2sc5193-t2 ETC-unknow, 2sc5193-t2 Datasheet

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2sc5193-t2

Manufacturer Part Number
2sc5193-t2
Description
Microwave Noise Amplifier Silicon Epitaxial Transistor Compact Mini Mold
Manufacturer
ETC-unknow
Datasheet
Document No. P10396EJ2V1DS00 (1st edition)
Date Published March 1997 N
Printed in Japan
FEATURES
• Low Voltage Operation, Low Phase Distortion
• Low Noise
• Large Absolute Maximum Collector Current
• Compact Mini Mold Package
ORDERING INFORMATION
ABSOLUTE MAXIMUM RATINGS (T
This device uses radio frequency technology. Take due precautions to protect it from excessive input levels such as static electricity.
Collector to Base Voltage
Collector to Emitter Voltage
Emitter to Base Voltage
Collector Current
Total Power Dissipation
Junction Temperature
Storage Temperature
2SC5193-T1
2SC5193-T2
NF = 1.5 dB TYP. @ V
NF = 1.7 dB TYP. @ V
I
EIAJ: SC-70
Remark If you require an evaluation sample, please contact an NEC
NUMBER
C
PART
= 100 mA
PARAMETER
Sales Representative. (Unit sample quantity is 50 pcs.)
3 Kpcs/Reel
3 Kpcs/Reel
QUANTITY
NPN SILICON EPITAXIAL TRANSISTOR
CE
CE
MICROWAVE LOW NOISE AMPLIFIER
= 3 V, I
= 1 V, I
Embossed tape 8 mm wide.
Pin 3 (collector) face to perforation side of the tape.
Embossed tape 8 mm wide.
Pin 1 (Emitter), Pin 2 (Base) face to perforation side
of the tape.
SYMBOL
C
C
V
V
V
= 7 mA, f = 2 GHz
= 3 mA, f = 2 GHz
T
P
CBO
CEO
COMPACT MINI MOLD
EBO
I
T
stg
C
T
j
DATA SHEET
DATA SHEET
A
PACKING STYLE
= 25

 
65 to +150
C)
RATING
100
150
150
9
6
2
UNIT
mW
mA


V
V
V
C
C
SILICON TRANSISTOR
PACKAGE DRAWING
2SC5193
2
1
PIN CONNECTIONS
1.
2.
3.
Emitter
Base
Collector
1.25±0.1
2.1±0.1
©
(Units: mm)
Marking
3
1994

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2sc5193-t2 Summary of contents

Page 1

... QUANTITY NUMBER 2SC5193-T1 3 Kpcs/Reel Embossed tape 8 mm wide. Pin 3 (collector) face to perforation side of the tape. 2SC5193-T2 3 Kpcs/Reel Embossed tape 8 mm wide. Pin 1 (Emitter), Pin 2 (Base) face to perforation side of the tape. Remark If you require an evaluation sample, please contact an NEC Sales Representative. (Unit sample quantity is 50 pcs.) ...

Page 2

... GHz mA 2.0 GHz mA 2.0 GHz mA 2.0 GHz CE C Note 1.0 MHz Duty cycle 2 %, Pulsed 2SC5193 MIN. TYP. MAX. UNIT 100 nA 100 nA 80 160 2.5 3.5 dB 6.5 dB 1.7 2 4.5 GHz 9 GHz 0.75 0.85 ...

Page 3

... Base to Emitter Voltage V 200 100 = 0.1 0.2 0.5 ( GHz 2SC5193 0 CURRENT GAIN vs. COLLECTOR CURRENT 100 Collector Current I (mA) C INSERTION GAIN vs. COLLECTOR CURRENT Collector Current I (mA ...

Page 4

... POWER GAIN vs. FREQUENCY 30 MAG 21e 10 0 0.1 0.5 1 Frequency f (GHz) 4 FEED-BACK CAPACITANCE vs. COLECTOR TO BASE VOLTAGE 1.0 0.5 0 Collector to Base Voltage V NOISE FIGURE vs. FREQUENCY 1.5 1 0.5 5 0.1 2SC5193 MHz ( 0.5 1.0 2 Frequency f (GHz) ...

Page 5

... S22 MAG ANG  74.0 0.979 8.3  64.5 0.927 18.9  56.5 0.855 28.2  49.8 0.803 33.7  42.1 0.746 39.1  37.7 0.691 41.0  33.0 0.639 45.4  30.5 0.573 46.2  29.0 0.538 49.5  27.8 ...

Page 6

... S22 ANG MAG ANG  67.5 0.886 23.5  54.7 0.708 42.2  51.0 0.562 55.7  49.2 0.456 61.2  48.6 0.374 63.8  49.0 0.329 64.4  48.6 0.289 69.8  47.4 0.235 73.5  50.2 0.202 75 ...

Page 7

... S22 ANG MAG ANG  59.8 0.808 31.3  53.3 0.588 53.4  53.3 0.433 67.7  54.1 0.339 73.9  54.9 0.263 76.2  33.9 0.229 76.4  55.4 0.205 84.2  55.7 0.162 93.2  56.3 0.131 97 ...

Page 8

... S22 ANG MAG ANG  54.9 0.965 10.7  59.2 0.964 24.0  55.7 0.760 34.3  51.5 0.671 38.9  48.5 0.599 41.3  47.9 0.555 41.1  46.5 0.509 44.9  46.3 0.441 44.6  47.4 0.409 43 ...

Page 9

... S22 ANG MAG ANG  57.0 0.922 18.2  56.7 0.752 33.9  55.4 0.611 44.6  55.4 0.510 47.9  55.3 0.435 48.1  56.2 0.400 46.5  55.8 0.364 50.1  56.2 0.305 50.1  57.1 0.275 49 ...

Page 10

... [MEMO] 10 2SC5193 ...

Page 11

... [MEMO] 2SC5193 11 ...

Page 12

... 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. Anti-radioactive design is not implemented in this product. 2SC5193 M4 96. 5 ...

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