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Model: R3y-ms8 Remote I/o R3 Series

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MODEL: R3Y-MS8 Green when the bus B operates normally; Amber when both buses operate normally. ERR indicator: Bi-color (red/green) LED; Red with the input abnormality; Green in normal operating conditions. Remote I/O R3 Series POTENTIOMETER INPUT MODULE (8 points, isolated) 27.5 (1.08) INPUT SPECIFICATIONS Minimum span: 50 % of the total resistance range Excitation: Approx. 0.5 V DC 130 (5.12) INSTALLATION 110 (4.33) Operating temperature: -10 to +55°C (14 to 131°F) Operating humidity: 30 to 90 %RH (non-condensing) Atmosphere: No corrosive gas or heavy dust Mounting: Installation Base (model: R3-BSx) Weight: 200 g (0.44 lbs) mm (inch) MODEL: R3Y–MS8[1][2] PERFORMANCE ORDERING INFORMATION • Code number: R3Y-MS8[1][2] Specify a code from below for each [1], [2] (e.g. R3Y-MS8W/CE) INPUT Total resistance 500 Ω - 100 kΩ NO. OF CHANNELS 8: 8 [1] COMMUNICATION MODE S: Single W: Dual [2] OPTIONS STANDARDS & APPROVALS blank: Without CE /CE: CE marking GENERAL SPECIFICATIONS Connection Internal bus: Via the Installation Base (model: R3-BSx) Input: 40-pin connector (Fujitsu FCN-365P040-AU) Power supply: Via the installation base (model: R3-BSx) Isolation: Input 1 to input 2 to input 3 to input 4 to input 5 to input 6 to input 7 to input 8 to internal power Conversion rate: Selectable with the side DIP SW RUN indicator: Bi-color (red/green) LED; Red when the bus A operates normally; http://www.m-system.co.jp/ Conversion accuracy: Refer to the table at the end of this section. The resolution, conversion accuracy and temperature coefficient are defined against the potentiometer's total resistance. If the actual resistance range (between the zero and span positions) is narrower than the total resistance, the values change in proportion. Using at least 50 % of the total resistance is basically recommended. Conversion rate: 160 / 80 / 40 / 20 msec. selectable Data range: 0 – 10000 Data allocation: 8 Current consumption: Approx. 100 mA Temp. coefficient: ±0.015 % /°C The resolution, conversion accuracy and temperature coefficient are defined against the potentiometer's total resistance. If the actual resistance range (between the zero and span positions) is narrower than the total resistance, the values change in proportion. Using at least 50 % of the total resistance is basically recommended. Insulation resistance: ≥ 100 MΩ with 500 V DC Dielectric strength: 500 V AC @ 1 minute (input 1 to input 2 to input 3 to input 4 to input 5 to input 6 to input 7 to input 8 to internal power) 2000 V AC @ 1 minute (power input to FG; isolated on the power supply module) Conversion accuracy 160 msec. Resolution Accuracy R3Y-MS8 SPECIFICATIONS 1/10000 ±0.05% CONVERSION RATE 80 msec. 40 msec. 1/5000 ±0.1% 1/2500 ±0.2% 20 msec. 1/1250 ±0.4% ES-8956 Rev.3 Page 1/4 MODEL: R3Y-MS8 STANDARDS & APPROVALS CE conformity: EMC Directive (2004/108/EC) EMI EN 61000-6-4: 2007 EMS EN 61000-6-2: 2005 EXTERNAL VIEW ‫ع‬SIDE VIEW ‫ع‬FRONT VIEW RUN LED ERR LED • Pin Assignment B A 20 20 Input Connector SW3 1 2 3 4 Conv. Rate ON B 1 A 1 DIMENSIONS unit: mm (inch) 27.5 (1.08) 110 (4.33) 130 (5.12) POSITIONING GUIDE http://www.m-system.co.jp/ R3Y-MS8 SPECIFICATIONS ES-8956 Rev.3 Page 2/4 MODEL: R3Y-MS8 SCHEMATIC CIRCUITRY & CONNECTION DIAGRAM INPUT 1 Excitation Generator Communication Circuit 18B 2 – 17B 1 min. POTENTIOMETER max. + 15B 3 INPUT 2 – 13B 1 min. POTENTIOMETER max. + 11B 3 – 1 min. POTENTIOMETER max. + 3 7B – 17A 1 min. POTENTIOMETER max. + 15A 3 – 13A 1 min. POTENTIOMETER max. + 11A 3 – 1 min. POTENTIOMETER max. + 3 Input Circuit Excitation Generator Input Circuit Excitation Generator Input Circuit Excitation Generator Input Circuit 9A 7A 6A 2 1 Excitation Generator 10A 2 min. Input Circuit 14A 2 INPUT 8 Excitation Generator 18A 2 INPUT 7 Input Circuit INTERNAL POWER 9B – 5B 1 min. POTENTIOMETER max. + 19A 3 INPUT 6 Excitation Generator BUS B* 6B 2 INPUT 5 Input Circuit BUS A 10B 2 INPUT 4 Control Circuit Excitation Generator 14B 2 INPUT 3 RUN LED ERR LED DIP SW Input Circuit BUS CONNECTOR POTENTIOMETER max. + 19B 3 1 – 5A *For dual redundant communication. • Unused Input Channels Close across the unused input terminals as shown below. INPUT 1 INPUT 2 INPUT 3 INPUT 4 19B 15B 11B 7B 18B 14B 10B 6B 17B 13B 9B 5B INPUT 5 INPUT 6 INPUT 7 INPUT 8 19A 15A 11A 7A 18A 14A 10A 6A 17A 13A 9A 5A SHORT SHORT The input will become unstable if unused channels are left open. Unused channels can be specified and set so on the PC Configurator Software (model: R3CON) without needing to short at the field terminals. http://www.m-system.co.jp/ R3Y-MS8 SPECIFICATIONS ES-8956 Rev.3 Page 3/4 MODEL: R3Y-MS8 INPUT CONNECTOR (40-pin) PIN NO. 1A 2A 3A 4A 5A 6A 7A 8A 9A 10A 11A 12A 13A 14A 15A 16A 17A 18A 19A 20A ASSIGNMENT NC NC NC NC IN8C IN8B IN8A NC IN7C IN7B IN7A NC IN6C IN6B IN6A NC IN5C IN5B IN5A NC PIN NO. 1B 2B 3B 4B 5B 6B 7B 8B 9B 10B 11B 12B 13B 14B 15B 16B 17B 18B 19B 20B ASSIGNMENT NC NC NC NC IN4C IN4B IN4A NC IN3C IN3B IN3A NC IN2C IN2B IN2A NC IN1C IN1B IN1A NC Specifications are subject to change without notice. http://www.m-system.co.jp/ R3Y-MS8 SPECIFICATIONS ES-8956 Rev.3 Page 4/4