UPC8204TK NEC, UPC8204TK Datasheet

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UPC8204TK

Manufacturer Part Number
UPC8204TK
Description
RF Amplifier RO 551-UPC8204TK-A
Manufacturer
NEC
Datasheet

Specifications of UPC8204TK

Mounting Style
SMD/SMT
Package / Case
S06
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Document No. PU10408EJ02V0DS (2nd edition)
Date Published October 2005 CP(K)
DESCRIPTION
lead-less minimold suitable for surface mount.
wider gain control range.
FEATURES
• Gain control range
• Maximum power gain
• Operating frequency
• Supply voltage
• High-density surface mounting
APPLICATION
• 0.8 to 2.5 GHz transmitter/receiver system (PHS, WLAN and so on)
ORDERING INFORMATION
Caution Observe precautions when handling because these devices are sensitive to electrostatic discharge.
µ
PC8204TK-E2
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.
Part Number
The
This IC is manufactured using our 30 GHz f
This IC is as same circuit current as conventional
µ
PC8204TK is a silicon monolithic integrated circuit designed as variable gain amplifier. The package is 6-pin
your nearby sales office.
Part number for sample order:
µ
PC8204TK-E2-A
Order Number
(1511 PKG) (Pb-Free)
6-pin lead-less minimold
VARIABLE GAIN AMPLIFIER
The mark
FOR TRANSMITTER AGC
: GCR = 40 dB TYP. @ f = 2.4 GHz
: G
: f
: V
: 6-pin lead-less minimold package
: GCR = 40 dB TYP. @ f = 1.9 GHz
: G
BIPOLAR ANALOG INTEGRATED CIRCUIT
in
µ
CC
PMAX
PMAX
PC8204TK
= 0.8 to 2.5 GHz
Package
max
= 2.7 to 3.3 V
= 14.5 dB TYP. @ f = 1.9 GHz
= 14.0 dB TYP. @ f = 2.4 GHz
UHS0 (Ultra High Speed Process) silicon bipolar process.
shows major revised points.
µ
PC8119T and
Note
Marking
6E
µ
PC8120T, but operates at higher frequency and
• Embossed tape 8 mm wide
• Pin 1, 6 face the perforation side of the tape
• Qty 5 kpcs/reel
©
µ
NEC Compound Semiconductor Devices, Ltd. 2003, 2005
PC8204TK
Supplying Form

Related parts for UPC8204TK

UPC8204TK Summary of contents

Page 1

... Embossed tape 8 mm wide Note (1511 PKG) (Pb-Free) • Pin 1, 6 face the perforation side of the tape • Qty 5 kpcs/reel µ PC8204TK The mark shows major revised points. µ PC8204TK Supplying Form © NEC Compound Semiconductor Devices, Ltd. 2003, 2005 ...

Page 2

... PIN CONNECTIONS (Top View VARIABLE GAIN AMPLIFIER PRODUCT LINE-UP Parameter 0.95 GHz output port matching frequency I G GCR NF CC PMAX (mA) Part No. (dB) (dB) (dB) µ − − PC8204TK 11.5 µ PC8119T 11.0 12.5 50 8.5 µ PC8120T 11.0 13.0 50 9.0 Remarks 1. Typical performance. Please refer to ELECTRICAL CHARACTERISTICS in detail reference. ...

Page 3

PIN EXPLANATION...............................................................................................................................................4 2. ABSOLUTE MAXIMUM RATINGS .......................................................................................................................5 3. RECOMMENDED OPERATING RANGE .............................................................................................................5 4. ELECTRICAL CHARACTERISTICS .....................................................................................................................5 5. TEST CIRCUITS .................................................................................................................................................... 1.9 GHz................................................................................................................................................... Test circuit 1.................................................................................................................................. Illustration of the test ...

Page 4

... This pin should be coupled with capacitor (example 100 pF) for DC cut. Input return loss can be improved with external impedance matching circuit. Ground pin. This pin should be connected to system ground with minimum inductance. Ground pa- ttern on the board should be formed as wide as possible. Ground pins must be connected together with wide ground pattern to decrease impedance difference ...

Page 5

ABSOLUTE MAXIMUM RATINGS Parameter Symbol Supply Voltage V CC Total Circuit Current I CC Gain Control Voltage V AGC Power Dissipation P D Operating Ambient Temperature T A Storage Temperature T stg Input Power P in Note Mounted on ...

Page 6

TEST CIRCUITS 1.9 GHz Test circuit 1 V AGC 100 Illustration of the test circuit 1 assembled on evaluation board C2 In 100 pF 5. ...

Page 7

GHz Test circuit 2 V AGC 100 Illustration of the test circuit 2 assembled on evaluation board C5 In 100 Component ...

Page 8

TYPICAL CHARACTERISTICS (T CIRCUIT CURRENT vs. SUPPLY VOLTAGE, GAIN CONTROL VOLTAGE +85˚ +25˚ Supply Voltage V (V), Gain Control ...

Page 9

Inductor loading with external bias tee at output port S –FREQUENCY 11 1: 45.092 Ω –13.975 Ω 1 900.000 000 MHz 5.9941 pF 2: 41.508 Ω –13.176 Ω 2.4 GHz START 100.000 000 MHz STOP ...

Page 10

Output port matching 1.9 GHz S –FREQUENCY 11 1; 35.969 Ω MARKER 1 1.9 GHz 1 START 100.000 000 MHz STOP 3 100.000 000 MHz S –FREQUENCY 21 S log MAG 10 dB/ REF 0 ...

Page 11

S –FREQUENCY 21 S log MAG 2 dB/ REF 14.611 AGC CC PMAX –20 dBm in MARKER 1.9 GHz 14 ...

Page 12

S –FREQUENCY 21 S log MAG 2 dB/ REF 3 3 AGC PMAX P = –20 dBm MARKER 1.9 GHz ...

Page 13

S –FREQUENCY 21 S log MAG 10 dB/ REF 14.513 3 3 –20 dBm AGC 40 in MARKER 1.9 GHz V = ...

Page 14

POWER GAIN vs. GAIN CONTROL VOLTAGE – 3.0 V – 2.7 V –15 CC –20 –25 – –20 dBm in – 1.9 GHz ...

Page 15

ADJACENT CHANNEL POWER LEAKAGE, OUTPUT POWER vs. INPUT POWER – –40˚C, A ∆ 3.3 VP 600 k –35 G TYP. adj PMAX f = 1.9 GHz –40 –45 ∆ 3.0 VP 600 k adj –50 3 ...

Page 16

OUTPUT POWER vs. INPUT POWER 3.3 V AGC 0 – 1.9 V AGC –20 – 1.5 V –40 AGC – 3 1.9 GHz –60 –30 –10 ...

Page 17

OUTPUT POWER vs. INPUT POWER 2.7 V AGC 0 – 1.4 V AGC –20 – AGC –40 – 2 –40˚ 1.9 GHz ...

Page 18

OUTPUT POWER (IM3) INPUT POWER 20 OIP (f1, f2) out –10 –20 –30 V – (IM3) – 900 MHz – 901 MHz, –70 IM ...

Page 19

OUTPUT POWER (IM3) INPUT POWER 3 1.6 V, AGC G = – (f1, f2) –10 out –20 –30 –40 – (IM3 ...

Page 20

ADJACENT CHANNEL POWER LEAKAGE, OUTPUT POWER vs. GAIN CONTROL VOLTAGE – 3 –20 dBm 1.9 GHz –60 –65 –70 –75 – Gain Control Voltage V AGC ADJACENT CHANNEL ...

Page 21

NOISE FIGURE vs. SUPPLY VOLTAGE AGC 1.9 GHz 8.5 8 7.5 7 6.5 6 2.6 2.8 3 3.2 Supply Voltage V (V) CC Remark The graphs indicate nominal characteristics. NOISE FIGURE vs. GAIN ...

Page 22

Output port matching 2.4 GHz S –FREQUENCY 11 1: 35.053 Ω MARKER 1 2.4 GHz 1 START 100.000 000 MHz STOP 3 100.000 000 MHz S –FREQUENCY 21 S log MAG 10 dB/ REF 0 ...

Page 23

S –FREQUENCY 21 S log MAG 2 dB/ REF 3 3 AGC PMAX –20 dBm MARKER 1 f ...

Page 24

S –FREQUENCY 21 S log MAG 2 dB/ REF AGC PMAX P = –20 dBm 18 in MARKER 2.4 GHz 3.3 ...

Page 25

S –FREQUENCY 21 S log MAG 10 dB/ REF 3 –20 dBm AGC MARKER 2.4 GHz 2 1.4 ...

Page 26

POWER GAIN vs. GAIN CONTROL VOLTAGE 2 3 –5 – 3 –15 –20 –25 – –20 dBm, in – ...

Page 27

OUTPUT POWER vs. INPUT POWER 3 AGC – 1.8 V AGC – 1.6 V –30 AGC V AGC –40 V AGC V CC – 2.4 GHz – ...

Page 28

OUTPUT POWER vs. INPUT POWER 2 AGC – 1.4 V AGC – 1.2 V AGC –30 V AGC V = AGC –40 V – 2.4 GHz ...

Page 29

OUTPUT POWER (IM3) INPUT POWER 20 OIP (f1, f2) out –10 –20 – –40 V AGC –50 (G PMAX 400 MHz O (IM3) – 401 ...

Page 30

OUTPUT POWER (IM3) INPUT POWER 20 10 OIP (f1, f2) –10 out –20 –30 –40 – 400 MHz – 401 MHz 3 –70 V ...

Page 31

PACKAGE DIMENSIONS 6-PIN LEAD-LESS MINIMOLD (1511 PKG) (UNIT: mm) (Top View) (Bottom View) 1.1±0.1 0.2±0.1 0.9±0.1 1.3±0.05 Data Sheet PU10408EJ02V0DS µ PC8204TK 31 ...

Page 32

... Observe precautions for handling because of electro-static sensitive devices. (2) Form a ground pattern as wide as possible to minimize ground impedance (to prevent undesired oscillation). All the ground pins must be connected together with wide ground pattern to decrease impedance difference. (3) The bypass capacitor should be attached to the V (4) Impedance matching circuit must be each externally attached to input and output ports. ...

Page 33

... NEC does not assume any liability for infringement of patents, copyrights or other intellectual property rights of third parties by or arising from the use of NEC semiconductor products listed in this document or any other liability arising from the use of such products. No license, express, implied or otherwise, is granted under any patents, copyrights or other intellectual property rights of NEC or others. • ...

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: +81-44-435-1573 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 TEL: +852-3107-7303 TEL: +886-2-8712-0478 ...

Page 35

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) ...

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