AIR-AP1815I-E-K9 Cisco Aironet 1815I SS MU-MIMO 802.11ac Wave 2 AP
AIR-AP1815I-E-K9
Price:US $483.00
AIR-AP1815I-E-K9 Cisco Aironet 1815I SS MU-MIMO 802.11ac Wave 2 AP product image

AIR-AP1815I-E-K9 Cisco Aironet 1815I SS MU-MIMO 802.11ac Wave 2 AP

AIR-AP1815I-E-K9

AIR-AP1815I-E-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 E and a controller-based K9 order.

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 AIR-AP1815I-E-K9 Cisco Aironet 1815I SS MU-MIMO 802.11ac Wave 2 AP
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AIR-AP1815I-E-K9 Overview

AIR-AP1815I-E-K9 exact order identity

AIR-AP1815I-E-K9 is an indoor Cisco Aironet 1815i 802.11ac Wave 2 access point. It uses internal antennas only, supports concurrent 2.4-GHz and 5-GHz radios with 2x2 MIMO and two spatial streams, and provides one 10/100/1000 Ethernet uplink with 802.3af/at PoE.

Software order boundary

Cisco identifies the K9 line as a dual-band controller-based 802.11ac Wave 2 access point. Record the intended wireless LAN controller and software release, DHCP or DNS discovery path, certificate state and successful CAPWAP join.

E regulatory-domain evidence

The domain letter is an ordering identifier, not a country name. Associate the E-domain compliance result with the installed controller object and repeat the check after any country-setting migration.

Use controller migration as the E-domain evidence scenario. Export the existing country and radio configuration before the move, then compare the post-migration state with the dated Cisco compliance result. Keep both observations beside the exact PID and serial. Unchanged client connectivity is not enough because it does not show that the intended regulatory configuration survived.

Integrated antenna and installation boundary

Cisco documents two integrated 2.4-GHz antennas and two integrated 5-GHz antennas. There is no external-antenna conversion in this PID. Reconcile AIR-AP-BRACKET-8 or other selected mounting hardware and verify the final wall or ceiling placement against the RF survey.

Lifecycle decision

Cisco lists this product family as end of sale, identifies Catalyst 9105AX as the migration direction and publishes 30 April 2027 as the last support date. Available inventory does not extend that date.

Deployment evidence worksheet

Authentication path test

Commission representative clients through association, authentication, address assignment, DNS and application reachability. Preserve the identity policy used, test client type, result and relevant controller logs. An access point that joins its controller has not yet demonstrated the user path. Repeat the test after any controller, certificate or authentication-service change and retain failures separately from RF or switch-port evidence. Test association, authentication, address assignment, DNS and application reachability after the AP is operational.

Roaming acceptance

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. Roaming acceptance must identify neighboring cells, client type and controller events along the movement path.

Monitoring handover

Assign owners for AP reachability, controller join failures, radio utilization, client health and switch-port errors. Confirm that the exact serial appears in inventory and monitoring, then test the alert path. Record dashboard object, notification route and escalation owner. Telemetry that is not tied to an owned asset does not provide a reliable service baseline and will not support later comparison after channel or software changes. Monitoring should join AP serial, controller state, radio health, Ethernet errors and client experience.

Change-window controls

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 assignment, country state, switch port and the previously accepted RF service.

Security baseline

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 settings demonstrated on the deployed controller or Mobility Express release.

Capacity observation

Define the expected concurrent clients, application mix, airtime utilization and channel-width assumptions for this location. After commissioning, capture radio utilization, retry behavior and representative throughput during a meaningful load period. Compare the observation with the survey design and state any shortfall. A peak link rate from a data sheet is not a site capacity result and should not replace measured operating evidence. Use measured airtime, retries and client behavior rather than a published PHY rate as site-capacity evidence.

Interference baseline

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 active country and legal channel state after controller changes or a Mobility Express conversion.

Replacement dependency map

Map this unit to controller, licenses, authentication services, switch power, cable, bracket, antenna design and monitoring objects. For an end-of-sale platform, state which dependencies can be reused by the planned Catalyst migration and which require change. A nominal access-point replacement can fail when the surrounding platform was never inventoried. Keep the map with the asset rather than only in a one-time project file. Cisco names Catalyst 9105AX as the migration family; validate controller, power, mounting and coverage changes.

Related Aironet 1815i order records

Official evidence: Cisco 1815i data sheet; Cisco 1815i getting started guide; Cisco Aironet 1815 lifecycle bulletin; Cisco support page; and Cisco compliance lookup.

AIR-AP1815I-E-K9 Specification

Exact model / SKUAIR-AP1815I-E-K9
Exact Cisco PIDAIR-AP1815I-E-K9
Product familyCisco Aironet 1815i
Wireless design802.11ac Wave 2; concurrent 2.4 GHz and 5 GHz; 2x2 MIMO with two spatial streams
AntennaTwo integrated 2.4-GHz antennas and two integrated 5-GHz antennas
Network and powerOne 10/100/1000 Ethernet uplink with 802.3af/at PoE
Order formcontroller-based K9 order
Regulatory-domain tokenE
Country approvalVerify current approval through Cisco's compliance lookup
LifecycleEnd of sale; last support 2027-04-30
Migration familyCisco Catalyst 9105AX
Source matchAIR-AP1815I-E-K9: Aironet 1815i, controller-based K9 order, regulatory-domain token E
Official manufacturer referenceCisco Aironet 1815i official data sheet

AIR-AP1815I-E-K9 Warranty

Quotation information

Product Quotation
Confirm the exact configuration, quantity and quoted price before ordering

Product quality assurance

Condition and Packaging
Confirm the supplied condition, packaging and product identification in the quotation

Technical support

Technical Support Enquiry
Confirm support scope, provider, eligibility and any applicable charges before purchase

Refund policy

Returns and Replacement
Request return or replacement instructions before sending equipment; approval depends on the applicable order terms

Global shipping services

Shipping Arrangements
Confirm the carrier, shipping charges, destination restrictions and estimated dispatch date in the quotation

Warranty policy

Warranty Terms
Confirm the warranty provider, duration, coverage and exclusions for the exact supplied item; no brand-wide warranty is implied

AIR-AP1815I-E-K9 FAQ

What is AIR-AP1815I-E-K9?

AIR-AP1815I-E-K9 Cisco Aironet 1815I SS MU-MIMO 802.11ac Wave 2 AP is a CISCO Aironet 1815i Access Points product supplied by YYST Global for enterprise IT procurement and infrastructure projects.

What wireless design is listed for AIR-AP1815I-E-K9?

For AIR-AP1815I-E-K9, the manufacturer specification lists wireless design as 802.11ac Wave 2; concurrent 2.4 GHz and 5 GHz; 2x2 MIMO with two spatial streams.

What antenna is listed for AIR-AP1815I-E-K9?

For AIR-AP1815I-E-K9, the manufacturer specification lists antenna as Two integrated 2.4-GHz antennas and two integrated 5-GHz antennas.

What are the power requirements for AIR-AP1815I-E-K9?

For AIR-AP1815I-E-K9, the manufacturer specification lists network and power as One 10/100/1000 Ethernet uplink with 802.3af/at PoE.

Is AIR-AP1815I-E-K9 available from YYST Global?

Contact YYST Global to confirm availability for AIR-AP1815I-E-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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