那曲檬骨新材料有限公司

電子發燒友App

硬聲App

0
  • 聊天消息
  • 系統消息
  • 評論與回復
登錄后你可以
  • 下載海量資料
  • 學習在線課程
  • 觀看技術視頻
  • 寫文章/發帖/加入社區
會員中心
創作中心

完善資料讓更多小伙伴認識你,還能領取20積分哦,立即完善>

3天內不再提示
電子發燒友網>電子資料下載>類型>參考設計>AD5064 IIO四通道Linux驅動程序DAC

AD5064 IIO四通道Linux驅動程序DAC

2021-05-23 | pdf | 106.29KB | 次下載 | 2積分

資料介紹

This version (29 Dec 2020 06:06) was approved by Robin Getz.The Previously approved version (04 May 2017 16:05) is available.Diff

AD5064 IIO Quad-Channel DAC Linux Driver

Supported Devices

Reference Circuits

Evaluation Boards

Description

This is a Linux industrial I/O (IIO) subsystem driver, targeting multi-channel serial interface DACs. The industrial I/O subsystem provides a unified framework for drivers for many different types of converters and sensors using a number of different physical interfaces (i2c, spi, etc). See IIO for more information.

Source Code

Status

Source Mainlined?
git Yes

Files

Function File
driver drivers/iio/dac/ad5064.c

Example platform device initialization

Specifying reference voltage via the regulator framework

Below example specifies a 2.5 Volt reference for the SPI device 3 on SPI-Bus 0. (spi0.3) In this example all 4 reference voltage are supplied by the same regulator.

#if defined(CONFIG_REGULATOR_FIXED_VOLTAGE) || defined(CONFIG_REGULATOR_FIXED_VOLTAGE_MODULE)
static struct regulator_consumer_supply ad5064_consumer_supplies[] = {
	REGULATOR_SUPPLY("vrefA", "spi0.3"),
	REGULATOR_SUPPLY("vrefB", "spi0.3"),
	REGULATOR_SUPPLY("vrefC", "spi0.3"),
	REGULATOR_SUPPLY("vrefD", "spi0.3"),
};
?
static struct regulator_init_data stamp_avdd_reg_init_data = {
	.constraints	= {
		.name	= "2V5",
		.valid_ops_mask = REGULATOR_CHANGE_STATUS,
	},
	.consumer_supplies = ad5624_consumer_supplies,
	.num_consumer_supplies = ARRAY_SIZE(ad5624_consumer_supplies),
};
?
static struct fixed_voltage_config stamp_vdd_pdata = {
	.supply_name	= "board-2V5",
	.microvolts	= 2500000,
	.gpio		= -EINVAL,
	.enabled_at_boot = 0,
	.init_data	= &stamp_avdd_reg_init_data,
};
static struct platform_device brd_voltage_regulator = {
	.name		= "reg-fixed-voltage",
	.id		= -1,
	.num_resources	= 0,
	.dev		= {
		.platform_data	= &stamp_vdd_pdata,
	},
};
#endif
static struct platform_device *board_devices[] __initdata = {
#if defined(CONFIG_REGULATOR_FIXED_VOLTAGE) || defined(CONFIG_REGULATOR_FIXED_VOLTAGE_MODULE)
	&brd_voltage_regulator
#endif
};
static int __init board_init(void)
{
	[--snip--]
?
	platform_add_devices(board_devices, ARRAY_SIZE(board_devices));
?
	[--snip--]
?
	return 0;
}
arch_initcall(board_init);

Declaring SPI slave devices

Unlike PCI or USB devices, SPI devices are not enumerated at the hardware level. Instead, the software must know which devices are connected on each SPI bus segment, and what slave selects these devices are using. For this reason, the kernel code must instantiate SPI devices explicitly. The most common method is to declare the SPI devices by bus number.

This method is appropriate when the SPI bus is a system bus, as in many embedded systems, wherein each SPI bus has a number which is known in advance. It is thus possible to pre-declare the SPI devices that inhabit this bus. This is done with an array of struct spi_board_info, which is registered by calling spi_register_board_info().

For more information see: Documentation/spi/spi-summary

21 Oct 2010 16:10

Depending on the converter IC used, you may need to set the modalias accordingly, matching your part name. It may also required to adjust max_speed_hz. Please consult the datasheet, for maximum spi clock supported by the device in question.

static struct spi_board_info board_spi_board_info[] __initdata = {
#if defined(CONFIG_AD5064_SPI) || /
 	defined(CONFIG_AD5064_SPI_MODULE)
	{
		/* the modalias must be the same as spi device driver name */
		.modalias = "ad5064", /* Name of spi_driver for this device */
		.max_speed_hz = 1000000,     /* max spi clock (SCK) speed in HZ */
		.bus_num = 0, /* Framework bus number */
		.chip_select = 3, /* Framework chip select */
		.mode = SPI_MODE_1,
	},
#endif
};
static int __init board_init(void)
{
	[--snip--]
?
	spi_register_board_info(board_spi_board_info, ARRAY_SIZE(board_spi_board_info));
?
	[--snip--]
?
	return 0;
}
arch_initcall(board_init);

Adding Linux driver support

Configure kernel with “make menuconfig” (alternatively use “make xconfig” or “make qconfig”)

The AD5064 Driver depends on CONFIG_SPI

Linux Kernel Configuration
    Device Drivers  --->
        ...
        <*>     Industrial I/O support --->
            --- Industrial I/O support
            ...
            Digital to analog converters  ---> 
                ...
                <*>  Analog Devices AD5064 and similar multi-channel DAC driver
                ...
            ...
        ...

Hardware configuration

Driver testing

Each and every IIO device, typically a hardware chip, has a device folder under /sys/bus/iio/devices/iio:deviceX. Where X is the IIO index of the device. Under every of these directory folders reside a set of files, depending on the characteristics and features of the hardware device in question. These files are consistently generalized and documented in the IIO ABI documentation. In order to determine which IIO deviceX corresponds to which hardware device, the user can read the name file /sys/bus/iio/devices/iio:deviceX/name. In case the sequence in which the iio device drivers are loaded/registered is constant, the numbering is constant and may be known in advance.

02 Mar 2011 15:16

This specifies any shell prompt running on the target

root:/> cd /sys/bus/iio/devices/
root:/sys/bus/iio/devices> ls
iio:device0

root:/sys/bus/iio/devices> cd iio:device0

root:/sys/devices/platform/bfin-spi.0/spi0.3/iio:device0> ls -l
-r--r--r--    1 root     root          4096 Jan  1 03:29 dev
-r--r--r--    1 root     root          4096 Jan  1 03:29 name
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage0_powerdown
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage0_powerdown_mode
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage0_raw
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage0_scale
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage1_powerdown
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage1_powerdown_mode
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage1_raw
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage1_scale
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage2_powerdown
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage2_powerdown_mode
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage2_raw
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage2_scale
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage3_powerdown
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage3_powerdown_mode
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage3_raw
-rw-r--r--    1 root     root          4096 Jan  1 03:29 out_voltage3_scale
-r--r--r--    1 root     root          4096 Jan  1 03:29 out_voltage_powerdown_mode_available
drwxr-xr-x    2 root     root             0 Jan  3 16:50 power
lrwxrwxrwx    1 root     root             0 Jan  3 16:50 subsystem -> ../../../../../bus/iio
-rw-r--r--    1 root     root          4096 Jan  3 16:50 uevent

The number of channels depends on the chip model.

Show device name

This specifies any shell prompt running on the target

root:/sys/devices/platform/bfin-spi.0/spi0.3/iio:device0> cat name
ad5064

Show scale

Description:
/sys/bus/iio/devices/iio:deviceX/out_voltageY_scale

scale to be applied to out_voltage0_raw in order to obtain the measured voltage in millivolts.

This specifies any shell prompt running on the target

root:/sys/devices/platform/bfin-spi.0/spi0.3/iio:device0> cat out_voltage0_scale
0.038140

Set channel Y output voltage

Description:
/sys/bus/iio/devices/iio:deviceX/out_voltageY_raw

Raw (unscaled, no bias etc.) output voltage for channel Y.

This specifies any shell prompt running on the target

root:/sys/devices/platform/bfin-spi.0/spi0.3/iio:device0> echo 10000 > out_voltage0_raw

U = out_voltage0_raw * out_voltage0_scale = 10000 * 0,038140 mV = 381,14 mV

List available power down modes

/sys/bus/iio/devices/iio:deviceX/out_voltage_powerdown_mode_available

Description:
Lists all available output power down modes.

This specifies any shell prompt running on the target

root:/sys/devices/platform/bfin-spi.0/spi0.3/iio:device0> cat out_voltage_powerdown_mode_available
1kohm_to_gnd 100kohm_to_gnd three_state

Set power down mode

/sys/bus/iio/devices/iio:deviceX/out_voltage_powerdown_mode

Description:
Specifies the output power down mode. DAC output stage is disconnected from the amplifier and

1kohm_to_gnd connected to ground via an 1kOhm resistor
100kohm_to_gnd connected to ground via an 100kOhm resistor
three_state left floating

For a list of available output power down options read out_voltage_powerdown_mode_available.

This specifies any shell prompt running on the target

root:/sys/devices/platform/bfin-spi.0/spi0.3/iio:device0> echo three_state > out_voltage_powerdown_mode
root:/sys/devices/platform/bfin-spi.0/spi0.3/iio:device0> cat out_voltage_powerdown_mode
three_state

Enable power down mode on output Y

/sys/bus/iio/devices/iio:deviceX/out_voltageY_powerdown

Description:
Writing 1 causes output Y to enter the power down mode specified by the corresponding out_voltageY_powerdown_mode. Clearing returns to normal operation.

This specifies any shell prompt running on the target

root:/sys/devices/platform/bfin-spi.0/spi0.3/iio:device0> echo 1 > out_voltage0_powerdown
root:/sys/devices/platform/bfin-spi.0/spi0.3/iio:device0> cat out_voltage0_powerdown
1
root:/sys/devices/platform/bfin-spi.0/spi0.3/iio:device0> echo 0 > out_voltage0_powerdown
root:/sys/devices/platform/bfin-spi.0/spi0.3/iio:device0> cat out_voltage0_powerdown
0

PMOD-DA4

The PMOD-DA4 is a PMOD board made by Digilent Inc. which features the AD5628

The following example shows how to connect the PMOD-DA4 to a Blackfin BF537-STAMP board.

Hardware configuration

BF537-STAMP (P9) SPI header PMOD-DA4
PIN Function PIN Function
2 (+3.3V) 6 VDD
5 SPI_MOSI 2 DIN
8 SPI_SCK 4 SCLK
10 SPI_SS 1 SYNC
20 GND 5 GND

More Information

下載該資料的人也在下載 下載該資料的人還在閱讀
更多 >

評論

查看更多

下載排行

本周

  1. 1AN-1267: 使用ADSP-CM408F ADC控制器的電機控制反饋采樣時序
  2. 1.41MB   |  3次下載  |  免費
  3. 2AN158 GD32VW553 Wi-Fi開發指南
  4. 1.51MB   |  2次下載  |  免費
  5. 3AN148 GD32VW553射頻硬件開發指南
  6. 2.07MB   |  1次下載  |  免費
  7. 4AN-1154: 采用恒定負滲漏電流優化ADF4157和ADF4158 PLL的相位噪聲和雜散性能
  8. 199.28KB   |  次下載  |  免費
  9. 5AN-960: RS-485/RS-422電路實施指南
  10. 380.8KB   |  次下載  |  免費
  11. 6EE-249:使用VisualDSP在ADSP-218x DSP上實現軟件疊加
  12. 60.02KB   |  次下載  |  免費
  13. 7AN-1111: 使用ADuCM360/ADuCM361時的降低功耗選項
  14. 306.09KB   |  次下載  |  免費
  15. 8AN-904: ADuC7028評估板參考指南
  16. 815.82KB   |  次下載  |  免費

本月

  1. 1ADI高性能電源管理解決方案
  2. 2.43 MB   |  450次下載  |  免費
  3. 2免費開源CC3D飛控資料(電路圖&PCB源文件、BOM、
  4. 5.67 MB   |  138次下載  |  1 積分
  5. 3基于STM32單片機智能手環心率計步器體溫顯示設計
  6. 0.10 MB   |  130次下載  |  免費
  7. 4使用單片機實現七人表決器的程序和仿真資料免費下載
  8. 2.96 MB   |  44次下載  |  免費
  9. 5美的電磁爐維修手冊大全
  10. 1.56 MB   |  24次下載  |  5 積分
  11. 6如何正確測試電源的紋波
  12. 0.36 MB   |  18次下載  |  免費
  13. 7感應筆電路圖
  14. 0.06 MB   |  10次下載  |  免費
  15. 8萬用表UT58A原理圖
  16. 0.09 MB   |  9次下載  |  5 積分

總榜

  1. 1matlab軟件下載入口
  2. 未知  |  935121次下載  |  10 積分
  3. 2開源硬件-PMP21529.1-4 開關降壓/升壓雙向直流/直流轉換器 PCB layout 設計
  4. 1.48MB  |  420062次下載  |  10 積分
  5. 3Altium DXP2002下載入口
  6. 未知  |  233088次下載  |  10 積分
  7. 4電路仿真軟件multisim 10.0免費下載
  8. 340992  |  191367次下載  |  10 積分
  9. 5十天學會AVR單片機與C語言視頻教程 下載
  10. 158M  |  183335次下載  |  10 積分
  11. 6labview8.5下載
  12. 未知  |  81581次下載  |  10 積分
  13. 7Keil工具MDK-Arm免費下載
  14. 0.02 MB  |  73810次下載  |  10 積分
  15. 8LabVIEW 8.6下載
  16. 未知  |  65988次下載  |  10 積分
君怡百家乐官网的玩法技巧和规则 | 威尼斯人娱乐城会员| 加州百家乐娱乐城| 百家乐官网剁手| 齐河县| bet365体育在线投注 jxhymp| 蓝盾百家乐赌城| 百家乐下注口诀| 百家乐官网微笑打法| 澳门百家乐官网海星王| 博彩网站排行| 太阳城蓝山园| 百家乐游乐园| 百家乐赢的秘诀| 宝马会百家乐官网娱乐城| 百家乐官网游戏打水方法| 永仁县| 金宝博网站| 大发888真钱娱乐网| 博彩网百家乐的玩法技巧和规则| 真人百家乐作假视频| 百家乐官网技巧平注常赢法| 百家乐官网平注赢钱法| 百家乐官网赌法博彩正网| 彭山县| 澳博国际娱乐| 德州扑克几副牌| 大发888娱乐城帝豪| 百家乐QQ群娱乐| 百家乐赌博代理| 百家乐书籍| 八大胜百家乐现金网| 百家乐官网游戏免费下| 百家乐官网如何看| 百家乐官网桌出租| 百家乐官网桌德州扑克桌| 百家乐官网稳定打法| 县级市| 大发888真人网址| 大发888娱乐城高手| 威尼斯人娱乐网反水|