UPC8104 NEC, UPC8104 Datasheet

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UPC8104

Manufacturer Part Number
UPC8104
Description
UP CONVERTER + QUADRATURE MODULATOR IC FOR DIGITAL MOBILE COMMUNICATION SYSTEMS
Manufacturer
NEC
Datasheet

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Part Number:
UPC8104GR-E1
Manufacturer:
NEC
Quantity:
20 000
Document No. P10099EJ4V0DS00 (4th edition)
Date Published October 1999 N CP(K)
Printed in Japan
DESCRIPTION
communication systems. This modulator consists of 1.9 GHz up-converter and 400 MHz quadrature modulator which
are packaged in 20 pin SSOP. The device has power save function and can operate 2.7 to 5.5 V supply voltage,
therefore, it can contribute to make RF block small, high performance and low power consumption.
FEATURES
APPLICATION
ORDERING INFORMATION
* For evaluation sample order, please contact your local NEC sales office. (Order number:
PC8104GR-E1
The PC8104GR is a silicon monolithic integrated circuit designed as quadrature modulator for digital mobile
PART NUMBER
20 pin SSOP suitable for high density surface mounting.
High linearity up converter is incorporated; P
Low phase difference due to digital phase shifter is adopted.
Wide operating frequency range.
External IF filter can be applied between modulator output and up converter input terminal.
Supply voltage: V
Equipped with power save function.
Digital cordless phones
Digital cellular phones
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 representative for
availability and additional information.
FOR DIGITAL MOBILE COMMUNICATION SYSTEMS
UP CONVERTER + QUADRATURE MODULATOR IC
CC
20 pin plastic SSOP
= 2.7 to 5.5 V
PACKAGE
BIPOLAR ANALOG INTEGRATED CIRCUIT
Caution electro-static sensitive device
Modulator
Up converter; f
The mark
DATA SHEET
DATA SHEET
RFout(sat)
Embossed tape 12 mm wide. QTY 2.5 kp/Reel.
Pin 1 indicates pull-out direction of tape.
shows major revised points.
; f
RFout
MODout
= 6 dBm TYP.
= 800 MHz to 1.9 GHz
= 100 MHz to 400 MHz, f
SUPPLYING FORM
PC8104GR
I/Q
= DC to 10 MHz
PC8104GR)
©
1995, 1999

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UPC8104 Summary of contents

Page 1

... For evaluation sample order, please contact your local NEC sales office. (Order 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 representative for availability and additional information. Document No. P10099EJ4V0DS00 (4th edition) ...

Page 2

... INTERNAL BLOCK DIAGRAM AND PIN CONNECTIONS (Top View) Lo1 in 1 Lo1 in 2 GND 3 (MOD GND 8 (UP Con) RF out 9 GND 10 (UP Con) APPLICATION EXAMPLE (PHS 90˚ REG. Phase 19 Power Save Shifter 18 GND 17 GND 16 MOD out ...

Page 3

ABSOLUTE MAXIMUM RATINGS PARAMETER SYMBOL Supply Voltage V CC Power Save Voltage V PS Power Dissipation P D Operating Temperature T A Storage Temperature T stg Note 1: Mounted 1.6 mm double copper clad epoxy glass board ...

Page 4

STANDARD CHARACTERISTICS FOR REFERENCE ( 3.0 V, Unless Otherwise Specified PARAMETER SYMBOL UP CONVERTER BLOCK Up Con. Circuit Current I ccUpCon Up Con. Circuit Current at I cc(PS)UpCon Power-Save Mode Conversion Gain ...

Page 5

... This input impedance matched internally. Bypass of Lo1 input. This pin is grounded through internal capacitor. Open in case of single ended. Connect to the ground with minimum inductance. Track length should be kept as short as possible. Input for I signal. This input impedance is larger than Relations between amplitude ...

Page 6

... This pin is open collector output. IF input for Up-converter. This pin is high impedance input. Bypass of IF input. Grounded through external capacitor. Connect to the ground with minimum inductance. Track length should be kept as short as possible. Power save control pin can be controlled ON/SLEEP state with bias as follows; ...

Page 7

EXPLANATION OF INTERNAL FUNCTION BLOCK FUNCTION/OPERATION 90 PHASE Input signal from Lo1 is send to digital SHIFTER circuit of T-type flip-flop through frequency doubler. Output signal from T-type F/F is changed to same frequency as Lo1 input and that have ...

Page 8

TYPICAL CHARACTERISTICS ( Unless otherwise specified (single ended dBm, P Lo1in Lo2in SUPPLY VOLTAGE vs CIRCUIT CURRENT None 5 ...

Page 9

CONVERTER BLOCK] INPUT POWER vs OUTPUT POWER, IM +10 OIP = +0.2 dBm 3 0 –10 –20 –30 P RFout – –50 –60 f RFout f Lo2in P Lo2in – 240.0 MHz IFin1 f = ...

Page 10

CONVERTER BLOCK] SUPPLY VOLTAGE vs CONVERSION GAIN RF : 900 MHz Lo2 : 1 140 MHz, –20 dBm IF : 240 MHz, –20 dBm ...

Page 11

BLOCK] I/Q INPUT SIGNAL vs OUTPUT POWER, LOCAL LEAK, IMAGE REJECTION, I/Q 3RD ORDER INTERMODULATION DISTORTION 10 (PHS) 384 Kbps RNYQ = 0.5 (0000) All zero 0 P out –10 –20 –30 LOL (ISO ) LO –40 ImR –50 ...

Page 12

UP CONVERTER] TYPICAL SINE WAVE MODULATION OUTPUT SPECTRUM REF 0.0 dBm –ATT dB/ RBW 3 kHz VBW 10 kHz SWP 5.0 s CENTER 1.9000000 GHz <PHS> 384 Kbps, RNYQ = 0.5, MOD Pattern (0000), all ...

Page 13

RFout OUTPUT IMPEDANCE MARKER 3 1.9 GHz START 800.000 000 MHz Lo2in INPUT IMPEDANCE MARKER 2 1.66 GHz START 800.000 000 MHz 3; 162.25 –87.695 955. 900.000 000 MHz STOP 2 000.000 000 MHz 2; ...

Page 14

MODout OUTPUT IMPEDANCE MARKER 2 240 MHz START 50.000 000 MHz UP CON. in INPUT IMPEDANCE MARKER 2 240 MHz START 50.000 000 MHz 14 2; 49.244 13.58 9.0056 nH 240.000 000 MHz STOP 500.000 000 MHz ...

Page 15

Lo1in INPUT IMPEDANCE MARKER 2 240 MHz START 50.000 000 MHz TEST CIRCUIT (f = 1.9 GHz Lo1 Open S.G 1000 100 to 400 MHz Lo1 ...

Page 16

... case of this test board, the output signal from MOD. Lo2 is directly connected to the converter input port through 1000 pF, which is DC coupling. We recommend to insert a low pass filter between 3 pF MOD output and up converter RF input port to reject ...

Page 17

PACKAGE DIMENSIONS 20 PIN PLASTIC SSOP (225 mil) (UNIT: mm 6.7 0.3 1.8 MAX. 1.5 0.1 0.15 0.65 +0.10 0.10 M 0.22 –0.05 0.1 0.1 NOTE Each lead centerline is located within 0. its true position ...

Page 18

... Form a ground pattern as wide as possible to keep the minimum ground impedance (to prevent undesired oscillation). (3) Keep the track length of the ground pins as short as possible. (4) Connect a bypass capacitor (e.g. 1 000 pF) to the V ( offset voltage should be same as the offset voltage (to prevent changing the local leak level with power save control.) RECOMMENDED SOLDERING CONDITIONS This product should be soldered in the following recommended conditions ...

Page 19

Data Sheet P10099EJ4V0DS00 PC8104GR 19 ...

Page 20

... Specific: Aircraft, aerospace equipment, submersible repeaters, nuclear reactor control systems, life support systems or medical equipment for life support, etc. The quality grade of NEC devices is "Standard" unless otherwise specified in NEC's Data Sheets or Data Books. If customers intend to use NEC devices for applications other than those specified for Standard quality grade, they should contact an NEC sales representative in advance ...

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