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NAMEDS2405 - Addressable Switch SYNOPSIS1-wire network branch controller. 05 [.]XXXXXXXXXXXX[XX][/[ PIO | sensed | address | crc8 | id | locator | r_address | r_id | r_locator | type ]] FAMILY CODE
SPECIAL PROPERTIESPIOread-write, yes-no
sensedread-only, yes-no
STANDARD PROPERTIESaddressr_addressread-only, ascii
crc8read-only, ascii
familyread-only, ascii
idr_idread-only, ascii
locatorr_locatorread-only, ascii
present (DEPRECATED)read-only, yes-no
typeread-only, ascii
ALARMSNone implemented. DESCRIPTION1-Wire1-wire is a wiring protocol and series of devices designed and manufactured by Dallas Semiconductor, Inc. The bus is a low-power low-speed low-connector scheme where the data line can also provide power. Each device is uniquely and unalterably numbered during manufacture. There are a wide variety of devices, including memory, sensors (humidity, temperature, voltage, contact, current), switches, timers and data loggers. More complex devices (like thermocouple sensors) can be built with these basic devices. There are also 1-wire devices that have encryption included. The 1-wire scheme uses a single bus master and multiple slaves on the same wire. The bus master initiates all communication. The slaves can be individually discovered and addressed using their unique ID. Bus masters come in a variety of configurations including serial, parallel, i2c, network or USB adapters. OWFS designOWFS is a suite of programs that designed to make the 1-wire bus and its devices easily accessible. The underlying principle is to create a virtual filesystem, with the unique ID being the directory, and the individual properties of the device are represented as simple files that can be read and written. Details of the individual slave or master design are hidden behind a consistent interface. The goal is to provide an easy set of tools for a software designer to create monitoring or control applications. There are some performance enhancements in the implementation, including data caching, parallel access to bus masters, and aggregation of device communication. Still the fundamental goal has been ease of use, flexibility and correctness rather than speed. DS2405The DS2405 (3) allows control of other devices, like LEDs and relays. It is an early design and has been superceeded by the DS2406 and DS2408 or even DS2450 that have more PIO pins, and do not employ an arcane use the the alarm state to signal PIO status. ADDRESSINGAll 1-wire devices are factory assigned a unique 64-bit address. This address is of the form:
Addressing under OWFS is in hexadecimal, of form:
where 01 is an example 8-bit family code, and 12345678ABC is an example 48 bit address. The dot is optional, and the CRC code can included. If included, it must be correct. DATASHEEThttp://pdfserv.maxim-ic.com/en/ds/DS2405.pdf SEE ALSOProgramsowfs (1) owhttpd (1) owftpd (1) owserver (1) owdir (1) owread (1) owwrite (1) owpresent (1) owtap (1) Configuration and testingowfs (5) owtap (1) owmon (1) Language bindingsowtcl (3) owperl (3) owcapi (3) ClocksDS1427 (3) DS1904 (3) DS1994 (3) DS2404 (3) DS2404S (3) DS2415 (3) DS2417 (3) IDDS2401 (3) DS2411 (3) DS1990A (3) MemoryDS1982 (3) DS1985 (3) DS1986 (3) DS1991 (3) DS1992 (3) DS1993 (3) DS1995 (3) DS1996 (3) DS2430A (3) DS2431 (3) DS2433 (3) DS2502 (3) DS2506 (3) DS28E04 (3) DS28EC20 (3) SwitchesDS2405 (3) DS2406 (3) DS2408 (3) DS2409 (3) DS2413 (3) DS28EA00 (3) InfernoEmbedded (3) TemperatureDS1822 (3) DS1825 (3) DS1820 (3) DS18B20 (3) DS18S20 (3) DS1920 (3) DS1921 (3) DS1821 (3) DS28EA00 (3) DS28E04 (3) EDS0064 (3) EDS0065 (3) EDS0066 (3) EDS0067 (3) EDS0068 (3) EDS0071 (3) EDS0072 (3) MAX31826 (3) HumidityDS1922 (3) DS2438 (3) EDS0065 (3) EDS0068 (3) VoltageDS2450 (3) ResistanceDS2890 (3) Multifunction (current, voltage, temperature)DS2436 (3) DS2437 (3) DS2438 (3) DS2751 (3) DS2755 (3) DS2756 (3) DS2760 (3) DS2770 (3) DS2780 (3) DS2781 (3) DS2788 (3) DS2784 (3) CounterDS2423 (3) LCD ScreenLCD (3) DS2408 (3) CryptoDS1977 (3) PressureDS2406 (3) TAI8570 (3) EDS0066 (3) EDS0068 (3) MoistureEEEF (3) DS2438 (3) AVAILABILITYhttp://www.owfs.org AUTHORPaul Alfille (paul.alfille@gmail.com)
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