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/Zephyr-4.1.0/samples/
Dsample_definition_and_criteria.rst72 operation can be verified using ``extra_args`` or
/Zephyr-4.1.0/samples/subsys/modbus/rtu_server/
DREADME.rst65 The following commands build and flash RTU server sample using CDC ACM UART.
/Zephyr-4.1.0/samples/boards/96boards/argonkey/microphone/
DREADME.rst12 converted to PCM using the OpenPDMFilter library, which is available
/Zephyr-4.1.0/samples/boards/nordic/mesh/onoff_level_lighting_vnd_app/
DREADME.rst75 Provisioning is done using the BlueZ meshctl utility. In this example, we'll use meshctl commands t…
/Zephyr-4.1.0/subsys/logging/
DKconfig.processing104 messages. Option is used only if links are using dedicated buffers
/Zephyr-4.1.0/boards/pine64/pinetime_devkit0/doc/
Dindex.rst170 This setup can be done using the menu Tools/J-Link Settings. or by directly
/Zephyr-4.1.0/samples/bluetooth/iso_connected_benchmark/
DREADME.rst51 #. Optionally modify the central ISO settings using the console.
/Zephyr-4.1.0/boards/renesas/ek_ra4m3/doc/
Dindex.rst36 - External power supply (using surface mount clamp test points and power input vias)
/Zephyr-4.1.0/boards/st/b_g474e_dpow1/doc/
Dindex.rst88 The board is configured to be flashed using west `STM32CubeProgrammer`_ runner,
/Zephyr-4.1.0/boards/dragino/lsn50/doc/
Dindex.rst130 Connect the Dragino LSN50 to a STLinkV2 to your host computer using the USB port, then
/Zephyr-4.1.0/boards/dragino/nbsn95/doc/
Dindex.rst129 Connect the Dragino NBSN95 to a STLinkV2 to your host computer using the USB port, then
/Zephyr-4.1.0/boards/renesas/ek_ra4m2/doc/
Dindex.rst34 - External power supply (using surface mount clamp test points and power input vias)
/Zephyr-4.1.0/boards/renesas/ek_ra6m3/doc/
Dindex.rst28 - External power supply (using surface mount clamp test points and power input vias)
/Zephyr-4.1.0/boards/renesas/ek_ra6m4/doc/
Dindex.rst32 - External power supply (using surface mount clamp test points and power input vias)
/Zephyr-4.1.0/boards/renesas/ek_ra6m5/doc/
Dindex.rst28 - External power supply (using surface mount clamp test points and power input vias)
/Zephyr-4.1.0/doc/kernel/data_structures/
Ddlist.rst35 block style using :c:macro:`SYS_DLIST_FOR_EACH_NODE`. This macro also
/Zephyr-4.1.0/boards/st/stm32g071b_disco/doc/
Dindex.rst98 The board is configured to be flashed using west `STM32CubeProgrammer`_ runner,
/Zephyr-4.1.0/boards/nxp/twr_ke18f/
Dtwr_ke18f.dts43 * Note: when using DMA, the SRAM region must be set to
/Zephyr-4.1.0/doc/kernel/services/synchronization/
Devents.rst51 An event object is defined using a variable of type :c:struct:`k_event`.
/Zephyr-4.1.0/boards/nxp/rd_rw612_bga/
Drd_rw612_bga.dtsi77 * using it by connecting signals directly with jumper wires.
/Zephyr-4.1.0/doc/hardware/peripherals/sensor/
Dread_and_decode.rst24 as vectors per channel. This allows further processing using fixed point DSP
/Zephyr-4.1.0/samples/net/lwm2m_client/
DREADME.rst15 and establishes a connection to an LwM2M server using the
68 as a native_sim application or as a QEMU target using the default configuration :file:`prj.conf`.
/Zephyr-4.1.0/doc/build/dts/
Dbindings-upstream.rst125 binding and a devicetree using the vendor prefix, and should ideally include
156 There is a risk in using ``default:`` when the value in the binding may be
/Zephyr-4.1.0/boards/element14/warp7/doc/
Dindex.rst171 Below you will find the instructions to load and run Zephyr on M4 from A7 using
218 To run Zephyr Binary using J-Link, create the following script to get the
/Zephyr-4.1.0/doc/develop/test/
Dbsim.rst61 * Test using the EDTT_ tool, in which a EDTT (python) test controls the embedded applications over
119 After building the tests' required binaries you can run a test directly using its individual test

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