
Sound
Wireless Microphones & IEMs across India
Shure Axient and Sennheiser Digital 6000 microphones with RF coordination, so speeches and performances never drop — even in RF-crowded venues.
- Lead time
- T-4 weeks
- Category
- Sound
- Coverage
- 90+ Indian cities
Key takeaway
How we deliver wireless microphones & IEMs
Wireless audio is a spectrum management problem wearing an audio costume. Every microphone and in-ear monitor transmitter occupies a frequency, and frequencies have to be chosen so that no two combine to produce an intermodulation product landing on a third. That calculation is done in software — Shure Wireless Workbench or Sennheiser's Wireless Systems Manager — against a scan of the actual venue taken at the actual time of day, because the UHF environment at 9 am in an empty hall bears little resemblance to the same room at 7 pm with press, broadcast trucks and two thousand phones in it. India's usable wireless microphone spectrum sits largely in the UHF television bands under WPC licensing, and that headroom is narrowing, which makes coordination more necessary rather than less.
The hardware choices follow from the risk. Shure Axient Digital and Sennheiser Digital 6000 are specified not because they sound better than cheaper digital systems — the difference is modest — but because of what they do under pressure: wide tuning ranges, frequency diversity where a channel transmits on two frequencies simultaneously, high channel density in a given bandwidth, and remote monitoring so a technician sees a dropout building before it is audible. Antennas matter as much as receivers. Directional paddle or helical antennas aimed at the performance area, mounted at height and away from LED walls and lighting dimmers, routed through an antenna distribution system on low-loss cable, outperform any amount of transmitter power.
In-ear monitoring inverts the problem. An IEM transmitter is a continuously radiating source, so IEM and microphone frequencies have to be coordinated together rather than in separate plans, and IEM antennas are usually best mounted away from receive antennas to limit blocking. Mould-fitted ear pieces give much better isolation than universal tips, which lets performers work at a lower level and hear more detail. For speech work, lavalier and headset placement is the real determinant of quality: a headset boom at the corner of the mouth is consistently more intelligible than any lavalier, and a lavalier on a sari or a heavy jacket needs a mounting approach planned rather than improvised at the last minute.
What you get
- Shure Axient & Sennheiser D6000
- Headset, lapel & handheld
- In-ear monitor systems
- RF scanning & coordination
Equipment we carry
Ideal for

Specification
Wireless Microphones & IEMs: technical specification
| Specification | Detail |
|---|---|
| Systems | Shure Axient Digital AD4Q, Sennheiser Digital 6000 / EM 6000 |
| Coordination software | Shure Wireless Workbench, Sennheiser Wireless Systems Manager |
| Spectrum | UHF television bands under WPC licensing, with narrowing available headroom |
| Scan practice | Full RF scan at load-in and again at the show hour with the venue populated |
| Frequency diversity | Critical channels transmitting on two frequencies simultaneously on Axient |
| Reserve frequencies | At least two clean spare frequencies held and unused per band |
| Antennas | Directional paddle or helical, mounted at height, away from LED walls and dimmers |
| Distribution | Active antenna distribution on low-loss cable rather than long runs to each receiver |
| IEM | Mould-fitted ear pieces, coordinated in the same plan as the microphone channels |
| Monitoring | Remote RF and battery monitoring so a technician sees a dropout building |
Sizing
What size rig does your event actually need?
| Scale | Guests | Recommended setup |
|---|---|---|
| Panel or seminar | 100 – 300 | Four channels: two handheld, two lavalier, one antenna pair, two reserves held |
| Conference stage | 400 – 1,200 | Eight to twelve channels with headsets for presenters, active distribution, RF technician |
| Wedding or gala | 300 – 1,000 | Six to ten channels across mandap, stage and roaming, with a dressed spare held live |
| Theatre or musical | 500 – 2,000 | Twenty-four to thirty-two channels with headset mics per cast member and IEM cue feeds |
| Award or televised show | 2,000 – 5,000+ | 40+ channels coordinated with broadcast and press RF, multiple antenna zones, full-time coordinator |
Scope
Wireless Mic & IEM Systems scope tiers
Speech Package
Conferences, weddings and single-stage events, 4 – 12 channels
- Four to twelve digital channels of handheld, lavalier or headset
- RF scan and coordinated frequency plan with two reserves held
- Directional antennas on an active distribution system
- Microphone allocation chart and fitting for every speaker
- RF technician on site for the duration
Performance Package
Concerts, theatre and musicals, 16 – 32 channels including IEMs
- Sixteen to thirty-two channels with microphones and IEMs coordinated together
- Frequency diversity on vocal and critical channels
- Mould-fitted IEM pieces where artists supply impressions
- Separate IEM antenna position to limit receive blocking
- RF coordinator plus a microphone technician on stage
High-Density Coordination
Award shows, televised events and multi-stage festivals, 40+ channels
- Forty or more coordinated channels across microphones, IEMs and comms
- Shared frequency plan with broadcast and press RF needs accounted for
- Multiple antenna zones with remote monitoring of every channel
- Spare transmitters dressed and live on reserve frequencies
- Full-time RF coordination desk for the duration of the event
Crew
Who turns up on show day
- RF coordinator
Scans the spectrum, builds the frequency plan including intermodulation checks, and holds reserve frequencies through the show.
- Microphone technician
Fits lavaliers and headsets, manages the handover of handhelds between presenters and swaps a failing pack silently.
- IEM technician
Fits and tests ear pieces, manages packs and batteries per performer and watches for blocking at the IEM antennas.
- Antenna and systems technician
Places and aims antennas, builds the distribution and keeps RF cabling clear of LED walls and dimmer runs.
- Monitoring operator
Watches remote RF and battery telemetry for every channel and intervenes before a dropout becomes audible.
What you receive
- RF scan record from load-in and from the populated venue
- Coordinated frequency plan with intermodulation analysis and reserve channels
- Microphone allocation chart naming every wearer and channel
- Antenna placement drawing with distribution topology
- Battery and pack management log for the event
- Channel health report noting any dropout, interference or intervention
Timeline
From enquiry to load-out
- T-4 weeks
Channel count and use plan
Every speaker, performer, IEM and comms channel listed, because the plan is built on the total count, not on the microphone count.
- T-2 weeks
Preliminary coordination
A frequency plan built from known local spectrum conditions, with equipment allocated to bands and reserves set aside.
- Show day −1
Venue scan
Full RF scan of the venue, antennas placed and aimed, and the plan refined against what the scan actually shows.
- Show day, T-2 hours
Populated re-scan
A second scan with the venue filling, press arriving and broadcast equipment live, and frequencies moved if needed.
- Show day, T-90 minutes
Fitting and line check
Every lavalier and headset fitted and checked on the wearer, packs labelled, batteries fresh and the allocation chart confirmed.
- Show day to +2 hours
Show and handback
Channels monitored throughout with spares dressed and live, then packs collected, counted and reconciled.
Risk control
What goes wrong, and how we stop it
What can go wrong
How we prevent it
- What can go wrong
RF dropouts when the venue fills with phones and the press arrives.
How we prevent itFull RF scan at load-in, coordinated frequencies across all Axient channels, and two spare clean frequencies held in reserve.
- What can go wrong
A press or broadcast crew arrives with their own wireless on frequencies nobody coordinated.
How we prevent itA single shared frequency plan is published for the whole site, and arriving crews are allocated bands at accreditation rather than allowed to scan for themselves.
- What can go wrong
Antennas mounted behind an LED wall or beside dimmer racks pick up broadband noise.
How we prevent itAntennas are placed at height with line of sight to the performance area and routed well clear of LED panels, dimmers and LED fixtures on low-loss cable.
- What can go wrong
A lavalier on a heavy jacket or a sari rustles through every speech.
How we prevent itMounting is planned per outfit — vampire clips, tape positions and cable dressing agreed at fitting — and for critical speakers we recommend a headset boom instead.
- What can go wrong
A transmitter battery dies mid-performance because packs were not managed per channel.
How we prevent itFresh batteries per performance block, remote battery telemetry watched by a monitoring operator, and a dressed spare pack on a reserve frequency ready to hand over.
- What can go wrong
Intermodulation between IEM transmitters and microphone receivers creates a fault nobody can explain.
How we prevent itIEMs and microphones are coordinated in a single frequency plan with intermodulation analysis, and IEM antennas are sited away from the receive antennas to limit blocking.
Honest comparison
Is this the right choice for your event?
- Cheaper digital wireless instead of Axient or Digital 6000Our verdict
For four channels in a quiet room, mid-range digital systems sound close to identical and cost far less — a sensible choice. The premium systems earn their money at high channel counts and in hostile RF, through wide tuning, frequency diversity and remote monitoring.
- Wired microphones instead of wirelessOur verdict
Still the most reliable option in existence, and the right call for a fixed lectern, a choir or an orchestra. Wireless is for people who move, and every wireless channel you avoid is one less thing that can go wrong.
- Lavalier microphones instead of headset boomsOur verdict
Lavaliers are less visible and more acceptable to many speakers, which matters. A headset boom at the corner of the mouth is consistently more intelligible, more consistent in level and far less prone to clothing noise. For an important keynote, push for the headset.
- In-ear monitors instead of wedgesOur verdict
IEMs give better isolation, a cleaner stage and less bleed into vocal microphones. They are also unfamiliar to many performers, who may prefer wedges and will sound better on something they are comfortable with. Offer both rather than imposing IEMs.
Process
How we deliver
01
Brief & recce
We visit the venue, map power and rigging, and understand your show flow.
02
Design & quote
CAD plans, 3D previews and an itemised quote within 24 hours.
03
Build & rehearse
Load-in, system tuning, content checks and full technical rehearsal.
04
Show & strike
Show-caller-led execution, then a quick, clean load-out.
Locations
Wireless Mic & IEM Systems by city
Tier 1 metros
Tier 2 cities
FAQ