472 lines
18 KiB
C
472 lines
18 KiB
C
/*
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* This file is part of the libsigrok project.
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*
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* Copyright (C) 2014 Bert Vermeulen <bert@biot.com>
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* Copyright (C) 2015 Google, Inc.
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* (Written by Alexandru Gagniuc <mrnuke@google.com> for Google, Inc.)
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <string.h>
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#include <strings.h>
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#include "protocol.h"
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#define CH_IDX(x) (1 << x)
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#define FREQ_DC_ONLY {0, 0, 0}
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static const char *pps_vendors[][2] = {
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{ "RIGOL TECHNOLOGIES", "Rigol" },
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{ "HEWLETT-PACKARD", "HP" },
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{ "PHILIPS", "Philips" },
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{ "Chroma ATE", "Chroma" },
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{ "Agilent Technologies", "Agilent" },
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};
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const char *get_vendor(const char *raw_vendor)
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{
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unsigned int i;
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for (i = 0; i < ARRAY_SIZE(pps_vendors); i++) {
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if (!strcasecmp(raw_vendor, pps_vendors[i][0]))
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return pps_vendors[i][1];
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}
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return raw_vendor;
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}
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static const uint32_t devopts_none[] = { };
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/* Agilent/Keysight N5700A series */
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static const uint32_t agilent_n5700a_devopts[] = {
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SR_CONF_CONTINUOUS | SR_CONF_SET,
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};
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static const uint32_t agilent_n5700a_devopts_cg[] = {
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SR_CONF_OVER_VOLTAGE_PROTECTION_THRESHOLD | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OVER_CURRENT_PROTECTION_ENABLED | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OVER_CURRENT_PROTECTION_THRESHOLD | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OUTPUT_VOLTAGE | SR_CONF_GET,
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SR_CONF_OUTPUT_VOLTAGE_TARGET | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
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SR_CONF_OUTPUT_CURRENT | SR_CONF_GET,
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SR_CONF_OUTPUT_ENABLED | SR_CONF_GET | SR_CONF_SET,
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};
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static const struct channel_spec agilent_n5767a_ch[] = {
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{ "1", { 0, 60, 0.0001 }, { 0, 25, 0.1 }, FREQ_DC_ONLY },
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};
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static const struct channel_group_spec agilent_n5767a_cg[] = {
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{ "1", CH_IDX(0), PPS_OVP | PPS_OCP },
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};
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/*
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* TODO: OVER_CURRENT_PROTECTION_ACTIVE status can be determined by the OC bit
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* in STAT:QUES:EVEN?, but this is not implemented
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*/
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static const struct scpi_command agilent_n5700a_cmd[] = {
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{ SCPI_CMD_REMOTE, "SYST:COMM:RLST REM" },
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{ SCPI_CMD_LOCAL, "SYST:COMM:RLST LOC" },
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{ SCPI_CMD_GET_MEAS_VOLTAGE, ":MEAS:VOLT?" },
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{ SCPI_CMD_GET_MEAS_CURRENT, "MEAS:CURR?" },
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{ SCPI_CMD_GET_VOLTAGE_TARGET, ":SOUR:VOLT?" },
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{ SCPI_CMD_SET_VOLTAGE_TARGET, ":SOUR:VOLT %.6f" },
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{ SCPI_CMD_GET_CURRENT_LIMIT, ":SOUR:CURR?" },
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{ SCPI_CMD_SET_CURRENT_LIMIT, ":SOUR:CURR %.6f" },
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{ SCPI_CMD_GET_OUTPUT_ENABLED, ":OUTP:STAT?" },
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{ SCPI_CMD_SET_OUTPUT_ENABLE, ":OUTP ON" },
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{ SCPI_CMD_SET_OUTPUT_DISABLE, ":OUTP OFF" },
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{ SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_THRESHOLD, ":VOLT:PROT?" },
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{ SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_THRESHOLD, ":VOLT:PROT %.6f" },
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{ SCPI_CMD_GET_OVER_CURRENT_PROTECTION_ENABLED, ":CURR:PROT:STAT?" },
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{ SCPI_CMD_SET_OVER_CURRENT_PROTECTION_ENABLE, ":CURR:PROT:STAT ON?"},
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{ SCPI_CMD_SET_OVER_CURRENT_PROTECTION_DISABLE, ":CURR:PROT:STAT OFF?"},
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/* Current limit (CC mode) and OCP are set using the same cmd. sad */
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{ SCPI_CMD_GET_OVER_CURRENT_PROTECTION_THRESHOLD, ":SOUR:CURR?" },
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{ SCPI_CMD_SET_OVER_CURRENT_PROTECTION_THRESHOLD, ":SOUR:CURR %.6f" },
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};
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/* Chroma 61600 series AC source */
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static const uint32_t chroma_61604_devopts[] = {
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SR_CONF_CONTINUOUS | SR_CONF_SET,
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};
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static const uint32_t chroma_61604_devopts_cg[] = {
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SR_CONF_OVER_VOLTAGE_PROTECTION_THRESHOLD | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OVER_CURRENT_PROTECTION_THRESHOLD | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OUTPUT_VOLTAGE | SR_CONF_GET,
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SR_CONF_OUTPUT_VOLTAGE_TARGET | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
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SR_CONF_OUTPUT_FREQUENCY | SR_CONF_GET,
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SR_CONF_OUTPUT_FREQUENCY_TARGET | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
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SR_CONF_OUTPUT_CURRENT | SR_CONF_GET,
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SR_CONF_OUTPUT_ENABLED | SR_CONF_GET | SR_CONF_SET,
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};
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static const struct channel_spec chroma_61604_ch[] = {
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{ "1", { 0, 300, 0.1 }, { 0, 16, 0.1 }, { 1.0, 1000.0, 0.01 } },
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};
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static const struct channel_group_spec chroma_61604_cg[] = {
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{ "1", CH_IDX(0), PPS_OVP | PPS_OCP },
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};
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static const struct scpi_command chroma_61604_cmd[] = {
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{ SCPI_CMD_REMOTE, "SYST:REM" },
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{ SCPI_CMD_LOCAL, "SYST:LOC" },
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{ SCPI_CMD_GET_MEAS_VOLTAGE, ":FETC:VOLT:ACDC?" },
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{ SCPI_CMD_GET_MEAS_FREQUENCY, ":FETC:FREQ?" },
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{ SCPI_CMD_GET_MEAS_CURRENT, ":FETC:CURR:AC?" },
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{ SCPI_CMD_GET_MEAS_POWER, ":FETC:POW:AC?" },
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{ SCPI_CMD_GET_VOLTAGE_TARGET, ":SOUR:VOLT:AC?" },
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{ SCPI_CMD_SET_VOLTAGE_TARGET, ":SOUR:VOLT:AC %.1f" },
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{ SCPI_CMD_GET_FREQUENCY_TARGET, ":SOUR:FREQ?" },
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{ SCPI_CMD_SET_FREQUENCY_TARGET, ":SOUR:FREQ %.2f" },
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{ SCPI_CMD_GET_OUTPUT_ENABLED, ":OUTP?" },
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{ SCPI_CMD_SET_OUTPUT_ENABLE, ":OUTP ON" },
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{ SCPI_CMD_SET_OUTPUT_DISABLE, ":OUTP OFF" },
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{ SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_THRESHOLD, ":SOUR:VOLT:LIM:AC?" },
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{ SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_THRESHOLD, ":SOUR:VOLT:LIM:AC %.1f" },
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/* This is not a current limit mode. It is overcurrent protection */
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{ SCPI_CMD_GET_OVER_CURRENT_PROTECTION_THRESHOLD, ":SOUR:CURR:LIM?" },
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{ SCPI_CMD_SET_OVER_CURRENT_PROTECTION_THRESHOLD, ":SOUR:CURR:LIM %.2f" },
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};
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/* Rigol DP800 series */
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static const uint32_t rigol_dp800_devopts[] = {
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SR_CONF_CONTINUOUS | SR_CONF_SET,
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SR_CONF_OVER_TEMPERATURE_PROTECTION | SR_CONF_GET | SR_CONF_SET,
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};
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static const uint32_t rigol_dp800_devopts_cg[] = {
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SR_CONF_OUTPUT_REGULATION | SR_CONF_GET,
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SR_CONF_OVER_VOLTAGE_PROTECTION_ENABLED | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OVER_VOLTAGE_PROTECTION_ACTIVE | SR_CONF_GET,
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SR_CONF_OVER_VOLTAGE_PROTECTION_THRESHOLD | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OVER_CURRENT_PROTECTION_ENABLED | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OVER_CURRENT_PROTECTION_ACTIVE | SR_CONF_GET,
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SR_CONF_OVER_CURRENT_PROTECTION_THRESHOLD | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OUTPUT_VOLTAGE | SR_CONF_GET,
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SR_CONF_OUTPUT_VOLTAGE_TARGET | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
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SR_CONF_OUTPUT_CURRENT | SR_CONF_GET,
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SR_CONF_OUTPUT_CURRENT_LIMIT | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
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SR_CONF_OUTPUT_ENABLED | SR_CONF_GET | SR_CONF_SET,
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};
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static const struct channel_spec rigol_dp821a_ch[] = {
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{ "1", { 0, 60, 0.001 }, { 0, 1, 0.0001 }, FREQ_DC_ONLY },
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{ "2", { 0, 8, 0.001 }, { 0, 10, 0.001 }, FREQ_DC_ONLY },
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};
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static const struct channel_spec rigol_dp831_ch[] = {
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{ "1", { 0, 8, 0.001 }, { 0, 5, 0.0003 }, FREQ_DC_ONLY },
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{ "2", { 0, 30, 0.001 }, { 0, 2, 0.0001 }, FREQ_DC_ONLY },
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{ "3", { 0, -30, 0.001 }, { 0, 2, 0.0001 }, FREQ_DC_ONLY },
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};
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static const struct channel_spec rigol_dp832_ch[] = {
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{ "1", { 0, 30, 0.001 }, { 0, 3, 0.001 }, FREQ_DC_ONLY },
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{ "2", { 0, 30, 0.001 }, { 0, 3, 0.001 }, FREQ_DC_ONLY },
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{ "3", { 0, 5, 0.001 }, { 0, 3, 0.001 }, FREQ_DC_ONLY },
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};
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static const struct channel_group_spec rigol_dp820_cg[] = {
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{ "1", CH_IDX(0), PPS_OVP | PPS_OCP },
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{ "2", CH_IDX(1), PPS_OVP | PPS_OCP },
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};
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static const struct channel_group_spec rigol_dp830_cg[] = {
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{ "1", CH_IDX(0), PPS_OVP | PPS_OCP },
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{ "2", CH_IDX(1), PPS_OVP | PPS_OCP },
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{ "3", CH_IDX(2), PPS_OVP | PPS_OCP },
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};
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static const struct scpi_command rigol_dp800_cmd[] = {
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{ SCPI_CMD_REMOTE, "SYST:REMOTE" },
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{ SCPI_CMD_LOCAL, "SYST:LOCAL" },
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{ SCPI_CMD_BEEPER, "SYST:BEEP:STAT?" },
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{ SCPI_CMD_BEEPER_ENABLE, "SYST:BEEP:STAT ON" },
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{ SCPI_CMD_BEEPER_DISABLE, "SYST:BEEP:STAT OFF" },
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{ SCPI_CMD_SELECT_CHANNEL, ":INST:NSEL %s" },
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{ SCPI_CMD_GET_MEAS_VOLTAGE, ":MEAS:VOLT?" },
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{ SCPI_CMD_GET_MEAS_CURRENT, ":MEAS:CURR?" },
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{ SCPI_CMD_GET_MEAS_POWER, ":MEAS:POWE?" },
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{ SCPI_CMD_GET_VOLTAGE_TARGET, ":SOUR:VOLT?" },
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{ SCPI_CMD_SET_VOLTAGE_TARGET, ":SOUR:VOLT %.6f" },
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{ SCPI_CMD_GET_CURRENT_LIMIT, ":SOUR:CURR?" },
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{ SCPI_CMD_SET_CURRENT_LIMIT, ":SOUR:CURR %.6f" },
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{ SCPI_CMD_GET_OUTPUT_ENABLED, ":OUTP?" },
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{ SCPI_CMD_SET_OUTPUT_ENABLE, ":OUTP ON" },
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{ SCPI_CMD_SET_OUTPUT_DISABLE, ":OUTP OFF" },
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{ SCPI_CMD_GET_OUTPUT_REGULATION, ":OUTP:MODE?" },
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{ SCPI_CMD_GET_OVER_TEMPERATURE_PROTECTION, ":SYST:OTP?" },
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{ SCPI_CMD_SET_OVER_TEMPERATURE_PROTECTION_ENABLE, ":SYST:OTP ON" },
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{ SCPI_CMD_SET_OVER_TEMPERATURE_PROTECTION_DISABLE, ":SYST:OTP OFF" },
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{ SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_ENABLED, ":OUTP:OVP?" },
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{ SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_ENABLE, ":OUTP:OVP ON" },
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{ SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_DISABLE, ":OUTP:OVP OFF" },
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{ SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_ACTIVE, ":OUTP:OVP:QUES?" },
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{ SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_THRESHOLD, ":OUTP:OVP:VAL?" },
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{ SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_THRESHOLD, ":OUTP:OVP:VAL %.6f" },
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{ SCPI_CMD_GET_OVER_CURRENT_PROTECTION_ENABLED, ":OUTP:OCP?" },
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{ SCPI_CMD_SET_OVER_CURRENT_PROTECTION_ENABLE, ":OUTP:OCP:STAT ON" },
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{ SCPI_CMD_SET_OVER_CURRENT_PROTECTION_DISABLE, ":OUTP:OCP:STAT OFF" },
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{ SCPI_CMD_GET_OVER_CURRENT_PROTECTION_ACTIVE, ":OUTP:OCP:QUES?" },
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{ SCPI_CMD_GET_OVER_CURRENT_PROTECTION_THRESHOLD, ":OUTP:OCP:VAL?" },
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{ SCPI_CMD_SET_OVER_CURRENT_PROTECTION_THRESHOLD, ":OUTP:OCP:VAL %.6f" },
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};
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/* HP 663xx series */
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static const uint32_t hp_6632b_devopts[] = {
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SR_CONF_CONTINUOUS | SR_CONF_SET,
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SR_CONF_OUTPUT_ENABLED | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OUTPUT_VOLTAGE | SR_CONF_GET,
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SR_CONF_OUTPUT_CURRENT | SR_CONF_GET,
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SR_CONF_OUTPUT_VOLTAGE_TARGET | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
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SR_CONF_OUTPUT_CURRENT_LIMIT | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
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};
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static const struct channel_spec hp_6632b_ch[] = {
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{ "1", { 0, 20.475, 0.005 }, { 0, 5.1188, 0.00132 }, FREQ_DC_ONLY },
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};
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static const struct channel_group_spec hp_6632b_cg[] = {
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{ "1", CH_IDX(0), 0 },
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};
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static const struct scpi_command hp_6632b_cmd[] = {
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{ SCPI_CMD_GET_OUTPUT_ENABLED, "OUTP:STAT?" },
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{ SCPI_CMD_SET_OUTPUT_ENABLE, "OUTP:STAT ON" },
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{ SCPI_CMD_SET_OUTPUT_DISABLE, "OUTP:STAT OFF" },
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{ SCPI_CMD_GET_MEAS_VOLTAGE, ":MEAS:VOLT?" },
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{ SCPI_CMD_GET_MEAS_CURRENT, ":MEAS:CURR?" },
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{ SCPI_CMD_GET_VOLTAGE_TARGET, ":SOUR:VOLT?" },
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{ SCPI_CMD_SET_VOLTAGE_TARGET, ":SOUR:VOLT %.6f" },
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{ SCPI_CMD_GET_CURRENT_LIMIT, ":SOUR:CURR?" },
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{ SCPI_CMD_SET_CURRENT_LIMIT, ":SOUR:CURR %.6f" },
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};
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/* Philips/Fluke PM2800 series */
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static const uint32_t philips_pm2800_devopts[] = {
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SR_CONF_CONTINUOUS | SR_CONF_SET,
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};
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static const uint32_t philips_pm2800_devopts_cg[] = {
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SR_CONF_OUTPUT_ENABLED | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OUTPUT_VOLTAGE | SR_CONF_GET,
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SR_CONF_OUTPUT_VOLTAGE_TARGET | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
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SR_CONF_OUTPUT_CURRENT | SR_CONF_GET,
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SR_CONF_OUTPUT_CURRENT_LIMIT | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
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SR_CONF_OVER_VOLTAGE_PROTECTION_ACTIVE | SR_CONF_GET,
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SR_CONF_OVER_VOLTAGE_PROTECTION_THRESHOLD | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OVER_CURRENT_PROTECTION_ENABLED | SR_CONF_GET | SR_CONF_SET,
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SR_CONF_OVER_CURRENT_PROTECTION_ACTIVE | SR_CONF_GET,
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SR_CONF_OUTPUT_REGULATION | SR_CONF_GET,
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};
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enum philips_pm2800_modules {
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PM2800_MOD_30V_10A = 1,
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PM2800_MOD_60V_5A,
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PM2800_MOD_60V_10A,
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PM2800_MOD_8V_15A,
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PM2800_MOD_60V_2A,
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PM2800_MOD_120V_1A,
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};
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static const struct philips_pm2800_module_spec {
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/* Min, max, programming resolution. */
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float voltage[3];
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float current[3];
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} philips_pm2800_module_specs[] = {
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/* Autoranging modules. */
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[PM2800_MOD_30V_10A] = { { 0, 30, 0.0075 }, { 0, 10, 0.0025 } },
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[PM2800_MOD_60V_5A] = { { 0, 60, 0.015 }, { 0, 5, 0.00125 } },
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[PM2800_MOD_60V_10A] = { { 0, 60, 0.015 }, { 0, 10, 0.0025 } },
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/* Linear modules. */
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[PM2800_MOD_8V_15A] = { { 0, 8, 0.002 }, { -15, 15, 0.00375 } },
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[PM2800_MOD_60V_2A] = { { 0, 60, 0.015 }, { -2, 2, 0.0005 } },
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[PM2800_MOD_120V_1A] = { { 0, 120, 0.030 }, { -1, 1, 0.00025 } },
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};
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static const struct philips_pm2800_model {
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unsigned int chassis;
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unsigned int num_modules;
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unsigned int set;
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unsigned int modules[3];
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} philips_pm2800_matrix[] = {
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/* Autoranging chassis. */
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{ 1, 1, 0, { PM2800_MOD_30V_10A, 0, 0 } },
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{ 1, 1, 1, { PM2800_MOD_60V_5A, 0, 0 } },
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{ 1, 2, 0, { PM2800_MOD_30V_10A, PM2800_MOD_30V_10A, 0 } },
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{ 1, 2, 1, { PM2800_MOD_60V_5A, PM2800_MOD_60V_5A, 0 } },
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{ 1, 2, 2, { PM2800_MOD_30V_10A, PM2800_MOD_60V_5A, 0 } },
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{ 1, 2, 3, { PM2800_MOD_30V_10A, PM2800_MOD_60V_10A, 0 } },
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{ 1, 2, 4, { PM2800_MOD_60V_5A, PM2800_MOD_60V_10A, 0 } },
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{ 1, 3, 0, { PM2800_MOD_30V_10A, PM2800_MOD_30V_10A, PM2800_MOD_30V_10A } },
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{ 1, 3, 1, { PM2800_MOD_60V_5A, PM2800_MOD_60V_5A, PM2800_MOD_60V_5A } },
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{ 1, 3, 2, { PM2800_MOD_30V_10A, PM2800_MOD_30V_10A, PM2800_MOD_60V_5A } },
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{ 1, 3, 3, { PM2800_MOD_30V_10A, PM2800_MOD_60V_5A, PM2800_MOD_60V_5A } },
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/* Linear chassis. */
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{ 3, 1, 0, { PM2800_MOD_60V_2A, 0, 0 } },
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{ 3, 1, 1, { PM2800_MOD_120V_1A, 0, 0 } },
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{ 3, 1, 2, { PM2800_MOD_8V_15A, 0, 0 } },
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{ 3, 2, 0, { PM2800_MOD_60V_2A, 0, 0 } },
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{ 3, 2, 1, { PM2800_MOD_120V_1A, 0, 0 } },
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{ 3, 2, 2, { PM2800_MOD_60V_2A, PM2800_MOD_120V_1A, 0 } },
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{ 3, 2, 3, { PM2800_MOD_8V_15A, PM2800_MOD_8V_15A, 0 } },
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};
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static const char *philips_pm2800_names[] = { "1", "2", "3" };
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static int philips_pm2800_probe_channels(struct sr_dev_inst *sdi,
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struct sr_scpi_hw_info *hw_info,
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struct channel_spec **channels, unsigned int *num_channels,
|
|
struct channel_group_spec **channel_groups, unsigned int *num_channel_groups)
|
|
{
|
|
const struct philips_pm2800_model *model;
|
|
const struct philips_pm2800_module_spec *spec;
|
|
unsigned int chassis, num_modules, set, module, m, i;
|
|
|
|
(void)sdi;
|
|
|
|
/*
|
|
* The model number as reported by *IDN? looks like e.g. PM2813/11,
|
|
* Where "PM28" is fixed, followed by the chassis code (1 = autoranging,
|
|
* 3 = linear series) and the number of modules: 1-3 for autoranging,
|
|
* 1-2 for linear.
|
|
* After the slash, the first digit denotes the module set. The
|
|
* digit after that denotes front (5) or rear (1) binding posts.
|
|
*/
|
|
chassis = hw_info->model[4] - 0x30;
|
|
num_modules = hw_info->model[5] - 0x30;
|
|
set = hw_info->model[7] - 0x30;
|
|
for (m = 0; m < ARRAY_SIZE(philips_pm2800_matrix); m++) {
|
|
model = &philips_pm2800_matrix[m];
|
|
if (model->chassis == chassis && model->num_modules == num_modules
|
|
&& model->set == set)
|
|
break;
|
|
}
|
|
if (m == ARRAY_SIZE(philips_pm2800_matrix)) {
|
|
sr_dbg("Model %s not found in matrix.", hw_info->model);
|
|
return SR_ERR;
|
|
}
|
|
|
|
sr_dbg("Found %d output channel%s:", num_modules, num_modules > 1 ? "s" : "");
|
|
*channels = g_malloc0(sizeof(struct channel_spec) * num_modules);
|
|
*channel_groups = g_malloc0(sizeof(struct channel_group_spec) * num_modules);
|
|
for (i = 0; i < num_modules; i++) {
|
|
module = model->modules[i];
|
|
spec = &philips_pm2800_module_specs[module];
|
|
sr_dbg("output %d: %.0f - %.0fV, %.0f - %.0fA", i + 1,
|
|
spec->voltage[0], spec->voltage[1],
|
|
spec->current[0], spec->current[1]);
|
|
(*channels)[i].name = (char *)philips_pm2800_names[i];
|
|
memcpy(&((*channels)[i].voltage), spec, sizeof(float) * 6);
|
|
(*channel_groups)[i].name = (char *)philips_pm2800_names[i];
|
|
(*channel_groups)[i].channel_index_mask = 1 << i;
|
|
(*channel_groups)[i].features = PPS_OTP | PPS_OVP | PPS_OCP;
|
|
}
|
|
*num_channels = *num_channel_groups = num_modules;
|
|
|
|
return SR_OK;
|
|
}
|
|
|
|
static const struct scpi_command philips_pm2800_cmd[] = {
|
|
{ SCPI_CMD_SELECT_CHANNEL, ":INST:NSEL %s" },
|
|
{ SCPI_CMD_GET_MEAS_VOLTAGE, ":MEAS:VOLT?" },
|
|
{ SCPI_CMD_GET_MEAS_CURRENT, ":MEAS:CURR?" },
|
|
{ SCPI_CMD_GET_VOLTAGE_TARGET, ":SOUR:VOLT?" },
|
|
{ SCPI_CMD_SET_VOLTAGE_TARGET, ":SOUR:VOLT %.6f" },
|
|
{ SCPI_CMD_GET_CURRENT_LIMIT, ":SOUR:CURR?" },
|
|
{ SCPI_CMD_SET_CURRENT_LIMIT, ":SOUR:CURR %.6f" },
|
|
{ SCPI_CMD_GET_OUTPUT_ENABLED, ":OUTP?" },
|
|
{ SCPI_CMD_SET_OUTPUT_ENABLE, ":OUTP ON" },
|
|
{ SCPI_CMD_SET_OUTPUT_DISABLE, ":OUTP OFF" },
|
|
{ SCPI_CMD_GET_OUTPUT_REGULATION, ":SOUR:FUNC:MODE?" },
|
|
{ SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_ACTIVE, ":SOUR:VOLT:PROT:TRIP?" },
|
|
{ SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_THRESHOLD, ":SOUR:VOLT:PROT:LEV?" },
|
|
{ SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_THRESHOLD, ":SOUR:VOLT:PROT:LEV %.6f" },
|
|
{ SCPI_CMD_GET_OVER_CURRENT_PROTECTION_ENABLED, ":SOUR:CURR:PROT:STAT?" },
|
|
{ SCPI_CMD_SET_OVER_CURRENT_PROTECTION_ENABLE, ":SOUR:CURR:PROT:STAT ON" },
|
|
{ SCPI_CMD_SET_OVER_CURRENT_PROTECTION_DISABLE, ":SOUR:CURR:PROT:STAT OFF" },
|
|
{ SCPI_CMD_GET_OVER_CURRENT_PROTECTION_ACTIVE, ":SOUR:CURR:PROT:TRIP?" },
|
|
};
|
|
|
|
SR_PRIV const struct scpi_pps pps_profiles[] = {
|
|
/* Agilent N5767A */
|
|
{ "Agilent", "N5767A", 0,
|
|
ARRAY_AND_SIZE(agilent_n5700a_devopts),
|
|
ARRAY_AND_SIZE(agilent_n5700a_devopts_cg),
|
|
ARRAY_AND_SIZE(agilent_n5767a_ch),
|
|
ARRAY_AND_SIZE(agilent_n5767a_cg),
|
|
ARRAY_AND_SIZE(agilent_n5700a_cmd),
|
|
.probe_channels = NULL,
|
|
},
|
|
/* Chroma 61604 */
|
|
{ "Chroma", "61604", 0,
|
|
ARRAY_AND_SIZE(chroma_61604_devopts),
|
|
ARRAY_AND_SIZE(chroma_61604_devopts_cg),
|
|
ARRAY_AND_SIZE(chroma_61604_ch),
|
|
ARRAY_AND_SIZE(chroma_61604_cg),
|
|
ARRAY_AND_SIZE(chroma_61604_cmd),
|
|
.probe_channels = NULL,
|
|
},
|
|
/* HP 6632B */
|
|
{ "HP", "6632B", 0,
|
|
ARRAY_AND_SIZE(hp_6632b_devopts),
|
|
ARRAY_AND_SIZE(devopts_none),
|
|
ARRAY_AND_SIZE(hp_6632b_ch),
|
|
ARRAY_AND_SIZE(hp_6632b_cg),
|
|
ARRAY_AND_SIZE(hp_6632b_cmd),
|
|
.probe_channels = NULL,
|
|
},
|
|
|
|
/* Rigol DP800 series */
|
|
{ "Rigol", "^DP821A$", PPS_OTP,
|
|
ARRAY_AND_SIZE(rigol_dp800_devopts),
|
|
ARRAY_AND_SIZE(rigol_dp800_devopts_cg),
|
|
ARRAY_AND_SIZE(rigol_dp821a_ch),
|
|
ARRAY_AND_SIZE(rigol_dp820_cg),
|
|
ARRAY_AND_SIZE(rigol_dp800_cmd),
|
|
.probe_channels = NULL,
|
|
},
|
|
{ "Rigol", "^DP831A$", PPS_OTP,
|
|
ARRAY_AND_SIZE(rigol_dp800_devopts),
|
|
ARRAY_AND_SIZE(rigol_dp800_devopts_cg),
|
|
ARRAY_AND_SIZE(rigol_dp831_ch),
|
|
ARRAY_AND_SIZE(rigol_dp830_cg),
|
|
ARRAY_AND_SIZE(rigol_dp800_cmd),
|
|
.probe_channels = NULL,
|
|
},
|
|
{ "Rigol", "^(DP832|DP832A)$", PPS_OTP,
|
|
ARRAY_AND_SIZE(rigol_dp800_devopts),
|
|
ARRAY_AND_SIZE(rigol_dp800_devopts_cg),
|
|
ARRAY_AND_SIZE(rigol_dp832_ch),
|
|
ARRAY_AND_SIZE(rigol_dp830_cg),
|
|
ARRAY_AND_SIZE(rigol_dp800_cmd),
|
|
.probe_channels = NULL,
|
|
},
|
|
|
|
/* Philips/Fluke PM2800 series */
|
|
{ "Philips", "^PM28[13][123]/[01234]{1,2}$", 0,
|
|
ARRAY_AND_SIZE(philips_pm2800_devopts),
|
|
ARRAY_AND_SIZE(philips_pm2800_devopts_cg),
|
|
NULL, 0,
|
|
NULL, 0,
|
|
ARRAY_AND_SIZE(philips_pm2800_cmd),
|
|
philips_pm2800_probe_channels,
|
|
},
|
|
};
|
|
|
|
SR_PRIV unsigned int num_pps_profiles = ARRAY_SIZE(pps_profiles);
|