mm wide % Pin 8,9 face the perforation side of the tape % Qty 2.5 kpcs/reel % Dry pack specification Remark To order evaluation samples, contact your nearby sales office. Part number for sample order: +PC3228T5S DATA SHEET Caution Observe precautions when handling because these devices are sensitive to electrostatic discharge. BIPOLAR ANALOG INTEGRATED CIRCUIT +PC3228T5S Document No. PU10623EJ01V0DS (1st edition) Date Published June 2006 NS CP(K) LOW DISTORTION DOWN-CONVERTER + AGC AMPLIFIER + VIDEO AMPLIFIER The information in this document is subject to change without notice. Before using this document, please confirm that this is the latest version.

INTERNAL BLOCK DIAGRAM AND PIN CONFIGURATION GND-AGC Note GND-Driv Driv-OUT1 Driv-OUT2 GND-Driv GND IF-IN1 IF-IN2 GND-AGC RF-IN2 RF-IN1 V CC-AGC VCC-Driv VCC-MIX VCC-LO GND-MIX Note GND-MIX LO-IN2 LO-IN1 GND-LO V CC-IF2 IF-OUT2 IF-OUT1 GND-IF2 Note GND-IF1 Note GND-IF1 GND-REG VCC-IF1 VAGC GND-REG NC GND-IF2 IF_IN AMP IF_IN AMP2 Driver AMP Driver AMP LO AMP AGC Control (Top View) RF_AGC AMP Note 1, 9, 17, 25-pin: Connected to the lead frame. Data Sheet PU10623EJ01V0DS2 +PC3228T5S

tinUsgnitaRsnoitidnoClobmySretemaraP VegatloVylppuS CC TA =+ 2 5$ V0.6C PnoitapissiDrewoP D TA =+ 8 0$C Note 800 mW Operating Ambient Temperature T A Note <20 to +80 $C Storage Temperature T stg <55 to +150 $C Note Mounted on double-sided copper-clad 50 = 50 = 1.6 mm epoxy glass PWB RECOMMENDED OPERATING RANGE (TA =+ 2 5$C, unless otherwise specified) Parameter Symbol Conditions MIN. TYP. MAX. Unit VegatloVylppuS CC V5.50.55.4 Operating Ambient Temperature TA VCC = 4.5 to 5.5 V <20 +25 +80 $C Gain Control Voltage Range V AGC 0 < 3.3 V RF Operating Frequency Range f RF (BW) 02 < 800 MHz IF Operating Frequency Range f IF (BW) 02 < 100 MHz Data Sheet PU10623EJ01V0DS 3 +PC3228T5S

ELECTRICAL CHARACTERISTICS (TA =+ 2 5$C, VCC = 5 V, unless otherwise specified) Parameter Symbol Test Conditions MIN. TYP. MAX. Unit DC Characteristics ItnerruCtiucriC CC No input signal Note 1 65 85 110 mA AGC Voltage High Level V AGC (H) @ Maximum gain Note 1 2.5 < 3.5 V AGC Voltage Low Level V AGC (L) @ Minimum gain Note 1 < 0 < V RF Characteristics (RF AGC Amplifier Block + Mixer Block + Driver Amplifier: fRF = 80 MHz, fLO = 130 MHz, PLO = <10 dBm, ZS = 50 1, ZL = 400 1/16 pF) RF Input Frequency Range f RF fC = <3 dB Note 1 20 < 800 MHz RF Gain Control Range GCR1 V AGC = 0 to 2.5 V Note 1 62 70 < dB Mixer Conversion Gain CG V AGC = 2.5 V Differential-IN: Vin = +18 dBmV Note 1 25 28 31 dB 3rd Order Intermodulaion Distortion IM 31 f1 = 44 MHz, f2 = 45 MHz, Vin = +30 dBmV/tone, Single Ended-OUT = 0.5 Vp-p/tone Note 1 47 57 < dBc V1FNerugiFesioN AGC = 2.5 V, f = 50 MHz, Differential-Output Note 2 < 8.3 < dB IF Characteristics (IF Amplifier Block + Driver Amplifier: fIF = 50 MHz, ZS = 50 1, ZL = 2 100 1) IF Input Frequency Range f IF fC = <3 dB Note 5 20 < 100 MHz GniaGreifilpmAFI V Vin = <7 dBmV, Differential-IN/OUT Note 5 56 59 62 dB 3rd Order Intermodulaion Distortion IM 32 f1 = 49.5 MHz, f2 = 50.5 MHz, Vout = 110 dBu/tone, Differential-IN/OUT Note 5 45 55 < dBc VegatloVtuptuOFI out Single Ended-Output Note 5 < 1.0 < Vp-p V2FNerugiFesioN AGC = 0 V, f = 50 MHz, Single Ended-Output Note 2 < 3.0 < dB Total Block (RF AGC Amplifier + Mixer + Driver Amplifier + SAW Filter + IF Ampliter + Driver Amplifier), SAW Filter : EPCOS X6889M (fIF = 49 MHz, PLO = <10 dBm, fRF = 70 to 130 MHz, ZS =5 0 1, ZL = 1 050 1) OLegakaeLFR-OL RF VAGC = 2.5 V, 22-pin 75 1 Termination fLO = 110 to 180 MHz Note 3 < <54 <44 dBmV OLegakaeLFI-OL IF VAGC = 2.5 V, Vout = 0.7 Vp-p Single Ended-Output fRF = 130 MHz, fLO = 179 MHz Note 4 < <40 <25 dBc Notes 1. By measurement circuit 1 2. By measurement circuit 2 3. By measurement circuit 3 4. By measurement circuit 4 5. By measurement circuit 5 Data Sheet PU10623EJ01V0DS4 +PC3228T5S

IF_IN AMP IF_IN AMP2 Driver AMP Driver AMP LO AMP AGC Control RF_AGC AMP 51 1 1 nF 1 nF Vin S.G 1 nF 1 nF 1 nF 1 nF 51 1 PLO S.G 50 1 1 nF 1 nF VCC 0.1 F+ 50 1 1 000 10.1 F+ 50 1 1 000 10.1 F+ Note 100 pF 1 k1 0.1 F+ VAGC Note 51 1 0.1 F+ 0.1 F+ 1 nF 1 nF 400 1 Vout1 Vout2 16 pF Differential Probe (10:1)

1 M1//7 pF

VOUT = Vout1 – Vout2 Note Balun Transformer : TOKO 617DB-1674 B4F (Double balanced type) Data Sheet PU10623EJ01V0DS 5 +PC3228T5S

IF_IN AMP IF_IN AMP2 Driver AMP Driver AMP LO AMP AGC Control RF_AGC AMP 1 nF 1 nF 1 nF 1 nF 1 nF 1 nF 51 1 S.G 50 1 1 nF 1 nF VCC 0.1 F+ 1 000 10.1 F+ 50 1 1 000 10.1 F+ Note 100 pF 1 k1 0.1 F+ VAGC Note 0.1 F+ 0.1 F+ 1 nF MA/Com H183-4 30-3 000 MHz Noise Source 50 1Noise Figure Meter 1 nF 51 1 51 1 Hybrid Coupler 50 1 Noise Figure Meter 50 1 Noise Source PLO Note Balun Transformer : TOKO 617DB-1674 B4F (Double balanced type) Data Sheet PU10623EJ01V0DS6 +PC3228T5S

IF_IN AMP IF_IN AMP2 Driver AMP Driver AMP LO AMP AGC Control RF_AGC AMP 1 nF 1 nF 1 nF 1 nF 1 nF 1 nF 51 1 S.G 50 1 1 nF 1 nF VCC 0.1 F+ 1 000 10.1 F+ 1 000 10.1 F+ Note 100 pF 1 k1 0.1 F+ VAGC Note 51 1 0.1 F+ 0.1 F+ 1 nF 1 nF 400 116 pF Spectrum Analyzer 50 1 24 1VOUT PLO Note Balun Transformer : TOKO 617DB-1674 B4F (Double balanced type) Data Sheet PU10623EJ01V0DS 7 +PC3228T5S

(fRF = 70 to 130 MHz (fIF = 49.1 MHz (0.6 MHz), fLO = 119 to 179 MHz, P LO = <10 dBm, Vout =0 . 7Vp-p (Single Ended)) LO-IF Leakage IF_IN AMP IF_IN AMP2 Driver AMP Driver AMP LO AMP AGC Control RF_AGC AMP 51 1 1 nF 1 nF S.G 1 nF 1 nF 1 nF 1 nF 51 1 S.G 50 1 1 nF 1 nF VCC 0.1 F+ 1 000 10.1 F+ 50 1 1 000 10.1 F+ Note 100 pF 1 k1 0.1 F+ VAGC 0.1 F+ 1 nF 1 nF Spectrum Analyzer 50 1 SAW Filter EPCOS X6889M 0.1 F+ Vout2 Vout1

49 M fLO

Note Balun Transformer : TOKO 617DB-1674 B4F (Double balanced type) Data Sheet PU10623EJ01V0DS8 +PC3228T5S

IF_IN AMP IF_IN AMP2 Driver AMP Driver AMP LO AMP AGC Control RF_AGC AMP 51 1 1 nF 1 nF 1 nF 1 nF 1 nF 1 nF 51 1 1 nF 1 nF VCC 0.1 F+ 1 000 10.1 F+ 50 1 1 000 10.1 F+ Note 100 pF 1 k1 0.1 F+ VAGC Note 51 1 0.1 F+ 0.1 F+ 1 nF 1 nF 400 1 Vin1 Vin2 16 pF Spectrum Analyzer 50 1 Vout1 Vout2 VOUT = Vout1 – Vout2 Differential-OUT VIN = Vin1 – Vin2 Differential-IN S.G 50 1 Vin Note Balun Transformer : TOKO 617DB-1674 B4F (Double balanced type) Data Sheet PU10623EJ01V0DS 9 +PC3228T5S

ILLUSTRATION OF THE EVALUATION BOARD Note Note C4C5 RF LO OUT2 OUT1 IF IF C2 R3C2 VCC VCC VAGC VOUT1 VOUT2 Note Balun Transformer : TOKO 617DB-1674 B4F (Double balanced type) Remarks 1. Back side: GND pattern 2. Solder plated on pattern 3. : Through hole USING THE NEC EVALUATION BOARD Symbol Values Maker Part Number Size C1 1 nF Murata GRM39CH 1608 C2 0.1 +F Murata GRM39B 1608 C3 100 pF Murata GRM39CH 1608 C4 10 pF Murata GRM36B 1005 C5 6 pF Murata GRM36B 1005 R1 51 1 Susumu RR0816 510SSM 1608 R2 200 1 Susumu RR0816 201SSM 1608 R3 1 000 1 Susumu RR0816 102SSM 1608 Data Sheet PU10623EJ01V0DS10 +PC3228T5S

32-PIN PLASTIC QFN (UNIT: mm) Laser Marked Index 5.0±0.1 5.0±0.1 (Bottom View)(Side View)(Top View) (Side View) (0.21) 0.85 MAX.(0.75) (0.20) 0.16±0.050.76±0.1 (0.865) (1.1)0.4 (1.75) (1.75) Exposed Die Pad To be connected1221 C3228 Data Sheet PU10623EJ01V0DS 11 +PC3228T5S

(1) Observe precautions for handling because of electro-static sensitive devices. (2) Form a ground pattern as widely as possible to minimize ground impedance (to prevent undesired oscillation). All the ground terminals must be connected together with wide ground pattern to decrease impedance difference. (3) The bypass capacitor should be attached to V CC line. 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. gniredloSdohteMgniredloS lobmySnoitidnoCsnoitidnoC Infrared Reflow Peak temperature (package surface temperature) : 260 $C or below sselrosdnoces01:erutarepmetkaeptaemiT Time at temperature of 220$C or higher : 60 seconds or less Preheating time at 120 to 180$ 021:C (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 sselrosdnoces01:erutarepmetkaeptaemiT 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 methods together (except for partial heating). Data Sheet PU10623EJ01V0DS12 +PC3228T5S

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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 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 sol d by CEL to customer on an annual basis. See CEL Terms and Conditions for additional clarification of warranties and liability.