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524WiFi™ professional radio platform

524WiFi Pulse P6-04 Pro Plus – Wi-Fi 6 AX1800 Dual-Band Mini PCIe Radio Module

Wi-Fi 6 AX1800 Dual-Band Mini PCIe Radio Module. Linux access points, compact gateways and mixed Wi-Fi 5/Wi-Fi 6 client environments. 2x2 per band; published PHY 573 + 1201 Mb/s; simultaneous dual-band operation.

MediaTek MT7915 + MT7975Platform
2.4 + 5 GHzRadio bands
2x2 per band; published PHY 573 + 1201 Mb/s; simultaneous dual-band operationHardware configuration
Pro PlusTuned professional series

524WiFi™ Pro Plus — tuned for your wireless deployment

524WiFi™ PRO+

Our Pro Plus radio modules are tuned for their intended wireless applications. Combine the radio architecture specified for this model with the right host, software configuration and antenna system to get the most from your installation. The technical sections below explain the settings, interfaces and configuration details relevant to this product.

524WiFi™ Signal Plus™ — make the most of your RF path

524WiFi™ Signal Plus™

Signal Plus™ brings the antenna, operating band, polarization, connectors and installation together as one RF system. Match the antenna coverage to your application and keep the feed path short and low-loss to preserve useful signal in both directions. This model is part of our tuned product range; use its specified RF connector layout and supported bands when building your Signal Plus™ installation.

Choose matched antennas and cabling through 524WiFi™ and discuss your complete installation with our technical team. Explore our Pro Plus and Signal Plus™ approach.

Where this module fits

Linux access points, compact gateways and mixed Wi-Fi 5/Wi-Fi 6 client environments. The MediaTek MT7915 + MT7975 platform and 2.4 + 5 GHz configuration define the role of this model in your network. Select the radio topology around the intended client population, channel plan and uplink design. A dedicated radio cell can be assigned its own SSID and security policy through the chosen software configuration.

Technical specification

ModelPulse P6-04 Pro Plus
PlatformMediaTek MT7915 + MT7975
Radio bands2.4 + 5 GHz
Configuration2x2 per band; published PHY 573 + 1201 Mb/s; simultaneous dual-band operation
Software integrationLinux mt76 / mt7915e with a matching firmware package
Theoretical PHY by band573 Mb/s at 2.4 GHz; 1201 Mb/s at 5 GHz
Channel widths20 / 40 MHz at 2.4 GHz; up to 80 MHz at 5 GHz
Radio architecture2x2 per band, simultaneous dual-band operation
Linux driver familymt76 / mt7915e
CoolingIntegrated heatsink
Integration focusUse hostapd with a driver and firmware set matched to the MT7915 platform.

Detailed hardware and RF reference

Electrical, mechanical and interface detail

ParameterPulse P6-04
Radio componentsMT7915 baseband and MT7975 RF companion
RF tuning ranges2412-2472 MHz and 5180-5825 MHz
Power integration3.3 V DC +/-5%; 4-8 W average, 9 W maximum
Host interfaceMini PCI Express 2.1
Mechanical envelope51 x 30 x 5.8 mm
Environmental design-20 to +70 C operating; -40 to +90 C storage

RF engineering tables

Model-specific datasheet reference points for RF design. TX is conducted power per RF chain; RX is input sensitivity. Configure channel, output power and antenna gain for the operating country.

5GHz 802.11ax HE20

MCSTX / chain (dBm)
MCS920.0

Reference tolerance: ±1.5 dB.

5GHz 802.11ax HE40

MCSTX / chain (dBm)
MCS917.0

Reference tolerance: ±1.5 dB.

5GHz 802.11ax HE80

MCSTX / chain (dBm)
MCS1114.5

Reference tolerance: ±1.5 dB.

Pulse P6-04 model-specific RF engineering chart

Open full-size engineering chart

Pulse P6-04 engineering reference. Numeric values are provided in the tables above.

Pulse P6-04 engineering notes: radio, host and real deployment

Radio architecture and application

Linux access points, compact gateways and mixed Wi-Fi 5/Wi-Fi 6 client environments. The MediaTek MT7915 + MT7975 platform and 2.4 + 5 GHz configuration define the role of this model in your network. Select the radio topology around the intended client population, channel plan and uplink design. A dedicated radio cell can be assigned its own SSID and security policy through the chosen software configuration.

Linux dual-band access-point integration

Build a simultaneous 2.4 GHz and 5 GHz access point around the MT7915 and MT7975 platform. Each band uses two spatial streams; the published PHY maxima are 573 and 1201 Mb/s. The Linux mt76/mt7915e driver family provides the software integration route. Match the firmware package to the deployed distribution, configure both radio interfaces and include the integrated heatsink in the enclosure airflow plan.

Theoretical PHY: 573 Mb/s at 2.4 GHz + 1201 Mb/s at 5 GHz.

Theoretical PHY reference

Published maximum physical-layer rates by band, in Mb/s. Each bar represents its specified radio profile, channel width and spatial-stream configuration.

2.4 GHz — 573 Mb/s theoretical PHY
5 GHz — 1201 Mb/s theoretical PHY

Hardware overview

524WiFi Pulse P6-04 hardware overview
Pulse P6-04 — Retouched product illustration for connector and mounting orientation.

Linux, OpenWrt, firmware and board data

Pulse P6-04 uses the mt7915e driver family for Linux integration. Prepare the PCIe host, driver, device firmware and calibration as one matched software set. For an OpenWrt host, choose packages built for that host release and kernel ABI, then verify the detected device and radio profiles.

Integration itemConfiguration
Radio platformMT7915 + MT7975; Mini PCI Express 2.1
Driver familymt7915e
Firmware lookup family/lib/firmware/mediatek/ — confirm the path requested in the device boot log
Board dataRetain the unit calibration and revision-specific board data; match the PCI/subsystem and board identity.
Radio profileWi-Fi 6 | AX1800 | 2.4 + 5 GHz; Two spatial streams per band
Read-only first checkslspci -nnk; dmesg; iw phy; iw dev; iw reg get

Model documentation and data

Pulse P6-04 technical reference and integration guide · Download RF reference data (CSV)

Installation checklist

  1. Prepare the host or enclosure, mounting points and management access for the model specified above.
  2. Match the power supply and cooling to the complete assembly and the technical configuration.
  3. Secure the hardware and connect the appropriate RF paths, Ethernet interfaces and peripherals.
  4. Start with the revision-matched software image, then configure the operating country, radio channels and network role.
  5. Verify client association and traffic in both directions; retain the working image and deployment record.

Start with the network role: access-point coverage, an embedded gateway or an engineering platform. Plan the Ethernet uplink, client density and management access together. For multiple radio cells, assign channels and antenna positions as part of one installation plan. Keep management access available while bringing up each interface and retain a known working configuration for recovery.

For the hardware installation, use the correct mounting points and provide clearance around the heatsink, connectors and adjacent components. Size the power supply for the complete assembly, including optional radio modules and peripherals. Provide airflow over the active components and route RF cables so their connectors remain free of mechanical strain.

Signal Plus™: antenna and RF-path integration

Signal Plus™ brings the antenna, operating band, polarization, connectors and installation together as one RF system. For Pulse P6-04, start with the 2.4 + 5 GHz configuration and the RF interfaces in the technical table. Match the coverage pattern to your site and preserve useful signal with short, low-loss cable runs.

Ask our technical team to match antennas and RF accessories to your installation.

Troubleshooting quick path

Hardware recognitionReview the boot log and detected interfaces against the hardware configuration above.
Firmware and radio initializationMatch the driver, firmware and calibrated board data to the physical revision and host image.
Wireless associationReview the country profile, band, channel, security settings and antenna connections.
Sustained trafficCheck power stability, component temperature, negotiated link rates and RF path quality under the intended load.
Engineering reviewShare the Pulse model, hardware revision, software version and initialization logs with our support team.

Deployment testing and acceptance

Use the following commissioning procedure for Pulse P6-04. This is a test method, separate from the theoretical PHY specifications and datasheet RF references above.

StepRecord and verify
BaselineModel/revision, firmware build, host CPU, uplink speed, channel width, country profile, antennas and client spatial streams.
Link verificationCapture negotiated PHY, RSSI per chain and noise/retry statistics before sustained traffic.
Wired referenceMeasure the wired path first; select a server link appropriate to 573 / 1201 Mb/s by band.
Traffic testRun TCP in each direction, then concurrent clients; record duration, CPU load, temperatures and retransmissions.
Site acceptanceRepeat at the intended mounting positions; save results with the exact configuration for comparison.

FAQ

Where does this model fit in a network?

Install this radio module in a host with the matching connector, electrical interface and power design. Its band and stream configuration defines the wireless cell it adds to your access point or gateway.

How do I choose the software package?

Use the package matched to this model and hardware revision. Share your host and kernel version with technical support so the driver, firmware, board data and installation procedure can be reviewed together.

How should I select antennas?

Match antenna bands and RF connectors to the stated configuration. Select directional or omnidirectional coverage for the installation, preserve the intended MIMO paths and use short, suitably rated pigtails. Include enclosure mounting and cable routing in the RF plan.

What does the PHY figure describe?

It describes the theoretical physical-layer link rate for the specified radio profile. Select the corresponding channel width, spatial streams and compatible client configuration when planning around that figure. Document practical application tests separately with their complete setup.

How do I prepare a repeatable deployment?

Keep a record of the working image, configuration, hardware revision, power supply, antenna configuration and deployment country. Validate radio initialization, client association and sustained traffic in the intended enclosure before rolling the configuration out to additional units.

What should I send for engineering support?

Send the Pulse model code, intended application, host or board revision, software version, antenna arrangement and relevant diagnostic logs. Our technical team can then review the complete installation.

Final model identification and code table

524WiFiProduct brand
PulseWireless integration product family
PPlug-in radio module
6Wi-Fi generation family; exact radio capabilities are specified above
04Configuration identifier within this family
Pro PlusTuned professional series
Ordering SKU524WIFI-PULSE-P6-04-PP
Engineering ordering note:

Send us Pulse P6-04 together with your intended country, host or enclosure, antenna plan and required software environment. We can review the configuration and recommend appropriate RF accessories for your project. Contact 524WiFi™ technical support.

Weight 0.2 kg

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