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/Zephyr-latest/drivers/usb_c/ppc/
Dnxp_nx20p3483_priv.h32 /** Value for 5V source mode */
41 /** Bit field for source path selection. If set, HV source path is selected, 5V otherwise. */
46 /** Bit field for 5V source switch enabled */
57 /** Bit field for overvoltage fault triggered on 5V source path */
59 /** Bit field for reverse current fault triggered on 5V source path */
61 /** Bit field for short circuit fault triggered on 5V source path */
63 /** Bit field for overcurrent fault triggered on 5V source path */
75 #define NX20P3483_REG_INT2_SC_HVSNK BIT(5)
101 /* Internal 5V VBUS Switch Current Limit Settings (min) */
111 * Register address - 5V source switch OCP threshold
/Zephyr-latest/tests/ztest/zexpect/src/
Dmain.c19 uint32_t val = 5; in ZTEST()
22 zexpect_not_equal(val, 5); in ZTEST()
59 zexpect_ok(5); in ZTEST()
103 zexpect_equal(5, 5); in ZTEST()
109 zexpect_equal(5, 1); in ZTEST()
114 zexpect_not_equal(5, 1); in ZTEST()
120 zexpect_not_equal(5, 5); in ZTEST()
125 int v = 9; in ZTEST() local
126 int *a = &v; in ZTEST()
127 int *b = &v; in ZTEST()
[all …]
/Zephyr-latest/dts/bindings/gpio/
Dmikro-bus.yaml15 numbered 0 - 5 (AN - MOSI), the right side pins are numbered 6 - 10
25 VCC-3.3V power - +3.3V +5V - VCC-5V power
Dst,dsi-lcd-qsh-030.yaml11 (5) DSI_CK_N - (6)
19 (21) BLVDD(+5V) - (22)
20 (23) BLVDD(+5V) - (24)
26 35 SCLK/MCLK VDD(2.8V-3.3V) (36)
Dm5stack,atom-header.yaml9 x 3.3V
12 4 GPIO/CLK 5 5V
Draspberrypi-40pins-header.yaml11 - 3V3 5V -
12 0 GPIO2/I2C1_SDA 5V -
16 5 GPIO17 GPIO18 6
Dm5stack,mbus-header.yaml11 4 GND 5 RESET
14 10 SCK 11 3.3V
22 26 NC 27 5V
/Zephyr-latest/dts/bindings/ppc/
Dnxp,nx20p3483.yaml25 If set, source role will use high-voltage path instead of 5V.
34 src-5v-ocp:
38 Source 5V overcurrent protection threshold in milliamperes.
/Zephyr-latest/dts/bindings/pinctrl/
Dnxp,s32ze-pinctrl.yaml97 enum: [0, 4, 5, 6, 7]
101 - For 3.3 V / 1.8 V FAST pads:
102 0: FMAX_3318 = 208 MHz (at 1.8 V), 166 MHz (at 3.3 V)
103 4: FMAX_3318 = 166 MHz (at 1.8 V), 150 MHz (at 3.3 V)
104 5: FMAX_3318 = 150 MHz (at 1.8 V), 133 MHz (at 3.3 V)
105 6: FMAX_3318 = 133 MHz (at 1.8 V), 100 MHz (at 3.3 V)
106 7: FMAX_3318 = 100 MHz (at 1.8 V), 83 MHz (at 3.3 V)
107 - For 1.8 V GPIO pads:
110 5: FMAX_18 = 133 MHz
113 - For 3.3 V GPIO pads:
[all …]
/Zephyr-latest/include/zephyr/dt-bindings/usb-c/
Dnxp_nx20p3483.h14 /** Voltage limit of 6.0V */
16 /** Voltage limit of 6.8V */
18 /** Voltage limit of 10.0V */
20 /** Voltage limit of 11.5V */
22 /** Voltage limit of 14.0V */
24 /** Voltage limit of 17.0V */
25 #define NX20P3483_U_THRESHOLD_17_0 5
26 /** Voltage limit of 23.0V */
40 #define NX20P3483_I_THRESHOLD_1_400 5
/Zephyr-latest/tests/bsim/bluetooth/host/gatt/settings/test_scripts/
Drun_gatt_settings.sh20 Execute ./bs_2G4_phy_v1 -v=${verbosity_level} -s="${simulation_id}" -D=8 -sim_length=30e6 $@
29 Execute "$test_exe" -v=${verbosity_level} \
31 Execute "$test_exe" -v=${verbosity_level} \
33 Execute "$test_exe" -v=${verbosity_level} \
35 Execute "$test_exe" -v=${verbosity_level} \
37 Execute "$test_exe" -v=${verbosity_level} \
39 Execute "$test_exe" -v=${verbosity_level} \
40 -s="${simulation_id}" -d=5 -testid=server -RealEncryption=1 -argstest 5 6 "server"
41 Execute "$test_exe" -v=${verbosity_level} \
44 Execute "$test_exe" -v=${verbosity_level} \
Drun_gatt_settings_2.sh20 Execute ./bs_2G4_phy_v1 -v=${verbosity_level} -s="${simulation_id}" -D=8 -sim_length=30e6 $@
29 Execute "$test_2_exe" -v=${verbosity_level} \
31 Execute "$test_2_exe" -v=${verbosity_level} \
33 Execute "$test_2_exe" -v=${verbosity_level} \
35 Execute "$test_2_exe" -v=${verbosity_level} \
37 Execute "$test_2_exe" -v=${verbosity_level} \
39 Execute "$test_2_exe" -v=${verbosity_level} \
40 -s="${simulation_id}" -d=5 -testid=server -RealEncryption=1 -argstest 5 6 "server_2"
41 Execute "$test_2_exe" -v=${verbosity_level} \
44 Execute "$test_2_exe" -v=${verbosity_level} \
/Zephyr-latest/boards/shields/arduino_uno_click/
Darduino_uno_click.overlay18 <5 0 &arduino_header 17 0>, /* MOSI -> D11 */
19 /* +3.3V */
25 <10 0 &arduino_header 5 0>, /* SCL -> A5 */
27 /* +5V */
41 <5 0 &arduino_header 17 0>, /* MOSI -> D11 */
42 /* +3.3V */
48 <10 0 &arduino_header 5 0>, /* SCL -> A5 */
50 /* +5V */
/Zephyr-latest/boards/espressif/esp32s3_eye/doc/
Dindex.rst49 … turned on, it indicates either the USB power is not supplied, or the 5 V to 3.3 V LDO is broken. …
54 - 5 V to 3.3 V LDO
55 - Power regulator that converts a 5 V supply into a 3.3 V output for the module.
56 * - 5
58 … - The digital I2S MEMS microphone features 61 dB SNR and –26 dBFS sensitivity, working at 3.3 V.
67 …module embeds the ESP32-S3R8 chip variant that provides Wi-Fi and Bluetooth 5 (LE) connectivity, a…
72 - 3.3 V to 1.5 V LDO
73 - Power regulator that converts a 3.3 V supply into a 1.5 V output for the camera.
75 - 3.3 V to 2.8 V LDO
76 - Power regulator that converts a 3.3 V supply into a 2.8 V output for the camera.
[all …]
/Zephyr-latest/include/zephyr/arch/riscv/
Delf.h33 #define R_RISCV_JUMP_SLOT 5
95 * "wordclass" from RISC-V specification
112 /** @brief Generate mask for immediate in B-type RISC-V instruction
122 (R_RISCV_IMM8_GET_BIT(imm8, 5) << 25) | (R_RISCV_IMM8_GET_BIT(imm8, 4) << 11) | \
126 /** @brief Generate mask for immediate in J-type RISC-V instruction
136 (R_RISCV_IMM8_GET_BIT(imm8, 5) << 25) | (R_RISCV_IMM8_GET_BIT(imm8, 4) << 24) | \
144 /** @brief Generate mask for immediate in S-type RISC-V instruction
153 (R_RISCV_IMM8_GET_BIT(imm8, 5) << 25) | (R_RISCV_IMM8_GET_BIT(imm8, 4) << 11) | \
157 /** @brief Generate mask for immediate in compressed J-type RISC-V instruction
167 (R_RISCV_IMM8_GET_BIT(imm8, 7) << 6) | (R_RISCV_IMM8_GET_BIT(imm8, 3) << 5) | \
[all …]
/Zephyr-latest/scripts/generate_usb_vif/constants/
Dother_constants.py31 2: "1.5A @ 5V",
32 3: "3A @ 5V",
/Zephyr-latest/soc/nxp/s32/s32k3/
Dpinctrl_soc.h17 #define SIUL2_MSCR_SSS(v) FIELD_PREP(SIUL2_MSCR_SSS_MASK, (v)) argument
18 #define SIUL2_MSCR_SMC_MASK BIT(5)
19 #define SIUL2_MSCR_SMC(v) FIELD_PREP(SIUL2_MSCR_SMC_MASK, (v)) argument
21 #define SIUL2_MSCR_IFE(v) FIELD_PREP(SIUL2_MSCR_IFE_MASK, (v)) argument
23 #define SIUL2_MSCR_DSE(v) FIELD_PREP(SIUL2_MSCR_DSE_MASK, (v)) argument
25 #define SIUL2_MSCR_PUS(v) FIELD_PREP(SIUL2_MSCR_PUS_MASK, (v)) argument
27 #define SIUL2_MSCR_PUE(v) FIELD_PREP(SIUL2_MSCR_PUE_MASK, (v)) argument
29 #define SIUL2_MSCR_SRC(v) FIELD_PREP(SIUL2_MSCR_SRC_MASK, (v)) argument
31 #define SIUL2_MSCR_PKE(v) FIELD_PREP(SIUL2_MSCR_PKE_MASK, (v)) argument
33 #define SIUL2_MSCR_INV(v) FIELD_PREP(SIUL2_MSCR_INV_MASK, (v)) argument
[all …]
/Zephyr-latest/tests/bsim/bluetooth/host/l2cap/stress/tests_scripts/
Dl2cap.sh16 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=0 -testid=central -rs=43
18 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=1 -testid=peripheral -rs=42
19 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=2 -testid=peripheral -rs=10
20 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=3 -testid=peripheral -rs=23
21 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=4 -testid=peripheral -rs=7884
22 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=5 -testid=peripheral -rs=230
23 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=6 -testid=peripheral -rs=9
25 Execute ./bs_2G4_phy_v1 -v=${verbosity_level} -s=${simulation_id} -D=7 -sim_length=400e6 $@
Dl2cap_nofrag.sh16 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=0 -testid=central -rs=43
18 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=1 -testid=peripheral -rs=42
19 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=2 -testid=peripheral -rs=10
20 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=3 -testid=peripheral -rs=23
21 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=4 -testid=peripheral -rs=7884
22 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=5 -testid=peripheral -rs=230
23 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=6 -testid=peripheral -rs=9
25 Execute ./bs_2G4_phy_v1 -v=${verbosity_level} -s=${simulation_id} -D=7 -sim_length=400e6 $@
Dl2cap_syswq.sh16 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=0 -testid=central -rs=43
18 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=1 -testid=peripheral -rs=42
19 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=2 -testid=peripheral -rs=10
20 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=3 -testid=peripheral -rs=23
21 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=4 -testid=peripheral -rs=7884
22 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=5 -testid=peripheral -rs=230
23 Execute "${bsim_exe}" -v=${verbosity_level} -s=${simulation_id} -d=6 -testid=peripheral -rs=9
25 Execute ./bs_2G4_phy_v1 -v=${verbosity_level} -s=${simulation_id} -D=7 -sim_length=400e6 $@
/Zephyr-latest/dts/bindings/usb-c/
Dusb-c-connector.yaml104 * 5V@500mA for USB 2.0
105 * 5V@900mA for USB 3.2 single-lane
106 * 5V@1500mA for USB 3.2 dual-lane
107 * "1.5A" and "3.0A", 5V@1.5A and 5V@3.0A.
/Zephyr-latest/samples/drivers/led/led_strip/
DREADME.rst21 - Power supply. These LED strips usually require a 5V supply.
23 - If the LED strip connects to the SPI bus, SPI communications usually use 5V
38 #. Ensure your Zephyr board, the 5V power supply, and the LED strip
44 #. Connect the 5V power supply pin to the 5V input of the LED strip.
/Zephyr-latest/tests/bsim/bluetooth/ll/cis/tests_scripts/
Dconnected_iso_acl_group.sh16 -v=${verbosity_level} -s=${simulation_id} -d=0 -testid=central
19 -v=${verbosity_level} -s=${simulation_id} -d=1 -testid=peripheral
22 -v=${verbosity_level} -s=${simulation_id} -d=2 -testid=peripheral
25 -v=${verbosity_level} -s=${simulation_id} -d=3 -testid=peripheral
28 -v=${verbosity_level} -s=${simulation_id} -d=4 -testid=peripheral
30 Execute ./bs_2G4_phy_v1 -v=${verbosity_level} -s=${simulation_id} \
31 -D=5 -sim_length=60e6 $@
Dconnected_iso_acl_group_acl_first.sh16 -v=${verbosity_level} -s=${simulation_id} -d=0 -testid=central
19 -v=${verbosity_level} -s=${simulation_id} -d=1 -testid=peripheral
22 -v=${verbosity_level} -s=${simulation_id} -d=2 -testid=peripheral
25 -v=${verbosity_level} -s=${simulation_id} -d=3 -testid=peripheral
28 -v=${verbosity_level} -s=${simulation_id} -d=4 -testid=peripheral
30 Execute ./bs_2G4_phy_v1 -v=${verbosity_level} -s=${simulation_id} \
31 -D=5 -sim_length=60e6 $@
/Zephyr-latest/tests/bsim/bluetooth/host/scan/start_stop/test_scripts/
Dstart_stop.sh14 -v=${verbosity_level} -s="${simulation_id}" -d=0 -testid=scanner
17 -v=${verbosity_level} -s="${simulation_id}" -d=1 -testid=periodic_adv
19 Execute ./bs_2G4_phy_v1 -v=${verbosity_level} -s="${simulation_id}" \
20 -D=2 -sim_length=5e6

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