Ernie Ball 4.5M JACK MONO MALE TO JACK MONO MALE BLACK
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Information
Information
Manufacturer Information
Ernie Ball
https://www.ernieball.com
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Safety manager:
Algam SAS
Email: contact@algam.net
Address:
Essential Information About the Ernie Ball EB 6399 Jack to Jack Cable
- Instrument jack to jack cable designed to connect guitar, bass, keyboard, or pedalboard with reliable transmission.
- Conductors made of oxygen-free copper to preserve signal clarity and minimize sound loss.
- Black braided sheath, flexible and durable, ideal for regular use in rehearsals, studios, or on stage.
- Straight male mono jack connectors for a simple, stable connection compatible with most musical equipment.
Technical specifications
| Number of channels | 1 | Format | straight |
| Connectors | Male mono jack | Sheath material | PVC |
| From connectivity | 6.35mm mono male jack | Oxygen-free copper | Yes |
| Towards connectivity | 6.35mm mono male jack | Number of pairs | 1 |
| To solder | No | Color | Black |
| Category | Instrument cable | Length (m) | 4.57 m |
Questions frequently asked
What is the length of the Ernie Ball EB 6399 cable?
Its length is 4.57 m, approximately 4.5 m, to allow comfortable placement between the instrument and the connected equipment.
Is this cable compatible with a guitar and an amp?
Both ends have 6.35 mm straight mono jacks. This connector is suitable for an instrument connection between a guitar, bass, or keyboard and a standard jack input of an amplifier, pedal, or audio interface.
Is the jack mono or stereo for this cable?
This is a mono cable with a pair of conductors and two male mono jack connectors. It is classified as an instrument cable.
Is the black sheath durable enough for stage use?
The sheath is made of black PVC with a braided finish. Its flexible design is intended for regular use in rehearsal, studio, or on stage.
Does oxygen-free copper improve the signal?
The conductors are oxygen-free copper to preserve signal clarity and limit sound loss. The highs remain clear and the mids precise. The dynamic response is designed to maintain the instrument's behavior.



