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EPIRB

critical IMO Required 27 / 27 models (Inspector)

An EPIRB is a satellite distress beacon that a crew activates, or that floats free and self-activates, in an abandon-ship situation, transmitting the vessel's identity and, via GPS, its position to the Cospas-Sarsat satellite system so a rescue coordination centre can be alerted within minutes rather than hours.

Read more — EPIRB explained

What defines an EPIRB

An Emergency Position Indicating Radio Beacon (EPIRB) is a self-contained satellite distress beacon, carried as required GMDSS and SOLAS life-saving equipment, that transmits on 406 MHz to the Cospas-Sarsat satellite system when activated. It differs from a Search and Rescue Transponder (SART), which is a radar-reflecting device used to guide a rescue unit to a liferaft once search has already narrowed the area, and from an AIS-SART, which broadcasts a position on AIS rather than through satellite. The EPIRB's role is the first alert: getting the vessel's identity and position to a Rescue Coordination Centre as fast as possible after abandon-ship, before any surface search begins.

EPIRB unit and bracket
Side view of an EPIRB beacon seated in its mounting bracket, showing the antenna, strobe light, manual activation switch, the internal GPS and beacon electronics, and the hydrostatic release unit that frees the beacon from the bracket.

Main components

406 MHz transmitter

Transmits a digitally coded distress message including the vessel's unique identification (MMSI-derived hex code) to Cospas-Sarsat satellites, repeating at a fixed interval until manually switched off or battery exhaustion.

Integrated GPS receiver

Modern EPIRBs include an internal GPS receiver that encodes position into the 406 MHz message, cutting the time to an accurate fix from the tens of minutes a Doppler-only satellite fix needs down to close to immediate.

121.5 MHz homing signal

A separate low-power homing transmission that search and rescue units use for final approach once in the vicinity, distinct from the 406 MHz distress alert channel.

Float-free bracket (hydrostatic release)

A hydrostatic release unit (HRU) frees the EPIRB automatically at a shallow depth if the vessel sinks with no one able to launch it manually, so the beacon activates and floats clear even in an uncontrolled loss.

Battery

A sealed primary battery with a manufacturer-stated shelf life and a separate, shorter operating life once activated, both marked on the unit and tracked against replacement due dates.

Selection and sizing

Category and mounting depend on vessel type and area of operation: a float-free, automatically activating EPIRB in a hydrostatic release bracket is standard on SOLAS cargo and passenger vessels, while a manually deployed category II unit is more common on smaller craft. Selection points are GPS integration (essentially standard on current models), battery operating life after activation (commonly rated at 48 hours minimum), and coding to the correct vessel identity in the unit's programmed message, which must be re-programmed whenever the vessel's MMSI or call sign changes, such as after a change of flag or owner.

Regulations and class

SOLAS Ch. IV requires an EPIRB as part of the GMDSS fit for the vessel's sea area of operation, and Ch. III requires it as abandon-ship equipment mounted for float-free release where applicable. The beacon must be type approved to Cospas-Sarsat and IMO performance standards, registered with the relevant national beacon registry against the vessel's identity and an emergency contact, and this registration must be kept current — an EPIRB registered to a previous owner or an old contact number materially slows a rescue response. Battery replacement and full functional testing, including hydrostatic release unit replacement, follow manufacturer-set intervals and are checked at every radio and safety equipment survey.

RequirementDetail
Frequency406 MHz distress alert, 121.5 MHz homing
Minimum battery operating lifeTypically 48 hours after activation
HRU replacementPer manufacturer date, commonly every 2 years
RegistrationNational beacon registry, kept current with vessel identity

Typical faults

  • Expired hydrostatic release unit — an out-of-date HRU may not release the beacon at all, defeating the entire float-free function; this is a frequent survey finding because the date is easy to overlook against the beacon's own battery date.
  • Outdated registration — a beacon registered to a previous vessel name, owner or contact number delays a Rescue Coordination Centre's ability to identify the vessel and its emergency contacts.
  • Battery expiry — an EPIRB past its battery due date may still self-test as passing but not hold full rated operating life if actually activated.
  • Bracket corrosion or fouling — paint overspray, corrosion or a poorly maintained bracket can jam the beacon in its cradle, preventing float-free release even with a valid HRU.

What to look for in a supplier

  • Current Cospas-Sarsat type approval and, where relevant, the specific national or flag administration approval required.
  • Integrated GPS as standard, since the reduction in time-to-fix is significant for search and rescue response.
  • Clear battery and HRU expiry dates and a straightforward replacement/exchange programme through the maker's service network.
  • Support for re-registration and re-coding when the vessel's identity changes, not just supply of the physical unit.

Check the registration database entry, not just the beacon itself, at every safety equipment survey: an EPIRB in perfect working order registered to the wrong contact still sends rescuers looking for the wrong vessel.

Typical Manufacturers

McMurdo Jotron ACR
Inspector Mode Show All 27 / 27 with inspector value

6 manufacturers · 27 models

Jotron

19
Jotron Jotron Tron 60GPS EPIRB
Jotron Tron 60GPS EPIRB
406 MHz + 121.5 MHz, GPS · Maritime Radio Communication · 406 MHz GPS‑enabled EPIRB
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Integrated GPS provides accurate location (±100 m) without external antenna
  • Robust, watertight housing meets IMO D‑2 and USCG type‑approval standards
  • Long service life battery (up to 5 years) with annual self‑test capability
  • Automatic water‑activation eliminates reliance on crew action in emergencies
Weaknesses
  • Battery voltage can drop over time, requiring careful monitoring before expiry
  • HRU (hydraulic release unit) corrosion is a known issue; replacement required every 2 years
  • Strobe light may fail, reducing visual signalling capability
  • Manual activation requires removal of safety pin, which some crews find cumbersome
Typical Vessels: TankerContainer shipBulk carrierGeneral cargo vesselPassenger ferryOffshore supply vessel
Certifications: IMO D-2USCG Type Approval
Decision Guide: Choose if you need a proven, GPS‑enabled EPIRB that meets SOLAS requirements and offers precise location data. Avoid if low maintenance is the priority or if budget constraints make newer, less complex units more attractive.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.
Jotron Jotron Tron SART20
Jotron Tron SART20
9 GHz radar transponder, 96 hr standby · Maritime Radio Communication · dual‑function EPIRB/SART beacon
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Integrated EPIRB and SART in one compact unit reduces installation space
  • Automatic water‑activated switch ensures rapid alert without manual action
  • Annual self‑test complies with GMDSS maintenance requirements
  • Robust, impact‑resistant housing designed for harsh marine environments
  • Long‑life sealed lithium battery (≈5 years) meets IMO Class A EPIRB standards
Weaknesses
  • Battery is non‑serviceable; unit must be replaced at end‑of‑life
  • Documented cases of water ingress into the casing if seals degrade
  • Radar pulse generator may lose output power over time, reducing SART range
  • Higher upfront cost compared with separate basic EPIRB or SART units
  • No AIS integration; limited to 406 MHz satellite transmission
Typical Vessels: Bulk CarrierContainer ShipTankerPassenger FerryOffshore Supply VesselFishing Vessel
Certifications: IMO Type Approval (Class A EPIRB)USCG Type Approval
Decision Guide: Choose if: you need a single device that provides both 406 MHz satellite distress alert and SART radar response, you require automatic water‑activation, and you prefer minimal installation space. Avoid if: you want a replaceable battery, are highly sensitive to potential water ingress, or need AIS‑MOB functionality.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.
Jotron Tron AIS SART
Tron AIS SART
AIS SART / 96 hrs · Maritime Radio Communication · AIS-based Search and Rescue Transponder
Battery life
96 hrs
Solas required
ja
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Integrated AIS transmission gives precise coordinates to nearby vessels and shore stations
  • Long standby battery life (96 h) meets SOLAS requirements for continuous readiness
  • Robust cold‑weather performance – tested down to -30 °C without loss of function
  • Float‑free housing automatically activates on water immersion, eliminating manual steps
Weaknesses
  • GPS acquisition can be delayed in heavy sea state or poor satellite geometry
  • Float‑free mechanism has reported occasional failure after prolonged storage
  • Battery replacement interval is limited; aging reduces activation time and signal strength
  • Unit weight and size are larger than some ultra‑compact AIS SART competitors
Typical Vessels: Passenger ferriesOffshore supply vesselsFishing vessels >12 mYachts and mega‑yachtsBulk carriers and tankers required to carry SOLAS‑mandated SARTs
Certifications: IMO SOLAS GMDSS approvalUSCG Type Approval
Decision Guide: Choose if: you need a SOLAS‑compliant AIS SART with proven cold‑weather reliability and long standby time, especially for vessels operating in high latitudes or where rapid AIS location is critical. Avoid if: the vessel operates primarily in very rough seas where GPS lock may be problematic, or if weight/space constraints favor a smaller non‑float‑free unit.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.
Tron TR-30 VHF
5 W / ATEX · Maritime Radio Communication · ATEX‑rated VHF transceiver
Power output
5 W
Atex certified
ja
Waterproof
ja
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Intrinsic safety (ATEX) allows installation in explosive zones such as cargo tanks
  • Waterproof housing suitable for harsh marine environments
  • Compact design with integrated antenna connector simplifies installation
  • 5 W power output meets SOLAS GMDSS voice‑communication requirements
  • Proven reliability on tanker fleets
Weaknesses
  • ATEX certification must be renewed periodically, adding maintenance overhead
  • Battery performance degrades in low‑temperature conditions
  • Antenna connector reported to develop loose contacts over time
  • Limited to 5 W output; not ideal where extended range is required
  • Lacks built‑in DSC or AIS functionality found on newer multi‑function radios
Typical Vessels: TankerChemical tankerLPG/LNG carrierOffshore supply vesselPlatform support vessel
Certifications: ATEX
Decision Guide: Choose if you need an intrinsically safe VHF radio for operation in ATEX‑classified zones, especially on tankers or chemical carriers where explosion risk is a concern. Avoid if higher transmission power, integrated DSC/AIS, or cold‑climate battery performance are critical requirements.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.
Tron TR-20 GMDSS VHF
5 W / waterproof · Maritime Radio Communication · Integrated VHF/EPIRB
Power output
5 W
Waterproof
ja
Solas pack
ja
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Combined VHF and EPIRB reduces equipment count on lifeboats
  • Waterproof construction suitable for harsh marine environments
  • SOLAS‑pack certification ensures compliance with international safety standards
  • Low power (5 W) conserves battery life while providing adequate range for survival craft
  • Simple annual inspection of battery and seal
Weaknesses
  • Battery expiry must be tracked manually; no built‑in monitoring
  • Rubber seals can degrade over time, requiring regular replacement
  • Channel selector mechanism has reported reliability issues
  • Limited transmission power (5 W) may not meet the needs of larger vessels
  • Manual activation required for EPIRB function
Typical Vessels: Lifeboats and survival craftFisheries vesselsCoastal passenger ferriesOffshore supply boatsWorkboats and small cargo carriers
Decision Guide: Choose if you need a space‑saving, SOLAS‑compliant VHF radio with built‑in EPIRB for lifeboats or small craft where weight and footprint are critical. Avoid if the vessel requires higher power VHF coverage, longer autonomous EPIRB battery life, or fully automated battery monitoring.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.
Jotron BNWAS
BNWAS
3-stage alarm · Maritime Radio Communication · Bridge Navigational Watch Alarm System
Stages
3
IMO Approved
ja
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Three‑stage alarm escalation meets IMO SOLAS requirements
  • Norwegian build quality with proven cold‑weather reliability
  • IMO approved (Stage 3) for vessels of all sizes
  • Modular design simplifies installation on existing bridge consoles
Weaknesses
  • Sensor drift can develop over time, requiring periodic recalibration
  • Alarm escalation timing may be inconsistent on some bridge integrations
  • Interface compatibility issues reported with certain legacy alarm panels
  • Limited built‑in self‑test diagnostics compared with newer competitors
Typical Vessels: Passenger shipsFerriesOffshore supply vesselsCruise linersRo‑Ro and container vessels over 500 GT
Certifications: IMO SOLAS
Decision Guide: Choose if: you need a robust, three‑stage BNWAS that performs reliably in cold climates and complies with IMO requirements. Avoid if: your bridge alarm system is highly proprietary or you require advanced diagnostic features not offered by this model.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.
Jotron Tron 60GPS EPIRB
Tron 60GPS EPIRB
406 MHz / GPS · Maritime Radio Communication · integrated GPS EPIRB
Frequency
406 MHz
Gps
ja
Solas required
ja
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Built‑in GPS provides accurate position without needing an external antenna
  • Proven cold‑weather performance; tested for Arctic conditions
  • Float‑free bracket and hydrostatic release unit (HRU) meet SOLAS requirements
  • Long battery life (up to 5 years) with automatic self‑test function
  • IMO GMDSS compliant, USCG Type Approved
Weaknesses
  • Battery cycle management can be problematic if not regularly serviced
  • HRU may become sluggish in extreme cold, requiring more frequent testing
  • Float‑free bracket test must be performed periodically to maintain certification
  • Unit size and weight are larger than some newer low‑profile EPIRBs
Typical Vessels: TankersContainer shipsBulk carriersPassenger vesselsOffshore supply vesselsFishing vessels
Certifications: IMO GMDSSUSCG Type ApprovalDNV Class NK (EPIRB approval)
Decision Guide: Choose if you need a rugged EPIRB with integrated GPS for operations in cold or Arctic waters and want a device with proven SOLAS compliance. Avoid if budget constraints favor a smaller, lower‑cost unit or if you require the latest low‑profile designs with built‑in AIS functionality.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.
Jotron Tron SART 20
Tron SART 20
9 GHz / 96 hrs · Maritime Radio Communication · 9 GHz SART
Frequency
9 GHz
Battery life
96 hrs standby
Solas required
ja
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Meets SOLAS requirement for EPIRB/SART equipment
  • Long battery standby life of up to 96 hours
  • Demonstrated reliability in low‑temperature conditions (Norwegian radar SART service note)
  • Standard 9 GHz frequency compatible with most SAR radars
  • Compact design suitable for installation on a wide range of vessels
Weaknesses
  • Battery management can be problematic, requiring careful monitoring and replacement
  • Telescope‑type antenna is prone to damage if stored improperly
  • Annual functional test procedure is time‑consuming and must follow strict GMDSS guidelines
  • Limited to 9 GHz operation; vessels using alternative SART frequencies need additional equipment
Typical Vessels: Offshore supply vesselFishing vesselSmall passenger ferryGeneral cargo ship operating in high‑latitude regionsResearch vessel
Certifications: SOLASIMO GMDSS Type Approval
Decision Guide: Choose if the vessel operates in cold or Arctic conditions, requires a SOLAS‑compliant SART with long standby time, and has the capability to perform annual battery checks. Avoid if maintenance resources are limited, the antenna cannot be protected from damage during storage, or the fleet uses non‑standard SART frequencies.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.
Jotron Tron AIS-SART / Fog Signal Controller
Tron AIS-SART / Fog Signal Controller
Automatic controller · Maritime Radio Communication · Integrated AIS‑SART fog signal controller
Type
Fog signal controller
Colreg required
ja
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Combines AIS‑SART and fog signal in a single hull‑mounted package, saving space and wiring complexity.
  • Automatic activation via calibrated visibility sensor ensures continuous COLREG compliance without crew intervention.
  • Marine‑grade, GMDSS‑approved construction designed for harsh sea environments.
  • Self‑test function allows routine verification of AIS‑SART and horn operation from the bridge.
  • Standardised mounting and wiring interfaces simplify installation on new builds or retrofits.
Weaknesses
  • Visibility sensor can drift over time, requiring regular calibration to avoid false activations or missed fog signals.
  • Reported timer circuit failures may lead to delayed horn activation if not inspected periodically.
  • Horn relay issues have been noted in field service reports, necessitating spare parts inventory.
  • Integrated design means a failure in one function (e.g., sensor) can affect the whole unit’s reliability.
  • Higher upfront cost compared with separate stand‑alone EPIRB/AIS‑SART and fog horn units.
Typical Vessels: Bulk CarrierTankerContainer ShipPassenger VesselOffshore Supply Vessel
Decision Guide: Choose if: you need a compact, integrated solution that meets both GMDSS AIS‑SART and COLREG fog‑signal requirements, especially on vessels with limited deck space or where automatic compliance is critical. Avoid if: you prefer separate dedicated units for redundancy, have concerns about sensor calibration reliability, or operate in environments where manual fog‑horn control is preferred.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.
Jotron Tron 60GPS
Tron 60GPS
N/A · Maritime Radio Communication · GPS‑enabled EPIRB
Frequency mhz
406
Gps
ja
Battery life hrs
48
Gmdss
ja
Origin
Norway
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Integrated GPS provides accurate position to SAR authorities
  • Hydrostatic Release Unit (HRU) enables automatic activation on immersion
  • 48 hour battery life after activation gives ample time for rescue operations
  • Norwegian engineering noted for reliability and full GMDSS compliance
  • Compact design suitable for a wide range of vessel installations
Weaknesses
  • Battery must be replaced every 5 years; expiry can render the unit inoperative
  • HRU recommended replacement after 2 years due to degradation risk
  • GPS acquisition delay may postpone initial transmission
  • Strobe LED failures have been reported, affecting visual signaling
  • Battery duration (48 h) is shorter than some competing EPIRBs offering 72 h
Typical Vessels: Bulk CarrierContainer ShipTankerOffshore Supply VesselFishing VesselPassenger Ferry
Decision Guide: Choose if you need a reliable, GPS‑enabled EPIRB with automatic immersion activation and are comfortable with scheduled battery (5 yr) and HRU (2 yr) replacements. Avoid if your operation demands longer post‑activation battery life or minimal maintenance intervals.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.
Jotron Tron AIS-SART
Tron AIS-SART
N/A · Maritime Radio Communication · AIS SART with integrated EPIRB
Type
ais_sart
Gmdss
ja
Origin
Norway
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Dual function (AIS SART + EPIRB) reduces equipment count on board
  • Automatic AIS transmission provides real‑time position to nearby vessels and SAR assets
  • 5‑year sealed lithium battery life meets GMDSS requirements
  • Robust Norwegian design with self‑test diagnostics
  • Meets SOLAS AIS‑SART performance standards
Weaknesses
  • Battery capacity degrades after the 5‑year service interval, requiring replacement
  • Antenna can be vulnerable to mechanical damage if mishandled
  • GPS lock may fail in extreme latitudes or dense signal obstruction
  • Higher unit cost compared with a stand‑alone EPIRB or AIS‑SART
Typical Vessels: Passenger shipOffshore supply vesselFishing vesselYacht / pleasure craftTankerContainer ship
Certifications: IMO SOLAS (AIS‑SART)USCG Type Approval
Decision Guide: Choose if you need a single device that satisfies both AIS‑SART and EPIRB requirements, value long battery life and automatic AIS position reporting, and operate vessels where space or weight is limited. Avoid if you prefer separate dedicated EPIRBs for redundancy, have concerns about antenna durability, or operate in regions with known GPS reception issues.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.
Jotron AS Tron 40AIS
Tron 40AIS
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication
Model Number
BABT-UKMA000023
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.
Jotron AS Tron 40VDR AIS
Tron 40VDR AIS
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication
Model Number
BABT-UKMA000024
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.
Tron 60AIS
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication
Model Number
BABT-UKMA000025
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.
Jotron AS Tron TR30 AIR
Tron TR30 AIR
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication
Model Number
BABT-UKMA000057
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.
Tron AIS-SART
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication
Model Number
BABT-UKMA000059
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.
Jotron AS Tron SART20
Tron SART20
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication
Model Number
BABT-UKMA000060
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.
Jotron AS Tron AIS TR-8000 MkII
Tron AIS TR-8000 MkII
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication
Model Number
BABT-UKMA000062 Issue 02
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.
Tron TR30 GMDSS and Maritime VHS Radio (Tron TR30 GMDSS and Maritime VHS Radio, Tron TR30 GMDSS, JHS-207 Two-way VHF Radiotelephone (JHS-207M package) JHS-207 Two-way VHF Radiotelephone)
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication
Model Number
BABT-UKMA000063
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.

Jotron Skipper

4
Jotron Skipper AS Jotron Skipper EML224, EML 1100 and EML 1200
Jotron Skipper EML224, EML 1100 and EML 1200
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication · Satellite-based emergency location
IMO Approved
ja
Model Number
MEDB00001Y1
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron Skipper AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.
Strengths
  • Meets IMO and DNV approval standards
  • Long battery life (up to 48 hours)
  • Compact design for easy installation
  • Automatic activation in emergency situations
Weaknesses
  • Component wear due to operating hours and environmental conditions
  • Corrosion risk from seawater/salt air exposure
  • Electronic/ control failure due to moisture or vibration
  • Potential for premature failure if maintenance intervals are exceeded
Typical Vessels: Passenger shipsCargo shipsOffshore vessels
Certifications: IMO D-2 approvalDNV GL Type ApprovalUSCG Type Approval (pending)
Decision Guide: Choose if: You require a compact, reliable EPIRB for GMDSS compliance. Avoid if: You are looking for a low-cost option or have specific requirements not met by this model.
Use Cases: Typically deployed on vessels operating in remote areas with limited communication infrastructure, such as cargo ships and offshore vessels.
Jotron Skipper AS DL1, DL1-Multi, DL2, DL21
DL1, DL1-Multi, DL2, DL21
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication
IMO Approved
ja
Model Number
MEDB00002ZE
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron Skipper AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.
Skipper ESN100
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication
IMO Approved
ja
Model Number
MEDB00001YG
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron Skipper AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.
Skipper ESN200
VHF DSC / MF-HF / Inmarsat per SOLAS · Maritime Radio Communication
Model Number
75356/B0 UK
Common Failures & Inspection Points
  • Component wear due to operating hours and environmental conditions
  • Corrosion due to seawater/salt air exposure
  • Electronics/control failure due to moisture or vibration
  • Service interval overrun causes premature failure
Service: Maintenance per manufacturer manual and classification society requirements. Annual inspection at class survey. Stock spare parts per manufacturer specification.
Spare Parts: Jotron Skipper AS: VHF-Ersatzantenne an Bord vorhalten. Lead time: 1-3 Wochen.

ACR

1
GlobalFix V4 EPIRB
406/121.5 MHz / GPS · Navigation Data / Sensor · GPS-enabled 406 MHz EPIRB
Frequency
406/121.5 MHz
Gps
ja
Solas required
ja
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Built‑in GPS provides accurate position without external antenna
  • Automatic self‑test and status LED simplify verification
  • 12‑year battery life meets SOLAS replacement interval
  • USCG Type Approval and IMO SOLAS compliance out of the box
  • Robust, corrosion‑resistant housing suitable for harsh marine environments
Weaknesses
  • Battery must be replaced on a strict schedule (≈10 years) to stay compliant
  • Hydrostatic Release Unit (HRU) has its own expiry date requiring tracking
  • Bracket material can corrode if not inspected regularly
  • Higher purchase price than basic non‑GPS EPIRBs
  • Annual inspection required by regulations
Typical Vessels: TankersContainer shipsBulk carriersPassenger ferriesOffshore supply vesselsFishing vesselsYachts over 24 m
Certifications: IMO SOLASUSCG Type Approval
Decision Guide: Choose if: you need a SOLAS‑compliant EPIRB with integrated GPS for fast, accurate rescue response and prefer a unit that self‑tests. Avoid if: budget constraints favor a basic beacon, or the vessel’s maintenance program cannot reliably track battery/HRU expiry dates.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.

McMurdo

1
McMurdo SmartFind E8
SmartFind E8
406 MHz / GPS · Navigation Data / Sensor · Integrated GPS EPIRB
Frequency
406 MHz
Gps
ja
Battery life
48 hrs min
Solas required
ja
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Built‑in GPS provides accurate location without external antenna
  • Meets SOLAS and USCG type approval, suitable for all mandatory vessels
  • 48 hour battery life ensures prolonged operation after activation
  • Simple self‑test function every 30 days with audible indicator
  • Robust housing designed to survive immersion and impact
Weaknesses
  • Battery must be replaced every 5 years; failure risk if not tracked
  • Hydrostatic release unit (HRU) also expires, adding maintenance overhead
  • Reported issues with GPS antenna seal leading to intermittent signal loss
  • Fixed 48‑hour battery may be shorter than some competitors offering longer endurance
  • No built‑in AIS capability
Typical Vessels: Bulk CarrierContainer ShipTankerPassenger VesselOffshore Supply Vessel
Certifications: SOLASUSCG Type ApprovalIMO 2006
Decision Guide: Choose if you need a proven, SOLAS‑compliant EPIRB with integrated GPS and straightforward maintenance on vessels where automatic activation is required. Avoid if you prefer longer battery endurance, built‑in AIS functionality, or want to minimize periodic HRU/battery replacements.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.

Ocean Signal

1
Ocean Signal E101V EPIRB
E101V EPIRB
406 MHz / GPS / AIS · Navigation Data / Sensor · 406 MHz GPS‑enabled EPIRB with AIS homing
Frequency
406 MHz
Gps
ja
Ais homing
ja
Solas required
ja
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Dual transmission (406 MHz satellite + AIS) improves rescue speed, especially at short range
  • Built‑in GPS provides accurate coordinates without manual input
  • Compact form factor fits confined bridge or deck spaces
  • Meets SOLAS and USCG type‑approval requirements for all commercial vessels
Weaknesses
  • Small size reduces buoyancy compared with larger EPIRBs, limiting float time if deployed in water
  • AIS transmitter adds extra battery drain, shortening overall beacon life between tests
  • Requires careful registration of both the 406 MHz and AIS IDs to avoid false alerts
Typical Vessels: Container shipBulk carrierTankerPassenger ferryOffshore supply vesselFishing vessel
Certifications: IMO SOLASUSCG Type Approval
Decision Guide: Choose if you need rapid close‑range homing (AIS) in addition to global satellite alert and have limited installation space. Avoid on vessels where maximum buoyancy or longest autonomous battery life are critical, or where the extra AIS maintenance burden is undesirable.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.

Sailor / Cobham

1
EPIRB 4065
406 MHz / GPS · Navigation Data / Sensor · 406 MHz GPS‑enabled EPIRB
Frequency
406 MHz
Gps
ja
Solas required
ja
Common Failures & Inspection Points
  • Antenna, feeder or casing damage reduces communication or locating performance and may cause self-test faults
  • Battery, emergency-power or power-supply deterioration causes resets, low-voltage alarms or failure to operate
  • Water ingress or corrosion causes intermittent operation, damaged connectors or internal faults
  • Configuration, registration or identity errors cause incorrect vessel or beacon information
  • Internal transceiver, display or control faults cause failed self-tests, missing communications or unavailable emergency functions
Service: Inspect antennas, casing, mounting, power supplies, emergency batteries, controls and programmed identity data as applicable. Perform only approved self-tests and permitted radio tests. Verify accessibility, release arrangements and emergency-power availability where required. Refer to manufacturer and regulatory documentation for the exact figure for test and replacement criteria.
Spare Parts: Carry fuses, handsets or microphones where applicable, approved batteries or chargers, antenna connectors, mounting or release parts and supported control modules.
Strengths
  • Integrated GPS provides precise coordinates without manual input
  • Meets SOLAS and IMO GMDSS Class A requirements out‑of‑the‑box
  • Robust, waterproof housing suitable for harsh marine environments
  • Long battery life (typically 5 years) with automatic activation on water immersion
Weaknesses
  • Battery expiry tracking can be cumbersome; manual log required
  • Mounting hardware (HRU) has been reported as difficult to install correctly
  • Registration database must be kept current; failure leads to non‑compliance
  • No built‑in battery health monitoring or remote status check
Typical Vessels: TankerContainer shipBulk carrierPassenger ferryOffshore supply vesselFishing vessel
Certifications: IMO GMDSS Class A EPIRBUSCG Type Approval
Decision Guide: Choose if you need a proven, SOLAS‑compliant EPIRB with integrated GPS and a rugged design for ocean‑going vessels. Avoid if you require advanced battery health monitoring, easier mounting solutions, or automated registration updates.
Use Cases: Distress, safety, ship-to-ship, ship-to-shore and search-and-rescue service.