AIR-AP2802E-A-K9C Cisco Aironet 2800e 802.11ac Wave 2 Access Point
AIR-AP2802E-A-K9C
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AIR-AP2802E-A-K9C Cisco Aironet 2800e 802.11ac Wave 2 Access Point

AIR-AP2802E-A-K9C

AIR-AP2802E-A-K9C is a 2802E indoor access point for external antennas supplied as a single-unit, configurable order with regulatory-domain token A. Cisco lists its channel profile as 2.4 GHz channels 1-11; 5 GHz blocks at 5.180-5.320, 5.500-5.700 excluding 5.600-5.640, and 5.745-5.825 GHz. Verify destination approval, controller compatibility, exact quantity, antenna bill of materials and the 31 October 2027 support horizon before purchase.

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AIR-AP2802E-A-K9C Cisco Aironet 2800e 802.11ac Wave 2 Access Point
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AIR-AP2802E-A-K9C Overview

AIR-AP2802E-A-K9C exact order identity

AIR-AP2802E-A-K9C is a Cisco Aironet 2800 Series controller-based 802.11ac Wave 2 access point order. The exact line combines a 2802E indoor access point for external antennas, regulatory-domain token A, and a single-unit, configurable order.

Antenna boundary

Cisco documents four RP-TNC antenna connectors plus a Smart Antenna connector on the 2802E. Antennas are a separate engineered part of the deployment bill of materials. Before release, record each Cisco-supported antenna part number, connector use, gain, pattern, cable type, cable loss, mounting orientation and local approval. A connector fit alone does not establish RF performance or regulatory suitability.

Order-form boundary

Cisco's ordering convention uses K9C for a configurable single unit. The C suffix does not make the access point globally deployable; the final configured domain and destination approval must still be present on the quotation and received label. Hold the unit at receiving if the configured domain is absent or differs from the approved order. Preserve the configuration selection, chassis serial, destination evidence and controller-domain check as one release record. Because this is a configurable line, purchasing must retain the finally selected domain on both the authorized quotation and received label. The single unit needs one serial-level record, while accessories, controller readiness and destination approval remain separate acceptance items.

A regulatory-domain channel evidence

Cisco's 2800 Series data sheet lists the A profile as 2.4 GHz channels 1-11; 5 GHz blocks at 5.180-5.320, 5.500-5.700 excluding 5.600-5.640, and 5.745-5.825 GHz. The A plan combines lower, middle and upper 5 GHz blocks, but the documented gap inside the middle block matters. The RF design and controller template must preserve that exclusion instead of treating the listed span as continuous.

Export the controller channel list after provisioning and compare it with the approved A-domain record. Investigate any channel inside the excluded middle sub-block or any missing approval evidence before service activation. Regulatory-domain letters are identifiers, not country names; use Cisco's compliance tool for the actual deployment country and retain the lookup date.

Procurement inference: this profile is useful only when the destination approval and controller expose the documented lower, split-middle and upper choices. The middle exclusion should appear explicitly in the site worksheet, because a broad frequency-range label can conceal it. When migrating controllers, compare exported enabled-channel lists before and after the move; do not use unchanged SSID service as proof that the regulatory plan remained intact.

Deployment evidence worksheet

Controller join evidence

Stage the access point on the controller release intended for production. Retain the controller model, software version, discovery path, authorization method and first successful CAPWAP join. Confirm that configuration download completes and that both radios reach an expected operational state. Remove any temporary staging authorization before handover. This evidence separates an orderable access point from a unit that has actually been proven compatible with the planned controller environment.

Power-state acceptance

Measure power after the access point has joined its controller and the planned radios and services are active. Record switch model, port, negotiated power level, LLDP result and any reduced-capability warning. An idle boot result is not sufficient evidence for the deployed power budget. If an injector is proposed, verify its supported use and include its exact identity in the maintained bill of materials rather than treating it as an unspecified accessory.

Ethernet and cabling proof

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.

Mechanical installation record

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.

Software lifecycle file

Record the controller release approved for this unit, the source used to verify support, the last tested date and the owner for software advisories. Available hardware does not prove compatibility with a current or future controller train. Review Cisco support information before every expansion or replacement. The lifecycle file should also state when this Aironet generation must leave service and which surrounding dependencies need migration.

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.

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.

Operational log retention

Store the initial controller events, switch-port state, radio assignment, channel list and client test results with a consistent asset identifier. Define how long commissioning evidence is retained and who can retrieve it. A later firmware, controller or RF change should add a new dated observation rather than overwrite the original. The resulting history supports lifecycle decisions and distinguishes a new regression from the accepted baseline.

Related Aironet 2802 order records

Official evidence: Cisco Aironet 2800 Series data sheet; Cisco 2800 Series getting started guide; Cisco 2800 Series support and lifecycle page; and Cisco wireless compliance tool.

AIR-AP2802E-A-K9C Specification

Exact model / SKUAIR-AP2802E-A-K9C
Exact Cisco order modelAIR-AP2802E-A-K9C
Access-point familyCisco Aironet 2800 Series
Wireless generationController-based 802.11ac Wave 2
Antenna architectureExternal-antenna model; four RP-TNC connectors plus Smart Antenna connector
Antenna procurement boundaryCompatible antennas and installation hardware require a separate approved bill of materials
Order formsingle-unit, configurable order
Physical unit quantity1
Configuration stateConfigurable order; retain final selected domain evidence
Regulatory-domain tokenA
Cisco-listed channel profile2.4 GHz channels 1-11; 5 GHz blocks at 5.180-5.320, 5.500-5.700 excluding 5.600-5.640, and 5.745-5.825 GHz
LifecycleEnd of sale 31 October 2022; last support date 31 October 2027
Migration familyCisco Catalyst 9100 family; validate the exact replacement design
Source matchAIR-AP2802E-A-K9C: 2802E antenna form, A regulatory-domain profile, single-unit, configurable order, quantity 1
Official manufacturer referenceCisco Aironet 2800 Series official data sheet

AIR-AP2802E-A-K9C Warranty

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AIR-AP2802E-A-K9C FAQ

What is AIR-AP2802E-A-K9C?

AIR-AP2802E-A-K9C Cisco Aironet 2800e 802.11ac Wave 2 Access Point is a CISCO Aironet 2800 Series Access Points product supplied by YYST Global for enterprise IT procurement and infrastructure projects.

What wireless or client capacity is listed for AIR-AP2802E-A-K9C?

For AIR-AP2802E-A-K9C, the manufacturer specification lists wireless generation as Controller-based 802.11ac Wave 2.

Is AIR-AP2802E-A-K9C available from YYST Global?

AIR-AP2802E-A-K9C is in stock at YYST Global. Contact the sales team to confirm the required quantity, exact configuration, delivery destination and current lead time before ordering.

What is the price of AIR-AP2802E-A-K9C?

Please request a quote for AIR-AP2802E-A-K9C. Final pricing depends on stock, quantity, configuration and delivery destination.

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