Gear article
Mogami 3162 Digital Multicore (DB25 to 8 Neutrik XLR)
The Mogami 3162 Digital Multicore is a premium 8-channel cable assembly designed for high-fidelity digital audio transmission in professional studio environments. Featuring a DB25 connector and eight Neutrik XLR connectors wired to the Yamaha standard, it offers 110-ohm impedance for precise AES/EBU signal integrity.

Overview and Technical Specification
The Mogami 3162 Digital Multicore is a high-performance audio loom specifically engineered for digital multichannel applications. Utilising Mogami 2932 multicore cable as its foundation, this assembly is designed to handle sensitive digital signals without data loss or jitter. The cable maintains a strict 110-ohm impedance, which is the industry requirement for AES/EBU digital audio, ensuring that the signal remains stable across the 1.5-metre length.
This specific configuration features a DB25 (D-Sub) connector on one end and eight Neutrik-branded XLR connectors on the other. It is wired to the Yamaha pin-out standard, making it directly compatible with Yamaha digital consoles and interface hardware that follow this specific internal wiring logic.
Component Quality and Construction
Mogami is noted for its use of high-grade components to achieve loss-free transmission. The 3162 series is built to withstand the rigours of professional studio and touring environments. By employing Neutrik XLR connectors, the cable ensures robust physical connections that can endure frequent patching and unpatching. The internal wiring of the Mogami 2932 core is shielded to prevent electromagnetic interference (EMI) and radio frequency interference (RFI), which is critical when processing digital audio alongside other high-powered studio equipment.

Sound Character and Performance
In a digital context, 'sound character' refers to the cable's ability to maintain the integrity of the bitstream. The 3162 is designed for optimal audio fidelity, providing a transparent path for digital audio equipment to communicate. Because it adheres strictly to 110-ohm specifications, it prevents signal reflections that can occur in mismatched impedance cables, which otherwise leads to timing errors or 'jitter'. The result is a clean, reliable transmission that preserves the original quality of the digital source.
Target Audience and Applications
This cable is primarily aimed at professional audio engineers, recording studios, and broadcast facilities. It is particularly suited for users of Yamaha digital mixers or converters that utilise DB25 ports for multi-channel input and output. Because it is a 1.5-metre loom, it is ideal for connecting rack-mounted equipment, such as linking an audio interface to a patch bay or a digital mixing desk, where short, tidy cable runs are preferred to minimize clutter and signal degradation.
Comparison to Alternatives
When compared to standard analogue looms or budget alternatives like the Studiospares Standard XLR series, the Mogami 3162 stands out due to its specific digital rating. While an analogue cable might physically fit the ports, it lacks the 110-ohm impedance necessary for reliable long-term digital stability. Unlike universal D-Sub cables, this model is specifically wired for the Yamaha standard, ensuring plug-and-play compatibility with Yamaha-designed hardware without the need for pin-out adapters. Furthermore, Mogami includes a lifetime manufacturer warranty, a feature rarely found in entry-level cabling solutions.
Related gear
£5.99 ($8)Studiospares
Studiospares Standard XLR (M) - XLR (F) Cable 60cm
£17.57 ($22)Ernie Ball
Ernie Ball P06049 10ft Straight-Angle Instrument Cable White
£32.00 ($41)LD Systems
LD Systems WS100BNC10 BNC to BNC Antenna Cable 10m
£4.99 ($6)Gear4Music
Essentials Dual Jack to RCA Phono Cable 3m
£10.50 ($13)Neutrik
Neutrik NC3FRX Right-Angled 3-Pole Female XLR Connector
£56.00 ($71)Adam Hall
Adam Hall 5 STAR Neutrik DMX 5-Pin Lighting Cable 20m
£4.99 ($6)Studiospares
Studiospares Standard XLR (M) - XLR (F) Patch Cable 30cm
Frequently asked questions
- What is the primary function of the Mogami 3162 Digital Multicore?
- It is an 8-channel cable designed to transfer digital audio signals between devices with DB25 ports and those with XLR connections.
- What wiring standard does this specific cable use?
- This cable is wired to the Yamaha pin-out standard, which is specific to Yamaha digital audio equipment and compatible hardware.
- What is the characteristic impedance of this cable?
- The cable adheres to a strict 110-ohm impedance, which is the required standard for AES/EBU digital audio transmission.
- What type of XLR connectors are used on this loom?
- The cable is fitted with premium Neutrik XLR connectors, known for their durability and reliable signal contact.
- How long is this cable assembly?
- The cable has a length of 1.5 metres, making it suitable for short-range rack and studio connections.
- Can this cable be used for analogue audio applications?
- While it can technically pass analogue signals, it is specifically optimised for digital audio fidelity and 110-ohm AES/EBU requirements.
- What cable stock is used for the multicore section?
- The assembly uses Mogami 2932 Multicore Cable, which is a high-grade professional audio component.
- Is there a warranty provided with this cable?
- Yes, Mogami provides a lifetime manufacturer warranty for this product, offering long-term peace of mind for professional users.
- Why is 110-ohm impedance important for this cable?
- A consistent 110-ohm impedance ensures loss-free transmission and prevents signal reflections that cause jitter in digital audio.
- Is this cable compatible with Tascam-wired DB25 equipment?
- No, this version is specifically wired for the Yamaha standard. You would need to check if your equipment supports Yamaha pin-outs before purchase.
- What is the typical price for this 1.5m cable?
- The typical price range for this specific 1.5m Mogami cable is approximately GBP 199.
- Does the cable include any special shielding?
- Yes, the Mogami 2932 cable design incorporates high-grade components and shielding to ensure loss-free and interference-free transmission.
