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 Chapter 6 Analog Input Modules
Manual VIPA System 300V
331-1KF01 - AI 8x13Bit - Technical Data
Module name Dimensions and Weight Dimensions (WxHxD in mm) Weight Data for specific module Number of inputs - for 4wire resistance-type sensor Length of cable - shielded www..com Programming specifications Input data Parameter data Diagnostic data Voltages, Currents, Potentials Constant current for resistance-type sensor - resistance thermometer and resistance measurement 0 ... 600 - resistance measurement 0 ... 6k Isolation - between channels and backplane bus - between the channels Permitted potential difference - between the inputs (UCM) - between the inputs and MINTERN (UISO) Isolation tested with Current consumption - from the backplane bus Power dissipation of the module Analog value generation Measuring principle Integration time / conversion time / resolution (per channel) - programmable - Integration time in ms - Basic conversion time in ms additional conversion time for measuring resistance in ms - Resolution incl. overrange VIPA 331-1KF01 40x125x120 ca. 205g 8 8 200m / 50m at measuring range 50mV 8Words 14Byte -
0.83mA 0.25mA yes no DC 2V DC 75V / AC 60V DC 500V 200mA 1.0W Sigma delta
yes 60ms 61ms 61ms 13Bit continued ... 50ms 51ms 51ms
6-14
HB130E - SM - Rev. 07/44
Manual VIPA System 300V
Chapter 6 Analog Input Modules
331-7Kx01 - AI 8(2)x12Bit - Technical Data
Module name Dimensions and Weight Dimensions (WxHxD in mm) Weight Data for specific module Number of inputs - for 4wire resistance-type sensor Length of cable - shielded www..com Programming specifications Input data Parameter data Diagnostic data Voltages, Currents, Potentials Rated supply voltage of electronics L+ - Reverse polarity protection Power supply of the transmitters - Supply current - Short-circuit-proof Constant current for resistance-type sensor Isolation - between channels and backplane bus - between channels and power supply of the electronics Permitted potential difference - between the inputs (UCM) - between MANA and MINTERN (UISO) - between the inputs and MANA (UCM) Insulation tested with Current consumption - from the backplane bus - from the power supply L+ Power dissipation of the module VIPA 331-7KF01 VIPA 331-7KB01
40x125x117 ca. 200g 8 4 2 1
200m / 50m at measuring range 80mV 331-7KF01 331-7KB01 8Worte 2Worte 16Byte 16Byte 16Byte 16Byte DC 24V yes max. 30mA (per channel) yes 2.25mA yes yes (not with 2wire measuring transducer)
DC 3V DC 75V / AC 60V DC 3V (at Signal = 0V) DC 500V max. 95mA max. 100mA (without 2wire measuring transducer) 3.0W continued ...
HB130E - SM - Rev. 07/44
6-35
Chapter 6 Analog Input Modules
Manual VIPA System 300V
... continue Analog value generation Measuring principle Integration time/conversion time/resolution (per channel) - programmable - Conversion rate in Hz - Integration time in ms - Basic conversion time in ms Additional conversion time for open circuit monitoring in ms - Resolution (incl. overrange) in Bit - Noise suppression for frequency f1 in Hz www..com
VIPA 331-7KF01 VIPA 331-7KB01 Sigma delta
400 60 2 2.5 16 /3 4 18
50 20 22
yes 10 400 60 2 100 2.5 16 /3 68 4 18 4ms 9 12 -
50 20 22
10 100 68
9 -
- Basic execution time of the module in ms 42 18 46 54 (all channels enabled) Smoothing of the measured values none Suppression of interference, limits error Noises suppression for f=n x (f1 1%) (f1=interference frequency, n=1,2,...) - Common-mode interference (UCM < 3V) > 70dB - Series-mode noise (peak value of > 40dB noise < nominal value of input range Crosstalk between the inputs > 50dB Operational limit (in the entire temperature range, with reference to the input range) Measuring range Tolerance - Voltage input 80mV 1.0% 250mV, 500mV, 1V 0.6% 2.5V, 5V, 10V, 1 ... 5V 0.8% - Current input 3.2mA, 10mA, 20mA 0.7% 0 ... 20mA, 4 ... 20mA 0.7% - Resistors 0.7% 0 ... 150, 300, 600 - Resistance thermometer Pt100 Standard, Ni100 0.7% Pt100 Climate 0.8% - Thermocouple Type J, K, N, E, L 1.3% Type T 2.0% Type S, B, C, R (see note at the end of the table) Basic error (operational limit at 25C referred to the input range) Measuring range Tolerance - Voltage input 80mV 0.7% 250mV, 500mV, 1V 0.4% 2.5V, 5V, 10V, 1 ... 5V 0.6% - Current input 3.2mA, 10mA, 20mA 0.5% 0 ... 20mA, 4 ... 20mA 0.5% - Resistors 0.5% 0 ... 150, 300, 600 continued ... 6-36 HB130E - SM - Rev. 07/44
14 50/ 60 154 186 554
12 -
12 -
12 -
14 50/ 60 146
Manual VIPA System 300V
Chapter 6 Analog Input Modules
... continue ... Suppression of interference, limits error - Resistance thermometer - Thermocouple
Temperature error (with reference to the input range) Linearity error (with reference to the input range) Repeatability (in steady state at 25C, with www..com reference to the input range) Temperature error of internal compensation Status, Interrupts, Diagnostics Interrupts - Process interrupt when limit has been exceeded - Diagnostic interrupt Diagnostic functions - Group error display - Diagnostics information read-out Data for selecting a sensor - Voltage
VIPA 331-7KF01 VIPA 331-7KB01 Pt100 Standard, Ni100 0.5% Pt100 Climate 0.6% Type J, K, N, L, E 0.7% Type T 1.1% Type S, B, C, R (see note at the end of the table) 0.005%/K 0.02% 0.05% 1.5% parameterizable parameterizable (Channel 0 and 2) (Channel 0) parameterizable parameterizable (Channel 0 and 2) (Channel 0) parameterizable red LED (SF) red LED (F0...F7) red LED (F0...F1) possible Input range 80mV, 250mV 500mV, 1V 2.5V, 5V 1 ... 5V, 10V 3.2mA, 10mA, 20mA 0 ... 20mA, 4 ... 20mA Input resistance 10M 10M 100k 100k 85 85 10M 10M 10M
- Current
- Resistors - Resistance thermometer - Thermocouples Maximum input voltage for voltage input (destruction limit) Maximum input current for current input L+ (destruction limit)
0 ...150, 300, 600 Pt100, NI100 Type J, K, N, L, E, T, S, B, C, R max. 20V max. 40mA
continued ...
HB130E - SM - Rev. 07/44
6-37
Chapter 6 Analog Input Modules
Manual VIPA System 300V
... continue ... Data for selecting a sensor Connection of the sensors - for measuring voltage - for measuring current as 2wire transmitter as 4wire transmitter - for measuring resistance with 2conductor connection with 3conductor connection with 4conductor connection Characteristic linearization www..com - for RTD - for thermocouples Temperature compensation - internal temperature compensation - external temperature compensation with compensating box - Compensation for 0C comparison point temperature Technical unit for temperature measurement
VIPA 331-7KF01
VIPA 331-7KB01
possible possible possible possible possible possible Pt100, NI 100 Standard / Climate Type E, N, J, K, L, T, S, B, C, R Ni100 Standard / Climate parameterizable possible possible possible C
Thermocouple for high temperature measurement
The thermocouples for high temperature measurement (Type S, B, C, R) produce physically caused smaller thermoelectromotive forces than the "normal" thermocouples (Type E, N, J, K, L). In the following table there is a comparison between the thermo electromotive forces of the thermocouple of the type N to type S, B, C, R. Thermo electromotive forces of Thermocouples Type N in V / C Type S in V / C Type B in V / C Type C in V / C Type R in V / C 0C 26 5 0 13 5 500C 38 10 5 19 11 1000C 39 12 9 18 13 1700C not possible 12 11 14 13
6-38
HB130E - SM - Rev. 07/44


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