M6SXF1 MSYSTEM | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 6

Technical content

MODEL: M6SXF1 M6SXF1 SPECIFICATIONS ES-7987 Rev.8 Page 1/6 http://www.m-system.co.jp/ Tension-Clamp Ultra-Slim Signal Conditioners M6S Series FUNCTION MODULE (PC programmable) Functions & Features

  • Maintenance-free tension clamp connection
  • Single input filter and function module
  • 12 types of functions are PC programmable
  • 5.9-mm wide ultra-slim design
  • Low profile allows the M6S module mounted in a 120-mm deep panel
  • High-density mounting
  • Power and status indicator LEDs 5.9 (.23) (3.70) 102 (4.02) mm (inch) MODEL: M6SXF1–[1][2]–R[3]

ORDERING INFORMATION

  • Code number: M6SXF1-[1][2]-R[3] Specify a code from below for each [1] through [3]. (e.g. M6SXF1-Z1Z1-R/UL/Q)
  • Input range (e.g. 4 – 20 mA DC)
  • Output range (e.g. 4 – 20 mA DC)
  • Specify the specification for option code /Q (e.g. /C01/SET) [1] INPUT Current Z1: Range 0 – 50 mA DC (Input resistance 24.9 Ω) Voltage S1: Range -1000 – +1000 mV DC (Input resistance 1 MΩ min.) S2: Range -10 – +10 V DC (Input resistance 1 MΩ min.) (Configurator software is used to change the input type and precise range.) [2] OUTPUT Current Z1: Range 0 – 20 mA DC Voltage V2: Range -10 – +10 V DC V3: Range -5 – +5 V DC (Configurator software is used to change output over the described range of the selected suffix code. For changing between suffix codes, set the Output Range Selector on the side of unit before software adjustment.) POWER INPUT DC Power R: 24 V DC (Operational voltage range 24 V ±10 %, ripple 10 %p-p max.) [3] OPTIONS (multiple selections) Standards & Approvals blank: CE marking /UL: UL approval, CE marking Other Options blank: none /Q: Option other than the above (specify the specification) SPECIFICATIONS OF OPTION: Q (multiple selections) COATING (For the detail, refer to M-System's web site.) /C01: Silicone coating /C02: Polyurethane coating EX-FACTORY SETTING /SET: Preset according to the Ordering Information Sheet (No. ESU-7847) FUNCTIONS PC Configurator Software is used to program the function. Filter, linearization and limiter functions can be combined.
  • Filter / Lag
  • Moving average output
  • Dead time computing
  • Delay buffer (first order lag)
  • Lead time computing
  • Ramp buffer
  • Linearization
  • User’s table linearization
  • Inverted output
  • Square root extraction (orifice, venturi)
  • X 2 (Palmer-Bowlus flume, Parshall flume)
  • X 5/2 (triangular or v-notch weir)
  • X 3/2 (rectangular weir)
  • Limiter
  • High / Low limit Factory default function setting Filter: Moving average

MODEL: M6SXF1 M6SXF1 SPECIFICATIONS ES-7987 Rev.8 Page 2/6 http://www.m-system.co.jp/ Linearization: None Limiter: Low limit = -2 %, High limit = 102 %

RELATED PRODUCTS

  • PC configurator software (model: M6CFG) Downloadable at M-System’s web site. A dedicated cable is required to connect the module to the PC. Please refer to the internet software download site or the users manual for the PC configurator for applicable cable types. GENERAL SPECIFICATIONS Connection Input and output: Tension clamp Power input: Via the Installation Base (model: M6SBS) or Tension clamp Applicable wire size: 0.2 to 2.5 mm2, stripped length 8 mm Housing material: Flame-resistant resin (black) Isolation: Input to output to power Overrange output: -2 – +102 % (Negative current output is not available.) Zero adjustment: -2 to +2 % (PC programming) Span adjustment: 98 to 102 % (PC programming) Power LED: Green light turns on when the power is supplied. Status indicator LED: Orange LED; Blinking patterns indicate different operating status of the transmitter. Programming: Downloaded from PC; input type and range, output type and range, zero and span, function type and parameters, etc. For detailed information, refer to the users manual for the PC configurator. Configurator connection: 2.5 dia. miniature jack; RS-232-C level INPUT SPECIFICATIONS ■ DC Current: Input resistor incoporated (If not specified, the input range is 4 – 20 mA DC.) Input range: 0 – 50 mA DC Minimum span: 2 mA Offset: Lower range can be any specific value within the input range provided that the minimum span is maintained. ■ DC Voltage
  • Code S1 (narrow spans) Input range: -1000 – +1000 mV DC Minimum span: 100 mV
  • Code S2 (wide spans) Input range: -10 – +10 V DC Minimum span: 1 V Offset: Lower range can be any specific value within the input range provided that the minimum span is maintained. If not specified, the input range is shown below. S1: 0 – 100 mV DC S2: 1 – 5 V DC OUTPUT SPECIFICATIONS ■ DC Current Output range: 0 – 20 mA DC Conformance range: 0 – 20.4 mA DC Minimum span: 1 mA Offset: Lower range can be any specific value within the output range provided that the minimum span is maintained. Load resistance: Output drive 11 V max. (e.g. 4 – 20 mA: 550 Ω [11 V ÷ 20 mA]) If not specified, the output range is 4 – 20 mA DC. ■ DC Voltage Code V2 (wide spans) Output range: -10 – +10 V DC Conformance range: -10.4 – +10.4 V DC Minimum span: 1 V Code V3 (narrow spans) Output range: -5 – +5 V DC Conformance range: -5.2 – +5.2 V DC Minimum span: 0.5 V Offset: Lower range can be any specific value within the output range provided that the minimum span is maintained. Load resistance: Output drive 1 mA max. If not specified, the output range is shown below. V2: 0 – 10 V DC V3: 1 – 5 V DC INSTALLATION Power consumption: Approx. 0.5 W Operating temperature: -20 to +55°C (-4 to +131°F) Operating humidity: 30 to 90 %RH (non-condensing) Mounting: Installation Base (model: M6SBS) or DIN rail Weight: 65 g (2.3 oz) PERFORMANCE in percentage of span Overall accuracy I/O gain ≤ 1: Input accuracy + Output accuracy I/O gain > 1: [Input accuracy + Output accuracy] × I/O gain
  • Input accuracy*: (% of max. input range)
  • Output accuracy*: ±0.04 % of max. output range *Inversely proportional to the span. See CALCULATION EXAMPLES OF OVERALL ACURACY. Temp. coefficient: ±0.01 %/°C (±0.006 %/°F) of max. span

MODEL: M6SXF1 M6SXF1 SPECIFICATIONS ES-7987 Rev.8 Page 3/6 http://www.m-system.co.jp/ Response time: ≤ 0.5 sec. (0 – 90 %) without any function setting Line voltage effect: ±0.1 % over voltage range Insulation resistance: ≥ 100 MΩ with 500 V DC Dielectric strength: 2000 V AC @1 minute (input to output to power to ground) CALCULATION EXAMPLES OF OVERALL ACCURACY [Example] Input Type -10 – +10 V, Input Range 1 – 5 V, Output Type -5 – +5 V, Output Range 1 – 5 V

  • Input accuracy = Max. Input Range (20 V) ÷ Span (4 V) × 0.01 % = 0.05 %
  • Output accuracy = Max. Output Range (10 V) ÷ Span (4 V) × 0.04 % = 0.1 % Accuracy= ±0.15 % STANDARDS & APPROVALS EU conformity: EMC Directive EMI EN 61000-6-4 EMS EN 61000-6-2 RoHS Directive EN 50581 Approval: UL/C-UL nonincendive Class I, Division 2, Groups A, B, C, and D (ANSI/ISA-12.12.01, CAN/CSA-C22.2 No.213) UL/C-UL general safety requirements (UL 61010-1, CAN/CSA-C22.2 No.61010-1) EXTERNAL VIEW ■ FRONT VIEW (with the cover open) ■ SIDE VIEW SW1 2 3 4 5 6 7 8 OFF ON SW1 Output Range Selectors Status Indicator LED Power LED Configurator Jack 5 6 7 8 1 2 3 4 The DIP switch setting is required to select output types before setting a precise output range using PC Configurator Software (model: M6CFG). Refer to the instruction manual for detailed procedures.

MODEL: M6SXF1 M6SXF1 SPECIFICATIONS ES-7987 Rev.8 Page 4/6 http://www.m-system.co.jp/ EXTERNAL DIMENSIONS & TERMINAL ASSIGNMENTS unit: mm (inch) 94 (3.70) 5.9 (.23) DIN RAIL 35mm wide DIN RAIL HOOK *Use a minus screwdriver: tip width 3.8 mm max., tip thickness 0.5 to 0.6 mm 102 (4.02) [0.5 (.02)]SCREWDRIVER INSERTION ANGLE : approx. 40° WIRE INSERTION ANGLE : approx.35° TEST PROBE max. 2 (.08) dia. SCREWDRIVER INSERTION ANGLE : approx. 35° 5 6 7 8 1 2 3 4

  • When mounting, no extra space is needed between units. SCHEMATIC CIRCUITRY & CONNECTION DIAGRAM Isolation Digital Computation Output Driver1 OUTPUT POWER Low Drift Amplifier 24.9Ω+ CURRENT (Z1)– VOLTAGE (S1, S2) STATUS IND. LED CONFIGURATOR JACK DIP SW CONNECTOR POWER POWER LED

MODEL: M6SXF1 M6SXF1 SPECIFICATIONS ES-7987 Rev.8 Page 5/6 http://www.m-system.co.jp/ FUNCTIONS ■ MOVING AVERAGE OUTPUT The module samples input signals every H seconds and, excluding U numbers of highest-value samples and L numbers of lowest-value samples, outputs proportionally to the average of the rest [N – (U + L)] of sampled data. When a new input is sampled after another H seconds, it gives up the oldest sample and calculates a new average including the latest sample and outputs proportionally. When the number of samples to be calculated equals 0 or less, it outputs an error. Parameters H: Sampling cycle (0.1000 to 100.0000 seconds) N: Number of samples to be calculated (1 to 128) U: Number of highest-value samples to be cut off (0 to 127) L: Number of lowest-value samples to be cut off (0 to 127) ■ DEAD-TIME COMPUTING The module does not respond to an input signal for a preset dead-time* duration. In addition, with adjusting a time constant T, it generates a first order lag output after the dead-time. e –HNs 1 + Ts where X 1: Input X 0: Output Dead time = H x N (s) Parameters H: Sampling cycle (0.1000 to 100.0000 seconds) N: Numbers of samples to be calculated (1 to 128) T: Time constant (0.0000 or 0.5000 to 100.0000 seconds) *Output is refreshed every sampling cycle. The response time may be delayed by 1 cycle at the maximum. ■ DELAY BUFFER The module generates a first order lag output. 1 + Ts where X 1: Input X 0: Output Parameters T: Time constant (0.5000 to 100.0000 seconds) H H INPUT t OUTPUT t N numbers N numbers average INPUT

  • Step input with dead-time t OUTPUT t H x N INPUT
  • Step input with dead-time plus time constant t OUTPUT t TH x N INPUT
  • Step input with time constant t OUTPUT t T

MODEL: M6SXF1 M6SXF1 SPECIFICATIONS ES-7987 Rev.8 Page 6/6 http://www.m-system.co.jp/ LEAD-TIME COMPUTING The module operates a lead-time equation. X0 (s) = (1 + Ts) X1 (s) where X 1: Input X 0: Output Parameters T: Lead-time constant (0.5000 to 100.0000 seconds) RAMP BUFFER The modules output does not change faster than a preset maximum rate, positive CP and negative CN, no matter how fast its input changes. CP: Maximum rate of positive output change (0.0000 to 200.0000%/second) CN: Maximum rate of negative output change (0.0000 to 200.0000%/second) HIGH / LOW LIMIT The output does not go above the preset high limit or below the preset low limit. High and Low limits are independently selectable. USER’S TABLE LINEARIZATION The input is converted into a linearized output according to the user specified segment data table, defined with pairs of X (input) and Y (output) values. 2 to 101 segment points can be specified. INVERTED OUTPUT The output is inversely proportional to the input. X 0 = 100 – X 1 where X 1: Input (%) X 0: Output (%) SQUARE ROOT EXTRACTION (orifice, venturi) The output is square root of input. ___ X 0 = 10 √ X1 where X 1: Input (%) X 0: Output (%) INPUT

  • Step input with lead-time constant t OUTPUT t T INPUT
  • Step input with rate-of-change limits t OUTPUT t CP CN X 2 OUTPUT (Palmer-Bowlus flume, Parshall flume) X0 = X1 2 / 100 where X 1: Input (%) X 0: Output (%) X 5/2 OUTPUT (triangular or V-notch weir) X0 = X1 5/2 / 1000 where X1: Input (%) X0: Output (%) X 3/2 OUTPUT (rectangular weir) X0 = X1 3/2 / 10 where X 1: Input (%) X0: Output (%) OTHER FUNCTIONS The low-end cutout point can be set within 0.0000 – 99.9999% of input signal. Specifications are subject to change without notice.