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MODEL: 20VS1A Hybrid IC Isolation Amplifiers 20 Series Isolation: Input to output to power ISOLATION AMPLIFIER INPUT SPECIFICATIONS (high speed response, 3-port isolation) Functions & Features • Being used for printed wiring board installation • High-linearity • High speed response 50 μsec. • Isolating between input, output and power • Isolation between input, output and power supply up to 3000 V AC • Power 15 V DC ■ DC Voltage Input : -10 – +10 V DC Input resistance: 1 MΩ (10 kΩ in power failure) Overload input voltage: ±15 V DC continuous Input offset voltage: ±2 mV @ G = 1 Input bias current: 25 pA TYP. (@25°C) Typical Applications • Isolating the field and input circuit of microprocessor to reduce noise from field • Available for manufacturers of small-lot products to omit the development of isolation circuit OUTPUT SPECIFICATIONS ■ DC Voltage: -10 – +10 V DC Load resistance: ≥ 2 kΩ Output impedance: ≤ 1 Ω REFERENCE VOLTAGE SOURCE ■ FOR INPUT Output voltage: ±16.5 V DC ±2.5 V (when power supply is 15 V DC) Load current: ≤ 2 mA ■ FOR OUTPUT Output voltage: ±16.5 V DC ±2.5 V (when power supply is 15 V DC) Load current: ≤ 2 mA INSTALLATION MODEL: 20VS1A–4W4W[1]–U • Code number: 20VS1A-4W4W[1]-U Specify a code from below for [1] (e.g. 20VS1A-4W4WA-U) Power input •DC: Rating ±5 %; approx. 50 mA with no load Operating temperature: -25 to +85°C (-13 to +185°F) Operating humidity: 30 to 90 %RH (non-condensing) Mounting: Soldering to the printed wiring board Weight: 20 g (0.71 oz) INPUT / OUTPUT PERFORMANCE in percentage of span 4W4W: -10 - +10 V DC (Input resistance 1 MΩ min.) / -10 - +10 V DC (Load resistance 2 kΩ min.) Unless otherwise specified, G = 1. Linearity: ±0.025 % (20VS1A-4W4WA) ±0.012 % (20VS1A-4W4WB) ±0.008 % (20VS1A-4W4WC) Temp. coefficient: ±25 ppm/°C (0℃ - 70℃; 32 - 158°F) ±50 ppm/°C (-25℃ - +85℃; -13 - +185°F) Frequency characteristics: Approx. 20 kHz, -3 dB Response time: ≤ 50 μsec. (0 – 90 %) Conversion gain: ×1 ±1.5 % Gain adjustable range: × 1 to × 100 Line voltage effect: ±0.01 % over voltage range Insulation resistance: ≥ 100 MΩ with 500 V DC Dielectric strength: 3000 V AC @1 minute (input or reference voltage source for input to output or reference ORDERING INFORMATION [1] LINEARITY A: ±0.025 % B: ±0.012 % C: ±0.008 % POWER INPUT DC Power U: 15 V DC GENERAL SPECIFICATIONS Construction: Hybrid IC Housing material: Flame-resistant resin (black) SENTRONIC AG Produkte, Support und Service Rugghölzli 2 CH - 5453 Busslingen Tel. +41 (0)56 222 38 18 Fax +41 (0)56 222 10 12 [email protected] www.sentronic.com MODEL: 20VS1A voltage source for output to power) CMRR: ≥ 120 dB (500 V AC 50/60 Hz) EXTERNAL DIMENSIONS & TERMINAL ASSIGNMENTS unit: mm (inch) 4.5 (.18) 7.62 (.3) 2.54 (.1) 12.7(.5) 10.16 (.4) 22.86 (.9) 2.54 (.1) 1 53.3 (2.1) PIN ASSIGNMENTS 22 (.87) 26 (1.02) 2.54 (.1) 11.3 (.44) OUTPUT (+) OUTPUT COM (–) REF. VOLT. SOURCE for OUTPUT (+) REF. VOLT. SOURCE for OUTPUT (–) 8 9 POWER SUPPLY (+) POWER SUPPLY (–) 13 14 15 16 17 18 REF. VOLT. SOURCE for INPUT(+) REF. VOLT. SOURCE for INPUT (–) FEEDBACK INVERTING INPUT INPUT COM (–) NON-INVERTING INPUT (BOTTOM VIEW) 1.23 (.05) 0.45 dia. (.02) 1 2 3 4 SCHEMATIC CIRCUITRY & CONNECTION DIAGRAM FEEDBACK 15 INVERTING INPUT 16 INPUT VIN NON-INVERTING INPUT 18 Isolation Amplifier Output Driver 1 + OUTPUT 2 – COM (–) COM (–) 17 + 13 3 + – 14 4 – REFERENCE Volt. SOURCE for INPUT REFERENCE Volt. SOURCE for OUTPUT 8 + 9 – POWER SUPPLY Note. The reference voltage source for input is common to the input COM (–) The reference voltage source for output is common to the output COM (–) SENTRONIC AG Produkte, Support und Service Rugghölzli 2 CH - 5453 Busslingen Tel. +41 (0)56 222 38 18 Fax +41 (0)56 222 10 12 [email protected] www.sentronic.com MODEL: 20VS1A APPLICATION EXAMPLE 10 kΩ ≤ (R1 + R2) ≤ 200 kΩ n Non-inverting amplifier circuit: Basic example of G = 1 ■ 15 – + 16 – 18 + + 1 + OUTPUT Vo INPUT VIN – 2 – 17 + 13 REF. Volt. SOURCE for INPUT – 14 8 + 3 + 4 – REF. Volt. SOURCE for OUTPUT POWER 9 – 15V DC Non-inverting circuit G = 1 ■ n Inverting amplifier circuit: Basic example of G = -1 (output inverted to the input) R1 R1 + 15 – 16 – 18 + INPUT VIN – + OUTPUT Vo 2 – 17 + 13 REF. Volt. SOURCE for INPUT 1 + – 14 8 + 3 + 4 – REF. Volt. SOURCE for OUTPUT POWER 9 – 15V DC Inverting circuit G = -1 n Non-inverting amplifier circuit: Example of G = 1 + R1 / R2 ■ R2 R1 15 – 16 – + 18 + – 17 + 1 + OUTPUT VO INPUT VIN 2 – + 13 REF. Volt. SOURCE for INPUT POWER – 14 8 + 3 + 4 – REF. Volt. SOURCE for OUTPUT 9 – 15V DC Non-inverting amplifier circuit G = 1 + R1 / R2 SENTRONIC AG Produkte, Support und Service Rugghölzli 2 CH - 5453 Busslingen Tel. +41 (0)56 222 38 18 Fax +41 (0)56 222 10 12 [email protected] www.sentronic.com MODEL: 20VS1A n Inverting amplifier circuit: Example of G = -R1 / R2 (output inverted to the input) ■ R2 R1 15 + – 16 INPUT VIN – + 18 OUTPUT VO 17 2 – + 13 3 + – REF. Volt. SOURCE for INPUT 1 + + REF. Volt. SOURCE for OUTPUT POWER – 14 8 9 + – 4 – 15V DC Inverting amplifier circuit G = -R1 / R2 n Non-inverting amplifier circuit with external adjustments: Example of G = 2 ■ 10kΩ (SPAN) 10kΩ 9kΩ 15 2kΩ – + INPUT VIN 50kΩ (ZERO) 200Ω 16 – 18 + OUTPUT VO 17 2 – 13 + REF. Volt. 3 + SOURCE – 14 – for INPUT – 30kΩ 1 + + REF. Volt. SOURCE for OUTPUT POWER 8 9 + – 4 – 15V DC Non-inverting amplifier circuit zero/span adjustments n Inverting amplifier's circuit with external adjustments: Example of G = -1 (output inverted to the input) ■ 10kΩ (SPAN) 9kΩ 10kΩ + 15 2kΩ – 18 + INPUT VIN – 100kΩ (ZERO) 200Ω 30kΩ – 16 1 + + OUTPUT VO 17 2 – 13 + REF. Volt. 3 + 4 – SOURCE 14 – for INPUT REF. Volt. SOURCE for OUTPUT POWER 8 + 9 – 15V DC Inverting amplifier circuit zero/span adjustments SENTRONIC AG Produkte, Support und Service Rugghölzli 2 CH - 5453 Busslingen Tel. +41 (0)56 222 38 18 Fax +41 (0)56 222 10 12 [email protected] www.sentronic.com MODEL: 20VS1A ■ Non-inverting amplifier circuit: With noise filter +Vos 15 – – 16 – + 18 + – 17 + + 1 –Vos INPUT VIN 2 + 13 REF. Volt. SOURCE for INPUT – 14 POWER 8 3 +Vos 4 –Vos REF. Volt. SOURCE for OUTPUT 9 + – 15V DC Specifications are subject to change without notice. SENTRONIC AG Produkte, Support und Service Rugghölzli 2 CH - 5453 Busslingen Tel. +41 (0)56 222 38 18 Fax +41 (0)56 222 10 12 [email protected] www.sentronic.com 20VS1A INSTRUCTION MANUAL ISOLATION AMPLIFIER MODEL (high speed response, 3-port isolation) BEFORE USE .... Thank you for choosing M-System. Before use, please check contents of the package you received as outlined below. If you have any problems or questions with the product, please contact M-System’s Sales Office or representatives. ■ PACKAGE INCLUDES: Amplifier........................................................................ (1) ■ MODEL NO. Confirm Model No. marking on the product to be exactly what you ordered. ■ INSTRUCTION MANUAL This manual describes necessary points of caution when you use this product, including installation, connection and basic maintenance procedures. 20VS1A ■ AND .... •The unit is designed to function as soon as power is supplied, however, a warm up for 10 minutes is required for satisfying complete performance described in the data sheet. •With voltage output, do not leave the output terminals shortcircuited for a long time. The unit is designed to endure it without breakdown, however, it may shorten appropriate life duration. CHECKING 1) Terminal wiring: Check that wiring is correctly connected according to the connection diagram. 2) Power input voltage: Check voltage across the pins. 3) Input: Check that the input signal is within 0 – 100% of the full-scale. 4)Output: Check that the load resistance meets the described specifications. POINTS OF CAUTION ■ POWER INPUT RATING & OPERATIONAL RANGE Power Supply Operational voltage range, power consumption Operational rating 15V DC ± 5%, 50mA approx. (no load) ■ ENVIRONMENT •Indoor use •When heavy dust or metal particles are present in the air, install the unit inside proper housing with sufficient ventilation. •Do not install the unit where it is subjected to continuous vibration. Do not subject the unit to physical impact. •Environmental temperature must be within -25 to +85°C (-13 to 185°F) with relative humidity within 30 to 90% RH in order to ensure adequate life span and operation. ■ WIRING •Do not install cables (power supply, input and output) close to noise sources (relay drive cable, high frequency line, etc.). •Do not bind these cables together with those in which noises are present. Do not install them in the same duct. ■ INSTALLING THE MODULE When it is installed on the printed wiring board, land diameter ø1.6 and through-hole ø0.8 are recommended. P. 1 / 4 SENTRONIC AG Produkte, Support und Service Rugghölzli 2 CH - 5453 Busslingen Tel. +41 (0)56 222 38 18 Fax +41 (0)56 222 10 12 [email protected] www.sentronic.com 20VS1A TERMINAL CONNECTIONS ■ EXTERNAL DIMENSIONS mm (inch) 4.5 (.18) 7.62 (.3) 1 2 3 4 OUTPUT (+) OUTPUT COM (–) REF. VOLT. SOURCE for OUTPUT (+) REF. VOLT. SOURCE for OUTPUT (–) 8 9 POWER SUPPLY (+) POWER SUPPLY (–) 13 14 15 16 17 18 REF. VOLT. SOURCE for INPUT(+) REF. VOLT. SOURCE for INPUT (–) FEEDBACK INVERTING INPUT INPUT COM (–) NON-INVERTING INPUT (BOTTOM VIEW) 1.23 (.05) 0.45 dia. (.02) 2.54 (.1) 12.7(.5) 10.16 (.4) 22.86 (.9) 53.3 (2.1) 2.54 (.1) 1 PIN ASSIGNMENTS 22 (.87) 26 (1.02) 2.54 (.1) 11.3 (.44) ■ TERMINAL ASSIGNMENTS FEEDBACK 15 INVERTING INPUT 16 INPUT NON-INVERTING INPUT 18 COM (–) 17 1 + 2 – COM (–) OUTPUT 3 + 4 – REFERENCE Volt. SOURCE for INPUT + 13 8 + – 14 9 – REFERENCE Volt. SOURCE for OUTPUT POWER SUPPLY Note. The reference voltage source for input is common to the input COM (–) The reference voltage source for output is common to the output COM (–) P. 2 / 4 SENTRONIC AG Produkte, Support und Service Rugghölzli 2 CH - 5453 Busslingen Tel. +41 (0)56 222 38 18 Fax +41 (0)56 222 10 12 [email protected] www.sentronic.com 20VS1A APPLICATION EXAMPLES The primary amplifier in this unit is high accurate. Installing external resistors to the inverting input (pin 17) and the feedback (pin 16), this unit can be used as a non-inverting or inverting amplifier. The combined input resistance of the amplifier must be 100kΩ in maximum. n Non-inverting amplifier circuit: Basic example of G = 1 ■ 15 + INPUT VIN – 16 – 18 + – + 1 + OUTPUT Vo 2 – 17 + 13 REF. Volt. SOURCE for INPUT The output is proportional to the input. The gain is 1. E.g. 0 – 10V DC for 0 – 10V DC input. POWER – 14 8 + 3 + 4 – REF. Volt. SOURCE for OUTPUT 9 – 15V DC Non-inverting circuit G = 1 ■ n Inverting amplifier circuit: Basic example of G = -1 (output inverted to the input) + R1 The output is inverted to the input. The gain is -1. E.g. 0V DC for 0V DC input and -5V DC for +5V DC input. R1 15 INPUT VIN – 16 – 18 + – + OUTPUT Vo 2 – 17 REF. Volt. SOURCE for INPUT 1 + + 13 POWER – 14 8 + 3 + 4 – REF. Volt. SOURCE for OUTPUT 9 – 15V DC Inverting circuit G = -1 n Non-inverting amplifier circuit: Example of G = 1 + R1 / R2 ■ R2 15 INPUT VIN For a non-inverting amplification the output is following. VO = (1 + R1 / R2) × VIN When R1 = 10kΩ, R2 = 10kΩ, then the output is following. The gain is 2. VO = 2 × VIN R1 16 – + 18 + – 17 – + OUTPUT VO 2 – + 13 REF. Volt. SOURCE for INPUT 1 + POWER – 14 8 + 3 + 4 – REF. Volt. SOURCE for OUTPUT 9 – 15V DC Non-inverting amplifier circuit G = 1 + R1 / R2 n Inverting amplifier circuit: Example of G = -R1 / R2 (output inverted to the input) ■ + R2 R1 INPUT VIN 16 – 18 + – + 2 – + 13 REF. Volt. SOURCE for INPUT – 14 1 + OUTPUT VO 17 – For an inverting amplification the output is following. VO = -(R1 / R2) × VIN When R1 = 20kΩ, R2 = 10kΩ, then the output is following. The gain is -2. VO = -(20kΩ / 10kΩ) × VIN = -2 × VIN 15 3 + REF. Volt. SOURCE for OUTPUT POWER 8 9 + – 4 – 15V DC Inverting amplifier circuit G = -R1 / R2 P. 3 / 4 SENTRONIC AG Produkte, Support und Service Rugghölzli 2 CH - 5453 Busslingen Tel. +41 (0)56 222 38 18 Fax +41 (0)56 222 10 12 [email protected] www.sentronic.com 20VS1A n Non-inverting amplifier circuit with external adjustments: Example of G = 2 ■ 10kΩ (SPAN) 10kΩ 9kΩ 15 2kΩ + INPUT VIN – 18 + – OUTPUT VO 2 – 3 + 13 + REF. Volt. SOURCE – 14 – for INPUT 30kΩ 1 + + 17 50kΩ (ZERO) 200Ω – 16 REF. Volt. SOURCE for OUTPUT POWER 8 9 + – 4 – For a non-inverting amplification with external adjustments, when the combined resistance of the span adjustment and 9kΩ is 10kΩ, the gain is (1 + 10kΩ / R1) × VIN. With the span adjustment (2kΩ), the output is configurable. The zero is adjustable with a reference voltage source of ±7.1V DC and the attenuation of 200Ω and 30kΩ. 15V DC Non-inverting amplifier circuit zero/span adjustments n Inverting amplifier's circuit with external adjustments: Example of G = -1 (output inverted to the input) ■ 10kΩ (SPAN) + 9kΩ 10kΩ 2kΩ INPUT VIN – 100kΩ (ZERO) 200Ω 15 – 16 – 18 + OUTPUT VO 17 2 – 13 + REF. Volt. SOURCE 14 – for INPUT 30kΩ 1 + + POWER 8 + 3 + 4 – REF. Volt. SOURCE for OUTPUT 9 – For an inverting amplification with external adjustments, when the combined resistance of the span adjustment and 9kΩ is 10kΩ, the gain is -(10kΩ / R2) × VIN. With the span adjustment (2kΩ), the output is configurable. The zero is adjustable with a reference voltage source of ±7.1V DC and the attenuation of 200Ω and 30kΩ. 15V DC Inverting amplifier circuit zero/span adjustments ■ Non-inverting amplifier circuit: With noise filter +Vos 15 + INPUT VIN – – – 16 – 18 + + –Vos 17 – 14 + 1 2 + 13 REF. Volt. SOURCE for INPUT Circuit with low-pass filter installed on the output. POWER 8 3 +Vos 4 –Vos REF. Volt. SOURCE for OUTPUT 9 + – 15V DC MAINTENANCE Regular calibration procedure is explained below: ■ CALIBRATION Warm up the unit for at least 10 minutes. Apply 0%, 25%, 50%, 75% and 100% input signal. Check that the output signal for the respective input signal remains within accuracy described in the data sheet. SENTRONIC AG Produkte, Support und Service Rugghölzli 2 CH - 5453 Busslingen Tel. +41 (0)56 222 38 18 Fax +41 (0)56 222 10 12 [email protected] www.sentronic.com