AIR-AP1815W-S-K9 is a compact Cisco Aironet 1815w access point for wall or junction-box installation in hospitality, residence and multi-dwelling environments. It supports concurrent 2.4-GHz and 5-GHz 2x2 radios with two spatial streams and integrated antennas.
Cisco defines AIR-AP1815W-x-K9 as the dual-band controller-based 802.11ac Wave 2 order. Record the target WLC, supported release, discovery path, entitlement and successful CAPWAP join.
The domain letter is an ordering identifier, not a country name. Compare the complete S-domain PID on quotation, carton and asset record; family equivalence is not regulatory equivalence.
Make quotation accuracy the S-domain control. The approved quote, supplier confirmation, received carton and asset record must carry the complete same PID. A substitution request should identify antenna form, controller-image state and regulatory token separately. Only after destination approval and controller review should the replacement line be accepted, even if pricing and lead time are unchanged.
The 1815w provides one Gigabit uplink, three local Gigabit Ethernet ports and one passive RJ-45 pass-through path. LAN 1 can provide 802.3af Class 0 PoE-out only when the AP itself receives 802.3at; there is no PoE output when the AP receives 802.3af.
The unit uses integrated dual-band antennas with approximately 2 dBi peak gain at 2.4 GHz and 3 dBi at 5 GHz. It installs vertically with AIR-AP-BRACKET-W3; AIR-AP1815W-KIT is a separate spacer and RJ-45 jumper option when the cabling path requires it.
Cisco lists the Aironet 1815 family as end of sale, publishes 2027-04-30 as the last support date and identifies the Catalyst 9105AX Series as the migration family. Existing stock does not extend that support date.
Preserve the permanent-link test, patch-lead identities, switch port, negotiated Ethernet rate and error counters. Investigate pair faults, excessive length or rate fallback before wireless acceptance begins. A link light only proves connectivity at some rate; it does not demonstrate the intended uplink performance. Tie the cable result to the AP serial so a later throughput problem can be separated from radio, controller and wired-path causes. Test the uplink, three local Gigabit ports and passive pass-through path required by the room design.
List the bracket, ceiling or wall interface, enclosure requirement, safety restraint, service clearance and cable-entry plan before scheduling installation. Receiving should identify missing mechanical items before the access point reaches site. Photograph the mounted label and final cable entry, then record how the unit can be reached for replacement. A complete electronic order can still be an unusable deployment kit when mechanical dependencies are omitted. Reconcile AIR-AP-BRACKET-W3, the Torx screw and any AIR-AP1815W-KIT spacer or jumper.
Compare antenna form, regulatory token, configuration suffix, pack quantity and complete Cisco part number on the authorized quotation. Treat any changed token as a substitution that requires a new technical and regulatory review. Procurement should not accept a nearby Aironet 1815w line merely because the family name matches. Preserve the approved line, received label and exception decision so the final asset can be traced to the exact order reviewed here. A changed domain letter or K9/K9C suffix is a different 1815w procurement identity.
Define the neighboring access points and client types used for roaming validation. Record handoff behavior, interruption observed, authentication result and controller events along the intended movement path. Compare the outcome with the site's design target rather than declaring success from static association. Where this unit replaces an older AP, test both entry and exit from its cell so a local improvement does not hide a boundary problem. Document roaming from the room cell into neighboring coverage with client and controller events.
Document staging evidence, production window, installer, rollback owner and measurable success criteria. Preserve the prior controller or AP state needed for recovery. After the change, close temporary credentials, compare authentication, monitoring and RF results with the approved baseline, and record the final decision. The work is not complete merely because the unit powers on or appears in a controller list. Rollback must restore controller role, country setting, switch port, room cabling and prior RF service.
Retain the approved controller policy, management authorization, certificate or trust workflow, client authentication test and logging destination. Confirm behavior on the deployed controller software instead of promising a protocol from the hardware family name. Remove temporary onboarding access and verify administrative reachability after handover. This keeps product identity separate from software-dependent security claims. Record only security functions demonstrated on the deployed controller or Mobility Express release.
Preserve the pre-install and post-install noise, neighboring-radio and channel-occupancy observations for the selected location. Record any controller-driven channel change during acceptance. If the regulatory profile limits the channel choices, state how that constraint affected reuse and mitigation. This baseline gives future troubleshooting a reference point and prevents an unrelated interference change from being attributed to the hardware order. Preserve the controller country and enabled-channel export after join or software conversion.
Build the acceptance record so power, wired link, controller join, radio state, authentication and application reachability can be reviewed independently. Preserve timestamps and device identifiers across switch and controller logs. When a test fails, identify the failing boundary before replacing hardware. This avoids classifying a cable, policy or controller problem as an access-point defect and creates evidence that can be reused during support escalation. Use synchronized switch, AP, controller and wired-client events to isolate room-service faults.
Official evidence: Cisco Aironet 1815w data sheet; Cisco 1815w getting-started guide; Cisco wall-plate deployment guide; Cisco 1815 lifecycle bulletin; and Cisco compliance lookup.
| Exact model / SKU | AIR-AP1815W-S-K9 |
| Exact Cisco PID | AIR-AP1815W-S-K9 |
| Product family | Cisco Aironet 1815w wall-plate access point |
| Wireless design | 802.11ac Wave 2; concurrent 2.4 GHz and 5 GHz; 2x2 with two spatial streams |
| Integrated antenna gain | Approximately 2 dBi at 2.4 GHz and 3 dBi at 5 GHz |
| Network ports | One Gigabit uplink; three local Gigabit ports; one passive RJ-45 pass-through |
| PoE input | 802.3af or 802.3at |
| PoE output | LAN 1 supplies 802.3af Class 0 only when AP input is 802.3at |
| Software order | controller-based K9 order |
| Regulatory-domain token | S |
| Country approval | Verify current approval through Cisco's compliance lookup |
| Mounting | Vertical wall or junction-box installation with AIR-AP-BRACKET-W3 |
| Lifecycle | End of sale; last support 2027-04-30 |
| Migration family | Cisco Catalyst 9105AX Series Access Points |
| Source match | AIR-AP1815W-S-K9: Aironet 1815w, controller-based K9 order, regulatory-domain token S |
| Official manufacturer reference | Cisco Aironet 1815w official data sheet |
Product Quotation | ![]() | Condition and Packaging | |
![]() | Technical Support Enquiry | Returns and Replacement | |
Shipping Arrangements | ![]() | Warranty Terms |
AIR-AP1815W-S-K9 Cisco Aironet 1815W 2x2:2 MU-MIMO Access Point is a CISCO Aironet 1815w Access Point product supplied by YYST Global for enterprise IT procurement and infrastructure projects.
For AIR-AP1815W-S-K9, the manufacturer specification lists wireless design as 802.11ac Wave 2; concurrent 2.4 GHz and 5 GHz; 2x2 with two spatial streams.
For AIR-AP1815W-S-K9, the manufacturer specification lists network ports as One Gigabit uplink; three local Gigabit ports; one passive RJ-45 pass-through.
For AIR-AP1815W-S-K9, the manufacturer specification lists poe input as 802.3af or 802.3at.
Contact YYST Global to confirm availability for AIR-AP1815W-S-K9, the required quantity, exact configuration, delivery destination and current lead time before ordering. A product listing does not confirm current inventory.
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AIR-AP1815I-K-K9 is a Cisco Aironet 1815i indoor access point with integrated antennas, concurrent 2.4-GHz and 5-GHz 2x2 radios, two spatial streams, one Gigabit Ethernet PoE uplink, regulatory-domain token K and a controller-based K9 order.