560 Series, Audio Transformers

Results:
7
Manufacturer
Series
Impedance - Primary (Ohms)
Impedance - Secondary (Ohms)
Frequency Range
Insertion Loss
Operating Temperature
Termination Style
Height - Seated (Max)
Voltage - Isolation
Approval Agency
Mounting Type
Size / Dimension
Transformer Type
DC Resistance (DCR) - Secondary
DC Resistance (DCR) - Primary
Turns Ratio - Primary
Return Loss
Frequency Response
Power Level
Results remaining7
Applied Filters:
560
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ImageProduct DetailPriceAvailabilityECAD ModelOperating TemperatureMounting TypeTermination StyleSeriesImpedance - Primary (Ohms)Impedance - Secondary (Ohms)DC Resistance (DCR) - PrimaryDC Resistance (DCR) - SecondaryTransformer TypeFrequency RangeFrequency ResponseVoltage - IsolationInsertion LossReturn LossPower LevelApproval AgencySize / DimensionHeight - Seated (Max)Turns Ratio - Primary
560G
TRANSF AUDIO 150/600 150/600 IMP
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
PC Pin
560
600, 150/150
600, 150/150
-
-
Broadcast Quality
30Hz ~ 30kHz
±1dB
-
1dB Max
-
-
-
1.330" L x 1.640" W (33.78mm x 41.66mm)
0.850" (21.59mm)
Secondary:-
560J
TRANS AUDIO 150/600 1.2K/4.8KIMP
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
PC Pin
560
600, 150/150
4.8k, 1.2k/1.2k
-
-
Broadcast Quality
30Hz ~ 30kHz
±1dB
-
1dB Max
-
-
-
1.330" L x 1.640" W (33.78mm x 41.66mm)
0.850" (21.59mm)
Secondary:-
560L
TRANSFR AUDIO 150/600 5K/20K IMP
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
PC Pin
560
600, 150/150
20k, 5k/5k
-
-
Broadcast Quality
30Hz ~ 30kHz
±1dB
-
1dB Max
-
-
-
1.330" L x 1.640" W (33.78mm x 41.66mm)
0.850" (21.59mm)
Secondary:-
560Q
TRANSF AUDIO 10K/40K 10K/40K IMP
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
PC Pin
560
40k, 10k/10k
40k, 10k/10k
-
-
Broadcast Quality
30Hz ~ 15kHz
±1dB
-
1dB Max
-
-
-
1.330" L x 1.640" W (33.78mm x 41.66mm)
0.850" (21.59mm)
Secondary:-
560N
TRANSF AUDIO 150/600 10K/40K IMP
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
PC Pin
560
600, 150/150
40k, 10k/10k
-
-
Broadcast Quality
30Hz ~ 30kHz
±1dB
-
1dB Max
-
-
-
1.330" L x 1.640" W (33.78mm x 41.66mm)
0.850" (21.59mm)
Secondary:-
560C
TRANSFMR AUDIO 12/48 150/600 IMP
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
PC Pin
560
48, 12/12
600, 150/150
-
-
Broadcast Quality
30Hz ~ 30kHz
±1dB
-
1dB Max
-
-
-
1.330" L x 1.640" W (33.78mm x 41.66mm)
0.850" (21.59mm)
Secondary:-
560E
TRANSFMR AUDIO 50/20 150/600 IMP
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
PC Pin
560
200, 50/50
600, 150/150
-
-
Broadcast Quality
30Hz ~ 30kHz
±1dB
-
1dB Max
-
-
-
1.330" L x 1.640" W (33.78mm x 41.66mm)
0.850" (21.59mm)
Secondary:-

Audio Transformers

Audio transformers, like other types of transformers, are composed of multiple coils of wire that are magnetically coupled together. These coils are typically wound around a magnetic core. Audio transformers have specific characteristics that distinguish them from other transformer types. They are designed and optimized to operate within the frequency range that is perceptible to the human ear, which spans approximately 20 Hz to 20 kHz. The primary purpose of audio transformers is to isolate and transform analog information. They play a crucial role in various applications where audio signals need to be transmitted, processed, or converted. Unlike transformers used for digital signaling protocols, audio transformers are specifically tailored for handling analog audio signals. One common application of audio transformers is in vacuum tube amplifiers, where they serve as output transformers. These transformers are responsible for matching the high impedance of the vacuum tube amplifier to the lower impedance of the speaker, allowing for efficient power transfer and impedance matching. Another example is voice coupling transformers used in traditional telecom applications. These transformers are employed to couple and transmit voice signals in telecommunication systems, ensuring clear and reliable communication between users. In summary, audio transformers are a specialized type of transformer designed for use within the audible frequency range. They enable the isolation, transformation, and transmission of analog audio signals in various applications such as vacuum tube amplifiers and traditional telecom systems.