Untitled
Abstract: No abstract text available
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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TL441AM
SLFS038
30-dB
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TL592 application
Abstract: Logarithmic Amplifier detector TL592 equivalent log sheet air conditioning "logarithmic amplifier" Logarithmic Amplifier detector rf power TL441 TL441AM TL592 TLC271
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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TL441AM
SLFS038
30-dB
30-dB
TL592 application
Logarithmic Amplifier detector
TL592 equivalent
log sheet air conditioning
"logarithmic amplifier"
Logarithmic Amplifier detector rf power
TL441
TL441AM
TL592
TLC271
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TL441AMJB
Abstract: No abstract text available
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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TL441AM
SLFS038
30-dB
TL441AMJB
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Analog Devices Logarithmic Amplifiers
Abstract: TL441AMJB TL592 application TL592
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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Original
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PDF
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TL441AM
SLFS038
30-dB
slfs038
TL441AMJ
TL441AMJB
5962-9176301QEA
Analog Devices Logarithmic Amplifiers
TL592 application
TL592
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Logarithmic Amplifier detector
Abstract: TL592 application TL592 equivalent log sheet air conditioning 5962-9176301QEA TL441 TL441AM TL441AMJ TL441AMJB TL592
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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Original
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PDF
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TL441AM
SLFS038
30-dB
30-dB
Logarithmic Amplifier detector
TL592 application
TL592 equivalent
log sheet air conditioning
5962-9176301QEA
TL441
TL441AM
TL441AMJ
TL441AMJB
TL592
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TL592
Abstract: TL441 TL441AM TLC271
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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Original
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PDF
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TL441AM
SLFS038
30-dB
30-dB
TL592
TL441
TL441AM
TLC271
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1976 dvm
Abstract: pin diagram of IC TLC271 TL592 TL592 application TL592 equivalent
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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Original
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PDF
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TL441AM
SLFS038
30-dB
1976 dvm
pin diagram of IC TLC271
TL592
TL592 application
TL592 equivalent
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Untitled
Abstract: No abstract text available
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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Original
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PDF
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TL441AM
SLFS038
30-dB
30-dB
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Untitled
Abstract: No abstract text available
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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Original
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PDF
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TL441AM
SLFS038
30-dB
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Untitled
Abstract: No abstract text available
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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Original
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PDF
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TL441AM
SLFS038
30-dB
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5962-9176301QEA
Abstract: TL441 TL441AM TL441AMJ TL441AMJB TL592 TLC271
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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Original
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PDF
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TL441AM
SLFS038
30-dB
30-dB
5962-9176301QEA
TL441
TL441AM
TL441AMJ
TL441AMJB
TL592
TLC271
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TL592
Abstract: TL592 application 5962-9176301QEA TL441 TL441AM TL441AMJ TL441AMJB TLC271
Text: TL441AM LOGARITHMIC AMPLIFIER SLFS038 – JUNE 1976 – REVISED FEBRUARY 1989 J PACKAGE TOP VIEW Excellent Dynamic Range Wide Bandwidth Built-In Temperature Compensation Log Linearity (30 dB Sections) . . . 1 dB Typ Wide Input Voltage Range CA2 VCC – CA2′
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Original
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PDF
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TL441AM
SLFS038
30-dB
30-dB
TL592
TL592 application
5962-9176301QEA
TL441
TL441AM
TL441AMJ
TL441AMJB
TLC271
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AN-156
Abstract: No abstract text available
Text: National Semiconductor Application Note 156 February 1976 The specification or selection of analog-to-digital A/D or digital-to-analog (D/A) converters can be a chancey thing unless the specifications are understood by the person making the selection. Of course, you know you want an accurate
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12-bit
12-bit
AN-156
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AN-156
Abstract: C1995
Text: National Semiconductor Application Note 156 February 1976 The specification or selection of analog-to-digital A D or digital-to-analog (D A) converters can be a chancey thing unless the specifications are understood by the person making the selection Of course you know you want an accurate converter of specific resolution but how do you ensure that you get what you want For example 12 switches
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12-bit
12-bit
AN-156
C1995
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Tektronix Type 1A7A
Abstract: 74C221 LSK389 HP-419A Frequency Generator 0.1Hz 10MHz TOSHIBA 2SK369 jfet discrete differential transistor jim Williams linear jim williams PR300
Text: Application Note 124 July 2009 775 Nanovolt Noise Measurement for A Low Noise Voltage Reference Quantifying Silence Jim Williams Introduction Frequently, voltage reference stability and noise define measurement limits in instrumentation systems. In particular, reference noise often sets stable resolution limits.
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100Hz
an124f
AN124-11
500nV/DIV
AN124
AN124-12
Tektronix Type 1A7A
74C221
LSK389
HP-419A
Frequency Generator 0.1Hz 10MHz
TOSHIBA 2SK369
jfet discrete differential transistor
jim Williams
linear jim williams
PR300
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AC25007
Abstract: AC25012 c4fm AC25044 Trunking APCO-25 IFR 2975 AC25011 AC25013 AC25036 ppt on fm radio
Text: Wireless Radio Test Sets IFR 2975 Project 25 Radio Test Set A test solution designed from the ground up to handle today’s advanced digital radio applications Expanded Service Monitor Functions • 2.7 GHz Frequency Range with 2.7 GHz Spectrum Analyzer and Tracking
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PRINCIPLE OF TEMPERATURE SENSOR LM35
Abstract: applications for the CD4060 IC CD4060 timer IC 16 PIN COS IC CD4060 ASTABLE MULTIVIBRATOR CD4060 Thermometer LM35 equivalent LM3914* lm35 NPN Transistor DRIVER for lm3914 lm35 sensor interfacing with adc cd4060 application note
Text: National Semiconductor Application Note 460 October 1986 Introduction Another approach has been developed where the difference in the base-emitter voltage of two transistors operated at different current densities is used as a measure of temperature. It can be shown that when two transistors, Q1 and Q2,
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AN-460
PRINCIPLE OF TEMPERATURE SENSOR LM35
applications for the CD4060 IC
CD4060 timer IC
16 PIN COS IC CD4060
ASTABLE MULTIVIBRATOR CD4060
Thermometer LM35 equivalent
LM3914* lm35
NPN Transistor DRIVER for lm3914
lm35 sensor interfacing with adc
cd4060 application note
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PRINCIPLE OF TEMPERATURE SENSOR LM35
Abstract: ic1 cd4060 pin diagram NPN Transistor DRIVER for lm3914 ASTABLE MULTIVIBRATOR CD4060 16 PIN COS IC CD4060 sensor LM35 driver applications for the CD4060 IC Thermometer LM35 equivalent CD4060 timer IC lm35 sensor interfacing with adc
Text: INTRODUCTION Most commonly-used electrical temperature sensors are difficult to apply For example thermocouples have low output levels and require cold junction compensation Thermistors are nonlinear In addition the outputs of these sensors are not linearly proportional to any temperature scale Early
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LM3911
LM134
LM135
PRINCIPLE OF TEMPERATURE SENSOR LM35
ic1 cd4060 pin diagram
NPN Transistor DRIVER for lm3914
ASTABLE MULTIVIBRATOR CD4060
16 PIN COS IC CD4060
sensor LM35 driver
applications for the CD4060 IC
Thermometer LM35 equivalent
CD4060 timer IC
lm35 sensor interfacing with adc
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FLUKE 8800A manual
Abstract: dc voltmeter circuit diagrams 4 way out HP3403C analog dc voltmeter circuit diagrams ac voltmeter circuit diagrams FLUKE 8800a LT176x HP3455 HP3468B 1390B
Text: Application Note 83 March 2000 Performance Verification of Low Noise, Low Dropout Regulators Silence of the Amps Jim Williams and Todd Owen, Linear Technology Corporation Introduction In an increasing trend, telecommunications, networking, audio and instrumentation require low noise power supplies. In particular, there is interest in low noise, low
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100kHz
AN83-19
AN83-20
FLUKE 8800A manual
dc voltmeter circuit diagrams 4 way out
HP3403C
analog dc voltmeter circuit diagrams
ac voltmeter circuit diagrams
FLUKE 8800a
LT176x
HP3455
HP3468B
1390B
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balco 500 ohm resistance vs temperature
Abstract: rosemount 1144 yellow springs thermistors
Text: THE THERMISTOR 12 .390 .344 .293 8 Equivalent Linearities Type S Thermocouple vs. Platinum RTD 4 200 400 600 Like the RTD, the thermistor is also a temperature sensitive resistor. While the thermocouple is the most versatile temperature transducer and the PRTD is the
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D2023 transistor
Abstract: Transistor D2023
Text: ANALOG ► DEVICES 3 Digit A/D Converter AD2020 FEATU RES Low Cost: $9.00 100's l2 L LS I Design Multiplexed Character Serial BCD Output Support Components Required — 10 (including displays) Single +5V Power Supply Required Balanced Differential Input
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AD2020
AD2023
2023/B
D2023
AD2026,
D2023 transistor
Transistor D2023
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Katalog tesla tranzistor
Abstract: KF520 KF173 Tesla katalog KF630D KF521 ku611 KD502 KF517A kf517
Text: kremikovych tranzistoru TESLA ROZNOV K O N S T R U K C N Í K A T A L O G P O LO VO D I C O V Ÿ C H S O U C A S T E K l E I U SVAZEK C E x p o r t EX PO R T IM P O R T KOVO PRA H A C Z E C H O SL O V A K IA : OS 8 Jankovcova 2 170 88 P R A H A 7 CZECHOSLOVAKIA
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KFY18,
KFY34,
KFY46
KSY63
KSY82
Katalog tesla tranzistor
KF520
KF173
Tesla katalog
KF630D
KF521
ku611
KD502
KF517A
kf517
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71C03
Abstract: A71C03
Text: IC L8052/IC L71C 03 IC L8068/IC L71C 03 H A R R IS S E M I C O N D U C T O R Precision 4% Digit A/D Converter GENERAL DESCRIPTION FEATURES The ICL8052 or ICL8068/ICL71C03 chip pairs with their multiplexed BCD output and digit drivers are ideally suited for the visual display DVM/DPM market. The outstanding
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PDF
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L8052/IC
L8068/IC
ICL8052
ICL8068/ICL71C03
71C03
A71C03
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ICL7103
Abstract: 7555 timer CMOS 7555 ICL71C03ACPI 7103A ICL71C03ACJI 71C03 74c157 NE 7555 ICL8068ACDD
Text: 0IMÏÏÜM5DH ICL8052/ICL71C03 Pair and ICL8068/ICL71C03 Pair Precision Digit A/D Converter 4V a FEATURES GENERAL DESCRIPTION • Typically less than 2/jV p-p noise 200.00mv full scale, ICL8068 • Accuracy guaranteed to ±1 count over entire ±20,000 counts (2.0000 volts full scale)
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ICL8052/ICL71C03
ICL8068/ICL71C03
ICL8068)
40ppm
052A/7103A
71C03/7103A
IM6100
71C03/71C03A
8052/71C03
8068/71C03
ICL7103
7555 timer
CMOS 7555
ICL71C03ACPI
7103A
ICL71C03ACJI
71C03
74c157
NE 7555
ICL8068ACDD
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