Table of Contents About this document ......................4 Safety directives ........................4 2.1. Design of safety directives ....................4 2.2. Fundamental safety directives .................... 4 2.3. Personnel ..........................4 2.4. Intended use ........................5 2.5. Residual hazards ........................ 5 2.5.1. Device ..........................
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Declaration of Conformity According to the Low-Voltage Directive 2014/35/EU and Electromagnetic Compatibility Directive 2014/30/EU We hereby declare that the product meets the following requirements: Low-Voltage Directive 2014/35/EC Electromagnetic Compatibility Directive 2014/30/EU Applied harmonised standards: DIN EN 60204 T1 EN 61439-1 Note: Rhein-Nadel-Automation ---------------------------------...
1. About this document Attention Read this document carefully and observe the safety directives before commencing any work. Document description: This document provides assistance in choosing your product. You will also find information on mechanical and electrical installation, operation, product extensions and accessories. Non-observance may cause trouble with the product or the environment, reduce the product lifetime or lead to other damage.
Use of the product in living areas may lead to EMC disturbance. The user is responsible for taking interference suppression measures. • They are optimised for operation of RNA vibratory feeders and linear feeders. Observe the limits indicated in the technical specification. Attention! •...
2.5.3. Degree of protection - Protection of persons and equipment • All specifications relate to installed condition ready for operation. • All slots not used must be closed by protection caps or dummy plugs in order not to reduce the protection against accidental contact.
This is why the electrical operating conditions must be adapted to the vibrating system. The following table shows the variable safe operating ranges for the complete RNA product range. Attention Uniform weight distribution on the bowl (balancing) is a prerequisite for a consistent and stable feed rate.
When a bowl feeder is delivered complete with ESR 2000 controller the operating parameters are already set to suit the bowl feeder and stored in the 143 USER – 0 parameter.
45 - 120 CODE 13. Check the load current; it must not exceed the maximum value! The RNA - plug-in adapter ESZ-01 greatly facilitates start-up and, in particular, determination of the load current. 14. Save the operating parameters chosen Save and return to...
3.7. Sensor connection The controller has two sensor inputs which can be used for accumulation checking and/or level monitoring purposes. You can connect sensors of type NPN or PNP. Floating EGF40 Floating contact contact Proximity switch (optical sensor Proximity switch Proximity General PNP w/o amplifier)
3.8. Status outputs and relays The status outputs are used for remote diagnostics of the controller status or of the links of several controllers with one another. They are designed as freely available NPN-doped transistor circuits and they are floating. With the status output READY the transistor circuit is switched through whenever the controller is connected to power supply and switched on by its power switch closed.
The controller display (membrane keypad) On / Off Pressing this button switches off all connected devices. The display shows "OFF". The controller remains ready for operation. Cursor up and cursor down Use these buttons to scroll through the controller menu or set the parameters. Enter Press this button to acknowledge the parameters entered with the cursor.
All the following display screens show the default setting. If the actual display on the controller differs the default setting has been changed in individual codes to suit a specific application. 4.4. Description of individual codes for controller programming. Settings for the vibrating drive KANAL l KANAL 2 CODE...
KANAL l KANAL 2 CODE Limit vibrating amplitude 50 - 100 % (*) KANAL l KANAL 2 CODE For RNA feeders with 100V/200V magnets 90% I = active External enabling KANAL l KANAL 2 0 = not active CODE I = Start = 24V DC...
4.5.4. Code C006 Sensor linkage Objective: Linking of the two previously activated sensor inputs. Select code Set code KANAL l KANAL 2 CODE Code C006 KANAL l KANAL 2 CODE You can activate only one of the eight sensor links. AND logic with blowing-off I = active KANAL l...
Application: Sensor 2 is used as a level checker (e.g., LC-N 24V DC). Relay K1 operates an indicator light: Bowl feeder or linear feeder empty. 4.5.5. Code C008 cycle monitoring Objective: Monitoring of sensors 1 (accumulation check) and/or 2. When activating the cycle monitoring function, the "AND, SOL" links in code C006 must not be activated!!! Select code Set code KANAL l...
4.5.7. Code C200 Inhibiting all code entries Objective: An (accidental) change of the set values by the user is not possible any more. Select code Set code KANAL l KANAL 2 CODE Code C200 KANAL l KANAL 2 CODE I = enable Inhibiting the setting functions KANAL l 0 = disable...
4.5.10. Code C210 Retrieving parameters Objective: Resetting to default values or retrieving stored application-specific settings Select code Set code KANAL l KANAL 2 CODE Code C210 KANAL l KANAL 2 CODE Default setting KANAL l KANAL l KANAL 2 KANAL 2 CODE CODE KANAL l...
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