Welcome to the Online Power Profiler (OPP) for the nRF70 Series of Wi-Fi 6 companion ICs. Use this tool to estimate the current consumption of the nRF70 Series devices under certain operating scenarios of interest. The OPP supports both 2.4 GHz and 5 GHz Wi-Fi operation, as well as several other Wi-Fi networking and nRF70 Series radio parameters.
Note! The support for Wi-Fi in the OPP is currently experimental.
The OPP for Wi-Fi currently supports nRF70 Series Wi-Fi operation in Station (client) mode, that is when the nRF70 Series device is connected to (associated with) an Access Point (AP) network. The current focus is on estimating the power consumption of the devices when they operate in the various power saving modes.
When connected to an AP, there are several network operation parameters that the nRF70 device is not able to control, as they are set by the AP itself. These parameters include (but not limited to) the DTIM period or the Beacon packet payload and transmission rate. These parameters may have a significant impact on the nRF70 Series current consumption, and in order to get an idea of what to expect when you connect to an AP network of interest, you can use the OPP to match the network parameters, and then see the expected current consumption.
The OPP simulations are based on current consumption measurements conducted on an nRF7002 DK connected to a Wi-Fi 6 AP network. It is meant for evaluation purposes only and will not give the exact numbers in every scenario.
Please check out this blog showing how to perform your own current consumption measurements for the nRF70 Series ICs, using the nRF7002 DK and the Power Profiler Kit from Nordic Semiconductor and compare those measurements with the current consumption estimations from the OPP tool.
Contents
Supported devices
The OPP for Wi-Fi currently supports the nRF7002 and nRF7001 devices. Support for nRF7000 will also be added.
Simulated operating modes
The OPP for Wi-Fi currently simulates the current consumption of an nRF70 Series device when it operates as Station under Power Saving Mode (PSM). The nRF70 Series ICs support multiple power saving modes, enabling the devices to minimize power consumption while keeping the connection to the access point. Refer to the nRF70 Series PSM guide to understand more about the different Wi-Fi power saving modes.
Supported parameters
Chip settings
- Chip: the nRF70 Series variant used in the simulation. Choose between nRF7002 and nRF7001.
Wi-Fi settings
- Frequency: the frequency band the nRF70 Series device operates on. Choose between 2.4 GHz and 5 GHz.
- PSM mode: the power saving mode the nRF70 Series device operates on. Choose between DTIM (legacy PSM) and TWT (additional power save mode supported in Wi-Fi 6 networks).
DTIM (legacy power save mode) parameters
- DTIM period (interval): the parameter that indicates how often (in multiples of beacon interval periods) the AP sends out multicast or broadcast messages to connected devices. Stations operating in legacy PSM wake up at every DTIM beacon to listen for pending buffered traffic. The DTIM period is controlled by the AP and is typically configurable in AP settings.
- Listen interval: a parameter that indicates how frequently (in multiples of beacon interval periods) a Station device will wake up to check for pending buffered traffic. The listen interval may be set by the Station device; however, it will be rounded down to the nearest multiple of DTIM value. A larger listen interval allows devices to save more power but may result in frame reception losses. Select 0 to disable listen interval setting.
- Beacon payload: a parameter that indicates the length of the beacon frame payload in bytes. The beacon payload is set by the access point. Typical beacon payload lengths depend on the generation of Wi-Fi supported and on the set of Wi-Fi features enabled in an AP network. Typical beacon frame payload lengths: 450 (802.11ax), 350 (802.11ac), 250 (802.11n), 100 (legacy).
- DSSS enable: a parameter that indicates that the AP will support DSSS (legacy) mode. Typically, DSSS compatibility may be enabled or disabled in the AP configuration settings. When disabled it allows APs to transmit beacon frames at a higher data rate and hence shorter frame-on-air time.
TWT
- TWT wake interval: a parameter indicating the time interval between successive WT wake periods.
- TWT Wake Duration: a parameter indicating the amount of time that the Station device under TWT needs to be active to complete the frame exchanges during the TWT wake period.
- TWT TX Payload: a parameter indicating the amount of data traffic (in payload bytes) the device under TWT is expected to send to the access point (i.e. uplink) during a TWT period. Select 0 to simulate a scenario where a device has no pending uplink data under a TWT period (in which case a null uplink packet will be transmitted in order to maintain the connection).