8 independently controllable High Voltage channels
Output voltage: 0 ÷ 8000 V
Maximum output current: 20 µA
Available with Negative / Positive / Mixed Polarity
SHV connectors
Channels with individual enable
Floating Type: Common Floating Return
Low ripple
Under/over-voltage alert, overcurrent and max. voltage protection
Interlock logic for unit enable
Software Tools for easy channel management
A1580H is a single width board (5 TE wide) that houses 8 independent high voltage channels equipped with individual hardware enable.
The channels share a Common Floating Return, which is insulated from the chassis/crate ground. This feature may help to minimize problems of ground-loops. The board is available with positive, negative or mixed output polarity. Channels are delivered with SHV connectors. Consult our connectors reference page for technical information.
The output voltage range is 0 ÷ 8000 V, with 10 mV monitor resolution. The maximum output current is 20 µA, with 50 pA monitor resolution.
Independently programmable for each channel:
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Output voltage: |
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0 ÷ 8000 V |
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Step: 200 mV |
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Current limit (Iset): |
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0 ÷ 20 µA |
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Step: 500 pA |
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V Ramp up/down: |
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1 ÷ 500 V/s |
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Step: 1 V/s |
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TRIP parameter: |
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0 ÷ 999.9 s; 1000 s = Infinite |
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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.
Remote Enable/Disable: front panel independent contacts available for all channels.
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.
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Image
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Name
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No. of Channels
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Max Output <br>V
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Max Output <br>I
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Vset/Vmon Resolution
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Iset/Imon Resolution
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Max. Ramp Up/Down Rate
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Ripple Typ.
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Connectors
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Max Power per Channel
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Grounding
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Polarity
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A7460 |
12 |
6000 V |
1 / 0.1 mA selectable |
10 mV |
5 / 2 nA |
500 V/s |
< 5 mVpp |
SHV |
6 W |
Common Floating Return |
Neg / Pos |
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AG561H |
12 |
6000 V |
20 µA |
100 / 10 mV |
500 / 50 pA |
500 V/s |
< 5 mVpp |
SHV |
120 mW |
Common Ground |
Neg / Pos / Mixed |
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A1560H |
8 |
6000 V |
20 µA |
100 / 10 mV |
500 / 50 pA |
500 V/s |
< 5 mVpp |
SHV / Radiall 52 |
120 mW |
Common Floating Return |
Neg / Pos / Mixed |
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A1561H |
12 |
6000 V |
20 µA |
100 / 10 mV |
500 / 50 pA |
500 V/s |
< 5 mVpp |
SHV |
120 mW |
Common Floating Return |
Neg / Pos / Mixed |
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A1580H |
8 / 16 |
8000 V |
20 µA |
200 / 10 mV |
500 / 50 pA |
500 V/s |
< 5 mVpp |
SHV / Radiall 52 |
160 mW |
Common Floating Return |
Neg / Pos / Mixed |
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New A1632H |
8 |
6000 V |
100 / 20 µA<br>selectable |
100 mV |
Iset: 2 nA<br>Imon: 1nA / 50 pA |
500 V/s |
< 3 mVpp |
SHV |
0.6 W |
Individual Floating Channel |
Neg / Pos |
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No. of Channels |
8 (Common Floating Return) |
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Output Voltage |
0÷8 kV |
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Polarity |
Positive, Negative or Mixed depending on purchased version |
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Max. Output Current |
20 µA |
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Voltage Set Resolution |
200 mV |
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Voltage Monitor Resolution |
10 mV |
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Current Set Resolution |
500 pA |
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Current Monitor Resolution |
50 pA |
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VMAX hardware |
0÷8 kV common for all the board channels |
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VMAX hardware accuracy |
± 2% of FSR |
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VMAX software |
0÷8 kV settable for each channel |
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VMAX software resolution |
1 V |
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Ramp Up/Down |
1÷500 Volt/sec, 1 Volt/sec step |
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Voltage Ripple |
20 ÷ 1000 Hz: Typ <5 mVpp; Max <10 mVpp |
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Voltage Monitor vs. Output Voltage Accuracy |
± 0.3% ± 0.5 V |
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Voltage Set vs. Output Voltage Accuracy |
± 0.3% ± 2 V |
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Current Monitor vs. Output Current Accuracy |
± 2% ± 1 nA |
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Current Set vs. Current Monitor Accuracy |
± 2% ± 10 nA |