devctrl.devices.laser.impl.toptica_ibeam_smart.IBeamSmart#

class IBeamSmart(instr, channel=1)[source]#

Bases: Laser

This device requires baud rate 115200. It always returns an empty line when a command is issued (when echo is off, otherwise it returns the command).

Since I could not find a SCPI reference, I “reverse engineered” from this: https://pylablib.readthedocs.io/en/latest/_modules/pylablib/devices/Toptica/ibeam.html#TopticaIBeam

Methods

add_device

Manually add a specific device.

allow_only_dummy_devices

connect

connect_device

This function should be overridden by device implementations only, and is not intended to be used directly.

connect_dummy

Connect an instance of the device's dummy implementation

get_base_classes

Return a flat dictionary of all base classes below this class :param recurse: If True, recursively search for base classes :return: dict of {class name: class}

get_device_name

get_device_type_name

get_power_mW

get_status

Query the status of the device and return a string describing errors.

is_connected

Query whether the device is (still) connected

is_on

list_devices

Get a list of all devices for this type.

off

on

query

set_power_mW

write

_CLASS_TYPE = 'implementation'#
__abstractmethods__ = frozenset({})#
__annotations__ = {'_manual_devices': list[str]}#
__dict__ = mappingproxy({'__module__': 'devctrl.devices.laser.impl.toptica_ibeam_smart', '__firstlineno__': 14, '__doc__': '\nThis device requires baud rate 115200.\nIt always returns an empty line when a command is issued (when echo is off, otherwise it returns the command).\n\nSince I could not find a SCPI reference, I "reverse engineered" from this:\nhttps://pylablib.readthedocs.io/en/latest/_modules/pylablib/devices/Toptica/ibeam.html#TopticaIBeam\n', '_CLASS_TYPE': 'implementation', '__init__': <function IBeamSmart.__init__>, 'write': <function IBeamSmart.write>, 'query': <function IBeamSmart.query>, 'on': <function IBeamSmart.on>, 'off': <function IBeamSmart.off>, 'is_on': <function IBeamSmart.is_on>, 'get_power_mW': <function IBeamSmart.get_power_mW>, 'set_power_mW': <function IBeamSmart.set_power_mW>, '__repr__': <function IBeamSmart.__repr__>, 'is_connected': <function IBeamSmart.is_connected>, '_enumerate_devices': <classmethod(<function IBeamSmart._enumerate_devices>)>, 'connect_device': <classmethod(<function IBeamSmart.connect_device>)>, '__static_attributes__': ('channel', 'instr', 'serial'), '__abstractmethods__': frozenset(), '_abc_impl': <_abc._abc_data object>, '_children': {}, '_manual_devices': []})#
__firstlineno__ = 14#
__init__(instr, channel=1)[source]#
__module__ = 'devctrl.devices.laser.impl.toptica_ibeam_smart'#
__repr__()[source]#
Returns:

The name of the device. If applicable, this should include serial port, GPIB address, etc.

__slots__ = ()#
__static_attributes__ = ('channel', 'instr', 'serial')#
__weakref__#

list of weak references to the object

_abc_impl = <_abc._abc_data object>#
_children = {}#
_dummies_only = False#
classmethod _enumerate_devices(query='(ASRL)?*:INSTR')[source]#

This function should be overridden by device implementations only, and is not intended to be used directly. Instead, use list_devices() to get a list of devices. Use enumerate_devices only directly when you only want to list devices of one specific implementation, i.e., only SR830 Lock-In: SR830._enumerate_devices() :param class_name: The name of the device class

_manual_devices: list[str] = []#
classmethod add_device(connect_info)#

Manually add a specific device. The device will show up when list_devices() is called for the device type. Call this from the device class implementation, e.g. use ModelXYZ9000.add_device(‘GPIB:1234:5678’) to add a specific device with a fixed GPIB address. This is useful when automatic discovery is undesired/impossible, either because it is not implemented or it disturbs other devices which can’t handle a identification request. :param cls: The device implementation class :param connect_info: A string argument that is passed to the connect() method of the device implementation, when the device is being connected.

static allow_only_dummy_devices()#
classmethod connect(device_type_name: str, device_name: str | None, **kwargs) Device#
Parameters:
  • device_type_name – The name of the device class

  • device_name – The name of the device class

classmethod connect_device(name: str, none=None)[source]#

This function should be overridden by device implementations only, and is not intended to be used directly. Instead, use list_devices() to get a list of devices, and pass the selected device type and name to connect() :param device_name: The name of the device class

classmethod connect_dummy(**kwargs) Device#

Connect an instance of the device’s dummy implementation

classmethod get_base_classes(recurse=True) dict[str, type[Device]]#

Return a flat dictionary of all base classes below this class :param recurse: If True, recursively search for base classes :return: dict of {class name: class}

classmethod get_device_name() str#
Returns:

The specific type name of the device, e.g., SR830 or Keithly2600

classmethod get_device_type_name() str#
Returns:

The general type name of the device, e.g., Lock-In Amplifier or Voltmeter

get_power_mW() float[source]#
get_status() str#

Query the status of the device and return a string describing errors. If everything is ok, empty string must be returned :return: String of device status

is_connected() bool[source]#

Query whether the device is (still) connected

is_on() bool[source]#
classmethod list_devices() list[tuple[str, str]]#

Get a list of all devices for this type. The list made up of: - Manually added devices - Available devices (those returned by _enumerate_devices) - A dummy device (if a dummy implementation exists) - List of all devices of child classes

Returns:

list of available devices

off()[source]#
on()[source]#
query(query, multiline=False)[source]#
set_power_mW(power_mW: float)[source]#
write(cmd)[source]#