upc3220gr-e1 Renesas Electronics Corporation., upc3220gr-e1 Datasheet

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upc3220gr-e1

Manufacturer Part Number
upc3220gr-e1
Description
Low Distortion Down-converter Ic For Digital Catv
Manufacturer
Renesas Electronics Corporation.
Datasheet

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Document No. PU10165EJ05V0DS (5th edition)
Date Published January 2005 CP(K)
Printed in Japan
DESCRIPTION
consists of AGC amplifier, mixer and video amplifier.
prevent corrosion/migration. Thus, this IC has excellent performance, uniformly and reliability.
FEATURES
• Low distortion
• Wide AGC dynamic range
• On chip video amplifier
• Supply voltage : 5 V
• Packaged in 16-pin SSOP suitable for high-density surface mounting
APPLICATION
• Digital CATV receivers
ORDERING INFORMATION
Caution Observe precautions when handling because these devices are sensitive to electrostatic discharge.
µ
PC3220GR-E1
Note With regards to terminal solder (the solder contains lead) plated products (conventionally plated), contact
Remark To order evaluation samples, contact your nearby sales office.
The
The package is 16-pin SSOP (Shrink Small Outline Package) suitable for surface mount.
This IC is manufactured using our 10 GHz f
This process uses silicon nitride passivation film. This material can protect chip surface from external pollution and
Part Number
The information in this document is subject to change without notice. Before using this document, please confirm that
this is the latest version.
Not all devices/types available in every country. Please check with local NEC Compound Semiconductor Devices
representative for availability and additional information.
µ
PC3220GR is a silicon monolithic IC designed for use as IF down-converter for digital CATV. This IC
your nearby sales office.
LOW DISTORTION DOWN-CONVERTER IC FOR DIGITAL CATV
Part number for sample order:
µ
PC3220GR-E1-A
Order Number
IIP
GCR
16-pin plastic SSOP
(5.72 mm (225)) (Pb-Free)
The mark
3
= +1.0 dBm TYP.
total
µ
PC3220GR
= 45.5 dB TYP.
T
BIPOLAR ANALOG INTEGRATED CIRCUIT
DATA SHEET
NESAT II AL silicon bipolar process.
Package
shows major revised points.
Note
Marking
C3220
• Embossed tape 12 mm wide
• Pin 1 indicates pull-out direction of tape
• Qty 2.5 kpcs/reel
µ
NEC Compound Semiconductor Devices, Ltd. 2002, 2005
PC3220GR
Supplying Form

Related parts for upc3220gr-e1

upc3220gr-e1 Summary of contents

Page 1

LOW DISTORTION DOWN-CONVERTER IC FOR DIGITAL CATV DESCRIPTION µ The PC3220GR is a silicon monolithic IC designed for use as IF down-converter for digital CATV. This IC consists of AGC amplifier, mixer and video amplifier. The package is 16-pin SSOP ...

Page 2

INTERNAL BLOCK DIAGRAM AND PIN CONFIGURATION 1 RF IN1 RF IN2 AGC GND 4 OSC IN1 5 6 OSC IN2 (Top View) AGC Amp. Mixer OSC OUT Buffer ...

Page 3

PIN EXPLANATIONS Pin PIN Symbol Voltage No. (V, TYP IN1 1.46 Input pin of IF signal. 1-pin is same phase and 2-pin is opposite phase at balance input. In case of single input, 1-pin or 2-pin should be ...

Page 4

Pin PIN Symbol Voltage No. (V, TYP.) 9 AMP 2.5 Output pin of video amplifier. OUT2 OUT1 and IN1 are same phase. OUT2 and IN2 are same phase. 10 AMP 2.5 OUT1 11 GND 0.0 Ground pin. Must be connected ...

Page 5

ABSOLUTE MAXIMUM RATINGS Parameter Symbol Supply Voltage V Power Dissipation P Operating Ambient Temperature T Storage Temperature T Note Mounted on double-sided copper-clad 50 × 50 × 1.6 mm epoxy glass PWB RECOMMENDED OPERATING RENGE Parameter Symbol Supply Voltage V ...

Page 6

ELECTRICAL CHARACTERISTICS (T Parameter Symbol DC Characteristics Circuit Current (Total Block) Circuit Current (AGC Amplifier Block + Mixer Block) Circuit Current (Video Amplifier Block) AGC Voltage High Level V AGC (H) ...

Page 7

STANDARD CHARACTERISTICS (T Parameter Symbol AGC Amplifier Block + Mixer Block ( MHz Input 3rd Order Distortion IIP Intercept Point Maximum Output Voltage1 Impedance Z OSC IN Impedance Z OSCin MIXER OUT Impedance ...

Page 8

MEASUREMENT CIRCUIT 1 µ 0.1 F RF2 RF1 50 Ω 50 Ω µ 0.1 F//20 pF µ µ 0.1 F AGC Note LO µ 50 Ω 0.1 F µ 0.1 F µ µ ...

Page 9

MEASUREMENT CIRCUIT 3 µ RF 0.1 F µ 0.1 F//20 pF µ µ 0.1 F AGC LO µ 0.1 F µ 0.1 F µ µ 0 Port Input Impedance RF ...

Page 10

MEASUREMENT CIRCUIT 5 AGC Amp OSC OUT 4 Buffer Amp µ µ 0 MEASUREMENT CIRCUIT 6 µ 0 Ω µ 0.1 F//20 pF ...

Page 11

MEASUREMENT CIRCUIT 7 Noise Source µ RF 0.1 F µ 0.1 F//20 pF µ µ 0.1 F AGC Note LO µ 50 Ω 0.1 F µ 0.1 F µ µ 0 ...

Page 12

ILLUSTRATION OF THE MEASUREMENT CIRCUIT1, 2 ASSEMBLED ON EVALUATION BOARD 1 kΩ 51 Ω 1 kΩ IF out RF1, RF2 in Note Balun Transformer Remarks 1. Back side: GND pattern 2. Solder plated on pattern 3. : Through hole 4. ...

Page 13

ILLUSTRATION OF THE MEASUREMENT CIRCUIT3 ASSEMBLED ON EVALUATION BOARD µ Ω IF out 0 µ µ 0 Remarks 1. Back side: GND pattern 2. Solder plated on ...

Page 14

ILLUSTRATION OF THE MEASUREMENT CIRCUIT4 ASSEMBLED ON EVALUATION BOARD Vin Remarks 1. Back side: GND pattern 2. Solder plated on pattern 3. : Through hole 4. : Represents short-circuit strip 14 1 kΩ 51 Ω µ µ µ ...

Page 15

ILLUSTRATION OF THE MEASUREMENT CIRCUIT5 ASSEMBLED ON EVALUATION BOARD Input Impedance Remarks 1. Back side: GND pattern 2. Solder plated on pattern 3. : Through hole 4. : Represents short-circuit strip 51 Ω µ µ µ ...

Page 16

ILLUSTRATION OF THE MEASUREMENT CIRCUIT6, 7 ASSEMBLED ON EVALUATION BOARD 1 kΩ 0 Note Balun Transformer Remarks 1. Back side: GND pattern 2. Solder plated on pattern 3. : ...

Page 17

TYPICAL CHARACTERISTICS (T CIRCUIT CURRENT1 (TOTAL BLOCK) vs. SUPPLY VOLTAGE AGC No Singnal Measurement 50 Cuicuit6 +25° +85° –40° ...

Page 18

Amplifier Block + Mixer Block− VOLTAGE GAIN vs. RF INPUT FREQUENCY RANGE 5 5 3.0 V AGC –50 ...

Page 19

VOLTAGE GAIN vs. IF OUTPUT FREQUENCY RANGE 3.0 V AGC –50 dBm ...

Page 20

VOLTAGE GAIN vs. GAIN CONTROL VOLTAGE RANGE MHz –50 dBm in – 134 ...

Page 21

OUTPUT POWER vs. INPUT POWER –15 – 5 5.0 V –25 4.5 V –30 –35 – 3.0 V AGC MHz – 134 MHz –15 ...

Page 22

TONE OUTPUT POWER vs. INPUT POWER – 4 5.0 V –30 5.5 V –40 –50 –60 V AGC – MHz MHz RF – ...

Page 23

Amplifier Block− VOLTAGE GAIN (SINGLE-ENDED) vs. INPUT FREQUENCY 4 5 –55 dBm 41 in Measurement Cuicuit4 Input ...

Page 24

Block− VOLTAGE GAIN vs. RF INPUT FREQUENCY RANGE AGC 1 AGC ...

Page 25

NOISE FIGURE vs. GAIN CONTROL VOLTAGE RANGE MHz 134 MHz –15 dBm LO ...

Page 26

TONE OUTPUT POWER vs. INPUT POWER 4 5.0 V –10 5.5 V –20 –30 –40 – 1.5 V AGC MHz MHz ...

Page 27

TONE OUTPUT POWER, 3 GAIN CONTROL VOLTAGE vs. INPUT POWER –20 P out –30 –40 –50 V AGC –60 –70 – –90 –80 –70 –60 –50 –40 –30 –20 Input Power P (dBm ...

Page 28

S-PARAMETERS −AGC Amplifier Block + Mixer Block− (V MIXER RF Input Impedance MIXER IF Output Impedance 5 3 measurement circuit 3) CC AGC ...

Page 29

MIXER OSC Input Impedance MHz 1.820 kΩ –1.823 kΩ 415.5 Ω 100 MHz 284.6 Ω 134 MHz 133.4 Ω 250 MHz Data Sheet PU10165EJ05V0DS µ PC3220GR 2.911 ...

Page 30

Amplifier Block− 5 measurement circuit 5) CC Video Amplifier Input Impedance Video Amplifier Output Impedance MHz MHz ...

Page 31

PACKAGE DIMENSIONS 16-PIN PLASTIC SSOP (5.72 mm (225)) (UNIT: mm 5.2±0.3 1.8 MAX. 1.5±0.1 0.475 MAX. 0.65 +0.10 0.22 0.10 –0.05 0.125±0.075 9 detail of lead end 5˚± 5˚ 8 6.4±0.2 4.4±0.2 S 0.5±0.2 +0.08 0.17 –0.07 M ...

Page 32

NOTES ON CORRECT USE (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 pins must be connected together with ...

Page 33

When the product(s) listed in this document is subject to any applicable import or export control laws and regulation of the authority having competent jurisdiction, such product(s) shall not be imported or exported without obtaining the import or export license. ...

Page 34

For further information, please contact NEC Compound Semiconductor Devices, Ltd. E-mail: salesinfo@ml.ncsd.necel.com (sales and general) techinfo@ml.ncsd.necel.com (technical) Sales Division TEL: +81-44-435-1588 FAX: +81-44-435-1579 NEC Compound Semiconductor Devices Hong Kong Limited E-mail: ncsd-hk@elhk.nec.com.hk (sales, technical and general) Hong Kong Head Office ...

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