beautypg.com

Electrical specifications, Remote cable rccy03 specification – Yokogawa RotaMASS 3-Series User Manual

Page 226

background image

11. TECHNICAl dATA

11-4

IM 01R04B04-00E-E 8th edition March 01, 2011 -00

All Rights Reserved. Copyright © 2003, Rota Yokogawa

digital Communication

- HART communication protocol rev. 5, superimposed on

4 -20 mA DC signal (Iout1)

- Load resistance

: 230 Ω to 600 Ω (including cable)

- Power line spacing : >15 cm, avoid parallel wiring

- Cable length

: ≤ 2 km if „CEV” cables are used

- Foundation Fieldbus communication (/FB)

- see GS 01R04B05-00E

Setting Functions

Parameter setting is possible by using the switches on

the display or with HART communication.

display Function

- Up to 4 lines.

- 4 languages selectable (English, German, French,

Russian)

damping Functions

Adjustable from 0 seconds to 200 seconds, controls

display and outputs.

Isolation resistance of Converter

When surge arrestors are removed

- between power and ground terminal: 100 M

/ 500 V DC

- between power and I/O terminals : 20 M

/ 100 V DC

- between I/O terminals and ground : 20 M

/ 100 V DC

dielectric Strength

When surge arrestors are removed

- between power and ground terminal : 1,500 V AC for 1 minute

lightning protection
Arresters (2000 A) are inside converter for power supply lines.

EMC
Acc.

EN 61326-1: 2006; EN 61326-2-3: 2006;

EN 61000-3-2: 2006; EN 61000-3-3: 1995+A1+A2

ElECTrICAl SpECIFICATIONS

power Supply

- AC- type

: 90 V to 264 V

90 V to 250 V for Ex-type

- DC- type

: 20.5 V to 28.8 V

External circuit breaker rating : 5 A, 250 V (In the converter

no power switch is installed).

Fuse on Base Board :

- AC- type

: 2 A, T, breaking capacity 1500A

- DC- type

: 2 A, T, breaking capacity 1500A

I/O Signals

- Two active current outputs:

4 to 20 mA DC, galvanic separated from other signals,

Load resistance

: 20 Ω to 600 Ω

Failure current according NAMUR NE43

Ambient temperature effect : < 0.05% of span/10°C

Linearity

: 0.008 mA = 0.05% of span

Setting range URV for liquids: 5 to 100% of Qnom

Setting range URV for gases: 1 to 100% of Qnom

- Two Pulse outputs / status outputs :

Passive Transistor contact output, 30 V DC, 200 mA

Output rate

:

Output 1

: 0 to 10000 pulses/s

Output 2

: 0 to 2000 pulses/s

Option /NM

: passive, according EN 60947-5-6

Option /AP

: active output, 12 V, 6 mA, R

L

> 10 kΩ

Active pulse output is not isolated from current output 2

As frequency output :

Output 1

: 20 Hz to 10000 Hz

Output 2

: 20 Hz to 2000 Hz

- Status input

: Voltage-free contact

Closed

: < 200 Ω

Open

: > 100 kΩ

Option /KF2, /EF2, /UF2: 2 intrinsic safe Outputs

- One passive current output (additional power supply

needed) :

4 to 20 mA DC, galvanic separated from other signals.

Supply voltage 10.5 V to 30 V DC (without HART), 165 mA

Supply voltage 16.75 V to 30 V DC (with HART), 165 mA.

Load resistance

: 20 Ω ... 600 Ω

Ambient temperature effect : < 0.05% of span/10°C

- One pulse output / status output :

Passive Transistor contact output, 30 V DC, 100 mA

Output rate

: 0 to 2000 pulses/s

As frequency output : 20 Hz to 2000 Hz

Option /NM

: passive, according EN 60947-5-6

- No status input

rEMOTE CABlE rCCY03 SpECIFICATION

Li2Y(St)/CY 3x2 AWG24 + 1x3 AWG20
pair/triple shielded; pair/triple twisted; overall shielding
RCCY033/034 and RCCY031/032/KS1: flame propagation acc. IEC 60332-1.
Table 11-7: Cable specifications

Model code

Temperature

range

Wire gauge

resistance of

loop

Capacitance

wire/wire

Capacitance

wire/shield

Inductance

wire/wire

rCCY031/032

-50 to +70°C

AWG 24
AWG 20

190 Ω/km
70 Ω/km

157 nF/km
193 nF/km

249 nF/km
290 nF/km

0.60 mH/km
0.65 mH/km

rCCY031/032 /KS1

-50 to +70°C

AWG 24
AWG 20

190 Ω/km
70 Ω/km

157 nF/km
193 nF/km

249 nF/km
290 nF/km

0.60 mH/km
0.65 mH/km

rCCY033/034

-30 to +105°C

AWG 24
AWG 20

177 Ω/km
70 Ω/km

175 nF/km
145 nF/km

350 nF/km
290 nF/km

0.80 mH/km
0.70 mH/km

rCCY033/034 /KS1

-30 to +105°C

AWG 24
AWG 20

177 Ω/km
70 Ω/km

175 nF/km
145 nF/km

350 nF/km
290 nF/km

0.80 mH/km
0.70 mH/km