AIR-AP1852I-C-K9 Cisco Aironet 1852i 1.733Gbps Thoughput Access Point
AIR-AP1852I-C-K9
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AIR-AP1852I-C-K9 Cisco Aironet 1852i 1.733Gbps Thoughput Access Point product image

AIR-AP1852I-C-K9 Cisco Aironet 1852i 1.733Gbps Thoughput Access Point

AIR-AP1852I-C-K9

AIR-AP1852I-C-K9 is a 1852i indoor access point with integrated omnidirectional antennas, supplied as a single-unit fixed-domain K9 order for regulatory-domain token C. 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-AP1852I-C-K9 Cisco Aironet 1852i 1.733Gbps Thoughput Access Point
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AIR-AP1852I-C-K9 Overview

AIR-AP1852I-C-K9 exact order identity

AIR-AP1852I-C-K9 is a 1852i indoor access point with integrated omnidirectional antennas in the Cisco Aironet 1850 Series. This exact SKU combines regulatory-domain token C with a single-unit fixed-domain K9 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 rates the internal antenna system at 3 dBi for 2.4 GHz and 5 dBi for 5 GHz, with 360-degree horizontal beamwidth. No external antenna is selected by this SKU. Preserve enclosure orientation, bracket, mounting height and post-install coverage because placement determines how the integrated pattern is used.

Order and controller boundary

Cisco lists K9 as a controller-based dual-band 802.11ac Wave 2 order. Match the complete fixed-domain PID at receiving. Create one serial-level asset record and stage CAPWAP join, controller software, country setting and radio operation before production release.

C regulatory-domain evidence

Cisco lists this profile as 2.4 GHz channels 1-13 and the 5.745-5.825 GHz upper block. The C profile listed by Cisco does not include the lower or middle 5 GHz blocks shown for many other domains. That narrower 5 GHz choice can materially change capacity and channel reuse assumptions. Reject a design copied from a lower-band domain. Commission the site against the upper-block channel set, record the controller country setting and repeat the survey if the original design assumed unavailable 5 GHz channels.

Procurement inference: this is an upper-5-GHz-focused profile in Cisco's table, so the buying decision should be based on a survey that can operate without lower or middle 5 GHz choices. Check client and infrastructure support for the selected operating plan at the actual site. A successful bench join in a different country or controller setting does not validate the channel availability required by the deployment.

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.

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. The 1852 draws up to 20.9 W; 802.3af also disables AUX Ethernet and USB, while the external-antenna 1852e reduces its 2.4 GHz radio from 3x4 to 2x3.

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. The platform has one PoE Gigabit interface and one Gigabit AUX interface used for link aggregation, so preserve both link states and the power condition under which AUX is available.

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.

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. The 1852i and 1852e have different operating-temperature ranges, and an external-antenna deployment also requires a complete cable and mounting bill of materials.

Serial-level asset control

Capture chassis serial, base MAC address, carton reference, deployment site, controller assignment and asset owner. Reconcile the identifiers against the purchase line before activation. Multi-unit cartons require an entry for every physical access point; a carton SKU alone cannot show which unit was installed, held as a spare or returned. This record is also needed to trace support entitlement, replacement history and monitoring ownership. If the product came from a ten-unit pack, the 1852 carton identity must be expanded into ten individual records before support, return or replacement handling.

Country approval retention

Save the Cisco compliance lookup result, lookup date, deployment country, approved regulatory token and reviewer. If the destination changes, stop and repeat the approval rather than moving the unit on the strength of an earlier purchase. Compare the controller country setting and available channels with the retained evidence. Regulatory eligibility is a deployment condition and cannot be inferred from connector fit, stock location or a similar-looking part number. Cisco explicitly makes the customer responsible for country approval; retain the lookup alongside the 1852's controller country and enabled-channel evidence.

Quotation substitution gate

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 different access-point order 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 K9, K9C, K910, K910C, antenna-form or regulatory-token change is a different 1852 procurement line and must not be accepted as a cosmetic substitution.

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-AP1852I-C-K9 Specification

Exact model / SKUAIR-AP1852I-C-K9
Exact Cisco PIDAIR-AP1852I-C-K9
Product familyCisco Aironet 1850 Series
Wireless design802.11ac Wave 2; 4x4:4 single-user and 4x4:3 multiuser at 5 GHz
Antenna formInternal omnidirectional antennas
Published antenna gain3 dBi at 2.4 GHz; 5 dBi at 5 GHz
Order formsingle-unit fixed-domain K9 order
Physical quantity1
Regulatory-domain tokenC
Cisco-listed channel profile2.4 GHz channels 1-13 and the 5.745-5.825 GHz upper block
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-AP1852I-C-K9: 1852I, domain C, single-unit fixed-domain K9 order, quantity 1
Official manufacturer referenceCisco Aironet 1850 exact lifecycle bulletin

AIR-AP1852I-C-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-AP1852I-C-K9 FAQ

What is AIR-AP1852I-C-K9?

AIR-AP1852I-C-K9 Cisco Aironet 1852i 1.733Gbps Thoughput Access Point is a CISCO Aironet 1850 Series Access Points product supplied by YYST Global for enterprise IT procurement and infrastructure projects.

What wireless design is listed for AIR-AP1852I-C-K9?

For AIR-AP1852I-C-K9, the manufacturer specification lists wireless design as 802.11ac Wave 2; 4x4:4 single-user and 4x4:3 multiuser at 5 GHz.

What antenna form is listed for AIR-AP1852I-C-K9?

For AIR-AP1852I-C-K9, the manufacturer specification lists antenna form as Internal omnidirectional antennas.

What published antenna gain is listed for AIR-AP1852I-C-K9?

For AIR-AP1852I-C-K9, the manufacturer specification lists published antenna gain as 3 dBi at 2.4 GHz; 5 dBi at 5 GHz.

Is AIR-AP1852I-C-K9 available from YYST Global?

Contact YYST Global to confirm availability for AIR-AP1852I-C-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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