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ISL6293-2CRZ Intersil Corporation Li-ion/Li Polymer Battery Charger Accepting Two Power Sources; DFN10; Temp Range: 0° to 70° visit Intersil Buy
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ISL6299AIRZ Intersil Corporation Li-ion/Li-Polymer Battery Charger Accepting Two Power Sources; DFN10; Temp Range: -40° to 85°C visit Intersil Buy

"Noise Source"

Catalog Datasheet MFG & Type PDF Document Tags

5952-8255

Abstract: N8975 Agilent N2002A Noise Source Test Set 10 MHz to 26.5 GHz Technical Overview Noise Source , . A significant contributor to this is the uncertainty surrounding the noise source used when measuring noise figure on your device. Accurate noise source calibration is critical to minimizing noise source uncertainty, and thus a critical factor for obtaining quality noise figure measurements. The Agilent N2002A noise source test set is a stand-alone instrument that operates as an integral part of a
Agilent Technologies
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N8975A 5952-8255 N8975 5988-0081EN N400xA-001 11713A 5988-7228EN

MT-052

Abstract: MT-050 Communications Applications AVAILABLE NOISE POWER The first concept is that of available power from a source , below shows a resistor of value R as the noise source. The thermal noise of this source is (4kTBR). The , equal to R. Under these conditions, the maximum available noise power from the source reduces to kTB , 2: Available Noise Power from a Source AVAILABLE POWER GAIN The next important concept is that of , noise power due to the source only. For a resistive source, the available noise power from the source
Analog Devices
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MT-052 MT-048 MT-050 RESISTOR NETWORK matched MT-047 MT-049 MT-051

guidance radar

Abstract: noise diode signal through the RF front end. The spectral SPECTRUM ANALYZER NOISE SOURCE BANDSTOP FILTER , attributes of the noise source required for each. Perhaps the most common application using noise is to , alternate between antenna and noise source; other times a directional coupler is used. The noise signal is , architects will use a "drill down" design approach where the noise source is switched or coupled in at , ATTENUATOR BIAS COMMAND NOISE PULSE OUT PULSE DRIVER/ TIMER SYNC PULSE NOISE SOURCE WITH
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guidance radar noise diode Hughes aircraft rf switch radar system with circuit diagram radar sensor specification
Abstract: 50 Ohm BNC Medium Power Noise Source Power Noise Source With A Noise Output ENR Of 15.5 dB From 1 GHz to 2 GHz TECHNICAL DATA SHEET PE8500 50 Ohm BNC Medium Power Noise Source Power Noise Source With A Noise Output ENR Of 15.5 dB From 1 GHz to 2 GHz Configuration Design DC Input Connector DC Input Impedance RF Output Connector Medium Power Noise Source BNC Female 50 Ohms SMA , , inventory and certifications: 50 Ohm BNC Medium Power Noise Source Power Noise Source With A Noise Output Pasternack Enterprises
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AN-0982

Abstract: Noise exhibits a certain amount of noise. For this reason, a clock source with a low slew rate could , spectrum analyzer. COMMON CLOCK SOURCE PHASE NOISE CANCELLATION IN A RESIDUAL PHASE NOISE MEASUREMENT , clock source should impact the DUTs additive phase noise measured using a residual phase noise setup , common clock source noise in the residual phase noise setup. The clock source phase noise is not , carrier, Clock Source 2 exhibits -92 dBc/Hz at 1 kHz offset, whereas the measured DUT phase noise
Analog Devices
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AN-0982 Noise how to identify two phase AN07838-0-12/08

PLM250S30

Abstract: TE04EA-1 differential mode noise s Differential mode noise Noise source N s Common mode noise Stray capacitance Load Noise source N Stray capacitance s Suppression method of common mode noise (1) Signal source Suppresses noise. Noise source N Stray capacitance Reference ground surface Stray capacitance Load Noise source N Load Signal source Load Signal source Signal source 26 Reference ground surface s Suppression method of common mode noise (2
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TE04EA-1 PLM250S30 PLM250H10 PLM250S20 9-8320 plm250*s30

SMN3018-X1D

Abstract: SMN3018 Return to Noise Source Index SMN3018 SURFACE MOUNT NOISE SOURCE 200 MHZ TO 6.0 GHZ D ESCRIPTION The world's smallest packaged noise source SMN3018 DATA ENR The SMN3018 noise module is the world's smallest packaged noise source , SMN3018 noise source being surface mount, having a small footprint and available on tape and reel make , benefits of an onboard noise source. S PECIFICATIONS · Frequency: · ENR: Using noise for built-in
Micronetics
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SMN3018-X1D

power and signal separation due to low inductive coupling

Abstract: magnetic pickup amplifier source is relatively high. Balanced systems are desirable from a noise immunity point of view , signals in the interconnecting cable itself can be a source of noise in the amplified signal. In order to , interference or noise-coupling problem is shown in Figure 13. Noise Source (Noise Circuit) - AC power , coupling. ~ Vn Noise source Electric field Vs ~ RL Signal source a. Physical , Noise Source and Signal Circuit, Modeled by the Capacitor Cef in the Equivalent Circuit 15 RL
National Instruments
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power and signal separation due to low inductive coupling magnetic pickup amplifier

"Noise Source"

Abstract: signal path designer Micronetics microwave noise source is a small chip and wire hermetic noise module. This is embedded in the , of the noise source is dependant on the expected noise figure of the DUT. If the expected noise figure is high, the measured difference of the off and on noise source states will be too hard to , the expected noise figure is very low than using a noise source with too high a level of ENR will , that any path loss between the noise source and DUT must be accounted for. If a 10 dB noise source
Micronetics
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signal path designer noise source diode CALIBRATION CERTIFICATE F NST04 NST18 NST26 NST04L NST18L NST26L
Abstract: measurements with the YFactor method: a noise receiver and a noise source. Probably the lowest cost option is , instrument and must be included in the calibration loop. Importance of Noise Source Selection Noise sources , advantage of the low ENR source is the noise power difference between the ON and OFF states. For high gain , output attenuation even with a low ENR noise source. If attenuation is required at the output of the , Use of a low ENR noise source should only be avoided when measuring devices with very high noise High Frequency Electronics
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Low Noise Op Amps equivalent

Abstract: LT1001 the LT1028 is operated with source resistors in excess of 50ft, resistor noise will dominate. If the application requires large source resistors, the LT1028's relatively high current noise will limit performance , Req)2 where, resistor noise = 0.13VfyTq in nV/VHz and Req=equivalent source resistance = R2 + R1//R3 The table below lists which op amp gives minimum total noise for a specified equivalent source resistance. A two step prcoedure should be followed to optimize noise: (1) Reduce equivalent source
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OCR Scan
LT1001 LT1012 Low Noise Op Amps equivalent lt1007 LT1013 equivalent LT1028 equivalent LT1007137 LT1007/37 LT1Q01 LT1055/56/22

parameters needed to specify noise performance of microwave amplifier

Abstract: APP3169 representation for noise analysis places the noise source at the input of the network (Figure 3). Page 2 of 12 , admittance Ys. It is assumed that noise from the source is uncorrelated with noise from the two-port network , active-low Isc²) at the input port of the noise-free amplifier; and noise power due to the source alone is proportional to the mean square of the source current (active-low Is²). Hence, the noise figure F is given by , , it follows that the mean square of Isc is given by equation 20: Because noise from the source and
Maxim Integrated Products
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MAX2655 MAX2656 APP3169 parameters needed to specify noise performance of microwave amplifier AN3169
Abstract: and cause noise figure measurement errors. The ENR of this noise source is nominally 6 dB from 10 , device. The N4000A noise source has a choice of connectors, with an APC 3.5 (m) as standard and type N , noise source is ideal for general purpose use with a low reflection coefficient and a nominal ENR of 15 , N (m) as an option. N4002A for measurements up to 26.5 GHz The N4002A noise source is , accurately and reliably. This noise source comes with an APC 3.5 (m) connector. 3 Accurate noise power Agilent Technologies
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N4001A BP-09-27-13

LT1334

Abstract: LT1220 amp for low source impedance applications. The amount of noise an op amp circuit will produce is , in Figure 1. Figures 2 through 4 plot the spot noise of selected op amps vs the equivalent source , source resistance, the voltage noise dominates. As the resistance increases, the resistor noise becomes most important. When the source resistance is greater than 100k, the current noise dominates because , . 1kHz Spot Noise vs Equivalent Source Resistance LT1124 LT1028 LT1128 100 1000 LT1334 LT1357
Linear Technology
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LT1037 LT1169 LT1220 lt1115 LT133 George Erdi LT1122 LTC 1028 VTR1 DN140 1000H LT1115 LT1220/21/22/24/25/26 LT1124/25/26/27

decibel meter

Abstract: NS346AK are being tested with a NF setup in which the noise source itself has an uncertainty of 50 m , the noise source contributes to NF uncertainty and ways in which this can be minimized are best , Figure 1. S11 Data for Nominal 15-dB Noise Source (4) where: TH = equivalent noise temperature T 0 , N2 = the measured power output with the noise source on N1 = the measured power output with the noise source off Most NF test stands use a noise source calibrated to absolute ENR amplitudes at
Micronetics
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decibel meter NS346AK 346A Nelson Publishing NS-346C

microwave isolator

Abstract: significant path loss between the noise source and the device. This family of high output fullband noise , the noise source and the receiver. For example, a 30dB coupler can be used to feed the test noise , significant path loss between the noise source and the point at which the noise signal is used. For an example , test uses the noise source to supply a known excess noise ratio (ENR) to a device under test for a , sensitivity. 3. Frequency Response: The noise source being broadband can be used as a replacement of a swept
Micronetics
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microwave isolator RFN55L RFN55S RFN55C RFN55C1 RFN55C2 RFN55X

5952-8255

Abstract: N4001A measurement errors. The ENR of this noise source is nominally 6 dB from 10 MHz to 18 GHz. DUTs with noise figures up to 20 dB can be accurately and reliably measured with this device. The N4000A noise source has , measurements from 10 MHz to 18 GHz The N4001A noise source is ideal for general purpose use with a low , source was designed to measure DUT noise figures reliably and accurately up to 30 dB from 10 MHz up to 26.5 GHz accurately and reliably. This noise source comes with an APC 3.5 connector as standard. 3
Agilent Technologies
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11730A Agilent 8710-1764 11730A power sensor cable 11730B R-50C-001

lt1334

Abstract: LT1028 amp for low source impedance applications. The amount of noise an op amp circuit will produce is , in Figure 1. Figures 2 through 4 plot the spot noise of selected op amps vs the equivalent source , source resistance, the voltage noise dominates. As the resistance increases, the resistor noise becomes most important. When the source resistance is greater than 100k, the current noise dominates because , 1000 Figure 3. 1kHz Spot Noise vs Equivalent Source Resistance LT1124 LT1028 LT1128 100
Linear Technology
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LT1055 LT1037 equivalent LT1354 LT1363 LT1354/57/60/63 LT1001/02 LT1113 LT1055/56/57/58 LT1351 LT1022

LL1608-FH5N6K

Abstract: ATF-34143 High Intercept Low Noise Amplifier for the 1930 - 1990 MHz PCS Band Using the Avago ATF-34143 Low Noise PHEMT (4 V, 40 mA) Application Note AN 1191 Introduction Avago Technologies' ATF-34143 is a low noise PHEMT designed for use in low cost commercial applications in the VHF through 6 GHz , frequency range by providing low noise figure coincident with high intercept point. The wide gate width , ATF-34143 described in a low noise amplifier optimized for the 1930 to 1990 MHz band for PCS
Avago Technologies
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ATF34143 LL1608-FH5N6K schematic diagram DC amplifier ATF35143 ATF-35143 LL1608-F2N7S SC-70 5968-9411E

LT1028

Abstract: LT1001 , resistor noise will dominate. If the application requires large source resistors, the LT1028's relatively , noise for a specified equivalent source resistance. A two step prcoedure should be followed to optimize noise: (1) Reduce equivalent source resistance to a minimum allowed by the specific application. (2 , plots Is that with the proper selection of op amps total noise is dominated by equivalent source , with an application call (408) 432-1900, Ext. 361. 10Hz Total Noise vs Equivalent Source Resistance
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LT105 LT1012 equivalent LT1007 equivalent LT1006 equivalent OP AMP LT1Q12 LT1057/58 LT1006/13/14
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