Table 1 Half cable wiring information
Pin Signal
Color
4
Description
Rating
1
+12 VDC
power
output
White
Power supply positive output.
Only use with pin 2.
Battery power to the IO9000 module: 12 VDC
nominal; Power supply to the IO9000 module:
15 at 1.0 A maximum.
2
Common
Blue
Negative return of power supply.
When the power supply is used,
pin 2 is connected to earth
ground
5
.
3
Pulse input
or Analog
input
Orange This input is a sample collection
trigger from the flow meter (pulse
or 4–20 mA) or a simple floating
(dry) contact closure.
Pulse input
—Reacts to a positive pulse with
respect to pin 2. Termination (pulled low): pin 2
through a series 1 kΩ resistor and 10 kΩ
resistor. A 7.5 zener diode is in parallel with the
10 kΩ resistor as a protection device.
Analog input
—Reacts to the analog signal that
enters pin 3 and returns on pin 2. Input burden:
100 Ω plus 0.4 V; Input current (internal limit):
40 to 50 mA maximum
6
Absolute maximum input: 0 to 15 VDC with
respect to pin 2.
Signal to make the input active: 5 to 15 V
positive-going pulse
7
with respect to pin 2,
50 millisecond minimum.
4
Liquid level
input or
Auxiliary
control
input
Black
Liquid level input
—Start or
continue the sampling program. A
simple float level switch can
supply input.
Auxiliary control input
—Start a
sampler after the sampling
program on another sampler
ends. As an alternative, start a
sampler when a trigger condition
occurs. For example, when a
high or low pH condition occurs,
the sampling program starts.
Termination (pulled high): in5 V supply
through an 11 kΩ resistance with a series 1 kΩ
resistor and 7.5 V zener diode terminated to pin
2 for protection. Trigger: High to low voltage
with a low pulse of 50 milliseconds minimum.
Absolute maximum input: 0 to 15 VDC with
respect to pin 2. Signal to make the input
active: external logic signal with 5 to 15 VDC
power source. The drive signal must be
typically high. The external driver must be able
to sink 0.5 mA at 1 VDC maximum at the logic
low level.
A logic high signal from a driver with a power
source of more than 7.5 V will source current
into this input at the rate of: I = (V –
7.5)/1000 where I is the source current and V is
the power supply voltage of the driving logic.
Dry contact (switch) closure: 50 millisecond
minimum between pin 4 and pin 2. Contact
resistance: 2 kΩ maximum. Contact current:
0.5 mA DC maximum
5
Special
output
Red
This output goes from 0 to
+12 VDC with respect to pin 2
after each sample cycle. Refer to
the Mode setting of the hardware
settings for the AUX I/O port.
Refer to the AS950 operations
documentation.
This output has protection against short circuit
currents to pin 2. External load current: 0.2 A
maximum
Active high output: 15 VDC nominal with AC
power to the AS950 controller or a 12 VDC
nominal with battery power to the
AS950 controller.
4
The wire color refers to the colors of multi-purpose cables (8528500 and 8528501).
5
All mains powered equipment that connects to the controller terminals must be NRTL listed.
6
Long-term operation in this state voids the warranty.
7
Source impedance of the driving signal must be less than 5 kΩ.
English
17
Summary of Contents for AS950 AWRS
Page 2: ...English 3 Fran ais 27 Espa ol 52 Portugu s 77 102 124 2...
Page 22: ...22 English...
Page 47: ...Fran ais 47...
Page 72: ...72 Espa ol...
Page 97: ...Portugu s 97...
Page 105: ...1 AWRS 105...
Page 106: ...106...
Page 108: ...2 AWRS 1 6 11 2 7 12 3 8 13 4 9 AWRS 14 5 10 86 kg 190 lb 90 kg 198 lb 3 108...
Page 110: ...4 AWRS 1 2 2x 111 5 5 110...
Page 111: ...1 6 8 2 8 6 1 24 1 L 4 8 24 7 2 24 350 mL 5 8 AWRS 3 6 9 1 7 PE 2 8 PE 111...
Page 112: ...3 9 102 7 8 112...
Page 113: ...9 1 2 3 GFCI GFI 15 A AWRS 5 10 113...
Page 116: ...pH 12 12 5 POWER POWER AWRS 116...
Page 117: ...13 1 13 2 3 4 5 O 6 13 1 3 O 2 4 117...
Page 118: ...4 6 m 15 2 m 15 ft 50 ft 1 2 14 3 4 5 14 1 7 2 8 AWRS 3 9 4 10 5 11 AWRS 6 12 AWRS 118...
Page 119: ...119...
Page 120: ...118 120...
Page 122: ...16 16 2 2 2071 4652 118 122...
Page 123: ...2 2071 4652 123...
Page 127: ...1 AWRS Web 127...
Page 128: ...128...
Page 130: ...2 AWRS 2 AWRS 2 AWRS 1 6 11 2 7 12 3 8 13 4 9 AWRS 14 5 10 86 Kg 90 kg 3 HACH Japan 130...
Page 131: ...3 1 5 AWRS 2 6 3 7 4 8 3 2000 m 2 000 m AWRS 124 1 127 AWRS 3 8 4 1 2 14 NPT 3 131...
Page 132: ...4 AWRS 1 2 2 1 133 5 5 132...
Page 133: ...1 6 8 1 2 8 6 1 24 x 1 L 4 8 24 7 2 24 x 350 mL 5 8 AWRS 3 1 6 9 133...
Page 134: ...1 7 PE 2 8 PE 3 9 124 7 134...
Page 135: ...8 9 1 2 3 GFCI GFI 135...
Page 139: ...1 4 6 90 18 V 2 200 mA DC 18 VDC 7 RF RF AC AUX I O 3 m 7 12 12 5 POWER POWER AWRS 2 139...
Page 140: ...13 1 13 2 3 4 140...
Page 141: ...5 O 6 13 1 3 O 2 4 4 6 m 15 2 m 1 2 14 3 4 5 141...
Page 142: ...14 1 7 2 8 AWRS 3 9 4 10 5 11 AWRS 6 12 AWRS 142...
Page 143: ...143...
Page 144: ...141 144...
Page 145: ...1 2 4 8 mm 19 mm 15 1 3 4 15 1 4 152 4 mm 177 8 mm 190 8 mm 7 2 5 3 6 145...
Page 146: ...16 16 2 2 AC 146...
Page 147: ...2 2071 4652 141 2071 4652 147...
Page 148: ......
Page 149: ......