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Emerson E2 Quick Reference Manual page 2

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Voltages on
I/O Network
and
COM
Ports
COM A,
B, and
D (REFLECS)
and
I/O
Network
(Einstein and E2)
2.3VDC
-
2.6VDC from
the center
terminal
to either
of
the outer terminals on the net-
work
plug.
COM
C (REFLECS,
older
style
PIB
board,
PN
537-3210, no
yellow
or red
LEDs
above
COM
ports)
P
P
P
n7to8:-9VDC
n7to9:
0VDC
n 7
to l0:
+9 VDC
COM
C (B.EFLECS, newer style
PIB
board,
PN
537-321
l,
yellow
&
red
LEDs
above
COM
ports)
Pin 7
to
8:
-4 VDC
fin
7 to 9: o
vDC
pin
7
to
l0:
+6 VDC
I
+
CPC$
COMPUTT
R
PPOCI
S5 CONIRt)I
\
EMERSON
Climate Technologies
1640
Airport
Rd
Ste
104
Kennesaw, GA
301
44-8868
Phone:
(800) 829-2724
Fax'.
(770\ 425-9319
m
*,f,il
t,r,,
,tr,,
tta,,
I
rt
lr
h
m
Uh
IIT
[.t
ttrl, ilirr
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)-rF..
trf_lAqtr|
rur, tlrl,
l]lf i
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tii{
I,rfr''
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l_rrF.l].ir
t,,r
t
,l
r-tl
l
r
rr
l
I | .,r.L, .'
Ilrt'r 1rj:r.r
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'llt'
,ll;l
urtr
f
rd'i
"
rl/i''
,
lU*
r,1ii
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rr;rr:
-;;H,,
,,,;;H
t
trt
I
tlrt,
trf;r
, tl
IT I'
tt
!rt
llr
rT,
, ll:
t(r
lrl
u
lr'lote:
C)tc'le poy+,er
to make
dip
.switc'h
change efrbctive
Nl
ultiFlex
Termination Jumper
Settings
the daisy chain
by
set-
ting
the termination
jurnpers to the
"TERM-
INATION"
position.
Set
all
other devices to
the
..NO
TERMTNATION''
position.
MultiFlex
Sensor
Input Dip
Switch
Settings
52
51
'
Set RIGHT for
I
j
sensors not requiring
II
_I-I
:II
.j:f:I
=II -II
Vapor
Pressures
- psig Vapor
Blue
Pressures
-
psig
Liquid
Red Pressures
- in.
Hg
Vacuunr
MultiFlex I/O
Board Numbering and Baud
Rate
53:
POSITION 1-5 INPUT
(16A1)
NETWORK lD (1-31)
POSITION
6-7
BAUD RATE (9600
or
19200)
"''ClO
54:
POSITION 1-5
RELAY
(8RO) NETWORK lD (1-31)
POSTTTON
6-sANALOG
(4AO) NETWORK tD (1-7)
I/O
Board Powering
Board Type
Transformer Type
l6AI.
8RO,4AO, 8DO.
MultiFlex l6
4VAC.
center-tapped
8lO, ARTC.
ESR8.
TD3. all MultiFlex
boards except
the
l6
24VAC, non-center-
tapped
Pressure-Temperature
Chart
oF
oc
R-22
l34a
R-404a
MP-39
R-507
n0.0
-62
75.0
9..1
l8
-70.0
-56.7
5.0
5,r.9
14.4
-60.0
-sl.l
t
I
-48.3
2(
_
s0.0
-45.6
I
0.0
I
0.9
--15.0
-42.8
1
I
0
I
-1
-.10.0
-.10.0
0
t4.7
5.5
IJ
5.0
37
6
t2.3
9.1
I
l{.
I
-.10.0
-34.4
4.9
10.8
9
ll.t
-2r(.0
33.-1
5.9
ll.0
l].{
6.0
32.2
6.9
l_l
l_1.7
-24.0
-I.l
7.9
14.-s
I
0
-30.0
9.0
-l
r
5.8
('.
-l
).0
t{
l0.l
3
17.
I
l7.lt
In.0
7.8
I
l.-l
I
tr.5
l9.l
16.0
-26.7
12.5
1.4
20.0
l(
).9
t4.0
25.6
l
3.8
I
12.0
1.4
l5.l
0.9
1.0
t.{
4.t
0
3.1
16.5
2.0
{
l(
17.9
I
26..1
I
7
-6.0
l.l
t
9.3
3.8
ll{
0
I
{
-20.0
20.8
4.7
l9.x
lll
18.9
22.4
5.6
I t.6
7
17.8
.1.0
6.5
11
16.7
5.6
7.6
-s
7.7
7
l
t5
27.3
8.7
17.4
t
I
.1.-l
2e.t
9.tl
.]e .l
I
r
3.3
30.9
10.9
.l
l.('
il
I
I0.0
t2.
3?.8
12.0
43.7
It
I
il.1
34.7
13.-1
{60
.l
lli
5
l{.0
10.0
36.7
14.6
4l{.-1
t1
I
I
-tt.9
38.7
15.8
50.7
7.8
40.9
t7.-l
1.1
l7
5(r
I
-6.7
41.0
18.4
6
I
5t(
5.6
45.3
l9
-s8.2
10.0
I
-l
-l.l
47.6
I
6
t.9
I
(r.l
I
26.0
-1.-1
49.9
3.0
63.6
t
5
24.6
66.-s
.l
1t
10.0
l.l
54.9
26.
I
69.4
16.l
1.7
61.4
_10.4
77.0
-10.5
I
{0.0
.l
68.5
35.0
85.
I
5.0
{
7
76.0
40.0
92.6
.10 0
()li
-s0.0
10.0
84.0
45.4
99.2
45._l
Ior{
(
12.8
92.6
5
r.2
I 15.0
66.5
I
I
l{.r{
()().0
15.6
t
01.6
57.4
125.0
70.0
12e.7
(
18._l
ill
64.0
t
36.5
77.5
.l
I
70.1
I.l
lll.4
7
r.l
t
4tt.0
tt5.0
I
75.0
23.9
1.r2.2
78.6
t
6l.0
91.
I
(r(r.(r
It0.0
26.7
141.6
86.7
174.0
102.0
ll{0
r(5.0
29.4
155.7
9_s
I88.0
ilt
2fi).7
90.0
l6ti.4
r04.1
2t)-r.0
I 2
t.('
I
95.0
5.0
I tr
1.8
I 13.9
2 I
tt.s
t.1t.0
l(x).0
17.8
195.9
124.1
235.0
l{
24.1
t05.0
40.6
210.8
r
34.9
252.5
r
5t.
I
lt00
43.3
226.4
146.-l
211.0
165.0
lt{0
6
I
15.0
46.
I
242.7
r58.4
290.0
177.5
.1(X).7
l]0.0
4tt.9
259,e
l7l
I
3rr
I
9
t.t)
I
125.0
5t.7
77.9
ItJ4._s
332.0
2r){.5
1.10
1
130.0
54.4
296.8
198.7
.154.0
19.r,
167
135.0
57.2
316.6
r
3.5
171t.0
23{.0
3e2.6
140.0
60.0
337.3
229.2
{02.0
250.0
4
ttt.7
l:15.0
62.8
.1511.9
2.t5.6
{ I8.0
26(r.l)
146
2
Recommended
Network
Wire
Controller
Network Type
Recommended
Wire
I/O network
(Einstein and E2) and
REFLECS
COM A,
B. and D
Belden
#8761(non-plenum).
Belden #82761 and
#88761 (plenum)
REFLECS
COM
C
Belden #877
|
Echelon networks (Einstein and E2)
CPC
PN
135-2300 (non-plenum) and
P/N
135
2301 (plenum)
Checkins
UO
Board Online
Status
Controller
llpe
Instructions
REFLECS
Log
in and
from Main
Menu
press 7,
7,
l.
The board numbers
will
be displayed along
with
status -
"1" if
the board is
on-line,
and
"-"
if
the board is
offline.
Einstein
Log
in and press F8,
Y,4,
3.
Controller
status
will
read
"Online"
or
"Offline."
E2
Log
in and press ,t',.
O
key.
Press
7.7,1.
Controller
status
will
read
"Online"
or
"Offline."
Offset
&
Gain
for Linear
Sensors
Offset
= Minimum
Value to be
Read
-
Minimum
Sensor Voltage
Gain
= Maximum
Value to be Read
/ (Maxirnum
Sensor Voltage +
Offset)
For
all
CPC
controllers. Offset
is entered
in
units
of
mV. To calculate Gain. Offset must
be
in
Volts.
I
V:
1000
mV
Example:
For
a
linear Refrigerant Level Transducer that can
relay
I
to
5
V
and
will
read
a
minimum
value
of
0 and
a
maximum
value
of
100.
Offset:0-
I
V:-l
Vwhich
isenteredas
-1000mV foraCPCcontroller
Gain=100/(5V+-lV;=25
7r
FI--l
tq--l
F---t
[-Tl
l-r
l.-*Tt
Set LEFT lor
sensors
requrring
vollage EXCEPl
CPC 5v transducers
10.2
6.6
._s-5.0
9.2
6.2
5.5
8.5
tr.l
7.3
7.O
5.0
6.0
4.5
-r.5
1.5
2.0
0.5
0.2
0.t
22.5
-tr.0
_al')
-.1.0
.tx
-1.0
.1.1.2
r)0
(r
l.o
l{
l(
h.0
() r)
ri.0
t)
l.'.'
15.()
5.1.5
I
lr.0
10.0
ll.0
I
r{.0
-l.l
.1
5.0
H9.t{
226.6

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