Booster amplifier. Table of contents. Features. RE 30260/04.12 Replaces: Type VT-MSFA1. Component series 1X 1/6

Similar documents
Valve amplifier for proportional valves. Type VT-MSPA2-1. Contents. Features. RE Edition: Replaces:

Valve amplifier for proportional valves with electrical position feedback

Valve amplifier for proportional valves. Type VT-SSPA1-1 (5, 50, 100, 150) Features. Contents. RE Edition: Replaces:

Valve amplifier for high-response valves. Type VT-VRRA X/V0/2STV, VT-VRRA X/V0/PO-IS. Contents. Features

Electric amplifiers. Table of contents. Features. RE 30052/02.12 Replaces: Type VT-VRPA X/V0/... Component series 1X 1/6

Valve amplifier for proportional pressure valves

Electric amplifiers. Table of contents. Features. RE 30054/03.12 Replaces: Type VT-VRPA X/...-RTP. Component series 1X 1/6

Valve amplifier for proportional directional valves and proportional pressure valves. Type VT-VSPA2-1. Features. Contents

Electric amplifiers. Table of contents. Features. RE 30048/08.12 Replaces: Type VT-VRPA X/V0/RTP. Component series 1X 1/6

Electric amplifier for proportional cartridge throttle valves

Electric amplifiers. List of contents. Features. RE 30052/08.05 Replaces: Type VT-VRPA1. Unit series 1X 1/6

Valve amplifier for proportional directional valves. Type VT-VRPA2. Features. Contents. RE Edition: Replaces: 07.05

Plug-in amplifier. Table of contents. Features. RE 30264/07.12 Replaces: Type VT-SSPA1. Component series 2X 1/8

Analog amplifier. RE 29926/10.06 Replaces: Type VT Component Series 3X

Analogue amplifier. Features. Table of contents. RE 29980/09.05 Replaces: Type VT-SR2. Series 1X 1/6

Electric amplifier for flow control with proportional

Valve amplifier for proportional pressure valves

p/q closed-loop control amplifier

4/3 proportional directional valve direct operated, with integrated electronics

Directional control valves, direct operated, with electrical position feedback and integrated electronics (OBE)

Analogue amplifier modules for 4/3 and 4/2 proportional directional valves 4WRE

Electric amplifiers. Table of contents. Features RA 30052/ Model VT-VRPA1. Series 1X 1/6

Analog Amplifier RA. RE / /12 replaces: RE RE RE RE Technical Data Sheet

4/3 proportional directional valve with integrated digital electronics and field bus interface (IFB-P) Type 4WREF. Features.

High-response valve with integrated digital axis controller (IAC-R) and field bus interface

Analog amplifier RA. RE Edition: Replaces:

Electronic amplifier for the control of proportional valves without position control Model VT 3024, Series 3X H/A 4149/94 VT X

Service case with test unit for servo and proportional valves with integral electronics (OBE)

Electronic Amplifier Model VT 3017 and VT 3018 (Series 3X) for the control of proportional directional valves, without positional feedback

Directional control valves, direct operated, with electrical position feedback and integrated electronics (OBE)

Electronic amplifier for the control of proportional valves without position control Model VT 3006, Series 3X H/A 4240/94 VT X

External control electronics for the SYDFE1 control of the A10VSO axial piston variable displacement pump

Directional control valve, direct operated, with integrated digital axis controller (IAC-Multi-Ethernet) Type 4WRPDH. Features.

External control electronics for the SYDEF1 adjustment of the A10VSO axial piston pump

Sensor technologies Proximity sensors Series ST9. Brochure

RA / /6. Replaces: Table of contents RA /06.98

Digital Proportional Amplifier. Type: RT-VSPA2-50. Series: 3X. Table of contents. Features. RD13763/11.07 Replaces:

Electronic Circuit Breaker ESS1 for System SVS1

External control electronics for the SYDFE1 control of A10VSO axial piston pumps Analogue amplifier, configurable

Continental Hydraulics Installation Manual CEM-RA-A

Directional valves Coils Series CO1. Brochure

Industrial motor controller for brushed DC motors 12 VDC

RT-5005/5006/5007/5008

Electronic Circuit Breaker ESS1 for System SVS1

Directional valves Electrically operated Series 563, 565, 567. Brochure

Industrial motor controller for brushed DC motors 24 VDC

Pulse Scaler for DIN Rail Attachment

Industrial motor controller for brushed DC motors 24 VDC

PHOENIX CONTACT - 09/2009

External control electronics for the SYDFE1 control of the A10VSO axial piston variable displacement pump

Continental Hydraulics Installation Manual CEM-PA-A

Digital axis control HNC100

Digital axis control. Table of contents. RE 30139/08.12 Replaces: Type VT-HNC100. Component series 3X 1/20

PHOENIX CONTACT

Electronic Circuit Breaker with reset input ESS20-1..

EIB/KNX Switch Actuators. User manual

Sensor technologies Distance measuring sensors Series SM6-AL. Brochure

Speed sensor DSA series 12

Electronic amplifier type EV1D

Controller. 1 Proportional amplifier module ESSK 103. ESSK 103 and ELSK Description. 1.2 Application examples. 1.

Analog position controller

NSD Safety Mat Controller Modules Both Modules are compliant to OSHA & ANSI Standards - EN ISO EN EN 81-1 EN NSD VDC

LK Wireless Room Control Cq

Sensor technologies Distance measuring sensors Series SM6-AL. Brochure

Electronic Circuit Breaker ESS20-0..

Electronic Circuit Protector ESX10-T

Directional control valve, direct operated, with integrated digital axis controller (IAC Multi Ethernet) Type 4WRPDH. Features.

DENISON HYDRAULICS Proportional Pressure Control Valves

Datasheet. Electronic Circuit Protection ESX10-T

EPA-M*** POWER AMPLIFIER FOR OPEN LOOP PROPORTIONAL VALVES SERIES 20

4/3-way fast response valve Type 4WRGE

PHOENIX CONTACT

Acceleration sensors With relay output for limit monitoring Analog / CANopen

Fuse, external A 6A, medium time lag. Power consumption W min 20 - max 60 (see paragraph 5.2) Output current A maximum 4.5 (see paragraph 5.

Type CP-S, CP-C & CP-A Switch mode

Compact drives IndraDrive Cs

Smart Power Relay E I...

Operating Instructions

Switching Devices Contactors and Contactor Assemblies for Switching Motors

Coils & Electronic Controls

Rotational speed controller

4/3 Proportional Directional Valve, Size SAE 10

MINI MCR-SL-UI-f(-SP)

Technical Documentation

Installation and Operational Instructions for ROBA -switch Type 017._00.2

Installation and Operating Instructions for Phase Demodulator Type _.2

INTERFACE. User Manual

EFC 3600 Frequency converter for higher energy efficiency and improved process control

INSTRUCTION MANUAL VIBRATION SWITCH CVS 100 LC

EMD-FL-C-10. Current Monitoring Relay. Data Sheet. Functions. Structure 08/2004

Digital amplifier for proportional valves PEM XD

8V General information. 2 Order data 8V

SITOP power supply: The standard for reliability, compactness, and functionality. Reliably supplies 24 V DC.

Control module CP-A CM

Instruction manual. art Installation manual

Measurement range. Resolution 0.03 % ( ); 0.1 % ( ) Repeatability ±0.03 % ( ); ±0.1 % ( )

Electronic Circuit Breaker ESS1 for System SVS1

Short-circuit-proof switching amplifier for inductive loads up to 10 A

7.2 DV1311.L08 and DV1311.L12

Highlights. SIMATIC PXI inductive proximity switches. Introduction. Inductive proximity switches rugged, accurate and reliable

Transcription:

Booster amplifier RE 30260/04.12 Replaces: 08.11 1/6 Type VT-MSFA1 Component series 1X H7924 Table of contents Contents Page Features 1 Ordering code 2 Functional description 2 Block diagram / pinout 3 Terminal assignment 3 Technical data 4 Unit dimensions 6 Project planning / maintenance instructions / additional information 6 Features Control of hydraulic on/off valves which are to be switched fast Freely clocking output stage Protection against reversed polarity and short circuit of the load circuit (output stage) as well as protection against reversed polarity for the operating voltage 24 V status output "Ready for operation" (for analysis e.g. in a PLC) LED status displays "Ready for operation" Removable plug-in screw connectors Two equivalent switching inputs (with "AND" link)

2/6 Bosch Rexroth AG Hydraulics VT-MSFA1 RE 30260/04.12 Ordering code VT MSFA1 1X V0 * Analog amplifier in modular design for controlling an on/off valve For KSDER valve with coil 2.3 Ohm at 1.76 A = 50 For 4SEC6...SO843 valve = 100 For 4WE6...SO893 valve = 150 Further details in the plain text 1X = Component series 10 to 19 (10 to 19: Unchanged technical data and pinout) Functional description General The VT-MSFA1 booster amplifier is used to control hydraulic on/off valves which are to be switched fast. The module is snapped onto a top hat rail. The electrical connection is established via screw terminals. The module is operated with 24 V direct voltage. By means of the internally generated boost voltage of approx. 48 V which is connected to the valve solenoid during the boost phase and the resulting higher solenoid current (>> I Nominal ) considerably reduced switching times of the valve can be achieved. In holding operation, the solenoid current is reduced. This reduces the actuator operating temperature which again favors a longer service life of the actuator. Power supply unit [1] The internal power supply unit provides all internally required supply voltages. Switching inputs [2] If there is a "low signal" at one of the two switching inputs "IN1" or "IN2" [2], the output stage is block irrespective of the current phase (boost, tightening or holding phase) and the current actual current value. Then, there is a fast shut-down of the valve. When applying a "high signal" to both switching inputs "IN1" and "IN2" [2], the output stage is activated and the valve is switched on. Voltage and current profile generator [3] Generates the control signals for the output stage [4]. Power output stage [4] The power output stage creates the clocked solenoid current for the on/off valve. The output stage output is shortcircuit-proof. Fault detection [5] If the valve is connected, the green LED will light up if there is no error. The LED flashes in case of short circuit or if the solenoid resistance is too high. In case of cable break or internal errors, the LED will go out. The "Ready for operation" output will be taken back with all errors detected. After troubleshooting, there is an automatic restart. [ ] = Assignment to the block diagram

RE 30260/04.12 VT-MSFA1 Hydraulics Bosch Rexroth AG 3/6 Block diagram / pinout Switching inputs IN 1 IN 2 3 4 2 ok & 3 UB UBoost U I 4 error 7 8 Valve solenoid 6 Operating voltage +UB 0 V 1 2 DC DC DC DC UB Uint UBoost 1 UB Uint error & 5 ok 5 6 ok Ready for operation n.c. 1 Power supply 2 Switching inputs Terminal assignment 3 Voltage and current profile generator 4 Output stage 5 Fault recognition 6 On/off valve Operating voltage +U B 1 5 ok 0 V 2 6 n.c Ready for operation Switching inputs IN1 3 7 IN2 4 8 Valve solenoid Current profile Current I I A Holding phase I A = pull-in current I H = holding current I L = loading current I H Fast shut-down I L Boost phase t B Pull-in phase t A Loading phase t L Time t On Current in the solenoid current of the on/off valve Off Current in the module amplifier supply line

4/6 Bosch Rexroth AG Hydraulics VT-MSFA1 RE 30260/04.12 Technical data (For applications outside these parameters, please consult us!) electric Internal power supply unit Operating voltage U B 24 VDC Operating Upper limit value u B (t) max 35 V range Lower limit value u B (t) max 18 V Current consumption during the boost and pull-in phase (t B+A = 16 ms ± 1 ms) I(t) max < 6 A during the holding and loading phase (t L = 20 ms) I(t) max < 5 A during the holding phase I(t) max < 2 A with switched-off output stage I max < 100 ma Power consumption (depending on the switching frequency fs and duty cycle t p ) fs max = 50 Hz; t p = 6 ms P S < 55 W fs max = 20 Hz; t p = 15 ms P S < 45 W fs max = 10 Hz; t p = 80 ms P S < 35 W with switched-off output stage P S < 1.5 W Fuse Safety fuse 5 A (time-lag) Output stage Output voltage u(t) max < 50 V Output current Boost current I(t) max < 6 A Pull-in current 1) I(t) max < 6 A Holding current 1) I max < 2 A Internal clock frequency f Freely clocking 1) For the KSDER valve, no pull-in current is required. After the boost phase, the module amplifier switches directly to the holding current.

RE 30260/04.12 VT-MSFA1 Hydraulics Bosch Rexroth AG 5/6 Technical data (For applications outside these parameters, please consult us!) Max. switching frequency fs max 50 Hz Maximum duty factor 1) Switching frequency and duty factor are to be selected so that the rated current of the coil is not permanently exceeded. with KSDER valve 2) at 20 Hz fs 50 Hz Duty factor 20 % at 10 Hz fs < 20 Hz Duty factor 50 % at 5 Hz fs < 10 Hz Duty factor 80 % at 0 Hz fs < 5 Hz Duty factor Without limitation with 4SEC6 valve 3) at 10 Hz fs 50 Hz Duty factor 30 % at 5 Hz fs < 10 Hz Duty factor 90 % at 0 Hz fs < 5 Hz Duty factor Without limitation with 4WE6 valve 4) at 10 Hz fs 50 Hz Duty factor 30 % at 5 Hz fs < 10 Hz Duty factor 90 % at 0 Hz fs < 5 Hz Duty factor Without limitation Inputs IN1 and IN2 Switching thresholds On U +8.5 V to U B Off U 3 V to 5 V Current consumption I < 5 ma Outputs Ready for operation Switching thresholds On U > 16 V Off U < 3 V Current carrying capacity I max < 100 ma Operating conditions Type of connection Screw terminals (max. 2.5 mm 2 ) Mounting type Top hat rail TH 35/7.5 according to EN 60715 Protection class IP 20 according to EN 60529 Dimensions (W x H x D) 22.5 x 99 x 114.5 Admissible operating temperature range 20 to +55 C Storage temperature range 25 to +70 C Weight m 0.15 kg 1) Duty factor = t p / T 100 % t p : Switch-on duration, T: Cycle duration) 2) The specified duty factor for different switching frequency applies only to on/off valves of type KSDER with coil 2.3 Ohm / 1.76 A / material no. R901002932 3) The specified duty factor for different switching frequency applies only to on/off valves of type 4SEC6...SO843 4) The specified duty factor for different switching frequency applies only to on/off valves of type 4WE6...SO893

6/6 Bosch Rexroth AG Hydraulics Device type RE 30260/04.12 Unit dimensions (dimensions in mm) 22,5 113,6 Top-hat rail 5 6 7 8 Rexroth OK 99 MSFA1-1 1 2 3 4 114,5 Project planning / maintenance instructions / additional information The amplifier module may only be wired when de-energized. The distance to aerial lines, radios and radar systems must be sufficient (>> 1 m). Ensure a maintenance-friendly installation, i.e. simple access to the connection lines (cable ends with sufficient length so that removal of the module is also possible in the wired condition). Do not lay solenoid and signal lines near power cables. With a strongly fluctuating operating voltage, it may in the individual case be necessary to use an external smoothing capacitor with a capacity of at least 2200 µf. Recommendation: Capacitor module VT 11110-1X (see data sheet 30750); sufficient for up to two modules For supply, signal and solenoid lines, shielded cables must be used. The cable shield must be connected to the control cabinet extensively and as short as possible. To the connection of the valve solenoid, the following applies: Up to a length of 10 m, the wire cross-section must be 2 x 1.5 mm 2, from a length of 10 m to 25 m 2 x 2.5 mm 2. With greater lengths, please contact us. The distance between two booster amplifiers must at least be 25 mm. The clearance area between booster amplifier and cable channel must at least be 50 mm. The booster amplifier may only be operated with the valve/coil combinations released in the ordering codes. The solenoid and the mating connector must not be connected to free-wheeling diodes or other protective circuits. Bosch Rexroth AG Hydraulics Zum Eisengießer 1 97816 Lohr am Main, Germany Phone +49 (0) 93 52 / 18-0 documentation@boschrexroth.de www.boschrexroth.de This document, as well as the data, specifications and other information set forth in it, are the exclusive property of Bosch Rexroth AG. It may not be reproduced or given to third parties without its consent. The data specified above only serve to describe the product. No statements concerning a certain condition or suitability for a certain application can be derived from our information. The information given does not release the user from the obligation of own judgment and verification. It must be remembered that our products are subject to a natural process of wear and aging.

RE 30260/04.12 VT-MSFA1 Hydraulics Bosch Rexroth AG 7/6 Notes Bosch Rexroth AG Hydraulics Zum Eisengießer 1 97816 Lohr am Main, Germany Phone +49 (0) 93 52 / 18-0 documentation@boschrexroth.de www.boschrexroth.de This document, as well as the data, specifications and other information set forth in it, are the exclusive property of Bosch Rexroth AG. It may not be reproduced or given to third parties without its consent. The data specified above only serve to describe the product. No statements concerning a certain condition or suitability for a certain application can be derived from our information. The information given does not release the user from the obligation of own judgment and verification. It must be remembered that our products are subject to a natural process of wear and aging.

8/6 Bosch Rexroth AG Hydraulics Device type RE 30260/04.12 Notes Bosch Rexroth AG Hydraulics Zum Eisengießer 1 97816 Lohr am Main, Germany Phone +49 (0) 93 52 / 18-0 documentation@boschrexroth.de www.boschrexroth.de This document, as well as the data, specifications and other information set forth in it, are the exclusive property of Bosch Rexroth AG. It may not be reproduced or given to third parties without its consent. The data specified above only serve to describe the product. No statements concerning a certain condition or suitability for a certain application can be derived from our information. The information given does not release the user from the obligation of own judgment and verification. It must be remembered that our products are subject to a natural process of wear and aging.