Eagle GD-1000 Product manual

GD-1000 GAS DETECTOR
TECHNICAL REFERENCE MANUAL
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FIRMWARE VERISON >= 4.00 REVISED: 2018-08-13


INSTALLATION
The A.C. power should be wired into the GD-1000 (TB ) by a qualified electrician. This is
not covered by Eagle Microsystems, Inc. or its distributors.
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QUICK START INSTALLATION
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DUAL SENSORS6<7SINGLE SENSOR

MAIN SCREEN
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MAIN MENU SCREEN
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(TST) RELAY (HORN) TEST SCREEN
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(MNU) SETUP MENU
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(CAL) CALIBRATE ANALOG MENU SCREEN (password protected)
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NOTE: When this menu and sub screens are accessed, the sensor alarms are deactivated and the analog outputs are forced to 4mA.
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(SNS) CALIBRATE GAS SENSOR 4-20mA INPUT SCREEN
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Gas s nsor calibration is docum nt d lat r in this manual.
(OUT) CALIBRATE ANALOG OUTPUTS SCREEN
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#%%'$#'5#0'$'.%' 05
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Analog output (4-20mA) calibration is docum nt d lat r in this manual.
(CFG) CONFIGURATION (password protected)
Configuration is docum nt d lat r in this manual.
(ALM) DANGER/CRITICAL ALARM SET POINTS (password protected)
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CONFIGURATION
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Parameter: UNITS
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Parameter: CH1 GAS
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Parameter: CH1 MAX
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Parameter: CH1 AVG
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Parameter: PO1 FS
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.0$$5'25'&%%03% 6$#* 7%!04$#B#$%8
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Parameter: CH2 EN
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4".00'$!%0$'5%3".00'$"$04!5#'!$02# '#%03# %'2$!0'%!1.!330($8#
'.".00'$%0%$#03+* 6+7"!1#'!$0!%'!1""%%!14$#4"'$#&"!1#'!$0/45'!%
Note: Channel two parameters CH2 GAS, CH2 MAX, CH2 AVG, and PO2 FS have the same function as channel one.
Parameter: SP DLY
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Parameter: CH1 DGR RLY
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Parameter: CH1 CRT RLY
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Parameter: CH2 DGR RLY
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CONFIGURATION (continued)
Parameter: CH2 CRT RLY
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Parameter: TMP BZR OFF (internal horn/buzzer)
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$0#%!0"30&# %'.'$""5#35#!0'.'! '.!%2# '#!%01367#5'$ '!"&%!0"3
Parameter: HORN RLY (external horn)
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Parameter: FAIL RLY
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Parameter: FAIL DLY
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Parameter: A-DIAL RLY
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%'2$!0'.%10 '$#A"334!5#"$03!'!$03$%0$'"'!8''.5'$3!#$5'25'6%2# '#
4$# $#!04$# '!$07''.4!5##&'$'.% #&%C/9!4'.%!'%.$535'$3!
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CONFIGURATION (continued)
Parameter: A-DIAL DL
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6/7'!
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Parameter: BATTERY OPT
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) $1''#&$2'!$063"'!8'%1''#&# %7
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<<? <<?***!%'.2$#%$5#"%'.
-<<K?
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Parameter: BATTERY ACK
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.# %#C<9C<(903<9
Parameter: AC LOSS RLY
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Parameter: K6 OPER
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4;'.#&!%0$# &"$%3.0'.##0$45'"$03!'!$0%
Parameter: LATCH ACK
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"$03!'!$00$$0#A!%'%630#$#"#!'!"# 7
#%%K$0%"#0$#' 2$##!&"'!8'8!0A'#025%.15''$0'$%!0"'.#
Parameter: POx MODE
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Parameter: BAUD RATE
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03523''.!0%'3***4!# #.#!%0$J,0$333#%%!0''.!%'! %$$0&$0
***"0"$00"''$0J,"$00"'!$0
.$!"%#+**+**J****+**03J**
Parameter: CHANGE SETUP PW (password)
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Parameter: CHANGE ALARM PW (password)
$%$0'$".0'.# 2%%$#3

4-20mA ANALOG INPUT (GAS SENSOR INPUT) CALIBRATION USING A GAS
IMPORTANT: The gas sensor should be calibrated to the meter using the gas calibration
procedure on this page.
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The sensor life expectancy is two years when exposed to air (see the GAS S NSOR
SP CIFICATIONS FROM TH MANUFACTUR R section).
Figure A

GAS INPUT CALIBRATION WITH A 4-20mA CALIBRATOR
IMPORTANT: The gas sensor should be calibrated to the meter using the gas calibration
procedure on the previous page.
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'. !0$2#'!03!%2&1&2#%%!00&25%.15''$0?0'#2%%$#36345'****7
03'.0%"'($#(+This mode also sets the gas calibration to zero (4mA) and sensor
full-scale/SPAN (20mA).
NOTE: When this screen and sub screens are accessed, the sensor alarms are deactivated and
the analog outputs are forced to 4mA.
4mA)#%%'$%''. 2$!0'.!%%$%'%'.B#$2$!0'!0'.%"!1#'!$0 $3
20mA)#%%'$%''.+* 2$!0'.!%%$%'%'.%202$!0'!0'.%"!1#'!$0 $3'$'.45
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ENT)#%%'$2# 00'&%'$#'.0"!1#'!$0!$0&13!%2&3!4'. 03;$#+*
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POWERED (ACTIVE) CALIBRATOR WIRING!#!03!# 6
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4-20mA OUTPUT CALIBRATION
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#%%'.25%.15''$0'$$1"='$'.A%"'!$0 05

RELAYS
.4$5#$#%!A#&%#'%'P+,*03P*/
RELAY SUPPRESSION
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3!# %
11 V/230V OPERATION
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!'.#,'$+*!0'.4!3<%5#'$"."='.!%%!'".%'.'&2!"%''!0!%,
ENABLING THE SECOND CHANNEL IN THE FIELD
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032#%%50'!!%3!%2&3#%%'$""2''.".0'$'.2# '#''.# !0!0
2# '#%'$'.!#"$##"'%''!0%03"!1#''.%0%$#%$1%5#'$%''.".00'$6+730#03
"#!'!"# %'2$!0'%
CHANNEL TWO 4-20mA OUTPUT
0$2'!$0***67?35.'#1$#3!%5%3'$45#0!%.'.%"$030$$5'25'
POWER UP FUNCTIONS
#%%03.$3'.25%.15''$06%7.!22&!02$#'$'./***
PB1 PB2 PB3 PB4 DESCRIPTION
- - ;'%'
- - "'$#&345'

EVENT LOG AND TIME & DATE
080'$450"'!$0!%8!1'.'$%$0'$8!"#'!080'%630#03"#!'!"# 7'.'$""5##3
?2'$+,*80'%#%'$#3
$8!'.$4#$ '. !0$2#'!0%"#02#%%0&25%.15''$003'.0
LOG MENU SELECTIONS
""%%'.80'$%"'!$0 05
!032$%%!1&".0'.'! 033'%$'.2$#52'! #6.$5#
'#7!%503#'.!%%"'!$0
$1"='$'. !0%"#0
( !'.80'$4$#".00$0
(+ !'.80'$4$#".00'$6!40137
$1"='$'. !0%"#0
.!8!!0'.80'$%"#0%'.#!%0$25%.15''$003%$'.25%.
15''$0%$2#'%4$$%64''$#!.'7)-60$450"'!$07I.!%!%
"$0%!%'0'!'.'.$'.#%"#0%'.'A'1$A'$'.#!.'N'.'$2'$!0%
#3!%2&303'.1$''$ !060$'3!%2&37%.$%'.25%.15''$0
%%!0 0'%
.!0%'#5 0'$%30#03"#!'!"# %6.!".8#$""5#%7.8#%A2$%5#6!022 $#
;7 A! 5 %A2$%5#6-!022 $# ;70335#'!$0'.# "$03!'!$0$""5##36!7#$34'#
'.80'0$$0#A!%'%.'! !%3!%2&3%.$5#% !05'%03%"$03%6(())7N'. A! 5 '!
35#'!$06!7!%),),
SENDING THE EVENT LOG TO A REMOTE SYSTEM (COMPUTER)
#!"$ 03EVL!%03'.4$$!0!04$# '!$0'$"$ 25'#++;J,2$#'.".0005 1#!%
%2"!4!36$#+7.3#!%%0'.!"."$0'!0%'.".0005 1#03%%0%$#'&2
.3'%0'!%'.3'03'! $4'.80'80''&26/$#7 A! 5 62=7A2$%5#6!022 ;
50!'%78#A2$%5#6!022 ; 50!'%703'.35#'!$06'! !0.$5#%) !05'%)%"$03%7$4'.80'?2'$
+,*80'%#$303.0'.$ $#&!%45'.$3%'80'!%#2"31&'.'%'80''.
%#!"$ 03%"'!$0$4'.!% 054$# $#!04$# '!$0
CLEARING THE EVENT LOG
.80'$"00$'1"#34#$ '.4#$0'20.#!%%#!"$ 03'.'!"#'.80'$
67'.%#!"$ 03%"'!$0$4'.!% 054$# $#!04$# '!$0
TIME MENU SELECTIONS
!03%''.!0'#0"$"=0"0%''.'! 033'1&2#%%!0
"#0'! $5'!%'.!#'&%"$03%6#'5#0%'$ !0%"#07
HOUR METER
/!%2&%'..$5#%) !05'%'.''. $0!'$#.%102$#3.!%"$50'#
"00$'1#%'03!% !0'!031&"2"!'$#1"=3 $#&03
.0'. $0!'$#!%2$#33$0"#0'! $5'!%'.!#'&%"$03%6#'5#0%'$
!0%"#07.!%"$50'#"00$'1#%'
05/05/06 07:55am
1:DGR AVG 3.5
- - - - - - - - -
NEXT LAST ESC

RS-232/RS-48 SERIAL COMMANDS
.++$#J,2$#'"0"$ 50!"'!'.# $'"$ 25'#6/7%&%' .30#03
"#!'!"%'2$!0'%#25#2$%&0$'1'$1%'$8#'.%#!!0'#4""$ 03% 5%'1'# !0'31&
"##!#'5#0<CR>!043<LF>!4%0'!%!0$#3.#%2$0%%4#$ './***#'# !0'31&
"##!#'5#0<CR>03!043<LF>
$ 03)MSV0
3%5#35%H3%52'$'$%%0%$##3!0%C09!%'.".0005 1#4C09!%0$'%2"!4!3
1$'.".00%#'#0% !''303#%2#'31&"$ .# %''5%!%%$'#0% !''3
CH1 (Cl2) = 0.1ppm,OK, CH2 (SO2) = 10.0ppm,CRT,<CR><LF>
.%'&2!%!02#0'.%!%6++((+$#+7
.%50!'!%!'.#C22 9$#C 9.!".!%%'1&2# '#?
?)K60$# %7/630#76"#!'!"7$#/62$#52%'1!!B'!$0'! 3&7
.0'.2$#52%0%$#%'1!!B'!$0'! 3&!%"'!8'.%0%$#"$0"0'#'!$0%0'!%4$#"3'$B#$6*7
$ 03)ACK
"=0$3'.53!1# !4"'!8
$ 03)CLK {yyyy-MM-ddThh:mm:ss}
3;%''.#'! "$"=5%!0'.J*%'03#3
3#%2$0%6%03KQR7)K+**J*O*O)),QRQR
."$"=!%%'5%!0'.% %#!4$# '
$ 03)RFW
3'.4!# #8#%!$005 1#
%2$0%)**QRQR
$ 03)EVL0
/$0$3'.80'$.C09!%'.".0005 1#.!".!%!'.#6*A7$#+6*A+7'.
%"'!$0$4'.!% 054$# $#!04$# '!$0
03)QR03'.0+QR'$!%''.80'%4$#1$'.".00%
LOG REPORT: CH1 GAS SENSOR TYPE: C lorine
2018/08/06,13:27:49,CRT,MAX= 3.5,AVG= 3.3,DURATION=00:01:16
2018/08/06,13:20:06,CRT,MAX= 3.5,AVG= 3.5,DURATION=00:04:59
2018/08/06,13:05:50,CRT,MAX= 3.5,AVG= 3.4,DURATION=00:11:33
2018/08/02,13:08:26,CRT,MAX= 4.4,AVG= 1.9,DURATION=00:00:16
2018/08/02,13:07:33,CRT,MAX= 4.4,AVG= 3.9,DURATION=00:00:08
2018/08/02,11:53:31,DGR,MAX= 2.0,AVG= 1.6,DURATION=00:00:01
END
LOG REPORT: CH2 GAS SENSOR TYPE: Sulfur Dioxide
2018/08/06,13:27:49,CRT,MAX= 3.3,AVG= 2.7,DURATION=00:01:14
2018/08/06,13:20:06,CRT,MAX= 3.3,AVG= 3.3,DURATION=00:04:59
2018/08/06,13:05:50,CRT,MAX= 3.3,AVG= 3.2,DURATION=00:11:55
2018/08/02,15:14:31,CRT,MAX= 3.2,AVG= 0.9,DURATION=00:42:54
2018/08/02,15:13:47,CRT,MAX= 4.1,AVG= 2.3,DURATION=00:00:11
2018/08/02,15:13:12,DGR,MAX= 1.2,AVG= 1.1,DURATION=00:00:13
2018/08/02,15:12:59,CRT,MAX= 6.0,AVG= 3.8,DURATION=00:00:10
2018/08/02,11:49:54,DGR,MAX= 1.4,AVG= 1.2,DURATION=00:00:01
END
$ 03)EVLCLR
#52'$+,*80'$0'#!%

WIRING
EXTERNAL PUSH BUTTON INPUT ANALOG OUTPUT WIRING
Use IN1 to silence alarm remotely. PO1, 4-20mA OUTPUT, TB-2, PS-1000S-CPU(-B)
*!%0$'5%3''.!%'! PO2, 4-20mA OUTPUT, TB-20, PS-1000S-AOUT
Some PS-1000S-AOUT boards show PO2 labeled as TB-10.
LOOP POWERED SENSORS
DUAL GAS SENSOR SINGLE GAS SENSOR

WIRING (continued)
4-20mA POWERED (ACTIVE) CALIBRATOR WIRING
.#&450"'!$0!%'1$!%'.345'15'$0"0#%%!0'.#&$5'25'%'$%5!''.#@5!# 0'%$4'.
!0%''!$0KIK,6<7#$2'!$0#&%03#0$''&2!"&!0%'3
.#&"$0'"'%#C3#&962$'0'!4#7%$'.$32$#%522&!%A'#0%'.A 2"!#"5!'1$8If
the load is inductive, add a snubber (RC) circuit across the relay contact terminals to greatly extend the life
of the relay contacts.0"0%$"$00"''.%0511#"#$%%'.$3.!".!%'&2!"& $#"$080!0'!0
!5$4'."$0'"'%%%.$01$8
AC POWER WIRING

GAS SENSOR INTERNAL WIRING (REF. ONLY)
BASIC SYSTEM TROUBLESHOOTING
0%'#5 0'3$%0$'
!.'
•."='.',6+*!45%37!%#".!0<,
•."='.''.#!11$0"1'$'.3!%2&!%253!0'1$'.03%0345&%'3
•=%5#2$#!%3!%"$00"'303'.0# $845%03"."=4$#"$0'!05!'&
•."=C9%!'".!%%'4$#'.!025'8$'!05%Never change this switch
with the power on!
0%'#5 0'!.'%15'
3$%0$'%.$0&'.!0
$0'.3!%2&
•."=8#&'.!015''.45%!0'.C0%'#5 0'3$%0$'!.'9%"'!$0
•."='.C92$'$03!%2&1$#35#0'$1$'.03%$4!':%'#8.!
'".!0'.3!%2&':%5%5&'5#03"$"=!%4#$ 4"'$#&
!.'$0%0%$#3$%
0$'!.'15'!0%'#5 0'
2$#%52
•."=!0%'#5 0'!#!0C$# !#!094$#<!0'.3!# %"'!$0
•%5#1'0C+6<703H6<7C'%.$5311'0++I+/
•$'$C."=!0%0%$#!#!09
!.'$0%0%$#!.'%
15'!0%'#5 0'3$%0:'
#%2$03'$".$#!0
A2$%5#
• $80&"2%%4#$ '.%0%$#
• $8'."!1#'!$0254$#4%'##%2$0%'! '.%0%$#3'%.'4$#
3'!%
•."=!0%'#5 0'!#!06%1$87.1"=!#4#$ '.%0%$# 5%'1$06$#
+7C>94!':%$0CC'# !0'.!%2#$1 !#%5'
•$'$C."=!0%0%$#!#!09
."=!0%0%$#!#!0
•20%0%$#1$A6%"#%7."!#"5!'1$#3 $50'%'$'.%0%$#$0'.#$32!0%
<%5#'.1$#3!%$0'.#2!0%0345&%'3
•."='.''.$#025.%0$'253$$%4#$ '.%0%$#
•.%0%$#.%'$2!0$#0.3#15'.%'.#2!025#$ 4''$#!.'!'.
'.%"#%4"!0&$5'.!#%##31"='.0#3I.!''!%'3'$'.#.
'# !0!'.'.#3I.!'!%'.$00$'"$00"'3'$'.'$2!0.3#6%
1$87
•."=4$#1#$=0!#%$0'./.%!3$4'./!'.'.4'!%'.$0'.'
$%'$'.4' $%''# !0$0'.'.#2!025
•40$2#$1 %#4$503$'$C#!4&!03!"'$#$2#'!$09
#!4&!03!"'$#
$2#'!$0
•/!%"$00"''.%0%$#!#+* 0#'$#%%.$0503#C+* /
67<9!0'.3!# %"'!$0
•0D"'!0 !!8*22 #3!003+* !!8*22 6$#45%"7
#3!0!4'.50!'%%'524$#%'03#3
+
%0%$#
0%'#5 0'%.$%.!.$#
3#!4'!0#3!0%.04!#%'
2$#35215'%''%'$
%'1#3!0!'.!0
!05'$#'$
•.!%!%0$'2#$1 .%0%$#%03'$%'1!!B.04!#%'2$#352.# %
#3!%1350'!'.%'1!!B3&'! #3!%22#%4#$ '.%"#0.!%'=%1$5'
'$ !05'%

INTERNAL SHORT-TERM BATTERY BACKUP (BATTERY OPT = NiMH)
An internal short-term battery backup is available as an option. It can power
the PS-1000 from fifteen (1 ) to forty-five (4 ) minutes (depending on alarm
status) with fully charged batteries. Only use two 8.4V NiMH batteries with a
capacity of 170mAh (milliamp-hour) or better..".#!0'! !%1$5'+
.$5#%!31''#!%"015%315''.&!0$'%'%$0!0'.!%22!"'!$0
%$'.�$'#"$ 033$8!'.1''#&%''.!!0'. !0%"#0
2#%%03.$3<6%"$03'$4' $%'25%.15''$07034'#1$5''.#
%"$03%'.1''#&%''%"#0!13!%2&3
WARNING
Do not use alkaline, lithium (any kind), carbon-cell, etc. primary batteries.
Do not install rechargeable alkaline batteries.
•.0'.1''#&"2"!'&!%32'3'./***!%2$#33$0
$'5#0'./***$44.!#500!0$01''#!%2#%%03.$3'.
4' $%'25%.15''$050'!'. %%C/S9!%3!%2&3
#%%!0!2$#3$0'./***
•./***"00$'12$#33$0.!#500!0$02$#
EXTERNAL LONG-TERM BATTERY BACKUP (BATTERY OPT = BBU)
.$0'# 1''#&6<<?***7$2'!$0!%%2#'0"$%5#"$0'!0!0, 2(#%33"!367
1''#&031''#&".##.<<?***"$00"'%'$<.!".!%$"'3$0'.***/1$#3.
/***"012$#34$##'#'.0+.$5#%.0<<?***!% 2$&3
./***3$%0$'#@5!#'.5%#'$"$00"',;+*'$!'%!0"'.<<?***2$#%'./***
'.#$5.'.'.#"$035"'$#"16%522!37.8$'%"'!$0%!'".$"'3$0'.<<?***1$#3
$%'.5%#'$%"'!'.#,$#+*6>;*TI,*;*(B72$#.1''#&!".#.0'.
<<?***!%"$00"'3'$2$#.1''#&".#'! !%4#$ +'$+.$5#%3203!0$0'.35#'!$0$4
'.2$#!0'##52'!$0
.5%#"02$#3$0'./***!4!':%$2#'!0$0'.1''#&1"=52.0'.5%#32#%%%'.4'
$%'25%.15''$0!0'. !0$2#'!0%"#06.#'.%3'"'$#86%7#;!%3!%2&374$#4!4'0%"$03%
50'!'./3!%2&$%10=6'.!%!%0$''.% %'.%.$#''# 1''#&$2'!$01$87$2$#'./
***.02$#!%0$'2#%0'2#%%'.4' $%'25%.15''$04'.<<?***!%1!02$#31&
2$#6 !0%7'.5%# &0$'2$#3$0'./*** '#
Note: The BBU1000 is shipped with the battery plug, TB2, disconnected. The user must insert this plug
onto the TB2 header located on the BBU1000 unit for the battery to function properly. Also, the TB3 power
cable must be connected to the GD-1000 meter (The GD-1000 header is TB11). The battery is fully charged
before it leaves the factory. However, the battery will loose some of its charge over time if it’s not being
charged by the BBU1000.
.<<?***.%!0'#0/%'.'!03!"''.%''5%$4'.50!'
POWER DESCRIPTION A.C. LED CHARGE LED
<''#&!%".#!0
<''#&!%0$'".#!0
<''#&!%C4$'9".#!0
<''#&"!#"5!'!%%.$#'3 ( (
<''#&!%0$'"$00"'3 (
/ <''#&!%2$#!0'./***
./!%!'.0'.<<?***!%2$#3 S th diagram s ction for wiring information.

Cl
2
GAS SENSOR SPECIFICATIONS FROM THE SENSOR MANUFACTURER

GD-1000 ROUTING TICKET (GAS DETECTOR)
U)
/)
#$# ) ***/*** U)
#%!$0)
<)
*
VVVVVVVV
(%0%$#;)
)
+
+
(+%0%$#;)
)
+
+
?) /45'
85% ?%#.0% '52) /45'
85% ?%#.0%
? 22
(6K+7
*
(
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(- **
(+6K7
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( *,%
(+/6K7
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$')(+# %#.!330!4C(+9!%%''$
(+
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(+- **
(+ *,%
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(/ K
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<?/ J** ****
? ****
$')# '#%'.'3$0$'03'$1%'3203!0$0'. $3%%"'3!0$'18!16810=7
/45'.#3#)KK+KK64$5##&%7++6"$"=7*3<!0'#015BB#%!0+* $5'25'+"$0'"'!025'%'$
+* !025'%
HARDWARE OPTIONS
<6E.#7
***67?
<<?***6++.#7
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