Table 6. Product specifications
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Item |
Specification |
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Part numbers/ models |
CW9177I CW9177D CW9177E |
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Software |
Cisco IOS® XE Software Release 26.1.x or later or Meraki MR32.2.x or later |
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Supported wireless LAN controllers |
Catalyst 9800 Series Wireless Controllers (physical or virtual) Cisco Catalyst 9000 switches with Embedded Wireless Controller in SDA mode |
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802.11be |
4×4 uplink/downlink MU-MIMO with four spatial streams each (2.4 GHz, 5 GHz, 6 GHz or 2.4 GHz, 5 GHz, 5 GHz) 4096 QAM Multilink operation Preamble puncturing Uplink/downlink OFDMA TWT BSS coloring Maximal Ratio Combining (MRC) 20-, 40-, 80-, 160- and 320-MHz channels (6 GHz) 20-, 40-, 80-, and 160-MHz channels (5 GHz) 20-MHz channels (2.4 GHz) PHY data rates: In tri-radio mode, up to 18 Gbps (4×4 320 MHz on 6 GHz, 4×4 160 MHz on 5 GHz, and 4×4 20 MHz on 2.4 GHz) or PHY data rates up to 12.2 Gbps (4×4 160 MHz on 5 GHz, 4×4 160 MHz on 5 GHz and 4×4 20 MHz on 2.4 GHz) Packet aggregation: Aggregate MAC Protocol Data Unit (A-MPDU) (transmit and receive), Aggregate MAC Service Data Unit (A-MSDU) (transmit and receive) 802.11 Dynamic Frequency Selection (DFS) Cyclic Shift Diversity (CSD) support Wi-Fi Protected Access 3 (WPA3) support |
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802.11ax |
4×4 + 4×4 uplink/downlink MU-MIMO with four spatial streams each (2.4Ghz, 5 Ghz, 6GHz) Uplink/downlink OFDMA 1024 QAM TWT BSS coloring MRC 802.11ax beamforming 20, 40, 80, and 160 MHz channels (5 and 6 GHz) 20 MHz channels (2.4 GHz) PHY data rates up to 10.1 Gbps (4×4 160 MHz on 6 GHz, 4×4 160 MHz on 5 GHz, and 4×4 20 MHz on 2.4 GHz) or PHY data rates up to 10.1 Gbps (4×4 160 MHz on 5 GHz, 4×4 160 MHz on 5 GHz and 4×4 20 MHz on 2.4 GHz) Packet aggregation: A-MPDU (transmit and receive), A-MSDU (transmit and receive) 802.11 DFS CSD support WPA2/WPA3 support |
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802.11ac |
4×4 + 4×4 downlink MU-MIMO with 4×4 spatial streams MRC 802.11ac beamforming 20, 40, 80, and 160 MHz channels PHY data rates up to 3.4 Gbps (dual 4×4 160 MHz on 5 GHz) Packet aggregation: A-MPDU (transmit and receive), A-MSDU (transmit and receive) 802.11 DFS CSD support WPA2/WPA3 support |
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802.11n version 2.0 (and related) capabilities |
4×4 MIMO with four spatial streams MRC 802.11n and 802.11a/g beamforming 20- and 40-MHz channels PHY data rates up to 1.5 Gbps (40 MHz with 5 GHz and 20 MHz with 2.4 GHz) Packet aggregation: A-MPDU (transmit and receive), A-MSDU (transmit and receive) 802.11 DFS CSD support |
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Integrated antenna |
CW9177I |
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2.4 |
5 |
6 |
IoT |
GNSS |
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Peak Gain |
4 dBi |
6 dBi |
6 dBi |
3 dBi |
2 dBi |
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CW9177D |
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2.4 |
5 |
6 |
IoT |
GNSS |
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Peak Gain |
8 dBi |
6 dBi |
8 dBi |
3 dBi |
2 dBi |
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CW9177E |
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2.4 |
5 |
6 |
IoT |
GNSS |
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CW-ANT-T-D4-N (Directional Antenna) Peak Gain |
8.6 dBi |
8.2 dBi |
8.4 dBi |
– |
2 dBi |
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CW-ANT-T-O3-N (Omni-directional Antenna) Peak Gain |
5 dBi |
6 dBi |
5 dBi |
– |
2 dBi |
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Interfaces |
1x 100M/1000M/2.5G/5G/10G Multigigabit Ethernet (RJ-45) 1x 1/10G Ethernet SFP/SFP+ Management console port (RJ-45) |
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LED Indicators |
Front status LED indicates boot loader status, association status, operating status, boot loader warnings, and boot loader errors |
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Dimensions (W x L x H) |
CW9177I, CW9177D, CW9177E (without mounting brackets): 352.2 mm x 270 mm x 76.2 mm (13.8 x 10.6 x 3 in.) |
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Weight |
CW9177I and CW9177D Access point Weight: 4.11kg CW9177E Access point weight: 4.12kg |
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Input power requirements |
802.3bt Cisco Universal PoE (Cisco UPOE®), 802.3at Power over Ethernet Plus (PoE+), 802.3af PoE (only for configuring staging, all radios off) (Or) DC Power Adapter – #PID |
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Power Source |
2.4 GHz radio |
5 GHz radio |
6 GHz radio (XOR) 5 GHz radio |
Link speed |
Max PoE power consumption |
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IEEE 802.3bt (Class 6) /UPoE+/PoE++ |
4×4 |
4×4 (FB) |
4×4 |
2x 10G |
45.1W |
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IEEE 802.3bt (Class 6) /UPoE+/PoE++ |
4×4 |
4×4 (LB) |
4×4 (HB) (5 GHz) |
2×10 G |
45.1 W |
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802.3at (PoE+) (Tri-band) |
2×2 |
2×2 |
2×2 |
1×2.5 G |
30 W |
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802.3at (POE+) (Dual band) |
2×2 |
4×4 |
NA |
1×2.5 G |
30 W |
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802.3af (PoE) |
1×1 |
1×1 |
1×1 |
1x 1G |
15.4 |
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Note: Actual power consumption may vary depending on access point usage. It is recommended that you ensure that Link Layer Discovery Protocol (LLDP)/Cisco Discovery Protocol is enabled to allow proper power negotiation. Note: FB is Full Band, LB is Lower UNII Bands (UNII 1 and 2) and HB is Higher UNII Bands (UNII 2E and 3). |
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Environmental |
Nonoperating (storage) temperature: -40° to 158°F (-40° to 70°C) Nonoperating (storage) altitude test: 77°F (25˚C) at 17,000 ft (5182 m) Operating temperature: -40° to 149°F (-40° to 65°C) not including solar load. Operating temperature: -4° to 131°F (-40° to 55°C) including solar load. Operating humidity: 10% to 90% (noncondensing) Operating altitude test: 104°F (40˚C) at 9843 ft (3000 m) Foreign Body/Water Ingress: IEC60529 IP66/IP67 Wind resistance: up to 100 mph (161 km/h) sustained winds and 165 mph (266 km/h) wind gusts Icing protection: MIL-STD-810F (0.5 in. (13mm)) Corrosion: NEMA 250 (600 hrs. salt) Solar radiation: EN 60068-2-5 (753 W/m2) |
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Available transmit power settings |
2.4 GHz 17 dBm (50 mW) -10 dBm (0.1mW) 5 GHz 17 dBm (50 mW) -10 dBm (0.1 mW) 6 GHz 17 dBm (50 mW) -10 dBm (0.1 mW) Note: In countries where use of the 6-GHz band is not allowed or there is no current software support, the 6-GHz radio will be disabled. The radio may be enabled with future software, once the product is certified to operate in 6 GHz for that country. Note: In some countries dual 5GHz operations are only possible if there is allowed use of UNII 1 and 2 outdoor. |
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Compliance standards |
Safety: IEC 60950-1/IEC 62368-1 Ed.3 (with Ed.2 Deviation annex) EN 60950-1/EN 62368-1 Ed.3 (with Ed.2 Deviation annex) UL 60950-1/UL62368-1 3rd (with Ed.2 Deviation annex) CAN/CSA-C22.2 No. 60950-1/CAN/ CSA-C22.2 No. 62368-1 3rd (with Ed.2 Deviation annex) AS/NZS60950.1/AS/NZS62368.1 Ed.3 (with Ed.2 Deviation annex) UL 2043 Class III equipment Emissions: CISPR 32 (rev. 2015) +AMD1:2019 EN 55032:2015/A11:2020 EN IEC 61000-3-2:2019/A1:2021 EN 61000-3-3:2013+A1:2019 AS/NZS CISPR32: 2015+AMD1:2020 47 CFR FCC Part 15B ICES-003 (Issue 7, Class B) VCCI-CISPR 32:2016 CNS 13438:2006 (95) KS C 9832:2019 QCVN 118:2018/BTTTT Immunity: EN 55035:2017+A11:2020 KS C 9835:2019 Emissions and immunity: EN 301 489-1 V2.2.3 (2019-11) EN 301 489-17 V3.2.4 (2020-09) QCVN (18:2014) QCVN 112:2017/BTTTT KS X 3124:2020 KS X 3126:2020 EN 61000-6-1:2019 EN 60601-1-2:2015+A1:2021 |
Radio: EN 300 328 (v2.2.2) EN 301 893 (v2.1.1) EN 303 687 (v1.1.1) AS/NZS 4268 (rev. 2017) 47 CFR FCC Part 15C, 15.247, 15.407 RSP-100 RSS-GEN RSS-247 LP0002 (109) Japan Std. 66, and Std. 71 RF safety: EN 50385:2017 AS/NZS 2772 (rev. 2016) 47 CFR Part 2.1091 RSS-102 IEEE standards: IEEE 802.3 IEEE 802.3ab IEEE 802.3af/at IEEE 802.11a/b/g/n/ac/ax/be IEEE 802.11h, 802.11d Security: 802.11i (WPA2, WPA3) 802.1x/802.1x – SHA256 Enhanced Open/OWE Advanced Encryption Standard (AES) – GCMP128, GCMP256 and CCMP256 Extensible Authentication Protocol (EAP) types: EAP-Transport Layer Security (TLS) EAP-Tunneled TLS (TTLS) or Microsoft Challenge Handshake Authentication Protocol (MSCHAP) v2 Protected EAP (PEAP) v0 or EAP-MSCHAP v2 EAP-Flexible Authentication via Secure Tunneling (EAP-FAST) PEAP v1 or EAP-Generic Token Card (GTC) EAP-Subscriber Identity Module (SIM) |
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Certifications |
Wi-Fi Alliance: Wi-Fi 7, Wi-Fi 6E, Wi-Fi 6, WPA3-R3, WPA3-Suite B, Enhanced Open Security Bluetooth SIG: Bluetooth Low Energy |
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