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A1619

16 Channel 250 V/1 mA - 100µA Full Floating Channel Dual Range Board

Datasheet

Home Power SupplyUniversal Multichannel SystemUp to 500 V A1619

Photo of A1619
  • 16 independently controllable High Voltage channels

  • Output voltage:0 ÷ 250 V

  • Dual range current:

    • High Power: 1 mA (1 nA monitor resolution)

    • High resolution: 100 µA (0.1 nA monitor resolution)

  • DB37 connectors

  • Floating Type: Individual Full Floating

  • Low ripple

  • Under/over-voltage alert, overcurrent and max. voltage protection

  • Interlock logic for unit enable

  • Software Tools for easy channel management

The CAEN Mod A1619  is a single width board (5 TE wide) that houses 16 independent high voltage channels.

All channels have independent floating returns, isolated up to 500 V from each other and from chassis/crate ground (Individual Full Floating channel).  Channels are delivered with DB37 connectors. Consult our connectors reference page for technical information.

The output voltage range is 0 ÷ 250 V, with 10 mV monitor resolution. The output channels offer dual current ranges (software selectable):

 

High Power: 0 ÷ 1 mA

 

High Resolution: 0 ÷ 100 µA

 

I set resolution: 20 nA

 

I set resolution: 20 nA

 

I mon resolution: 1 nA

 

I mon resolution: 0.1 nA

 

Independently programmable for each channel:

 

Output voltage:

 

0 ÷ 250 V

 

Step: 10 mV

 

Current limit (Iset):

 

0 ÷ 1mA / 100 µA

 

Step: 20 nA

 

V Ramp up/down:

 

1 ÷ 50 V/s

 

Step: 1 V/s

 

TRIP parameter:

 

0 ÷ 999.9 s; 1000 s = Infinite

 

Step: 0.1 s

 

Safety features include:

  • Channels: can be enabled or disabled through the Global Interlock logic.

  • Overvoltage and Undervoltage warning: when the output voltage differs from the programmed value.

  • Overcurrent detection: when a channel attempts to exceed the programmed current limit, it signals an “overcurrent” condition and enters TRIP status. The output voltage is adjusted to keep the current below the programmed limit for a programmable TRIP time, after which the channel is switched off. If TRIP is set to “constant current mode”, the channel behaves as a current source.

  • Hardware VMAX: maximum output voltage can be set, via front panel potentiometer, at the same common value for all the board channels. VMAX value can be read out via software.

  • Safety Board Interlock: this protection allows to disable the primary HV generation when the HV outputs are not connected to their loads.

 

CAEN provides a complete software range to control, monitor and configure its Power Supply products.

  • GECO2020 GEneral COntrol Software

  • CAEN HV Wrapper Library

  • HiVoCS web tool

  • OPC Server for CAEN Power Supplies

  • EPICS Service

 

These tools, which support the most used operating systems, ranging  from low level libraries (CAEN HV Wrapper Library), to be used as a source for customer designed software, to the WEB interface (HIVOCS) available on each mainframe, up to the all-inclusive Control Software (GECO2020) with user friendly graphical interfaces, to meet any application needs.

Advanced control via OPC Server (CAEN OPC Server) and EPICS (EPICS IOC) is supported, to easily include CAEN power supplies within existing setups featuring such standards.

  • All tools are available for free download.

 

Universal Multichannel Power Supply Systems (Mainframes)

Universal Multichannel Power Supply Systems, or Mainframes, are modular systems designed to house and control High Voltage (HV) and Low Voltage (LV) boards, providing power for particle detectors and their associated electronics in standard 19” racks. CAEN offers four mainframe versions:

  • SY4527: A large experimental system. This 19” wide / 8U high mainframe can house up to 16 HV/LV boards. It offers a power output from 600W up to a maximum of 4200W, depending on installed Power Supply Units and display type. Local control is optionally available via a 10.4” or 5.7” LCD Touchscreen.

  • SY5527: A more compact laboratory version. This 19” wide / 4U high mainframe can house up to 6 HV/LV boards. Its power output ranges from 600W up to a maximum of 1800W, depending on Power Supply Units. Optional local control is available via a 5.7” LCD Touchscreen.

  • SY4527LC: A cost-effective alternative with a shorter depth (~20cm compared to standard SYx527). This 19” wide / 8U high mainframe houses up to 10 boards and includes a 600W power supply. It does not include an LCD display. It is fully compatible with SY4527 and SY5527 boards.

  • SY5527LC: Also a cost-effective, shorter depth alternative (~20cm compared to standard SYx527). This 19” wide / 4U high mainframe houses up to 4 boards and includes a 400W power supply. It does not include an LCD display. It is fully compatible with SY4527 and SY5527 boards.

All systems offer modular design for simplified upgrades and maintenance and can be controlled remotely via Ethernet.


Ordering Options

Code Description
WA1619XAAAAA

A1619 – SYx527 H.V. Channels 250V 1mA – individual Floating (16CH)

RoHS

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    Close
    Image
    Name
    No. of Channels
    Max Output <br>V
    Max Output <br>I
    Vset/Vmon Resolution
    Iset/Imon Resolution
    Max. Ramp Up/Down Rate
    Ripple Typ.
    Connectors
    Max Power per Channel
    Grounding
    Polarity
    A1619

    A1619

    16

    250 V

    1mA / 100 µA

    10 mV

    10 / 1 nA

    50 V/s

    < 3 mVpp

    DB37

    0.25 W

    Full Floating

    -

    A1612

    A1612

    16

    500 V

    1mA / 100 µA

    10 mV

    10 / 1 nA

    100 V/s

    < 5 mVpp

    DB37

    0.5 W

    Full Floating

    -

    AG542

    AG542

    12 / 24 / 32

    500 V

    1 mA

    10 / 1 mV

    10 / 1 nA

    100 V/s

    < 3 mVpp

    SHV / DB25

    0.5 W

    Common Ground

    Neg / Pos / Mixed

    A1541

    A1541

    12 / 24 / 32

    500 V

    10 mA

    10 / 1 mV

    10 nA / 1 nA

    100 V/s

    < 3 mVpp

    SHV / DB25

    5 W

    Common Floating Return

    Neg / Pos / Mixed

    A1520P
    Discontinued

    A1520P

    12

    + 500 V

    15 mA

    1 mV

    250 / 25 nA

    50 V/s

    < 20 mVpp

    AMP75

    7.5 W

    Individual Floating Channel

    Pos

    A7042

    A7042

    48

    500 V

    500 µA

    10 / 1 mV

    10 / 1 nA

    100 V/s

    < 5 mVpp

    Radiall 52 / DB37

    250 mW

    Common Floating Return

    Neg / Pos

    A1542

    A1542

    12 / 24 / 32

    500 V

    1 mA

    10 / 1 mV

    10 nA / 1 nA

    100 V/s

    < 3 mVpp

    SHV / DB25

    0.5 W

    Common Floating Return

    Neg / Pos / Mixed

    AG541

    AG541

    12 / 24 / 32

    500 V

    10 mA

    10 / 1 mV

    10 / 1 nA

    100 V/s

    < 3 mVpp

    SHV / DB25

    5 W

    Common Ground

    Neg / Pos / Mixed

    A1542H

    A1542H

    12 / 24 / 32

    500 V

    1 / 0.1 mA selectable

    10 / 1 mV

    Iset: 20 nA Imon: 1 / 0.1 nA

    100 V/s

    < 3 mVpp

    SHV / DB25

    0.5 W

    Common Floating Return

    Neg / Pos / Mixed

    Technical Specifications

    Close

    No. of Channels

    16 Individual Full Floating (±500V isolation)

    Output Voltage

    0 ÷ 250 V

    Max Current

    • Low range: 100 µA
    • High range: 1 mA

    Voltage Monitor Resolution

    10 mV

    Current Set Resolution

    20 nA

    Current Monitor Resolution

    • Low range: 100 pA
    • High range: 1 nA

    VMAX hardware

    0÷250 V common for all the board channels

    VMAX hardware accuracy

    ±  2% of FSR

    VMAX software

    0÷250 V settable for each channel

    VMAX software resolution

    1V

    Ramp Up/Down

    1÷50 Volt/sec, 1 Volt/sec step

    Ripple (@ max load with 10nf)

    1 KHz ÷ 20 MHz

    • maximum: <5 mV pp
    • typical: <3 mV pp
    10 Hz ÷ 1KHz

    • maximum: <6 mV pp
    • typical: <4 mV pp

    Voltage Monitor vs. Output Voltage

    • typical:  ±0.03 % ±0.05 V
    • maximum: ±0.05 % ±0.1 V

    Voltage Set vs. Output Voltage

    • typical:  ±0.03 % ±0.05 V
    • maximum: ±0.05 % ±0.1 V

    Accuracy Current Monitor vs. Output Current

    • high range typical: ±0.5 %  ±0.5 µA
    • high range maximum: ±1% ±1 µA
    • low range typical: ±0.5% ±0.05 µA
    • low range maximum: ±1% ±0.1 µA

    Accuracy Current Set vs. Output Current

    • high range typical: ±0.5 %  ±0.5 µA
    • high range maximum: ±1% ±1 µA
    • low range typical: ±0.5% ±0.05 µA
    • low range maximum: ±1% ±0.1 µA

    Output Connector

    DB37 Multipin

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