Skip to main content

Easy Biologic

A library allowing easy control over BioLogic devices. High and low level control over Biologic devices are available. Low level control is included in the lib subpackage, while high level control is available in the main module.

Install with python -m pip install easy-biologic

High Level API

There are two high level API modules containing three classes, and two convenience modules.

Biologic Device

Represents an instance of a Biologic Device.

Methods

BiologicDevice( address, timeout = 5 ): Creates a new Biologic Device representing the device conencted at address.

connect( bin_file, xlx_file ): Connects to the device, loading the bin and xlx file if provided.

disconnect(): Disconnects from the device.

is_connected(): Whether the device is connected or not.

load_technique( ch, technique, params, index = 0, last = True, types = none ): Loads a technique on to the given device channel.

load_techniques( ch, techniques, parameters, types = None ): Loads a series of techniques on to the given device channel.

update_parameters( ch, technique, parameters, index = 0, types = None ): Update the parameters of the given technqiue on the specified device channel.

start_channel( ch ): Starts the given channel.

start_channels( chs = None ): Starts multiple channels.

stop_channel( ch ): Stops the given channel.

stop_channels( chs = None ): Stops the given channels.

channel_info( ch ): Returns information about the given channel.

get_values( ch ): Returns current values of the given channel.

get_data( ch ): Returns buffered data of the given channel.

Properties

address: Connection address of the device. idn: ID of the device. kind: Device model. info: DeviceInfo structure. plugged: List of available channels. channels: List of ChannelInfo structures. techniques: List of TechParams loaded on each channel.

Biologic Program

Abstract Class Represents a program to be run on a device channel.

Methods

BiologicProgram( device, channel, params, autoconnect = True, barrier = None ): Creates a new program.

on_data( callback, index = None ): Retgisters a callback function to run when data is collected.

run(): Runs the program.

save_data( file, append = False ): Saves data to the given file.

_connect(): Connects to the device

Properties

device: BiologicDevice.
channel: Device channel.
params: Passed in parameters.
autoconnect: Whether connection to the device should be automatic or not.
barrier: A threading.Barrier to use for channel syncronization. [See ProgramRummer]
field_titles: Column names for saving data.
data: Data collected during the program.
status: Status of the program.
fields: Data fields teh program returns.
technqiues: List of techniques the program uses.

Program Runner

Represents a program to be run on a device channel.

Methods

ProgramRunner( programs, sync = False ): Creates a new program runner.

start(): Runs the programs.

Properties

sync: Whether to sync the threads or not. If True a threading.sync is

Base Programs

Contains basic implementations of BiologicPrograms.

OCV

Params

time: Run time in seconds.

time_interval: Maximum time between readings. [Default: 1]

voltage_interval: Maximum interval between voltage readings. [Default: 0.01]

CA

Params

voltages: List of voltages.

durations: List of times in seconds.

vs_initial: If step is vs. initial or previous. [Default: False]

time_interval: Maximum time interval between points. [Default: 1]

current_interval: Maximum current change between points. [Default: 0.001]

current_range: Current range. Use ec_lib.IRange. [Default: IRange.m10 ]

Methods

update_voltage( voltages, durations = None, vs_initial = None ): Updates the voltage.

CALimit

Params

voltages: List of voltages.

durations: List of times in seconds.

vs_initial: If step is vs. initial or previous. [Default: False]

time_interval: Maximum time interval between points. [Default: 1]

current_interval: Maximum current change between points. [Default: 0.001]

current_range: Current range. Use ec_lib.IRange. [Default: IRange.m10 ]

Methods

update_voltage( voltages, durations = None, vs_initial = None ): Updates the voltage.

JV_Scan

Performs a JV scan.

Params

start: Start voltage. [ Defualt: 0 ]

end: End voltage.

step: Voltage step. [Default: 0.01]

rate: Scan rate in mV/s. [Default: 10]

average: Average over points. [Default: False]

MPP_Tracking

Performs MPP tracking.

Params

init_vmpp: Initial v_mpp.

probe_step: Voltage step for probe. [Default: 0.01 V]

probe_points: Number of data points to collect for probe. [Default: 5]

probe_interval: How often to probe in seconds. [Default: 2]

run_time: Run time in seconds.

record_interval: How often to record a data point in seconds. [Default: 1]

MPP_Tracking_Intermittent

Performs MPP tracking with perdiodic voltage holds.

Params

init_vmpp: Initial v_mpp.

probe_step: Voltage step for probe. [Default: 0.01 V]

probe_points: Number of data points to collect for probe. [Default: 5]

probe_interval: How often to probe in seconds. [Default: 2]

run_time: Run time in seconds.

hold_interval: How often to hold the voltage.

hold_time: How long to hold the voltage.

record_interval: How often to record a data point in seconds. [Default: 1]

MPP

Runs MPP tracking and finds the initial Vmpp by finding the Voc, then performing a JV scan.

Params

init_vmpp: Initial v_mpp.

probe_step: Voltage step for probe. [Default: 0.01 V]

probe_points: Number of data points to collect for probe. [Default: 5]

probe_interval: How often to probe in seconds. [Default: 2]

run_time: Run time in seconds.

record_interval: How often to record a data point in seconds. [Default: 1]

MPP_Intermittent

Runs MPP tracking with voltage holds and finds the initial Vmpp by finding the Voc, then performing a JV scan.

Params

init_vmpp: Initial v_mpp.

probe_step: Voltage step for probe. [Default: 0.01 V]

probe_points: Number of data points to collect for probe. [Default: 5]

probe_interval: How often to probe in seconds. [Default: 2]

run_time: Run time in seconds.

hold_interval: How often to hold the voltage.

hold_time: How long to hold the voltage.

record_interval: How often to record a data point in seconds. [Default: 1]

Find Devices

A convenience script for finding connected devices.

Low Level API

The low level API gives direct control of the Biologic device using the provided DLL libraries. The subpackage contains five modules.

EC Lib

Contains methods converting the BL_* DLL functions for use, enumeration classes to encapsulate program and device states, and C Structures for sending and receiving data from th device.

Methods

connect( address, timeout = 5 ): Connects to the device at the given address.

disconnect( idn ): Disconnects given device.

is_connected( address ): Checks if teh device at the given address is connected.

is_channel_connected( idn, ch ): Checks whether the given device channel is connected.

get_channels( idn, length = 16 ): Returns a list of booleans of whether the cahnnel at the index exists.

channel_info( idn, ch ): Returns a ChannlInfo struct of the given device channel.

load_technique( idn, ch, technique, params, first = True, last = True, verbose = False ): Loads the technique with parameter on the given device channel.

create_parameter( name, value, index, kind = None ): Creates an EccParam struct.

update_paramters( idn, ch, technique, params, tech_index = 0 ): Updates the paramters of a technique on teh given device channel.

cast_parameters( parameters, types ): Cast parameters to given types.

start_channel( idn, ch ): Starts the given device channel.

start_channels( idn, ch ): Starts the given device channels.

srop_channel( idn, ch ): Stops the given device channel.

srop_channels( idn, chs ): Stops the given device channels.

get_values( idn, ch ): Gets the current values and states of the given device channel.

raise_exception( err ): Raises an exception based on a calls error code.

Enum Classes

IRange: Current ranges.
Values: [ p100, n1, n10, n100, u1, u10, u100, m1, m10, m100, a1, KEEP, BOOSTER, AUTO ]

ERange: Voltage ranges.
Values: [ v2_5, v5, v10, AUTO ]

ConnectionType: Whether the device is floating or grounded.
Values: [ GROUNDED, FLOATING ]

TechniqueId: ID of the technique. (Not fully implemented.)
Values: [ NONE, OCV, CA, CP, CV, PEIS, CALIMIT ]

ChannelState: State of the channel.
Values: [ STOP, RUN, PAUSE ]

ParameterType: Type of a parameter.
Values: [ INT32, BOOLEAN, SINGLE, FLOAT ] (FLOAT is an alias of SINGLE.)

Structures

DeviceInfo: Information representing the device. Used by connect().
Fields: [ DeviceCode, RAMSize, CPU, NumberOfChannles, NumberOfSlots, FirmwareVersion, FirmwareDate_yyyy, FirmwareDate_mm, FirmwareDate_dd, HTdisplayOn, NbOfConnectedPC ]

ChannelInfo: Information representing a device channel. Used by channel_info().
Fields: [ Channel, BoardVersion, BoardSerialNumber, FirmwareVersion, XilinxVersion, AmpCode, NbAmps, Lcboard, Zboard, RESERVED, MemSize, State, MaxIRange, MinIRange, MaxBandwidth, NbOfTechniques ]

EccParam: A technique parameter.
Fields: [ ParamStr, ParamType, ParamVal, ParamIndex ]

EccParams: A bundle of technique parameters.
Fields: [ len, pParams ]

CurrentValues: Values measured from and states of the device.
Fields: [ State, MemFilled, TimeBase, Ewe, EweRangeMin, EweRangeMax, Ece, EceRangeMin, EceRangeMax, Eoverflow, I, IRange, Ioverflow, ElapsedTime, Freq, Rcomp, Saturation, OptErr, OptPos ]

DataInfo: Metadata of measured data.
Fields: [ IRQskipped, NbRows, NbCols, TechniqueIndex, TechniqueID, processIndex, loop, StartTime, MuxPad ]

Data Parser

Parses data received from a technique and contains technique fields for different device types.

Methods

parse( datam info, fields = None ): Parses data received from a technique.

calculate_time( t_high, t_low, data_info, current_value ): Calculates elapsed time from time data.

Classes

VMP3_Fields: Contains technqiue fields for VMP3 devices. (Not all techniques are implemented) Properties: [ OCV, CP, CA, CPLIMIT, CALIMIT, CV ]

SP300_Fields: Contains technqiue fields for SP-300 devices. (Not all techniques are implemented) Properties: [ OCV, CP, CA, CPLIMIT, CALIMIT, CV ]

EC Find

Implements the BL Find DLL.

Methods

All BL Find DLL functions are implemented under the same name.

find_devices( connection = None ): Finds conencted devices.

Technique Fields

Parameter types for techniques. (Not all techniques are implemented.)

Classes

OCV, CV, CA, CALIMIT

EC Errors

Implements EC errors.

Classes

EcError( value = None, code = None, message = None )

Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distribution

easy-biologic-0.0.1.tar.gz (26.8 kB view details)

Uploaded Source

Built Distribution

If you're not sure about the file name format, learn more about wheel file names.

easy_biologic-0.0.1-py3-none-any.whl (51.8 kB view details)

Uploaded Python 3

File details

Details for the file easy-biologic-0.0.1.tar.gz.

File metadata

  • Download URL: easy-biologic-0.0.1.tar.gz
  • Upload date:
  • Size: 26.8 kB
  • Tags: Source
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/1.13.0 pkginfo/1.4.2 requests/2.19.1 setuptools/41.1.0 requests-toolbelt/0.9.1 tqdm/4.26.0 CPython/3.7.0

File hashes

Hashes for easy-biologic-0.0.1.tar.gz
Algorithm Hash digest
SHA256 903008d632dc9497150fae734ff5390476e28091cb4523b39967ea1258efd8ac
MD5 3444b4faaa6b3318837b7a1be8c93a61
BLAKE2b-256 f9c44f220a0860090c117f930dfef3bcaa99d18d9976b041cfb6ccbee1e6bbf8

See more details on using hashes here.

File details

Details for the file easy_biologic-0.0.1-py3-none-any.whl.

File metadata

  • Download URL: easy_biologic-0.0.1-py3-none-any.whl
  • Upload date:
  • Size: 51.8 kB
  • Tags: Python 3
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/1.13.0 pkginfo/1.4.2 requests/2.19.1 setuptools/41.1.0 requests-toolbelt/0.9.1 tqdm/4.26.0 CPython/3.7.0

File hashes

Hashes for easy_biologic-0.0.1-py3-none-any.whl
Algorithm Hash digest
SHA256 433390b4c742155e0172997ebdd02669918477ea37b380d5426a7fe0c098f00b
MD5 3339b2157c09bbb627e7c8a7a5456d58
BLAKE2b-256 23c6454d4b528e89c6cc280ba945fcf68aaf20c9a184e247d9e508ee7d2daf50

See more details on using hashes here.

Release history Release notifications | RSS feed

0.4.0

2 files

0.3.4

2 files

0.3.3

2 files

0.3.2

2 files

0.3.1

2 files

0.3.0.post1

2 files

0.3.0

2 files

0.2.2

2 files

0.2.1

2 files

0.2.0

2 files

0.1.1

2 files

0.1.0

2 files

0.0.8

2 files

0.0.7

2 files

0.0.6

2 files

0.0.5

2 files

0.0.4

2 files

0.0.2

2 files

This release

0.0.1 This release

2 files

Anthropic, PBC Visionary sponsor Bloomberg Visionary sponsor Hudson River Trading Visionary sponsor Meta Visionary sponsor NVIDIA Visionary sponsor Microsoft Sustainability sponsor Depot Continuous Integration AWS Cloud computing and Security Sponsor Datadog Monitoring Fastly CDN Google Download Analytics Sentry Error logging StatusPage Status page