AIR-AP1852E-D-K9C Cisco Aironet 1852e Dual-band 4x4 MIMO AP
AIR-AP1852E-D-K9C
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AIR-AP1852E-D-K9C Cisco Aironet 1852e Dual-band 4x4 MIMO AP product image

AIR-AP1852E-D-K9C Cisco Aironet 1852e Dual-band 4x4 MIMO AP

AIR-AP1852E-D-K9C

AIR-AP1852E-D-K9C is a 1852e indoor access point for separately purchased external antennas, supplied as a single-unit configurable K9C order for regulatory-domain token D. Verify destination approval, controller software, PoE mode, exact quantity, antenna or mounting bill of materials and the 30 April 2027 support cutoff before purchase.

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AIR-AP1852E-D-K9C Cisco Aironet 1852e Dual-band 4x4 MIMO AP
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AIR-AP1852E-D-K9C Overview

AIR-AP1852E-D-K9C exact order identity

AIR-AP1852E-D-K9C is a 1852e indoor access point for separately purchased external antennas in the Cisco Aironet 1850 Series. This exact SKU combines regulatory-domain token D with a single-unit configurable K9C order. The platform is a dual-band 802.11ac Wave 2 access point with four 5 GHz spatial streams in single-user operation and three in multiuser operation.

Antenna and environmental boundary

Cisco states that external antennas are sold separately and certifies the platform for antenna gains up to 6 dBi at both 2.4 and 5 GHz. Record the approved Cisco antenna part numbers, four radio paths, gain, pattern, cable loss, connectors and mounting orientation. A compatible connector alone is not regulatory or RF-design evidence.

Order and controller boundary

Cisco lists K9C as a configurable controller-based order, and its lifecycle table describes affected K9C lines as Mobility Express products. Retain the final domain and software role on the quotation and received unit. Prove the intended controller or Mobility Express state instead of inferring it from the suffix alone.

D regulatory-domain evidence

Cisco lists this profile as 2.4 GHz channels 1-11; 5 GHz blocks at 5.180-5.320 and 5.745-5.825 GHz. The D profile uses separated lower and upper 5 GHz blocks with no documented middle block. A channel plan that assumes a continuous 5 GHz range is therefore not suitable evidence for this order. Verify that the controller presents the two expected 5 GHz groups and excludes an unapproved middle range. Store the result with the deployment country lookup and the exact D-domain quotation.

Procurement inference: the separation between lower and upper 5 GHz groups should be represented as two planning pools. During acceptance, compare utilization and interference in each pool rather than averaging all 5 GHz observations together. If a replacement AP was previously using a middle-range channel under another profile, document the revised reuse plan before treating the D-domain unit as a direct substitution.

Power and interface boundary

The 1852 provides a PoE Gigabit uplink and a Gigabit AUX port for link aggregation. Cisco states that 802.3af disables AUX and USB on both antenna forms and reduces the 1852e 2.4 GHz radio from 3x4 to 2x3. Record negotiated power before promising the complete interface and radio state.

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. For this 1852 order, include the AireOS or Catalyst 9800 release actually used and note whether the unit is controller-managed or operating in an approved Mobility Express role.

Survey-to-install reconciliation

Attach the approved RF survey location, mounting height, orientation, expected client density, channel width and neighboring-radio assumptions to the order. After installation, compare measured coverage and interference with that design. If ceiling construction, antenna placement or obstructions changed, document the deviation and repeat the affected measurements. This provides a site-specific acceptance reason for the exact unit instead of relying on a family data sheet alone. Relate the survey result to the 1852's 4x4:4 single-user and 4x4:3 multiuser 5 GHz design rather than treating the published 1.7 Gbps PHY rate as measured site throughput.

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. Cisco ended 1850 Series software maintenance in 2023, so controller compatibility evidence is especially important for inventory purchased late in the lifecycle.

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 the complete user path after the 1852 joins; the controller relationship alone does not prove client authentication, DHCP, DNS or application reachability.

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 identify the 1852 serial, controller object, both Ethernet interfaces, radio health and the team responsible for end-of-support migration.

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 the security behavior verified on the deployed controller release; do not turn a family data-sheet capability into an unconditional software claim.

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. The 1852 domain table varies materially by token, so preserve interference observations against the exact enabled-channel list rather than a generic country template.

Receiving inspection

At receipt, compare model label, regulatory token, antenna form, quantity, serials and visible condition with the authorized order. Photograph labels before cartons are separated. Quarantine shortages, mixed units, damaged connectors or unapproved substitutions. Do not rely on a distributor description as evidence that the exact Cisco order arrived. Close the inspection only when every physical unit is accounted for. Receiving inspection should distinguish the internal-antenna 1852i from the external-antenna 1852e and should verify all carton quantities before labels are separated.

Lifecycle decision

Cisco ended sale of the Aironet 1850 Series on 1 May 2022, ended software maintenance on 1 May 2023 and lists 30 April 2027 as the last support date. Cisco identifies Catalyst 9115AX as the migration family. Available inventory does not extend those milestones.

Related Aironet 1852 order records

Official evidence: Cisco Aironet 1850 Series data sheet; Cisco Aironet 1850 hardware guide; Cisco Aironet 1850 lifecycle bulletin; and Cisco wireless compliance tool.

AIR-AP1852E-D-K9C Specification

Exact model / SKUAIR-AP1852E-D-K9C
Exact Cisco PIDAIR-AP1852E-D-K9C
Product familyCisco Aironet 1850 Series
Wireless design802.11ac Wave 2; 4x4:4 single-user and 4x4:3 multiuser at 5 GHz
Antenna formExternal antennas, sold separately
Published antenna limitCertified for antenna gains up to 6 dBi at 2.4 and 5 GHz
Order formsingle-unit configurable K9C order
Physical quantity1
Regulatory-domain tokenD
Cisco-listed channel profile2.4 GHz channels 1-11; 5 GHz blocks at 5.180-5.320 and 5.745-5.825 GHz
InterfacesPoE Gigabit uplink; Gigabit AUX for link aggregation
802.3af effectAUX and USB disabled; 1852e 2.4 GHz radio reduces from 3x4 to 2x3
LifecycleEnd of sale 2022-05-01; software maintenance ended 2023-05-01; last support 2027-04-30
Migration familyCisco Catalyst 9115AX
Source matchAIR-AP1852E-D-K9C: 1852E, domain D, single-unit configurable K9C order, quantity 1
Official manufacturer referenceCisco Aironet 1850 exact lifecycle bulletin

AIR-AP1852E-D-K9C Warranty

Quotation information

Product Quotation
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Product quality assurance

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

Technical support

Technical Support Enquiry
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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-AP1852E-D-K9C FAQ

What is AIR-AP1852E-D-K9C?

AIR-AP1852E-D-K9C Cisco Aironet 1852e Dual-band 4x4 MIMO AP is a CISCO Aironet 1850 Series Access Points product supplied by YYST Global for enterprise IT procurement and infrastructure projects.

What wireless or client capacity is listed for AIR-AP1852E-D-K9C?

For AIR-AP1852E-D-K9C, the manufacturer specification lists wireless design as 802.11ac Wave 2; 4x4:4 single-user and 4x4:3 multiuser at 5 GHz.

What interfaces and ports does AIR-AP1852E-D-K9C provide?

For AIR-AP1852E-D-K9C, the manufacturer specification lists interfaces as PoE Gigabit uplink; Gigabit AUX for link aggregation.

Is AIR-AP1852E-D-K9C available from YYST Global?

Contact YYST Global to confirm availability for AIR-AP1852E-D-K9C, the required quantity, exact configuration, delivery destination and current lead time before ordering. A product listing does not confirm current inventory.

What is the price of AIR-AP1852E-D-K9C?

Please request a quote for AIR-AP1852E-D-K9C. Final pricing depends on stock, quantity, configuration and delivery destination.

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