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/Zephyr-latest/drivers/bluetooth/hci/
DKconfig.nxp2 # Copyright 2023-2024 NXP
4 # SPDX-License-Identifier: Apache-2.0
8 bool "BLE Controller auto sleep mode"
16 bool "BLE Controller calibration data"
18 If enabled, the Host will send calibration data to the BLE Controller during HCI init.
21 bool "BLE Controller calibration data annex 100"
23 If enabled, the Host will send calibration data annex 100 to the BLE Controller during HCI
74 NXP IW612 Chipset supports Wi-Fi? 802.11a/b/g/n/ac/ax + Bluetooth? 5.3
75 BR/EDR/LE + IEEE802.1.5.4 up to 601 Mbps data rate on Wi-Fi? and 2Mbps
76 data rate on Bluetooth?. 4-wire UART@3M baud is supported. PCM for
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DKconfig.infineon3 # SPDX-License-Identifier: Apache-2.0
18 Enable Infineon CYW4343W BLE connectivity,
20 …https://www.infineon.com/cms/en/product/wireless-connectivity/airoc-wi-fi-plus-bluetooth-combos/cy…
26 Enable Infineon CYW4373 BLE connectivity,
28 …https://www.infineon.com/cms/en/product/wireless-connectivity/airoc-wi-fi-plus-bluetooth-combos/cy…
34 Enable Infineon CYW43012 BLE connectivity,
36 …https://www.infineon.com/cms/en/product/wireless-connectivity/airoc-wi-fi-plus-bluetooth-combos/cy…
42 Enable Infineon CYW43438 BLE connectivity,
44 …https://www.infineon.com/cms/en/product/wireless-connectivity/airoc-wi-fi-plus-bluetooth-combos/cy…
50 Enable Infineon CYW43439 BLE connectivity,
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/Zephyr-latest/dts/bindings/net/wireless/
Dnordic,nrf-radio.yaml2 # SPDX-License-Identifier: Apache-2.0
15 Front-End Module (FEM) support
16 ------------------------------
18 External front-end modules are range extenders used for boosting
27 nrf_radio_fem: my-fem {
32 Currently supported "compatible" properties for the FEM node are:
34 - generic-fem-two-ctrl-pins
35 - nordic,nrf21540-fem
41 ---------------------------
44 The 'dfe-supported' property will be set when it is available.
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/Zephyr-latest/subsys/bluetooth/controller/
DKconfig3 # Copyright (c) 2016-2017 Nordic Semiconductor ASA
4 # SPDX-License-Identifier: Apache-2.0
142 bool "Software-based BLE Link Layer"
147 Use Zephyr software BLE Link Layer ULL LLL split implementation.
160 comment "BLE Controller configuration"
171 compliant with FIPS PUB 140-2.
177 A Controller implementation could also provide custom bare-metal
194 FIPS-197 compliant cryptographic implementations. In this case the
203 User-defined string that will be returned by the Zephyr VS Read Build
215 Set the number of unique BLE addresses that can be filtered as
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DKconfig.ll_sw_split3 # Copyright (c) 2016-2017 Nordic Semiconductor ASA
4 # SPDX-License-Identifier: Apache-2.0
97 # BT_CTLR_DF_SUPPORT is a wrapper for all DF features. Here we select features that are supported by
98 # Zephyr's BLE Controller.
120 # Hidden, Controller's Co-Operative high priority Rx thread stack size.
125 # Hidden, Controller's Co-Operative Rx thread stack size.
152 https://www.bluetooth.com/specifications/assigned-numbers/company-identifiers
168 Legacy Non-Directed Advertising mode.
180 zero-based numbering. When using with Zephyr host this option can be
233 module-str = "Bluetooth Controller ISO-AL"
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/Zephyr-latest/drivers/wifi/nxp/
DKconfig.nxp1 # Copyright 2022-2024 NXP
2 # SPDX-License-Identifier: Apache-2.0
5 bool "NXP Wi-Fi driver support"
14 Enable NXP SoC Wi-Fi support.
28 bool "Custom NXP Wi-Fi part"
30 Customize NXP Wi-Fi chip support.
33 prompt "Select NXP Wi-Fi part"
36 Choose NXP Wi-Fi chip support.
39 bool "NXP RW610-based Chipset"
44 Select this option if you have a NXP RW610-based
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/Zephyr-latest/dts/arm/nordic/
Dnrf5340_cpunet.dtsi4 * SPDX-License-Identifier: Apache-2.0
7 #include <arm/armv8-m.dtsi>
12 zephyr,bt-hci = &bt_hci_controller;
14 zephyr,flash-controller = &flash_controller;
18 #address-cells = <1>;
19 #size-cells = <0>;
23 compatible = "arm,cortex-m33";
25 #address-cells = <1>;
26 #size-cells = <1>;
29 compatible = "arm,armv8m-mpu";
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Dnrf52820.dtsi4 * SPDX-License-Identifier: Apache-2.0
7 #include <arm/armv7-m.dtsi>
9 #include <zephyr/dt-bindings/regulator/nrf5x.h>
14 zephyr,bt-hci = &bt_hci_controller;
16 zephyr,flash-controller = &flash_controller;
20 #address-cells = <1>;
21 #size-cells = <0>;
25 compatible = "arm,cortex-m4";
27 #address-cells = <1>;
28 #size-cells = <1>;
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Dnrf52811.dtsi4 * SPDX-License-Identifier: Apache-2.0
7 #include <arm/armv7-m.dtsi>
9 #include <zephyr/dt-bindings/adc/nrf-saadc-v2.h>
10 #include <zephyr/dt-bindings/regulator/nrf5x.h>
14 zephyr,bt-hci = &bt_hci_controller;
16 zephyr,flash-controller = &flash_controller;
20 #address-cells = <1>;
21 #size-cells = <0>;
25 compatible = "arm,cortex-m4";
27 #address-cells = <1>;
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Dnrf52833.dtsi4 * SPDX-License-Identifier: Apache-2.0
7 #include <arm/armv7-m.dtsi>
9 #include <zephyr/dt-bindings/adc/nrf-saadc-v3.h>
10 #include <zephyr/dt-bindings/regulator/nrf5x.h>
14 zephyr,bt-hci = &bt_hci_controller;
16 zephyr,flash-controller = &flash_controller;
20 #address-cells = <1>;
21 #size-cells = <0>;
25 compatible = "arm,cortex-m4f";
27 #address-cells = <1>;
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Dnrf52840.dtsi1 /* SPDX-License-Identifier: Apache-2.0 */
3 #include <arm/armv7-m.dtsi>
5 #include <zephyr/dt-bindings/adc/nrf-saadc-v3.h>
6 #include <zephyr/dt-bindings/regulator/nrf5x.h>
10 zephyr,bt-hci = &bt_hci_controller;
12 zephyr,flash-controller = &flash_controller;
16 #address-cells = <1>;
17 #size-cells = <0>;
21 compatible = "arm,cortex-m4f";
23 #address-cells = <1>;
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Dnrf52805.dtsi4 * SPDX-License-Identifier: Apache-2.0
7 #include <arm/armv7-m.dtsi>
9 #include <zephyr/dt-bindings/adc/nrf-saadc-v2.h>
10 #include <zephyr/dt-bindings/regulator/nrf5x.h>
14 zephyr,bt-hci = &bt_hci_controller;
16 zephyr,flash-controller = &flash_controller;
20 #address-cells = <1>;
21 #size-cells = <0>;
25 compatible = "arm,cortex-m4";
32 compatible = "nordic,nrf-ficr";
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Dnrf52810.dtsi1 /* SPDX-License-Identifier: Apache-2.0 */
3 #include <arm/armv7-m.dtsi>
5 #include <zephyr/dt-bindings/adc/nrf-saadc-v2.h>
6 #include <zephyr/dt-bindings/regulator/nrf5x.h>
10 zephyr,bt-hci = &bt_hci_controller;
12 zephyr,flash-controller = &flash_controller;
16 #address-cells = <1>;
17 #size-cells = <0>;
21 compatible = "arm,cortex-m4";
23 #address-cells = <1>;
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Dnrf52832.dtsi1 /* SPDX-License-Identifier: Apache-2.0 */
3 #include <arm/armv7-m.dtsi>
5 #include <zephyr/dt-bindings/adc/nrf-saadc-v2.h>
6 #include <zephyr/dt-bindings/regulator/nrf5x.h>
10 zephyr,bt-hci = &bt_hci_controller;
12 zephyr,flash-controller = &flash_controller;
16 #address-cells = <1>;
17 #size-cells = <0>;
21 compatible = "arm,cortex-m4f";
23 #address-cells = <1>;
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/Zephyr-latest/boards/st/stm32wb5mmg/doc/
Dstm32wb5mmg.rst6 STM32WB5MMG is an ultra-low-power and small form factor certified 2.4 GHz
10 module on other boards as HCI layer (Specefically B-U585I-IOT02A Development board).
14 - Bluetooth module in SiP-LGA86 package
15 - Integrated chip antenna
16 - Bluetooth|reg| Low Energy 5.4, Zigbee|reg| 3.0, OpenThread certified
18 - IEEE 802.15.4-2011 MAC PHY Supports 2 Mbits/s
19 - Frequency band 2402-2480 MHz
20 - Advertising extension
21 - Tx output power up to +6 dBm
22 - Rx sensitivity: -96 dBm (Bluetooth|reg| Low Energy at 1 Mbps), -100 dBm (802.15.4)
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/Zephyr-latest/boards/st/stm32wb5mm_dk/doc/
Dstm32wb5mm_dk.rst6 The STM32WB5MM-DK Discovery kit is designed as a complete demonstration
8 on the Arm |reg| Cortex |reg|-M4 and Arm |reg| Cortex |reg|-M0+ cores.
9 The STM32 device is a multi-protocol wireless and ultra-low-power device
10 embedding a powerful and ultra-low-power radio compliant with the
11 Bluetooth |reg| Low Energy (BLE) SIG specification v5.2 and with
12 IEEE 802.15.4-2011.
15 STM32WB5MM-DK supports the following features:
17 * STM32WB5MMG (1-Mbyte Flash memory, 256-Kbyte SRAM)
18 - Dual-core 32‑bit (Arm |reg| Cortex |reg|-M4 and M0+)
19 - 2.4 GHz RF transceiver
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/Zephyr-latest/boards/adi/max32690fthr/doc/
Dindex.rst7 implement ultra low-power wireless solutions using MAX32690 Arm© Cortex®-M4F
10 dual-row header footprint that is compatible with Adafruit Feather Wing
16 - MAX32690 MCU:
18 - Ultra-Efficient Microcontroller for Battery-Powered Applications
20 - 120MHz Arm Cortex-M4 Processor with FPU
21 - 7.3728MHz and 60MHz Low-Power Oscillators
22 - External Crystal Support (32MHz required for BLE)
23 - 32.768kHz RTC Clock (Requires External Crystal)
24 - 8kHz Always-On Ultra-Low Power Oscillator
25 - 3MB Internal Flash, 1MB Internal SRAM (832kB ECC ON)
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/Zephyr-latest/dts/common/nordic/
Dnrf54l20.dtsi4 * SPDX-License-Identifier: Apache-2.0
9 #include <zephyr/dt-bindings/adc/nrf-saadc-nrf54l.h>
10 #include <zephyr/dt-bindings/regulator/nrf5x.h>
12 /delete-node/ &sw_pwm;
15 #address-cells = <1>;
16 #size-cells = <1>;
19 #address-cells = <1>;
20 #size-cells = <0>;
23 compatible = "arm,cortex-m33f";
26 clock-frequency = <DT_FREQ_M(128)>;
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Dnrf54l_05_10_15.dtsi4 * SPDX-License-Identifier: Apache-2.0
9 #include <zephyr/dt-bindings/adc/nrf-saadc-nrf54l.h>
10 #include <zephyr/dt-bindings/regulator/nrf5x.h>
12 /delete-node/ &sw_pwm;
19 #address-cells = <1>;
20 #size-cells = <1>;
23 #address-cells = <1>;
24 #size-cells = <0>;
27 compatible = "arm,cortex-m33f";
30 clock-frequency = <DT_FREQ_M(128)>;
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Dnrf9280.dtsi4 * SPDX-License-Identifier: Apache-2.0
9 #include <zephyr/dt-bindings/adc/nrf-saadc.h>
10 #include <zephyr/dt-bindings/misc/nordic-nrf-ficr-nrf9230-engb.h>
11 #include <zephyr/dt-bindings/misc/nordic-domain-id-nrf9230.h>
12 #include <zephyr/dt-bindings/misc/nordic-owner-id-nrf9230.h>
13 #include <zephyr/dt-bindings/reserved-memory/nordic-owned-memory.h>
15 /delete-node/ &sw_pwm;
18 #address-cells = <1>;
19 #size-cells = <1>;
22 #address-cells = <1>;
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Dnrf54h20.dtsi4 * SPDX-License-Identifier: Apache-2.0
10 #include <zephyr/dt-bindings/adc/nrf-saadc.h>
11 #include <zephyr/dt-bindings/misc/nordic-nrf-ficr-nrf54h20.h>
12 #include <zephyr/dt-bindings/misc/nordic-domain-id-nrf54h20.h>
13 #include <zephyr/dt-bindings/misc/nordic-owner-id-nrf54h20.h>
14 #include <zephyr/dt-bindings/misc/nordic-tddconf.h>
15 #include <zephyr/dt-bindings/reserved-memory/nordic-owned-memory.h>
16 #include <zephyr/dt-bindings/power/nordic-nrf-gpd.h>
18 /delete-node/ &sw_pwm;
21 #address-cells = <1>;
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/Zephyr-latest/soc/nordic/common/
DKconfig.peripherals4 # SPDX-License-Identifier: Apache-2.0
25 def_bool $(dt_nodelabel_bool_prop,ccm,length-field-length-8-bits)
28 def_bool $(dt_nodelabel_bool_prop,ccm,headermask-supported)
124 def_bool $(dt_nodelabel_bool_prop,flash_controller,partial-erase)
202 def_bool $(dt_nodelabel_bool_prop,radio,ble-2mbps-supported)
205 def_bool $(dt_nodelabel_bool_prop,radio,ble-coded-phy-supported)
208 def_bool $(dt_nodelabel_bool_prop,radio,cs-supported)
211 def_bool $(dt_nodelabel_bool_prop,radio,dfe-supported)
214 def_bool $(dt_nodelabel_bool_prop,radio,ieee802154-supported)
217 def_bool $(dt_nodelabel_bool_prop,radio,tx-high-power-supported)
/Zephyr-latest/boards/st/nucleo_wb55rg/doc/
Dnucleo_wb55rg.rst6 The Nucleo WB55RG board is a multi-protocol wireless and ultra-low-power device
7 embedding a powerful and ultra-low-power radio compliant with the Bluetooth®
8 Low Energy (BLE) SIG specification v5.0 and with IEEE 802.15.4-2011.
11 - STM32 microcontroller in VFQFPN68 package
12 - 2.4 GHz RF transceiver supporting Bluetooth® specification v5.0 and
13 IEEE 802.15.4-2011 PHY and MAC
14 - Dedicated Arm® 32-bit Cortex® M0+ CPU for real-time Radio layer
15 - Three user LEDs
16 - Board connector: USB user with Micro-B
17 - Two types of extension resources:
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/Zephyr-latest/subsys/bluetooth/controller/ll_sw/openisa/hal/RV32M1/radio/
Dradio.c2 * Copyright (c) 2016 - 2019 Nordic Semiconductor ASA
4 * Copyright 2019 - 2020 NXP
6 * SPDX-License-Identifier: Apache-2.0
43 #define RADIO_AESCCM_HDR_MASK 0xE3 /* AES-CCM: NESN, SN, MD bits masked to 0 */
44 #define RADIO_PDU_LEN_MAX (BIT(8) - 1)
46 ((bytes) * 8 >> (__builtin_ffs(bits_per_usec) - 1))
52 #define RX_WTMRK 5 /* (AA + PDU header) - 1 */
53 #define AA_OVHD_1MBPS 27 /* AA playback overhead for 1 Mbps PHY */
54 #define AA_OVHD_2MBPS 10 /* AA playback overhead for 2 Mbps PHY */
60 #define PB_RX_PDU (PB_RX + 2) /* Rx PDU offset (in halfwords) in PB */
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/Zephyr-latest/boards/sparkfun/micromod/doc/
Dindex.rst9 MicroMod is a solderless, modular interface ecosystem that uses the M.2 standard
11 stand-alone Carrier Boards. A MicroMod processor board is approximately 22x22 mm,
17 - USB host mode compliant to 2.0 specification
18 - GPIO
19 - 2 UART
20 - 2 I2C
21 - 2 SPI
22 - 2 ADC
23 - 2 PWM
24 - Watchdog Timer (WDT)
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