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ES1391.1 Power Supply Controller Board User’s Guide...
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Copyright The data in this document may not be altered or amended without special notification from ETAS GmbH. ETAS GmbH undertakes no further obligation in relation to this document. The software described in it can only be used if the customer is in possession of a general license agreement or single license.
The components, connectors and conductors of the ES1391.1 Power Supply Controller Board may carry dangerous voltages. These voltages may even exist when the ES1391.1 is not installed in the ES4100, ES4105 or ES4300 or the ES4100, ES4105 or ES4300 is powered off.
• addressing up to two ES1392.1 High Current Switch Boards Thanks to its architecture the ES1391.1 can also be used generally as a D/A and A/D converter board and to acquire and output digital signals. The ES1391.1 Power Supply Controller Board can be used to simulate two power supplies with e.g.
The ES1391.1 Power Supply Controller Board has a VMEbus interface which is used to connect it to the VME backplane of the ES4100, ES4105 or ES4300 Signal Box. Features The ES1391.1 Power Supply Controller Board has the following features: •...
• Occupies one VME slot Front Panel The following figure shows the front panel of the ES1391.1 Power Supply Controller Board PwrCtrl0 PwrCtrl1 SwCtrl0 SwCtrl1 ES1391.1 Fig. 1-2 Front Panel of the ES1391.1 Power Supply Controller Board Introduction...
Block Diagram Fig. 1-3 shows the block diagram of the ES1391.1 Power Supply Controller Board. The individual functions and interfaces of the board are described below. Data Over- Flash voltage / Galvanic Short Isolation Protection Over- Galvanic voltage / Isolation...
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"Technical Data" on page 39. VMEbus Interface The ES1391.1 has a VMEbus slave interface. The base address can be set dynamically by accessing the register or statically using hex switches. For more information and addressing possibilities, refer to "Addressing the ES1391.1 at the VMEbus"...
Hardware This chapter contains the descriptions of the hardware of the ES1391.1 Power Supply Controller Board. It consists of the following sections: • "Power Supply Control Unit" on page 12, description of the inputs/outputs with technical data – "Digital Inputs" on page 12 –...
Power Supply Control Unit The power supply control unit has a connector with 14 pins. The unit is used for addressing and controlling an external power supply. Digital outputs can be configured depending on the power supply used. They can be used, for example, to power on/off the power supply or power on/off the supply voltage of the power supply (e.g.
Technical Data of the Digital Inputs Input Variable Data Input voltage Input current < 5 mA Overvoltage protection Yes, to ±60 V Galvanic isolation Sampling rate 1 ms Tab. 2-1 Technical Data of the Digital Inputs 2.1.2 Digital Outputs The digital outputs of a power supply control unit can be realized either as simple switching contacts (open collector output) or can be assigned a pull-up to 5 V by setting a jumper (TTL output).
Block Diagram +5 V (galv. isolated) Pull-Up Resistor Jumper for Pull-Up Resistor DigOut Digital Output PhotoMOS Relay with Processor Overvoltage MPC555 Protection Digital Ground 0 ... 60 V (GND-PwrCtrl) Fig. 2-2 Block Diagram of the Digital Outputs For more details on jumper configuration, refer to "Jumper a: Digital Output 0"...
Block Diagram Analog Input Overvoltage Galvanic Processor Protection Converter Isolation MPC555 Analog Ground (common) Fig. 2-3 Block Diagram of the Analog Inputs Technical Data of the Analog Inputs Input Variable Data Input voltage 0 to 10 V Ω Input impedance >1 M Accuracy ±3 mV (10.7-bit) typical...
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Technical Data of the Analog Outputs Output Variable Data Output voltage 0 to 10 V Output current 10 mA Resolution 14-bit Accuracy ±2 mV (11.2-bit) typical Galvanic isolation Overvoltage protection Yes, to ±60 V Tab. 2-4 Technical Data of the Analog Outputs Hardware...
Switch Control Unit The switch control unit has a connector with 14 pins. It provides control signals for addressing the battery nodes (relays) of the ES1392.1 High Current Switch Board. The pins also have other functions which are explained below. 2.2.1 Functions of the Switch Control Unit •...
The user can define the reaction of the ES1391.1 firmware when an error arises via the RTIO configuration software. The ES1391.1 can power off both, one or none of the power supplies addressed by the ES1391.1 as a reaction to an active alarm signal.
2.2.4 +UBatt and -UBatt Contacts These contacts carry the supply voltage for the pull-up and pull-down resistors of the main relay input (MRC). The following table contains the technical data of the +UBatt and –UBatt contacts: +UBatt/-UBatt Contact Data Input voltage 0 to 60 V Input current Max.
The battery nodes dependent on the MRC signal are defined using the RTIO configuration software. The main relay input of the ES1391.1 Power Supply Controller Board can be assigned a pull-up to battery voltage or a pull-down to battery ground.
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Dependency of the Current on the Battery Voltage note A minimum battery voltage of 4 V is necessary to ensure that the logic circuit on the ES1391.1 correctly detects the level at the main relay input. The hysteresis is 1 V. Hardware...
Board Via this port, the EEPROM of the ES1392.1 High Current Switch Board is read and programmed by the ES1391.1. The ES1391.1 then transfers the data to the host system. This means that the configuration and versioning information can be read from the EEPROM.
Addressing the ES1391.1 at the VMEbus The ES1391.1 Power Supply Controller Board can be operated both in VMEbus and in VME64x systems with geographical addressing. With two rotary switches, SW1 and SW2, the board is addressed in the relevant address spaces in the setting ”0x00”...
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In the ”0x00” setting, the ES1391.1 Board overlays 256 bytes into the A24 address space depending on the slot position. Depending on the available memory area, the 64 kB address space is then assigned dynamically by the system controller. Slot Position...
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The 64 kB address space is assigned statically with every other setting of the hex switches (≠ 0x00). Switch Setting Address Space 0x01 010000 - 01FFFFF 0x02 020000 - 02FFFFF 0x03 030000 - 03FFFFF 0xFF FF0000 - FFFFFFF Tab. 2-16 Address Space Settings 0xn0 0x0n...
Jumper Assignment The ES1391.1 Power Supply Controller Board has five jumpers, seven connectors, one DIP switch and two Hex switches for configuration and allocation of the board. This chapter explains which jumpers, connectors and switches are relevant for the user, describes their functions and how they can be set.
Connector Function Connector Function Power supply control unit 0 (PwrCtrl 0) Power supply control unit 1 (PwrCtrl 1) Switch control unit 0 (SwCtrl 0) Switch control unit 1 (SwCtrl 1) relevant for users (multiple connector, functions: RS232, debug interface, JTAG interface, boundary scan interface) Reserved 1st post rail for piggyback...
3.1.1 JP0: Configuration of the Main Relay Input for Switch Control Unit 0 Position Function Pull-up circuit to +UBatt active Pull-down circuit to -UBatt (ground) active open Pull-down/pull-up circuit open 3.1.2 JP1: Configuration of the Main Relay Input for Switch Control Unit 1 Position Function Pull-up circuit to +UBatt active...
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Jumper a: Digital Output 0 Position Function Pull-up active open Open collector output Jumper b: Digital Output 1 Position Function Pull-up active open Open collector output Jumper c: Digital Input 0 Position Function Pull-down circuit active Pull-up circuit active open Pull-down/pull-up circuit open/inactive Jumper d: Digital Input 1 Position...
Pin Assignment This chapter explains the pin assignment of the connectors of the power supply control and switch control units of the ES1391.1 Power Supply Controller Board. These are: • "Assignment of the Connectors for the Power Supply Control Units PwrCtrl 0 and 1"...
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Signal Analog output 0 signal Analog output 0 GND Analog output 1 signal Analog output 1 GND Analog input 0 signal Analog input 0 GND Analog input 1 signal Analog input 1 GND Digital output 0 signal Digital output 1 signal Digital input 0 signal Digital input 1 signal Digital input 2 signal...
Assignment of the Connectors for the Switch Control Units SwCtrl 0 and 1 Type: Lemo ECG.1B.314.NLV Assignment of the SwCtrl connector (view from the plug-in side). Fig. 4-2 SwCtrl Connector Pins Pin Assignment...
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Signal Control output switch 0 Control output switch 1 Control output switch 2 Control output switch 3 Control output switch 4 Not assigned Alarm input for error statuses Battery voltage +UBatt Battery ground (-UBatt) Configuration output for node 0 Main relay input (MRC) Ground node 0-4/ ground alarm signal ES1392.1 EEPROM signal ES1392.1 EEPROM ground...
Accessories Cables Two cables are necessary to connect the ES1391.1 Power Supply Controller Board: these are described below. 5.1.1 CBAV310.1-2 Cable between the ES1391.1 and the Power Supply for Battery Voltages ES4080, ES4081 Product Data Short name CBAV310.1-2 Long name...
CV status (voltage) CC status (current) Ground (DGND) Protective earth (PE) Front panel Front panel 5.1.2 CBV300.1-0.5 Cable: Connection between the ES1391.1 and the ES1392.1 Product Data Short name CBV300.1-0.5 Long name Cable Lemo 1B FGG - Lemo 1B FGG (14mc - 14mc, 0.5m)
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Function ES1391.1 LEMO ES1392.1 LEMO FGG Connection FGG Connection Control signal switch 0 Control signal switch 1 Control signal switch 2 Control signal switch 3 Control signal switch 4 Not assigned Signal switch alarm +UBatt -UBatt Configuration of switch 0 MRC signal Ground –...
Technical Data This chapter contains the technical data of the ES1391.1 Power Supply Controller Board. The technical data on the power supply control units and the switch control units are described in the relevant sections. "Power Supply Control Unit" on page 12, "Switch Control Unit" on page 17.
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Switch Control Interface Configuration 2 interfaces Switch control output channels Switch control output level Switch control output current Max. 10 mA Alarm input channels Alarm input level Alarm input current < 1 mA Overvoltage protection MRC (main relay control) input level 0...60 V MRC pull-up/pull-down...
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VME Conformity VME specification Revision C.1, October 1985 and IEC 821-1987 Type Slave with geographical addressing in acc. with VME64x Address/data bus A24:D16 Address modifier 39 (hex): A24 non-privileged data access Base address $000000-FF0000 jumper-programmable or by VME64x backplane slot detection automatically Memory map Standard I/O space, occupying 64 kB Backplane...
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