C9115AXE-I is a Cisco Catalyst 9115 Series indoor 802.11ax access point. The complete PID selects the E antenna form, controller-based access-point order and regulatory-domain token I.
Cisco documents external antennas as separately ordered and certifies the 9115AXE for antenna gains up to 6 dBi at both 2.4 GHz and 5 GHz. The acceptance record must identify antenna PID, gain, pattern, connector, cable loss, mounting and country approval; an AXI antenna statement cannot be reused.
The exact PID has no EWC infix, so it does not establish an AP-hosted Embedded Wireless Controller image. Record the target wireless LAN controller, supported release, licensing, CAPWAP join and recovery result.
Cisco treats the final token as a regulatory-domain identifier and makes the customer responsible for verifying country approval. Preserve the I-domain label in the asset record and verify that replacement stock carries the same approved regulatory identity.
Use replacement-stock readiness for the I-domain workflow. List the deployed population this unit may protect, confirm those assets use the same approved token and retain the mounting or antenna dependencies. During periodic spare testing, verify controller join and country configuration without reassigning the unit. Any cross-site use requires a fresh destination approval before installation.
With 802.3at, the 9115 operates both radios at 4x4, negotiates 2.5G and enables USB; 802.3at full-feature consumption is published as 21.4W. Under 802.3af both radios reduce to 2x2, Ethernet reduces to 1G and USB is disabled. Cisco also documents the same reduced state above 40 degrees C ambient.
Cisco's current hardware bulletin sets 2026-12-31 as the last order date and 2031-12-31 as the last support date for affected Catalyst 9115 orders, with Cisco Wireless 9174E Access Point as the migration form for this antenna architecture.
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. Confirm 2.5-Gigabit negotiation under full power and retain switch-port counters with the acceptance result.
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. Save a dated Cisco compliance lookup; controller join is not proof that the destination country is approved.
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 final staging.
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 performance rather than the family's maximum PHY rate.
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. Compare the relevant 9174I or 9174E migration form, including controller, power, antenna and coverage changes.
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 must distinguish AXI from AXE and EWC from non-EWC before the chassis is powered.
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 and controller timestamps to separate power, CAPWAP, RF and authentication faults.
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. Keep the first accepted power, wired, radio and client results as the baseline for later troubleshooting.
Official evidence: Cisco Catalyst 9115 data sheet; Cisco deployment guide; Cisco Catalyst 9115 lifecycle bulletin; and Cisco compliance lookup.
| Exact model / SKU | C9115AXE-I |
| Exact Cisco PID | C9115AXE-I |
| Product family | Cisco Catalyst 9115 Series Wi-Fi 6 access point |
| Radio design | Dual-band 802.11ax; 4x4 with four spatial streams under full power |
| Antenna form | External-antenna model; antennas sold separately |
| Published gain boundary | Up to 6 dBi at 2.4 GHz and 5 GHz, subject to country approval |
| 802.3at maximum | 21.4W with full 4x4, 2.5G and USB feature set |
| Software order form | Controller-based access point; no EWC infix |
| Controller evidence | Record target WLC, supported release, entitlement and successful CAPWAP join |
| Complete regulatory token | I |
| Country approval | Verify the exact PID for the country of use with Cisco's compliance lookup |
| Full-power state | 802.3at; both radios 4x4; 2.5G Ethernet; USB enabled |
| Reduced-power state | 802.3af; both radios 2x2; 1G Ethernet; USB disabled |
| Hardware lifecycle | End of sale 2026-12-31; last support 2031-12-31 |
| Migration form | Cisco Wireless 9174E Access Point |
| Source match | C9115AXE-I: indoor Wi-Fi 6 access point for external antennas, controller-based access-point order, complete regulatory-domain token I |
| Official manufacturer reference | Cisco Catalyst 9115 official data sheet |
This listing is an accessory or component and may not include the main device. Confirm the supported platform, connector or form factor, included quantity, hardware revision and required mounting or installation parts before ordering.
C9115AXE-I - Cisco Catalyst 9115 Wifi 6 Indoor AP - External Antennas is a CISCO accessory or component in the Catalyst 9115 Series Access Points category. It may require a compatible main device and should not be treated as a complete standalone system.
Compatibility depends on the exact parent platform, chassis or device revision. Provide the installed model and required quantity so YYST Global can check fit before ordering.
Confirm whether the quotation includes only the named component or also includes cables, brackets, optics, licenses or installation hardware. Package contents vary by part number and condition.
Please request a quote for C9115AXE-I. Final pricing depends on stock, quantity, configuration and delivery destination.
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