ML18051A527

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Rev 1 to Addl Resistive Isolation Devices for Reactor Protection Sys/Fischer & Porter Computer Interconnections
ML18051A527
Person / Time
Site: Palisades Entergy icon.png
Issue date: 06/28/1983
From:
CONSUMERS ENERGY CO. (FORMERLY CONSUMERS POWER CO.)
To:
Shared Package
ML18051A526 List:
References
TASK-07-01.A, TASK-7-1.A, TASK-RR EA-83-SRO-005, EA-83-SRO-005-R01, EA-83-SRO-5, EA-83-SRO-5-R1, NUDOCS 8308150209
Download: ML18051A527 (29)


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Consumers Power Company Palisades Plant Docket 50-255 Engineering Analysis EA-83-SR0-005, Rev 1 "Additional Resistive Isolation Devices for the RPS/F&P Computer Interconnections" 83081.50209 9308-10 PDR ADOCK 05000255 p

PDR OC0783-0010B~NL02 June 28, 1983 28 pages

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  • O~erpressure Effect 2000 psig overpressure will cause a zero shift of less than+/- O.Z5% of Upper Range Limit* for Range Codes 3 & 4 (Only Range 4 for AP); less than+/- 1.0%

of Upper Range Limit for Range Code 5; less than ::: 3.0% of Upper Range Limit for Range Codes 6 & 7; less than

+/- 6.0% of Upper Range Limit for Range Code 8; less than+/-.5% of Upper Range Limit for Range Code 9 up to 4500 psig (For GP only).

Power Supply Effect Less than 0.005% of span per volt.

Load Effect No load effect other than the change in voltage supplied to the transmitter.

Mounting Position Effect Zero shift of up to 1 inch H20 which can be calibrated out. No effect in plane of diaphragm. No span effect.

erformance pecifications Model 1152DP and 1152HP (Zero-based ranges. Reference Condi11ons1 Accuracy including effects of linearity, hystersis and repeatability Model 1152DP: +/- 0.2% of calibrated span for Range Codes 3, 4, 5; +/- 0.25%

for Range Codes 6, 7, 8.

Mod.el 1152HP: +/- 0.25% of calibrated span (all Range Codes)

Cead Band None Stability

+/-0.25% of Upper Range Limit for 6 months.

Temperature Effect at Maximum Span (e.g. 0-150 in. for0-251150 in. H2 range)

Zero Error: ::':: 0.5% of span per 100° F.

Total Effect including Span and Zero Errors: +/- 1.0% of span per 100° F.

(Note: Double the specified effect for Range Code 3) mperature Effect at Minimum Span

g. 0-25 in. for 0-25/150 in. H20 nge)

Zero Error: :: 3.0% of span per 100° F.

Total Effect including Span and Zero Errors: +/- 3.5% of span per 100° F.

(Note: Double the specified effect of Overpressure Effect Model 1152DP: 2000 psi overpressure will cause a zero shift of less than ::

0.25% of Upper Range Limit (Range Codes 3, 4); less than+/- 1.0% of Upper Range Limit (Range Code 5): less than

+/- 3.0% of Upper Range Limit (Range Codes 6 and 7); less than +/- 6.0% of Upper Range Limit (Range Code 8).

Model 1152HP: 4500 psi overpressure will cause a zero shift of less than +/-

1.0% of Upper Range Limit (Range Code 4); less than +/- 2.0% of Upper Range Limit (Range Code 5); less than +/- 5.0% of Upper Range Limit (Range Codes 6, 7).

Static Pressure Effect Model 1152 DP Zero Error: +/- 0.25% of Upper Range Limit per2000 psi (Range Codes 4; 5); +/- 0.5% of Upper Range L;imit per 2000 psi (Range Codes3, 6, 7, 8).

Span Error: -1.0+/-0.25% of reading per 1000 psi (Range Codes 4, 5, 6, 7, 8);

-1.5::0.25% of reading per 1000 psi (Range Code 3).

Model 1152HP Zero Error: :: 2.0% of Upper Range Limit per 4500 ps.i (all Range Codes).

Span Error: -1.0+/-0.25% of reading per 1000 psi (all Range Codes).

Span error is systematic and can be calibrated out for a particular pressure before installation.

Power Supply Effect Less than 0.005% per volt.

Load Effect No load effect other than the change in voltage supplied to the transmitter.

Mounting Position Effect Zero shift of up to 1 in. H20 which can be calibrated out. No span effect. No effect in plane of diaphragm.

Physical Specifications All Models Materials of Construction Isolating Diaphragms and Drain/Vent Valves: 316SS Process Flanges: 316SS Non-wetted 0-Rings:

Ethylene Propylene and Buna-N Fill Fluid: Silicone Oil Flange Bolts: Plated Alloy Steel. per ASTM A-540 Electronics Housing:

Low-copper aluminum, epoxy polyester painted or austentic stainless steel.

Electrical Connections:

1/2-14 NPT conduit.

Test jack type screw terminals.

Weight: 12 lbs. with aluminum housing; 16 lbs. with stainless steel housing, excluding options.

Functional Specifications Model 1152AP and 1152GP Ranges (3) 0-5/30 in. H20 (GP Units Only)

(4) 0-25/150 in. H20; 0-2/11 in. HgA (5) 0-125/750 in. H20: 0-10/55 in. HgA (6) 0-17 /100 psig/psia (7) 0-50/300 psig/psia (8) 0-170/1000 psig/psia (9) 0-500/3000 psig (GP Units Only)

Output 4-20 mADC Power Supply External power supply required. up to 45 VDC. Transmitter operates on 12 VDC with no load for E output code. 15 VDC for A and D output codes.

Span and Zero Continuously adjustable externally.

Elevation and Suppression Output Codes A and D: Maxim*um zero elevation:

down to 0.5 psia for compound ranges (for Model 1152GP). Maximum zero suppression:

100% of calibrated span. End points cannot exceed ::100% of Upper Range Limit.

Output Code E:

Maximum zero elevation:

600% of calibrated span.

Maximum zero suppression:

0500% of calibrated span.

Calibrated span cannot exceed +/-100% of Upper Range Limit.

Temperature Limits

-20 to 200° F Amplifier operating

-20 to 220° F Sensing Element operating.

-60 to 250° F Storage Overpressure Limits Operating within specifications from 0.5 psi a to 2000 psig (Range Codes 3. 4, 5, 6. 7, 8); 4500 psig (Range Code 9);

without damage to transmitter.

Humidity Limits 0-100% RH Turn-on Time 2 seconds. No warmup required.

Damping Output Code A:

Nominal fixed response times of 0.3 seconds (Range Code 3), 0.2 seconds (Range Code 4, 5), and 0.1 seconds (Range Codes 6. 7, 0

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Output Code D:

4*position variable time constant switch for nominal response times of 2.0 seconds. 1.0 seconds. 0.5 seconds. or*as above.

Output Code E:

Tiine constant continuously adjustable between 0.2 and 1.67 seconds.

Functional Specifications Model 1152DP and 1152HP Ranges (3) 0-5 to 0-30 in. H20 (DP Units Only)

(4) 0-25 to 0-150 in. H20 (5) 0-125 to 0-750 in. H20 -

(6) 0-17 to 0-100 psi (7) 0-50 to 0-300 psi (8) 0-170 to 0-1000 psi (DP Units Only)

Output 4-20 mADC Power Supply External power supply required. up to 45 VDC. Transmitter operates on 12 VDC with no load for E output codes; 15 VDC for A and D output c9des.

Span and Zero Continuously adjustable externally.

Elevation and Suppression Output Codes A and D: Maximum zero elevation and suppression: l50% of calibrated span (Range Codes 3, 4, 5) or 50% of calibrated span (Range Codes 6, 7, 8). End points cannot exceed +/-100% of Upper Range Limit.

Output Code E:

Maximum zero elevation:

600% of calibrated span.

Maximum zero suppression; 500% of calibrated span.

Calibrated span cannot exceed +/-100% of Upper Range Limit.

Temperature Limits

-20 to 200° F Amplifier operating.

-20 to 220° F Sensing Element operating.

-60 to 250° F Storage Static Pressure and Over Pressure Limits Model 1152DP: 0.5 psia to 2000 psig static pressure for operation within specifications. 2000 ps1g overpressure on either side without damage to the transmitter.

Model 1152HP: 0.5 psia to 4500 psig static pressure for operation within specifications. 4500 psig overpressure on either side without damage to the transmitter.

Humidity Limits Volumetric Displacement -

Less than 0.01 cubic inches.

Turn-on Time 2 seconds. No warmup required.

Damping Output Code A:

Nominal fixed response times of 0.3 seconds (Range Code 3), 0.2 seconds (Range Codes 4, 5), and 0.1 seconds (Range Codes 6, 7, 8).

Output Code D:

4-position variable time constant switch for nominal response times of 2.0 seconds. 1.0 seconds, 0.5 seconds or as above.

Output Code E:

Time constant continuously adjustable between 0.2 and 1.67 seconds.

LOAO (OHMS)

LOAD LIMITATIONS A & D OUTPUT CODES 4-20 mAOC 20 30 40 POWER SUPPl.Y (VOC)

LOAD LIMITATIONS E OUTPUT CODE 4-20 mAOC 12 20 30 POWER SUPPi. Y IVOC) 40


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INSTALLATION b) High level analog signals ( 1 volt to 10 volts) are transmitted over twist~d pairs which may be cabled with other pairs carrying a similar volt-age level and current levels less than 100 MA. Shielding is not required except as noted below.

c) Analog signals are not transmitted in the same cable as digital signals.

d) Analog signal cables are located at least six feet from a parallel length of AC power cable and from AC machinery.

e) If signal cables are located in a high electromagnetic field area, they are run in ferrous conduit which is insulated from ground at the sig-nal source end only. The conduit is not connected to the system cabinet.

f) If signal cables are located in a high electro-static field area, or close to AC power cables or digital signal carrying cables, they may be constructed with a conducting shield insulated with an overall jacket.

Provisions are made to connect the shield to ground or to the computer (but not both) at the time of system startup.

g) Digital signals are transmitted over twisted pairs which may be cabled with other pairs carrying like signals. The cable does not carry AC power. Shielding is not required.

h) Pulse inputs are transmitted in the same cable as other digital signals. Twisted pairs are required.

2. 3. 3 AC Power Wiring a) It is recommended that system power should be provided from an independent isolation transformer located as close to the system as practical. The transformer primary shield sho.uld be connected to the primary low side and the secondary shield connected to the system ground.

b) A circuit breaker is connected between the isolation transformer and the system AC input connections.

c) The isolation transformer must not supply power to any devi.ie other than the system cabinet. Peripheral devices such as typewrite~

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(.,J d) The system requires 11 7 volts AC :::: 1 0%, 6 0 Hz.

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~Ctj. M_c:_r...; I 3 H69_7 1.0 Specifications l.l Model 9223-E Electrical Characteristics Input:

Output:

Specified on meter scale.

For example:

10-50 Ma DC.

Sigma 67R4 relay; 5 amperes at 120 VAC resistive; 2.5 amperes at 240 VAC resistive; 3 amperes at 28 VDC re-sistive.

Consult factory for ratings for inductive loads.

Life in excess of 200,000 operations at maxi-mum rating.

Number of contacts:

SPDT on standard units; DPDT on special order.

Internal Resistance: Approximately 40*ohm for 1 MA span to approxi-mately 5 ohm for 100°Ma span.

Power:

  • 120 VAC +/- 10%, 60 Hz. at 6 VA 1.2 Model 9223-E Performance Characteristics 1.2.1 Vertical Mounted Indicator Accuracy:

~% of.Full Scale at standard condit~ons Indicator Accuracy:

1% of Full Scale, 15-55°C Indicator Repeatability:

~% of Full Scale Set Point Accuracy:

2% of Full Scale.

Set Point Repeatability:

1/3% of Span Set Point Differential:

~% of Span typical

Response

1 sec. max., critically damped Operating Temperature:

-10 to 60°C Max. Allowable Temperature:

-10 to +60°C Photo Sensor Life:

Greater than 200,000 hours0 days <br />0 hours <br />0 weeks <br />0 months <br />.

1.3 Model 9223-E Phvsical Characteristics Mounting:

Material:

Flush Panel Case - Steel, Green enamel finish Bezel - Cast aluminum Face - Glass 1

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/4.tm C t-1 Vv\\ E 1\\J T S P~ ic\\:-2 SERIES 3000 ANALOG-TO-DIGITAL CONVERTER I~TTRODUCTION The F&P Series 3000 Analog-to-Digital Converter (ADC) is designed to measure process input signals under adverse environmental conditions and electrical noise. Excellent noise rejection is achieved by use of extremely high input impedance (both normal mode and_common mode), and dual slope integration techniques. The high normal mode input impedance is obtained by the use of a FET (Field Effect Transistor) amplifier which exhibits more than 1 o9 ohms input impedance (refer to Specifications Section).

To obtain the high common mode impedance, the entire measuring circuit is isolated from ground and guarded. By using an especially designed power transform-er having low stray interwinding capacity, the total input common mode equiv-alent impedance is rep.resented by less than 100 pfd. Control signals between the isolated measuring circuit and the digital logic is by way of small pulse transformers and relays, in order to maintain the low capacity rating.

The measuring technique (dual slope integration) consists of applying the input signal to a highly accurate solid-state integrator, for a precise period of time. In the standard version, this period is chosen to be exactly one cycle of the power line frequency (5 0 qr 6 0 cps) for 16-2/3 ms integration time. The average value contributed by AC pickup is therefore theoretically zero and for that reason does not affect the reading (a high-speed version-of the ADC pro-vides a 2 ms integration time). The dual slope portion of the circuitry then switches out the input signal and switches in a precise reference voltage. The reference voltage causes the output of the integrator to ramp back to zero at a fixed rate. The time for the output to reach zero is proportional to the charge obtained from the input integration cycle. Thus, by using the same integrator and the same components to mea~ure the input signal and the ref-erence signal, any long term drift or instability is cancelled out.

The entire ADC consists of 4 printed circuit boards located in the Multi-plexer Cabinet. Power for the digital circuitry is derived from the system logic supplies and the floating circuitry is driven from 11 7 V AC, through the special power transformer.

The Printed Circuit Boards are:

.J 1. Power Supply - Floating supplies for amplifiers, gates anct:.references:

+ and - 15 VDC, +5 V DC and 6. 2 VDC reference.

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Item

  • Cl. C2, C4, C6 CJ cs c1-R2 RJ R4, RS R7 Ar:-.plii'ier!3 ~.;anufactured s:.::-ice Aug"...u:t I 6C (Pa.!'t ll-11.9-:.U)

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~I GN ""- 1 Cdpacitors, JS volts Capacitor, 100 volts Capacitor, 6 volts c.. p.. citor, Description

tantalum, 1.2 tubular, 0.033
tantalum, 32S electrolytic, 10

+I 00%, 2S volts

µf

!:::10'}' **

µf ::!:::20%,

µf ::!:::10%.

µf -10"/.

Resistor, carbon, I SO ohms ::!:S%, Y2 watt Resistor, carbon

Resiston, carbon, Resistor, carbon, IOK :::S"/., '!2 watt 10 ohms :::S%, 1/i watt

/\\. TEST L.:::,.= POINTS Cor.:;or:.ent

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CR3 TC6 CR4 Part No.

N-119-MB E*123-KY N-119.NN N0-148-AF N-110-LZ Selected E-102.cs N-110.CT

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Item Description RS, R9 Resistors, carbon, 22K :::: I 0%,

CR I, CR2, Diodes, silicon, Type I N645 CRJ, CR4, CRS

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I POWER SUP?~YI I 63-95 v o-c I I

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TERMINAL

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?C/NTS Y2 watt K-109-BF N-109-FF CRS Diode, Zener, Type IN1595A. 15 V CR6 Diode, silicon, Type IN645 (See Note l (Diode CR6 added in October 1967 J N-120-FK N-109-EZ Qi Q2, Q3 Tl Transistor, Type 2N656 (Oscillator)

Transiston, Type SP44 IS Transformer N-119-MA N0148MB N-119-LZ or N-119-XE NOTE:

With instruments listed for use in intrinsically safe loops (Type T instruments). Diode CR6 must be present across 'the feed-back force coil, and any replacement of transistors must be with the same types.

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