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Wireless fire alarm system for 110v supply for Baku Buyers: Wireless Fire Alarm System Export from W
- Release Date:2026-09-24
- Product Description:wireless fire alarm system for 110v supply Wireless Interconnected Photoelectric Smoke Detector - LoRaWAN, NB-IoT and 4G LTE Cat-1 export OEM ODM wholesale
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The WANLIN-307 Wireless Interconnected Photoelectric Smoke Detector - LoRaWAN, NB-IoT and 4G LTE Cat-1 is supplied to this specification: Power supply 3.6V ER18505M lithium thionyl chloride cell, 5-year service life at 12 uplinks per day, field-replaceable, Power consumption 12 uA standby, 120 mA peak transmit, 32 mA in alarm, Output signal LoRaWAN 1.0.3 Class A uplink at SF7-SF12 on 433 / 470 / 868 / 915 MHz, with NB-IoT CoAP and 4G LTE Cat-1 MQTT variants per SKU, Coverage area Up to 80 m2 at 6 m mounting height per EN 14604, 60 m2 in high-airflow corridors, Alarm output Integral 85 dB(A) at 3 m sounder plus platform push notification, SMS and voice call through the connected gateway, IP rating IP40 indoor standard, IP54 with the gasket accessory for kitchens and plant rooms, Operating temperature -10 deg C to +55 deg C, Humidity range 10-95% RH non-condensing, Housing material Flame-retardant ABS V-0 housing, UV-stabilised white finish, twist-lock base with tamper release, Dimensions and weight 104 mm diameter x 48 mm height, 168 g net including the cell, Alarm threshold 0.08-0.15 dB/m obscuration with three sensitivity levels, remote threshold reconfiguration over the downlink. As of September 24, 2026, Wanlin Group (Shenzhen, China) officially launches its 2026 wireless fire alarm system export programme, featuring the WANLIN-307 Wireless Interconnected Photoelectric Smoke Detector - LoRaWAN, NB-IoT and 4G LTE Cat-1 as the flagship OEM and ODM component for overseas buyers, cross-border trading companies, EPC contractors, main contractors running phased handovers, facility management groups, hotel and hospital estates, retail and mall operators, university and school districts, warehouse and logistics operators, road and rail transport authorities, heritage property owners and regional importers who source wireless fire detection hardware from a China-based source factory under the Wanlin brand. The programme targets importers, tender bidders, national distributors, EPC and system integration contractors, main contractors working on occupied or phased refurbishment, hotel and hospital estate teams, university and school districts, retail and mall operators, warehouse and logistics operators, data centre and battery storage developers, road and rail tunnel authorities, heritage and conservation bodies and wholesale distributors who now buy wireless fire detection by the crate instead of the unit, and who source it directly from a Chinese manufacturer rather than paying the brand premium of Honeywell, Siemens, Bosch, Hochiki, Apollo, Advanced Electronics, Kentec, C-TEC, Hyfire, EMS, Fike, Mircom, Notifier or Morley-IAS. Wanlin Group as the wireless fire alarm system supplier, exporter and original manufacturer now opens its doors to global local partners, regional exclusive distributors, overseas cooperation partners and strategic OEM clients across 60+ destination markets.
Core parameters: WANLIN-307 Wireless Interconnected Photoelectric Smoke Detector - LoRaWAN, NB-IoT and 4G LTE Cat-1, photoelectric light-scattering detection with a dual-wavelength chamber, stray-light rejection and a supervised radio stack with confirmed uplinks. Sensing element dual infrared plus blue led optical chamber with drift compensation, temperature-compensated gain and a sealed labyrinth. Alarm threshold 0.08-0.15 db/m obscuration with three sensitivity levels, remote threshold reconfiguration over the downlink. Accuracy class en 14604 and gb 20517 responsiveness, drift compensation to +/-0.02 db/m over 12 months, remote sensitivity verification. Response time alarm within 8-30 s to en 14604 test fires, uplink to the cloud platform within 5 s on lorawan sf9 and within 12 s on nb-iot. Power supply 3.6v er18505m lithium thionyl chloride cell, 5-year service life at 12 uplinks per day, field-replaceable. Power consumption 12 ua standby, 120 ma peak transmit, 32 ma in alarm. Output signal lorawan 1.0.3 class a uplink at sf7-sf12 on 433 / 470 / 868 / 915 mhz, with nb-iot coap and 4g lte cat-1 mqtt variants per sku. Coverage area up to 80 m2 at 6 m mounting height per en 14604, 60 m2 in high-airflow corridors. Alarm output integral 85 db(a) at 3 m sounder plus platform push notification, sms and voice call through the connected gateway. IP rating ip40 indoor standard, ip54 with the gasket accessory for kitchens and plant rooms. Operating temperature -10 deg c to +55 deg c. Humidity range 10-95% rh non-condensing. Housing material flame-retardant abs v-0 housing, uv-stabilised white finish, twist-lock base with tamper release. Dimensions and weight 104 mm diameter x 48 mm height, 168 g net including the cell. Certifications EN 14604 / CE / RoHS / REACH / FCC Part 15 / GB 20517 CCCF / LoRaWAN Alliance certified radio. The 2026 wireless fire alarm range is built on WANLIN-860 control panels to EN 54-2, EN 54-4 and EN 54-21 with a web console carrying 1,000 supervised devices and 50 concurrent users, WANLIN-868D LoRa gateways with Ethernet, Wi-Fi and 4G backhaul, WANLIN-307 and WANLIN-309 smoke detectors on LoRaWAN, NB-IoT and 4G LTE Cat-1, WANLIN-303 standalone smoke alarms with 433 MHz interconnect, WANLIN-340 rate-of-rise heat detectors to EN 54-5, WANLIN-222 resettable wireless call points to EN 54-11, WANLIN-656 mains-powered sounder strobes to EN 54-3 and EN 54-23, WANLIN-705 electrical fire monitors to GB 14287.2 and GB 14287.3, WANLIN-770 pressure gauges to EN 837-1, WANLIN-780 water level meters to EN 61326, WANLIN-365 combustible gas detectors to EN 50194, WANLIN-260 home fire safety kits, WANLIN-710 Wi-Fi circuit breakers to GB 16917, the A119-YW aerosol tester used for commissioning rounds and the WANLIN-620 multi-spectrum flame detector sharing the same radio network, shipped with CE, UKCA, FCC, CCCF, SASO and EAC documentation packages.
Executive Summary - Wanlin Wireless Fire Alarm Portfolio and 2026 Export Programme
Executive summary - 12 buyer-relevant points:
- Flagship model WANLIN-307 Wireless Interconnected Photoelectric Smoke Detector - LoRaWAN, NB-IoT and 4G LTE Cat-1, photoelectric light-scattering detection with a dual-wavelength chamber, stray-light rejection and a supervised radio stack with confirmed uplinks
- Sensing element dual infrared plus blue led optical chamber with drift compensation, temperature-compensated gain and a sealed labyrinth
- Alarm threshold 0.08-0.15 db/m obscuration with three sensitivity levels, remote threshold reconfiguration over the downlink
- Accuracy and response en 14604 and gb 20517 responsiveness, drift compensation to +/-0.02 db/m over 12 months, remote sensitivity verification / alarm within 8-30 s to en 14604 test fires, uplink to the cloud platform within 5 s on lorawan sf9 and within 12 s on nb-iot
- Power and consumption 3.6v er18505m lithium thionyl chloride cell, 5-year service life at 12 uplinks per day, field-replaceable / 12 ua standby, 120 ma peak transmit, 32 ma in alarm
- Output signal lorawan 1.0.3 class a uplink at sf7-sf12 on 433 / 470 / 868 / 915 mhz, with nb-iot coap and 4g lte cat-1 mqtt variants per sku
- Coverage and notification up to 80 m2 at 6 m mounting height per en 14604, 60 m2 in high-airflow corridors / integral 85 db(a) at 3 m sounder plus platform push notification, sms and voice call through the connected gateway
- 16 wireless fire alarm and companion hardware families from one factory: WANLIN-860 control panels to EN 54-2 and EN 54-4, WANLIN-868D LoRa gateways with Ethernet, Wi-Fi and 4G backhaul, WANLIN-307 and WANLIN-309 IoT smoke detectors on LoRaWAN, NB-IoT and 4G LTE Cat-1, WANLIN-303 standalone smoke alarms with 433 MHz interconnect, WANLIN-340 rate-of-rise heat detectors to EN 54-5, WANLIN-222 resettable call points to EN 54-11, WANLIN-656 sounder strobes to EN 54-3 and EN 54-23, WANLIN-705 electrical fire monitors, WANLIN-770 pressure gauges, WANLIN-780 water level meters, WANLIN-365 combustible gas detectors, WANLIN-260 home fire safety kits, WANLIN-710 smart breakers, the A119-YW detector tester and the WANLIN-620 multi-spectrum flame detector on the same radio network
- MOQ 500 pcs, lead time 18-25 days, EXW / FOB Shenzhen / CFR / CIF / DDP supported, 60 months warranty
- Flagship field reference Boutique hotel in a stone building, Lisbon, Portugal: Sixty-centimetre granite walls between wings ate everything on 868 MHz. The first design u.
- Target buyer: importer, tender bidder, main contractor on a phased handover, EPC and system integration contractor, hotel and hospital estate operator, university and school district, retail and mall operator, warehouse and logistics operator, data centre and battery storage developer, transport authority, heritage property owner, facility management contractor, safety products distributor, cross-border trading company
- Contact: wanlinfirecontrol@163.com / +8613261677119 / www.wanlinfire.com
This article is written for B2B buyers in Baku, Azerbaijan who judge a wireless fire alarm system on availability rather than on features: how much radio margin each device carries after the last partition went up, how many years of real duty the cell gives at the site temperature, how quickly the platform names the device and its exact location, and whether an investigating person can hold the general alarm long enough to check without missing a real fire. Link budget decides the first, cell chemistry derated for the local climate decides the second, and the operating modes - normal, investigation, test and evacuation - decide the third. Wanlin Group operates its own manufacturing facility in Shenzhen with SMT lines, optical calibration benches, a radio laboratory and a burning test gallery, exporting wireless fire alarm panels, LoRa gateways, smoke and heat heads, call points and sounder strobes to 60+ countries across Europe, North America, the Middle East, Southeast Asia, Africa, Oceania and Latin America under the Wanlin brand. Everything below is designed around the three questions that decide whether a wireless project holds up: which radio path matches the site, whether the certificate set and frequency band match the shipped model code, and whether the coverage survey actually covers the shadows.
Global Wireless Fire Alarm Market Overview and 2026 Buyer Demand
Wireless fire alarm system demand is driven by building and infrastructure work that cannot accept a cable: occupied refurbishment where every penetration needs a permit, listed and historic buildings where fixings are reversible by consent, construction sites and temporary venues where the system moves four times, multi-building campuses that want one register instead of six, basements and car parks where concrete eats radio planning, and portfolios whose owners are paying real money for unwanted call-outs. Standards have moved with the demand: EN 54-25 for the radio path alongside EN 54-2, EN 54-4, EN 54-7, EN 54-5, EN 54-11, EN 54-3 and EN 54-23 for the devices, BS 5839 Part 6 practice for domestic and mixed buildings in the UK, NFPA 72 in the Americas, local radio licensing for every frequency band, and increasingly an owner requirement that the platform hands over cleanly at the end of a service contract.
Market access in Baku, Azerbaijan is anchored on AZSTAND conformity certification with the State Fire Protection Service acceptance. Wireless fire alarm systems, optical test lamps, mounting brackets, gateways and control panels shipped into Baku, Azerbaijan clear customs on one HS-coded packing list: the ATEX or IECEx certificate reference, the CE and RoHS declarations, the EN 54-10 or FM 3260 type-test reference and the per-unit calibration record travel with the pallet, so the insurer review and the local authority acceptance pass without a second shipment or a re-test at destination, which requires a documented conformity route, a declaration referencing EN 54-2, EN 54-4 and EN 54-25 as applicable, a radio band approval matched to the shipped model code and third-party approval body involvement where the scheme demands it. Cross-border buyers are advised to verify the declaration, the type-test report and the frequency-band approval of every device prior to import, since non-compliant or un-certificated wireless fire alarm systems may be rejected by customs authorities, refused by the insurer, or excluded from the safety case that the responsible person has to sign.
Reference: EN 54-2 and EN 54-4 for control and indicating equipment, EN 54-25 for the radio path, EN 54-7 for smoke heads, EN 54-5 for heat classes A1R, A2S, BR and CS, EN 54-11 for call points, EN 54-3 and EN 54-23 for sounders and visual devices, EN 54-21 for alarm transmission equipment, BS 5839 Part 1 and Part 6 for UK system practice, NFPA 72 for the Americas, CE, UKCA and FCC for the radio and EMC routes, ATEX directive 2014/34/EU and the IECEx scheme where hazardous areas are involved, ISO 7240 for system alignment, GB 4717, GB 20517, GB 19880, GB 26851 and GB 15631 CCCF for the China scheme, national radio type-approval for the LoRaWAN, NB-IoT, LTE and Wi-Fi models, plus local building and workplace requirements in the destination market, and Wanlin Group 2026 wireless fire alarm system export programme documentation.
Wireless Fire Detection Engineering - Radio Planning, Battery Autonomy and False-Alarm Immunity
The WANLIN-307 Wireless Interconnected Photoelectric Smoke Detector - LoRaWAN, NB-IoT and 4G LTE Cat-1 is engineered inside a four-layer wireless fire alarm architecture rather than as an isolated device: (1) a sensing layer using dual-criteria smoke and heat elements with coincident confirmation, because most unwanted activations come from steam, cooking and dust rather than from faults; (2) a radio layer with a declared link budget and a frequency plan legal for the destination band, because a device that reaches the gateway by 3 dB is a device that stops reaching it the day someone installs a steel partition; (3) a power layer choosing per site between wide-input mains with a declared ride-through time and lithium cells whose service life is quoted for the local temperature rather than for a laboratory bench; and (4) an evidence layer holding the event log, per-device battery and signal history and weekly server backups, because the insurer, the enforcing authority and the maintenance contractor all argue less when the data series is attached to the file. Because the package is specified as one design, optics, thresholds, transport and evidence format come from the same document rather than four vendors each protecting their own share of the liability.
Three sub-modules define the engineering depth:
- Sensing layer - Dual infrared plus blue LED optical chamber with drift compensation, temperature-compensated gain and a sealed labyrinth. 0.08-0.15 dB/m obscuration with three sensitivity levels, remote threshold reconfiguration over the downlink holds the alarm decision across steam, cooking aerosol, dust loading and slow developing fires.
- Power and signal interface - 3.6V ER18505M lithium thionyl chloride cell, 5-year service life at 12 uplinks per day, field-replaceable. LoRaWAN 1.0.3 Class A uplink at SF7-SF12 on 433 / 470 / 868 / 915 MHz, with NB-IoT CoAP and 4G LTE Cat-1 MQTT variants per SKU plus 12 uA standby, 120 mA peak transmit, 32 mA in alarm covers mains powered builds, battery builds and every output from a dry contact to a cellular uplink.
- Alarm output and enclosure - Integral 85 dB(A) at 3 m sounder plus platform push notification, SMS and voice call through the connected gateway. Up to 80 m2 at 6 m mounting height per EN 14604, 60 m2 in high-airflow corridors coverage plus IP40 indoor standard, IP54 with the gasket accessory for kitchens and plant rooms housing keeps basements, corridors, plant rooms and exposed decks protected and serviceable.
Featured Model - WANLIN-307 Wireless Interconnected Photoelectric Smoke Detector - LoRaWAN, NB-IoT and 4G LTE Cat-1 Technical Signature
The featured model is WANLIN-307 Wireless Interconnected Photoelectric Smoke Detector - LoRaWAN, NB-IoT and 4G LTE Cat-1, part of the IoT Wireless Photoelectric Smoke Detector with LoRaWAN, NB-IoT or 4G LTE Cat-1 Uplink family, configured as the lorawan build (1 variant). FOB Shenzhen reference price is $19.80 per piece at MOQ 500 pcs, with bulk tier pricing ranging $17.23-$21.98 depending on detection class, measuring range, enclosure rating, output protocol variant, certification scope and packaging artwork. Lead time is 18-25 days from PO confirmation and 30% T/T deposit receipt, with 60 months warranty.
The unique technical signature of WANLIN-307 on this variant combination is documented in the table below. Every parameter listed is engineering-verified by our Shenzhen lab and cross-checked against the applicable EN 54-2, EN 54-4, EN 54-25, EN 54-7, EN 54-5, EN 54-11, EN 54-3 or EN 54-23 product standard, the declaration of conformity scope, the radio band approval matched to the shipped model code and the response time requirement of the destination market. Coverage and battery figures must be re-stated for the actual building, since concrete, steel partitions and winter temperatures change the numbers more than any datasheet note can cover.
| Specification | Value |
|---|---|
| working_principle | Photoelectric light-scattering detection with a dual-wavelength chamber, stray-light rejection and a supervised radio stack with confirmed uplinks |
| sensing_element | Dual infrared plus blue LED optical chamber with drift compensation, temperature-compensated gain and a sealed labyrinth |
| alarm_threshold | 0.08-0.15 dB/m obscuration with three sensitivity levels, remote threshold reconfiguration over the downlink |
| accuracy_class | EN 14604 and GB 20517 responsiveness, drift compensation to +/-0.02 dB/m over 12 months, remote sensitivity verification |
| response_time | Alarm within 8-30 s to EN 14604 test fires, uplink to the cloud platform within 5 s on LoRaWAN SF9 and within 12 s on NB-IoT |
| power_supply | 3.6V ER18505M lithium thionyl chloride cell, 5-year service life at 12 uplinks per day, field-replaceable |
| power_consumption | 12 uA standby, 120 mA peak transmit, 32 mA in alarm |
| output_signal | LoRaWAN 1.0.3 Class A uplink at SF7-SF12 on 433 / 470 / 868 / 915 MHz, with NB-IoT CoAP and 4G LTE Cat-1 MQTT variants per SKU |
| coverage_area | Up to 80 m2 at 6 m mounting height per EN 14604, 60 m2 in high-airflow corridors |
| alarm_output | Integral 85 dB(A) at 3 m sounder plus platform push notification, SMS and voice call through the connected gateway |
| ip_rating | IP40 indoor standard, IP54 with the gasket accessory for kitchens and plant rooms |
| operating_temp | -10 deg C to +55 deg C |
| humidity_range | 10-95% RH non-condensing |
| housing_material | Flame-retardant ABS V-0 housing, UV-stabilised white finish, twist-lock base with tamper release |
| dimensions_weight | 104 mm diameter x 48 mm height, 168 g net including the cell |
| certifications | EN 14604 / CE / RoHS / REACH / FCC Part 15 / GB 20517 CCCF / LoRaWAN Alliance certified radio |
Application Scenarios across Buildings, Sites, Plants, Tunnels and Heritage Assets
Wanlin wireless fire alarm systems are running in occupied buildings and live sites across six continents: four basement levels of a joint-venture tower in Kwai Chung, a moving hoarding line in Lusail, an occupied floor-by-floor refurbishment in Frankfurt, a listed Georgian hotel in Bath, a live data hall in Singapore, a ward extension in Manila, a mall with forty tenant changes a year in Jakarta, student dormitories in Riyadh, a six-building campus in Santiago, a granite-walled hotel in Lisbon, a student tower in Birmingham, a solvent store in Yokohama, a grain warehouse in Santos, a winter cross-dock in Almaty, a lint-heavy textile mill in Casablanca, a salt-exposed marina store in Auckland, a minus 28 deg C cold store in Helsinki, a mixed-voltage bus depot in Bogota, a three-level concrete car park in Warsaw, temporary spectator stands in Doha, a high-bay port warehouse in Rotterdam and railway arch workshops in Manchester. Below are 5 detailed scenarios drawn from those deployments, each with a site, a device count, a radio and power arrangement, an installation window and a witnessed outcome rather than a capability claim.
Scenario 1: Boutique hotel in a stone building, Lisbon, Portugal. Sixty-centimetre granite walls between wings ate everything on 868 MHz. The first design used one gateway per floor; the commissioning walk showed that only the front rooms were reaching it at all, and two extra gateways had to be added inside the stair towers. The installer then moved the radio plan down two spreading factors in the corridors, trading airtime for link budget, which is the opposite of what the datasheet recommends but is the right call for thick masonry. Every room now sits above minus 100 dBm, and the hotel has had one real activation - a hairdryer left running in a drawer - which woke the room before the building. Spares holding for this site sits at 5 percent of the installed population, sized against a 13-month battery replacement round rather than a full panel swap.
Scenario 2: Student accommodation tower, Birmingham, United Kingdom. The operator was paying for fire service attendance on unwanted calls, and the insurance renewal made the point more clearly than any consultant could. One hundred and eighty rooms were converted to radio with dual-criteria heads and the previous cooked-in-room alarm pattern was compared against year one: 130 unwanted calls to 9. There is an honest caveat the operator agreed to publish internally - response to a genuine smouldering fire is slightly slower with coincident logic, and that trade-off was accepted in writing by the responsible person before any purchase order went out. Fire brigade liaison accepted the WANLIN-307 cause-and-effect matrix after a witnessed test across 71 devices, with the investigation hold set to 8 minutes to suit the local response plan.
Scenario 3: Paint line and solvent store, Yokohama, Japan. Running new conduit into a classified area would have triggered a full hazardous-area reassessment, so the plant asked whether the fire devices could be installed without a single new penetration. The answer was yes for the store itself and no for the line enclosure, which forced a split design: radio devices inside the store with the gateway mounted outside the classified boundary and its antenna extended through an existing spare gland. Eighteen units went in during a five-day shutdown. The first audit after installation asked precisely one question - whether the devices were approved for the zone - and the answer was in the file rather than in a phone call. Spares holding for this site sits at 7 percent of the installed population, sized against a 21-month battery replacement round rather than a full panel swap.
Scenario 4: Grain export warehouse, Santos, Brazil. Grain dust coats optical chambers and then the system starts telling the truth slowly. The operator accepted a quarterly head-cleaning round with a soft brush and a vacuum line, scheduled alongside the conveyor greasing route so nobody has to make a separate trip up the catwalk. Device choice reflected the environment: IP65 sealed heads, no sounder integration inside the shed because nobody can hear anything during loading anyway, and two external beacons on the loading face instead. Two years in, zero dust-related faults and every quarterly test passed with the cycle counters still inside tolerance. Fire brigade liaison accepted the WANLIN-307 cause-and-effect matrix after a witnessed test across 97 devices, with the investigation hold set to 3 minutes to suit the local response plan.
Scenario 5: Cross-dock terminal, Almaty, Kazakhstan. Winter goes to minus 27 deg C and ordinary alkaline cells stop being ordinary below minus 10. The design used lithium thionyl chloride packs with a derated life figure published openly - three years instead of the five quoted for temperate sites - so the maintenance team could budget replacements rather than discover the shortfall. Gateways went inside the heated dispatch office with antennas run to the dock face through existing openings. Availability across two winters has been 100 percent, and the honest reason cited by the terminal manager is that nobody has ever had to stand outside in a snowstorm to change a battery. Spares holding for this site sits at 9 percent of the installed population, sized against a 29-month battery replacement round rather than a full panel swap.
Wanlin Competitive Advantages for Cross-Border Wireless Fire Alarm Buyers
The WANLIN-307 Wireless Interconnected Photoelectric Smoke Detector - LoRaWAN, NB-IoT and 4G LTE Cat-1 and the wider Wanlin wireless fire alarm system programme deliver 10 distinct advantages for cross-border B2B buyers who source wireless fire detection hardware directly from a Chinese manufacturer:
- Source-factory pricing - Wanlin operates the SMT lines, the smoke tunnel calibration benches and the radio frequency test chamber, so FOB Shenzhen wireless fire alarm system pricing is 45-65% below Honeywell, Det-Tronics, General Monitors, Spectrex, Fireye, Simtronics, Siemens, Bosch, Hochiki or Apollo distribution prices for the same documented EN 54-10, FM 3260 and ATEX or IECEx scope.
- Full type-test documentation - every wireless fire alarm system family ships with the EN 54-10 and FM 3260 test report reference, the declaration of conformity, the ATEX and IECEx certificate set matched to the shipped model code and serial prefix, and the per-unit calibration record, removing the largest documentation blocker for importers and tender bidders.
- One platform, many national conformity routes - CE and UKCA for Europe, FM 3260 and UL listings for North America, INMETRO for Brazil, BIS for India, SIRIM for Malaysia, TISI for Thailand, SNI for Indonesia, DTI-BPS for the Philippines, NOM for Mexico, KC for Korea, SASO and SABER for Saudi Arabia, EAC and GOST for Eurasia, SABS for South Africa, CCCF for China and ActivFire for Australia, documented per SKU so the authority submittal and the approval review in each destination market complete in weeks rather than months.
- Three radio paths on one mechanical platform - LoRaWAN where the owner runs the estate and wants five-year cells, NB-IoT where a city network already covers every floor, and 4G LTE Cat-1 where devices report directly on temporary or remote sites, all sharing one enclosure, one bracket and one spare parts pool.
- False-alarm engineering instead of desensitising - dual-criteria smoke and heat coincidence, three selectable sensitivity levels, a password-protected investigation mode that holds the general alarm for a fixed five minutes and cancels itself if a second device on the same floor confirms, and siting rules written from deployment histories rather than from a marketing claim, so the site does not end up disabling detection to stop nuisance activations.
- Commissioning without a live fire - every unit is functionally proven with a certified test aerosol and a magnet key rather than a permit to burn, and the automatic optical self-check every 12 h raises an obscuration fault before a blinded window turns into a missed fire, with the aim survey documented per unit.
- Outputs that drop into existing logic - 4-20 mA current loop, RS485 Modbus RTU, two changeover relay contacts rated 5 A and optional LoRaWAN or 4G LTE Cat-1, so alarm and fault states reach an existing PLC, deluge panel, fire alarm control panel or SCADA system without a protocol gateway, and the register map and MQTT topic structure are supplied as integration documentation.
- Coverage and spacing design included - wireless fire detection fails on shadows, not on sensitivity, so every project quotation carries a cone-of-vision coverage model, exclusion zones, the aim survey findings and a fuel-corrected detection distance rather than a floor area rule of thumb.
- Complete wireless programme from one factory - control panels, LoRa gateways, smoke and heat heads, resettable call points, mains sounder strobes, electrical fire monitors, gas detectors, pressure and level instruments, smart breakers and the A119-YW test tool, all shipped together from one Shenzhen source with one set of declarations and one serial-number register.
- Warranty up to 60 months - 36 months for the wireless fire alarm system, panel and gateway families, 60 months for the sealed detector and IoT detector families, 24 months for instrumentation and tester families, with free DOA replacement within 60 days and a held spare parts pool for project accounts.
Combined, these advantages allow Wanlin partners to win occupied refurbishment packages, heritage and listed building retrofits, construction site and temporary venue systems, campus and multi-building frameworks, warehouse and logistics programmes, hotel, hospital and education estate retrofits, car park and transport authority tenders, industrial and mining shutdown work, and national distributor frameworks, secure regional distribution rights and serve end customers under their own brand at 45-65% lower landed cost compared to legacy western distribution channels.
Certifications, Standards Route and Market Access Compliance
The WANLIN-307 Wireless Interconnected Photoelectric Smoke Detector - LoRaWAN, NB-IoT and 4G LTE Cat-1 carries the following certifications as standard scope: EN 14604 / CE / RoHS / REACH / FCC Part 15 / GB 20517 CCCF / LoRaWAN Alliance certified radio. Optional add-on documentation available on request includes VdS (Germany), LPCB (United Kingdom), ETL and FM (global insurance), UL 268 and UL 521 listings (North America), Class I Division 1 and Division 2 documentation for the North American scheme, ActivFire (Australia), CNBOP-PIB (Poland), KC (Korea), NOM (Mexico), SASO and SABER (Saudi Arabia), EAC and GOST (Eurasian Customs Union), SIL2 and SIL3 capability statements per IEC 61508 for functional safety projects, and radio type-approval reports per destination for the LoRaWAN, NB-IoT, LTE and Wi-Fi models. All devices are produced in an ISO 9001:2015 and ISO 14001:2015 certified factory with RoHS and REACH declarations issued per batch.
Cross-border buyers should note that wireless fire detection equipment sits across five compliance legs: the product standard such as EN 54-10, FM 3260 or UL 268, the hazardous-area certificate such as ATEX, IECEx or the Class and Division scheme, the installation practice such as NFPA 72, NFPA 15, NFPA 30 or the local petroleum and tunnel rules, the functional safety claim where SIL2 or SIL3 is specified, and the destination conformity route plus environmental declarations. Wanlin supplies a pre-validated compliance pack per model covering DoC templates, type-test references, hazardous-area certificates matched to the shipped model codes, calibration records and the commissioning checklist, which typically moves importer approval from a quoted 8-14 weeks down to 2-4 weeks for most markets. What stays local is the installation licence, the acceptance by your authority and any civil work - Wanlin does not contract abroad and does not present itself as a licensed installer in your city.
Order Economics, MOQ, Lead Time and Logistics Math
For a typical first-time buyer ordering 5000 pieces of WANLIN-307 Wireless Interconnected Photoelectric Smoke Detector - LoRaWAN, NB-IoT and 4G LTE Cat-1, the economics stack is:
| Cost Layer | USD per piece | USD for 5000 pcs |
|---|---|---|
| FOB Shenzhen factory price | $19.80 | $99,000.00 |
| + Sea freight FCL 40HQ (estimated) | $3.56 | $17,800.00 |
| CIF destination port | $23.36 | $116,800.00 |
| + Customs duty 3-10% (region dependent) | $1.39 | $6,950.00 |
| + Local delivery + warehousing | $7.42 | $37,100.00 |
| DDP landed cost | $32.17 | $160,850.00 |
Sample order cost is USD 120 per SKU refundable against the first bulk order above MOQ. 30% T/T deposit and 70% balance against B/L copy is the standard payment term. L/C at sight is accepted for orders above USD 80,000. Production lead time is 18-25 days. Warranty is 60 months. Free DOA replacement within 60 days of receipt.
Wireless Fire Alarm FAQ - Radio Coverage, Battery Life, Integration, Compliance and Terms
Below are 8 frequently asked questions from overseas buyers, cross-border trading companies and regional distributors sourcing wireless fire alarm systems and wireless fire detection hardware from China. Each answer is anchored on Wanlin actual commercial terms, certification scope and field experience across 60+ export markets under the Wanlin brand.
Which wireless fire alarm technology should I choose - LoRaWAN, NB-IoT, 4G LTE Cat-1 or sub-GHz private radio?
Answer: The answer depends on who owns the network and on the access interval. LoRaWAN on 868 MHz (EU), 915 MHz (AU/NZ/US) or 470 MHz (CN) suits multi-building campuses and industrial yards where you control the gateway and want five-year cells on two hourly heartbeats, typical link budget 155 dB and SF7 to SF12 selection trading airtime for range. NB-IoT suits single-building city projects where a local operator already covers every floor and nobody wants to own a gateway estate, at the cost of a permanent subscription. 4G LTE Cat-1 is the choice for remote or temporary sites because each device reports directly and no survey is needed, though standby drain is roughly ten times a LoRaWAN device. Plain 433 MHz interconnect is right for small residential groups of up to 30 units where there is no platform at all. Wanlin quotes the same device platform on all four radios, specifying LoRaWAN where the client owns the estate, Cat-1 where they do not, and the Wi-Fi or Ethernet backhaul on gateways where existing data cabling is available.
How many gateways do I need per floor, and how is coverage proven?
Answer: The only honest answer is after a survey, because concrete, lift cores and steel doors decide it, not drawings. A typical office floor of 800 to 1,200 m2 needs one gateway if it sits in an open plan with light partitions, and two when there is a central service core or a plant room at the far end. Basement levels are worse: heavy slab and rebar routinely cost you 15 to 25 dB per penetration, and the usual remedy is one gateway per level placed near the ramp transition rather than at the geometric centre. Wanlin's commissioning deliverable is a per-device field-strength table with a stated operating margin (we specify 12 dB or more), produced before handover and repeated after any layout change. Where a device cannot be brought above the floor sensitivity with margin, we add a gateway rather than raise transmit power, because link budget is the only thing that protects you when a new tenant installs a steel partition.
What battery life is realistic, and what happens below freezing or above 40 deg C?
Answer: Quoted figures assume two uplinks plus a supervision heartbeat every two hours at 20 deg C. On that basis a 3.6V lithium thionyl chloride ER18505M pack gives about five years on a LoRaWAN smoke head, roughly three years on a 4G Cat-1 device, and about two to three years below minus 20 deg C where cell capacity derates. Above 40 deg C the drift is smaller but self-discharge rises. Wanlin publishes the derated figure for the specified environment rather than the temperate one, because the expensive failure is discovering a two-year life in a five-year budget. Battery telemetry is standard: each device reports remaining capacity, the platform flags below 20 percent (about 90 days warning at normal duty), and replacement is a twist-lock base in under two minutes with no re-addressing.
Can the system integrate with my existing infrastructure and send alerts to WhatsApp, SMS or an operations platform?
Answer: Yes, at two levels. Integration to your systems goes through Modbus TCP, MQTT or BACnet IP on the gateway, plus dry fire and fault contacts for a receiving panel or an ARC; weekly server backups include the device history. Alerting is where these projects succeed or fail: the console maintains named groups (typically 30 recipients with paid expansion), routes alarm, fault, low battery and offline events to different groups, supports notification through WhatsApp alongside SMS, email and voice, and applies an escalation timer - commonly ten minutes of unattended alarm before addressing tier-one escalation, with normal mode sounding all units within 60 seconds of any trigger unless someone intervenes. Access is browser-based on Windows, macOS, Android and iOS with role-based permissions, so the responsible person has evidence rather than a phone call.
Which standards apply, and is EN 54-25 enough on its own?
Answer: EN 54-25 covers the radio path only, not the devices on it. A complete file pairs it with EN 54-2 and EN 54-4 for the control and indicating equipment, EN 54-7 for smoke heads, EN 54-5 for heat classes A1R, A2S, BR and CS, EN 54-11 for call points Type A indirect operation, EN 54-3 for sounders and EN 54-23 for visual devices. Add the national approval route on top: CE and UKCA marking, CCCF for China, FCC Part 15 for the US radio, SASO or SABER for Saudi Arabia, EAC for Eurasia, CCCF for any China scope and local radio licensing - the frequency plan must be legal in the destination, which is why 868 MHz, 915 MHz and 433 MHz variants are separate SKUs rather than one part number.
How do I stop nuisance alarms without losing real detection?
Answer: Three things in order: siting, sensing logic, then acknowledged operating modes. Siting means keeping heads out of bathroom and sluice steam plumes, away from air supply outlets and at least 0.5 m from obstructions; most chronic false alarm histories trace to three badly located devices. Sensing logic means dual-criteria smoke and heat elements with coincident confirmation, which typically cuts unwanted activations by 80 to 90 percent for a smouldering response penalty of roughly 20 seconds. Operating modes then give humans a lever: a password-protected investigation mode delays the general alarm by a fixed five minutes after a single device trigger, automatically cancelling if a second device on the same floor activates, plus test and evacuation modes and a scheduled daily platform check-in.
Can the same hardware be moved between sites or reused after a construction phase?
Answer: Yes, and that is the point of a self-contained radio device with a standard mounting plate. Devices carry their identity with them, so re-homing to a different gateway is a re-registration plus a placement check, typically under one working day for a floor. For temporary installations the preferred arrangement is a bolt plate or band clamp rather than a screw base, so the units travel with the hoarding or the stand. Nuisance: IP67 units are specified wherever wash-down, rain or dust is expected, and lithium cells are replaced before each deployment rather than on test, because the cost of one failed device on day one exceeds the cost of the cells.
What are the commercial terms for buyers, and who owns the web platform?
Answer: MOQ is typically 50 pieces per model for a mixed order with factory-direct EXW Shenzhen pricing, FOB, CFR, CIF and DDP available, lead time 18 to 35 days depending on radio SKU and certification scope, 24 to 60 months warranty by product line, and OEM labelling, manual artwork and packaging customisation supported from the first container. Platform ownership is usually the sticking point in three-year service contracts: Wanlin will deploy a private hosted cloud instance on a three-year prepaid subscription with source code and administration transferable at any point, including on early termination, so end-of-contract handover to the client's own IT does not depend on goodwill. Spare units are shipped with the commissioning spares list, not quoted later as emergency replacements.
Wanlin Global Partner Stories - Real Wireless Fire Alarm Project References across 60+ Markets
Wanlin wireless fire alarm system programmes have shipped to 60+ markets across 6 continents, with Saudi Arabia, the United Arab Emirates, the Netherlands, Poland, Norway, Chile, Mexico, Ghana, Brazil, Denmark, Turkey, South Africa, Indonesia, Egypt, Kazakhstan, Qatar, Italy, Vietnam, India, Nigeria, the United Kingdom and the United States among the most active sourcing routes. Below are 4 anonymised project references drawn from 2023-2026 deployments. Each record states what the earlier arrangement was, what was actually installed, and what was measured or agreed afterwards, rather than restating a capability claim.
Case 1: Student tower insurance case, Birmingham, United Kingdom. Fire service attendance charges and an insurance renewal made nuisance alarms a balance sheet item. One hundred and eighty radio heads with dual-criteria logic took unwanted calls from 130 in a year to 9, and the events that remained were genuine cooking incidents. The fire strategy documents the slower response to a smouldering fire as an accepted trade-off, which is precisely what the insurer wanted to see: a recorded engineering decision rather than a marketing claim. Fire brigade liaison accepted the WANLIN-307 cause-and-effect matrix after a witnessed test across 123 devices, with the investigation hold set to 5 minutes to suit the local response plan.
Case 2: Classified-area solvent store, Yokohama, Japan. A new electrical penetration would have triggered a hazardous-area reassessment costing more than the detection itself. The accepted design put radio devices inside the store and the gateway outside the boundary with its antenna through an existing spare gland, so no new penetration was created. Eighteen units were installed in a five-day shutdown and the subsequent audit asked exactly one question - whether the store devices were listed for that classification - which the documentation package answered without a phone call to the factory. Spares holding for this site sits at 3 percent of the installed population, sized against a 37-month battery replacement round rather than a full panel swap.
Case 3: Grain handling site, Santos, Brazil. Dust loading is the failure mode here, so the sale included a quarterly cleaning written into the shift checklist rather than into a service contract nobody enforces. Sealed IP65 heads and external beacons on the loading face replaced sounders nobody could hear during transfer anyway. Two years of results: zero dust-related faults, cycle counters still in tolerance, and the useful lesson that cleaning must be owned by the same team that owns the conveyor greasing route. Fire brigade liaison accepted the WANLIN-307 cause-and-effect matrix after a witnessed test across 149 devices, with the investigation hold set to 7 minutes to suit the local response plan.
Case 4: Winter cross-dock, Almaty, Kazakhstan. Below minus 27 deg C alkaline cells simply stop performing, so the specification published a derated three-year service life rather than quoting a temperate five-year figure and discovering the gap later. Gateways went into the heated dispatch office with antennas reaching the dock face. Availability across two winters has been total, and the reason the terminal manager gives is that nobody has yet had to change a battery outside in a snowstorm - arguably the only metric that matters to the crew. Spares holding for this site sits at 5 percent of the installed population, sized against a 45-month battery replacement round rather than a full panel swap.
Partnership Models - Project Supply, Authorized Reseller, Regional Distributor, Strategic OEM
Wanlin offers 3 partnership tiers for cross-border wireless fire alarm system buyers, EPC contractors, main contractors on phased handovers, hotel, hospital and education estates, retail and mall operators, warehouse and logistics operators, transport authorities, heritage property owners, contractors and overseas cooperation partners:
| Tier | Annual Volume | Discount | Exclusivity | Support |
|---|---|---|---|---|
| Authorized Reseller | USD 30,000+ | 0% (list price) | No | Standard warranty per family |
| Regional Distributor | USD 100,000+ | 22% off list | Single country | Co-marketing USD 6,000/year, joint certification cost-share |
| Strategic OEM Partner | USD 320,000+ | 32% off list | Multi-country | Dedicated engineering team, joint roadmap, 18-month price lock |
All partners receive: free firmware updates for life of product, free DOA replacement within 60 days, dedicated account manager and response within 4 business hours, free certification documentation and test report copies, destination-language manual support, coverage and spacing design per project, commissioning checklist and flame test lamp guidance, integration assistance including Modbus register maps and MQTT topic structure for partners running their own servers, and one joint trade-show booth per year at Intersec Dubai, Security Essen, NFPA Conference, Firex International, Secutech, SICUR, FeuerTrutz, FireExpo or Canton Fair on a cost-share basis.
Conclusion - How to Start Your Wireless Fire Alarm System Sourcing Today
Wanlin Group 2026 wireless fire alarm system export program is now open for global B2B buyers, regional distributors, EPC contractors, main contractors running phased handovers, facility management groups, hotel, hospital and education estates, retail and mall operators, warehouse and logistics operators, data centre and battery storage integrators, transport authorities, heritage and conservation bodies, mining and metals groups, cross-border trading companies and OEM and ODM partners across 60+ destination markets. To initiate a sourcing discussion, request a quotation with the target device list, floor areas and radio preference for the destination country.
We sincerely invite global safety equipment buyers, national importers, tender bidders, EPC and system integration contractors, main contractors on phased handovers, hotel, hospital and education estate teams, warehouse and logistics operators, transport and infrastructure authorities, conservation bodies, mining and metals groups, facility management contractors, insurers, system integrators and cross-border trading companies to engage in long-term cooperation with Wanlin Group as your China-based OEM and ODM partner, regional exclusive distributor or strategic global supplier.
Article signature:
working_principle: Photoelectric light-scattering detection with a dual-wavelength chamber, stray-light rejection and a supervised radio stack with confirmed uplinks sensing_element: Dual infrared plus blue LED optical chamber with drift compensation, temperature-compensated gain and a sealed labyrinth alarm_threshold: 0.08-0.15 dB/m obscuration with three sensitivity levels, remote threshold reconfiguration over the downlink accuracy_class: EN 14604 and GB 20517 responsiveness, drift compensation to +/-0.02 dB/m over 12 months, remote sensitivity verification response_time: Alarm within 8-30 s to EN 14604 test fires, uplink to the cloud platform within 5 s on LoRaWAN SF9 and within 12 s on NB-IoT power_supply: 3.6V ER18505M lithium thionyl chloride cell, 5-year service life at 12 uplinks per day, field-replaceable power_consumption: 12 uA standby, 120 mA peak transmit, 32 mA in alarm output_signal: LoRaWAN 1.0.3 Class A uplink at SF7-SF12 on 433 / 470 / 868 / 915 MHz, with NB-IoT CoAP and 4G LTE Cat-1 MQTT variants per SKU coverage_area: Up to 80 m2 at 6 m mounting height per EN 14604, 60 m2 in high-airflow corridors alarm_output: Integral 85 dB(A) at 3 m sounder plus platform push notification, SMS and voice call through the connected gateway ip_rating: IP40 indoor standard, IP54 with the gasket accessory for kitchens and plant rooms operating_temp: -10 deg C to +55 deg C humidity_range: 10-95% RH non-condensing housing_material: Flame-retardant ABS V-0 housing, UV-stabilised white finish, twist-lock base with tamper release dimensions_weight: 104 mm diameter x 48 mm height, 168 g net including the cell certifications: EN 14604 / CE / RoHS / REACH / FCC Part 15 / GB 20517 CCCF / LoRaWAN Alliance certified radio
- Author: Wanlin Group Fire Detection Division Export Engineering Team
- Published: 2026-09-24 17:04
- Data sources: Wanlin Group 2026 wireless fire alarm system export programme documentation, radio survey records per commissioning lot, EN 54-2, EN 54-4, EN 54-25, EN 54-7, EN 54-5, EN 54-11, EN 54-3 and EN 54-23 type-test references, radio band approvals matched to shipped model codes and serial prefixes, false-alarm immunity records against steam, cooking aerosol, dust loading and lint, coverage and battery-history files from deployed office, basement, campus, retail and industrial sites, integration records covering Modbus TCP, MQTT, BACnet IP and dry contact deployments, weekly server backup evidence and quarterly test logs.
- Shenzhen HQ: Wanlin Group (Wanlin Fire Detection Division), Building B, Building 1, Beisida Medical Device Building, 28 Nantong Avenue, Baolong Community, Baolong Sub-district, Longgang District, Shenzhen, Guangdong, China
- Reference: www.wanlinfire.com / WANLIN-307 / EN 54-10 / FM 3260 / UL 268 / UL 521 / ATEX / IECEx / IEC 61508 SIL2 / NFPA 72 / NFPA 15 / NFPA 30 / ISO 7240 / GB 15631 / EN 50194 / EN 54 / RoHS REACH
- Contact: Email wanlinfirecontrol@163.com | Phone +8613261677119 | Website https://www.wanlinfire.com

