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    DECIBEL DUMMY LOAD Search Results

    DECIBEL DUMMY LOAD Result Highlights (2)

    Part ECAD Model Manufacturer Description Download Buy
    ADP1870ARMZ-1.0-R7 Analog Devices 1.0MHz, Light Load Eff Enabled Visit Analog Devices Buy
    ADP1873ARMZ-0.3-R7 Analog Devices 300kHz, Light Load Eff Enabled Visit Analog Devices Buy

    DECIBEL DUMMY LOAD Datasheets Context Search

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    Untitled

    Abstract: No abstract text available
    Text: RF Coaxial Connectors Glossary of Terms What do you mean, ‘‘Impedance’’? In every job speciality there are certain words and phrases used by the ‘‘insiders’’ which after a time become almost a language unique to that speciality. Radio frequency RF and microwave


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    Untitled

    Abstract: No abstract text available
    Text: Cannon 50 Ohm Connectors Attenuation - Decrease in power due to resistance or mismatch in transmission line. Back Mounted - When applied to a coaxial connector it is that connector mounted from the rear of a panel with the fixing nut on the outside. Bandwidth - Distance between two frequencies over


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    L4938

    Abstract: L4938E function generator FG2
    Text: APPLICATION NOTE A NEW GENERATION OF VERY LOW DROP VOLTAGE REGULATORS by Riccardo Erckert Monolithic voltage regulators have become a standard device of modern electronics. Most of today’s PC-board designers tend to use them just like transistors or resistors. In reality these versatile


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    L4938

    Abstract: L4938E st L4938
    Text: APPLICATION NOTE A NEW GENERATION OF VERY LOW DROP VOLTAGE REGULATORS by Riccardo Erckert Monolithic voltage regulators have become a standard device of modern electronics. Most of today’s PC-board designers tend to use them just like transistors or resistors. In reality these versatile


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    12v 300W AUDIO AMPLIFIER CIRCUIT DIAGRAM

    Abstract: 600w power amplifier PCB layout 150w audio amplifier circuit diagram class free d 600w audio amplifier circuit diagram 12v 300w audio amplifier circuit 300w power amplifier circuit diagram 100v 300W AUDIO AMPLIFIER low cost CIRCUIT DIAGRAM 600w power amplifier circuit diagram 300w audio amplifier diagram 300w audio amplifier circuit diagram
    Text: CLASS D AUDIO AMPLIFIER EVALUATION BOARD MODULE SDV1042-300: 300W RMS, CLASS D, AUDIO AMPLIFIER EVALUATION BOARD FEATURES • • • • • • • • • • • • • • • HIGH POWER: up to 300W RMS1 HIGH EFFICIENCY >90% HIGH SWITCHING FREQUENCY: 330KHz.


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    PDF SDV1042-300: 330KHz. 12v 300W AUDIO AMPLIFIER CIRCUIT DIAGRAM 600w power amplifier PCB layout 150w audio amplifier circuit diagram class free d 600w audio amplifier circuit diagram 12v 300w audio amplifier circuit 300w power amplifier circuit diagram 100v 300W AUDIO AMPLIFIER low cost CIRCUIT DIAGRAM 600w power amplifier circuit diagram 300w audio amplifier diagram 300w audio amplifier circuit diagram

    L4938

    Abstract: L4938E darlington cascode second stage
    Text: APPLICATION NOTE A NEW GENERATION OF VERY LOW DROP VOLTAGE REGULATORS by Riccardo Erckert Monolithic voltage regulators have become a standard device of modern electronics. Most of today’s PC-board designers tend to use them just like transistors or resistors. In reality these versatile


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    Application AD8330

    Abstract: AD8330 HD32 RQ-16 AD83301
    Text: Low Cost DC to 150 MHz Variable Gain Amplifier AD8330 Fully differential signal path and also used with single-sided signals Inputs from 0.3 mV to 1 V rms, rail-to-rail outputs Differential RIN = 1 kΩ; ROUT each output 75 Ω Automatic offset compensation (optional)


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    PDF AD8330 16-Lead Application AD8330 AD8330 HD32 RQ-16 AD83301

    Applications AD8330

    Abstract: AD8330 AD8330ACP AD8330ACP-REEL AD8330ACP-REEL7 AD8330ARQ HD22 HD32
    Text: Low Cost DC-150 MHz Variable Gain Amplifier AD8330* FEATURES Fully Differential Signal Path May also be Used with Single-Sided Signals Inputs from 0.3 mV to 1 V rms, Rail-Rail Outputs Differential RIN = 1 k⍀; R OUT Each Output 75 ⍀ Automatic Offset Compensation (Optional)


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    PDF DC-150 AD8330* basicP-16) MO-220-VEED-2 AD8330 4/03--Data C03217 Applications AD8330 AD8330 AD8330ACP AD8330ACP-REEL AD8330ACP-REEL7 AD8330ARQ HD22 HD32

    AD8330

    Abstract: AD8330ACP-R2 HD22 HD32 RQ-16 AD9217
    Text: Low Cost DC-150 MHz Variable Gain Amplifier AD8330* FEATURES Fully Differential Signal Path May also be Used with Single-Sided Signals Inputs from 0.3 mV to 1 V rms, Rail-to-Rail Outputs Differential RIN = 1 k⍀; ROUT Each Output 75 ⍀ Automatic Offset Compensation (Optional)


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    PDF DC-150 AD8330* CP-16 4/03--Data C03217 AD8330 AD8330ACP-R2 HD22 HD32 RQ-16 AD9217

    Untitled

    Abstract: No abstract text available
    Text: Low Cost DC-150 MHz Variable Gain Amplifier AD8330* FEATURES Fully Differential Signal Path May also be Used with Single-Sided Signals Inputs from 0.3 mV to 1 V rms, Rail-Rail Outputs Differential RIN = 1 k⍀; ROUT Each Output 75 ⍀ Automatic Offset Compensation (Optional)


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    PDF DC-150 AD8330* 16-Lead CP-16) MO-220-VEED-2 C03217

    Untitled

    Abstract: No abstract text available
    Text: Low Cost, DC to 150 MHz Variable Gain Amplifier AD8330 Data Sheet FUNCTIONAL BLOCK DIAGRAM Fully differential signal path, also used with single-sided signals Inputs from 0.3 mV to 1 V rms, rail-to-rail outputs Differential RIN = 1 kΩ; ROUT each output 75 Ω


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    PDF AD8330 AD8330ACPZ-R2 AD8330ACPZ-RL AD8330ACPZ-R7 AD8330ARQZ AD8330ARQZ-RL AD8330ARQZ-R7 AD8330-EVALZ 16-Lead

    AD8330

    Abstract: CP-16-3 D0321 AD8362 AD8330-EVALZ HD32 RQ-16
    Text: Low Cost, DC to 150 MHz Variable Gain Amplifier AD8330 FUNCTIONAL BLOCK DIAGRAM Fully differential signal path, also used with single-sided signals Inputs from 0.3 mV to 1 V rms, rail-to-rail outputs Differential RIN = 1 kΩ; ROUT each output 75 Ω Automatic offset compensation (optional)


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    PDF AD8330 AD8330ARQ-REEL7 AD8330ARQZ AD8330ARQZ-RL AD8330ARQZ-R7 AD8330-EVALZ 16-Lead AD8330 CP-16-3 D0321 AD8362 AD8330-EVALZ HD32 RQ-16

    Untitled

    Abstract: No abstract text available
    Text: Low Cost, DC to 150 MHz Variable Gain Amplifier AD8330 FUNCTIONAL BLOCK DIAGRAM Fully differential signal path, also used with single-sided signals Inputs from 0.3 mV to 1 V rms, rail-to-rail outputs Differential RIN = 1 kΩ; ROUT each output 75 Ω Automatic offset compensation (optional)


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    PDF AD8330 AD8330ARQZ-R7 AD8330-EVALZ 16-Lead

    CC0603KRX7R9BB103

    Abstract: AD83301 BERG 65474-001 AD8330 AD8330-EVALZ CP-16-3 HD32 RQ-16 CC0603KRX7R Applications AD8330
    Text: Low Cost, DC to 150 MHz Variable Gain Amplifier AD8330 FUNCTIONAL BLOCK DIAGRAM Fully differential signal path, also used with single-sided signals Inputs from 0.3 mV to 1 V rms, rail-to-rail outputs Differential RIN = 1 kΩ; ROUT each output 75 Ω Automatic offset compensation (optional)


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    PDF AD8330 16-Lead CC0603KRX7R9BB103 AD83301 BERG 65474-001 AD8330 AD8330-EVALZ CP-16-3 HD32 RQ-16 CC0603KRX7R Applications AD8330

    1000w power AMPLIFIER pcb circuit

    Abstract: 1000W TRANSISTOR AUDIO AMPLIFIER 2000W Stereo Audio Power Amplifier 600W TRANSISTOR AUDIO AMPLIFIER 2000w audio power amplifier 1000W TRANSISTOR POWER AMPLIFIER 2000w audio amplifier 2000w CLASS D AMPLIFIER 300W TRANSISTOR AUDIO AMPLIFIER 2000w power amplifier
    Text: CLASS D AUDIO AMPLIFER MODULE ECM-600H 600W RMS CLASS D AUDIO AMPLIFER MODULE FEATURES • • • • • • • • • • • • • • • • • HIGH POWER: 600W RMS1 HIGH EFFICIENCY ~90% HIGH SWITCHING FREQUENCY: 450KHz. LOW DISTORTION: <0.3% THD OPEN LOOP


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    PDF ECM-600H 450KHz. 1000w power AMPLIFIER pcb circuit 1000W TRANSISTOR AUDIO AMPLIFIER 2000W Stereo Audio Power Amplifier 600W TRANSISTOR AUDIO AMPLIFIER 2000w audio power amplifier 1000W TRANSISTOR POWER AMPLIFIER 2000w audio amplifier 2000w CLASS D AMPLIFIER 300W TRANSISTOR AUDIO AMPLIFIER 2000w power amplifier

    1000w power AMPLIFIER pcb circuit

    Abstract: 800w power amplifier stereo 300W TRANSISTOR AUDIO AMPLIFIER 150W TRANSISTOR AUDIO AMPLIFIER ECM-300H 1000W Stereo Audio Power Amplifier SDV1015-600 1000W TRANSISTOR AUDIO AMPLIFIER 300w amplifier 300w stereo amplifier
    Text: CLASS D AUDIO AMPLIFER MODULE ECM-300H 300W RMS CLASS D AUDIO AMPLIFER MODULE FEATURES • • • • • • • • • • • • • • • • • HIGH POWER: 300W RMS1 HIGH EFFICIENCY >90% HIGH SWITCHING FREQUENCY: 450KHz. LOW DISTORTION: <0.3% THD OPEN LOOP


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    PDF ECM-300H 450KHz. 1000w power AMPLIFIER pcb circuit 800w power amplifier stereo 300W TRANSISTOR AUDIO AMPLIFIER 150W TRANSISTOR AUDIO AMPLIFIER ECM-300H 1000W Stereo Audio Power Amplifier SDV1015-600 1000W TRANSISTOR AUDIO AMPLIFIER 300w amplifier 300w stereo amplifier

    coto relay

    Abstract: 5v ceramic reed relay active and passive electronic components coto relay 3200 reed switch DCR test circuit coto 5V SPST Reed Relay competitor analysis, reed automatic change over switch circuit relay coto relays static relay coto
    Text: Technical & Applications Information [Relays] Reed Relay Packaging Relay packaging consists of antistatic tubes or trays depending upon relay model. Several Coto surface mount reed relays are available in Tape & Reel packaging. Listed below are the dimensions by Coto series and


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    1000w power AMPLIFIER pcb circuit

    Abstract: 2000w audio power amplifier audio amplifier 1000w SDV1015-600 2000w power amplifier 1000w class d amplifier 2000W Stereo Audio Power Amplifier class d 1000w amplifier 1000w audio amplifier 1000w pwm audio amplifier
    Text: CLASS D AUDIO AMPLIFIER MODULE SDV1015-600: 600W RMS, CLASS D, AUDIO AMPLIFIER MASTER MODULE FEATURES • • • • • • • • • • • • • • • • HIGH POWER: 600W RMS1 HIGH EFFICIENCY >90% HIGH SWITCHING FREQUENCY: 450KHz. LOW DISTORTION: <0.2% THD OPEN LOOP


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    PDF SDV1015-600: 450KHz. 1000w power AMPLIFIER pcb circuit 2000w audio power amplifier audio amplifier 1000w SDV1015-600 2000w power amplifier 1000w class d amplifier 2000W Stereo Audio Power Amplifier class d 1000w amplifier 1000w audio amplifier 1000w pwm audio amplifier

    DB8945

    Abstract: Decibel Products DB8945 DB8918 DB8944 DB4176W DB8300 DB8918A-C DB8942 DB8932 DB8946
    Text: DB81I00, DB8200 MODULAR Rx MULTICOUPLER DB8300 4 to 32 CHANNELS, 30-512 MHz From 4 to 32 receivers can be combined to a single antenna by this modular multicoupler, which features plug-in power supplies and bipolar, low noise RF amplifiers on low profile chassis.


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    PDF DB81I00, DB8200 DB8300 DB4177W DB8945 Decibel Products DB8945 DB8918 DB8944 DB4176W DB8918A-C DB8942 DB8932 DB8946

    DB4350

    Abstract: DB4600 DB4350-4 Decibel Products uhf
    Text: DB4350 Several models of the DB4350 Tx Combiner are offered to combine, at close spacing, two through eight transmitters in the 118-174 MHz frequencies. * Close Separation - Minimum frequency separation is 50 KHz; however, the greater the separation, the less the


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    PDF DB4350 DB4350 DB4002B DB4600 DB4350-4 Decibel Products uhf

    DB4058W

    Abstract: DB8945 DB980 DB874H Decibel Products DB225 antenna ASP-2015 DB884H ASP-712 db205 antenna ASP-685
    Text: INDEX db TransTelecom ASP-2011 Antennas. 9 Cables, Connectors, Acc.125 12038 Sway Brace K its .19, 25 ASP-2015 Antennas. 30 ASP-2894 Antennas. 100


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    PDF ACD-2702 ACD-2727 DB432 DB436 DB437 DB438 DB471N DB492 DB493 DB495 DB4058W DB8945 DB980 DB874H Decibel Products DB225 antenna ASP-2015 DB884H ASP-712 db205 antenna ASP-685

    Untitled

    Abstract: No abstract text available
    Text: AMI S2815 DIGITAL FILTER/UTILITY PERIPHERAL Features □ S2811 Signal Processing Peripheral Programmed With Filter and Utility Routines □ Microprocessor Compatible Interface Plus Asynchronous Serial Interface □ Two Independent 30 Tap Transversal Filter


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    PDF S2815 S2811 Linear-to255 S2815

    S6802

    Abstract: No abstract text available
    Text: A M I Please note: the S2815 has been replaced w ith the S28215 which is an N M O S direct p in for p in electrical and functional replacem ent for the S2815. S2815 AMERICAN MICROSYSTEMS, INC. Features □ S2811 Signal Processing Peripheral Program m ed W ith Filter and U tility Routines


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    PDF S2815 S28215 S2815. S2815 S2811 S6802

    Decibel Products combiners

    Abstract: DB224E W9500 U/25/20/TN26/15/Decibel Products Dipole antennas deciBel antenna DB224 DB212 DB228
    Text: 3 ENGINEERING The information presented here primarily con­ cerns station antennas and filter products. Considerably more can be done at the station than with mobile antennas to influence system performance. In many systems there is only one station antenna serving a num­


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