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NCC DNC-T2006-R20

Dust Collector,6 position seq. timer,92-265 AC,50/60Hz.150VA Max,digital display

Mfr. Part #: DNC-T2006-R20 / RS Stock #: 70059760

NCC

NCC DNC-T2006-R20

Mfr. Part #: DNC-T2006-R20
RS Stock #: 70059760

Description

Dust Collector,6 position seq. timer,92-265 AC,50/60Hz.150VA Max,digital display

Out of Stock (Can Be Backordered)

Price

Qty.

Standard Price

1

$682.27

10

$648.16

25

$614.04

Additional Inventory

On order:

31

Manufacturer Lead Time:

22 weeks

Info
Estimated manufacturer lead time is for quantities greater than shown above.
Minimum Qty: 1
Multiples Of: 1
Unit Price:
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Total Price:
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Product Specifications

Product Attribute
Attribute Value
Accuracy
±3% over temperature and voltage range mA
Enclosure Rating
NEMA 4
For Use With
Bag House
Frequency
50/60 Hz
Input Type
Voltage
Maximum Operating Temperature
66 °C
Minimum Operating Temperature
-40 °C
Mounting Type
Surface Mount
Number of Outputs
6
Operating Temperature
40 to 66 °F
Output Type
Solid State
Power Dissipation
6.3 VA
Primary Type
Controller
Product Header
Dust Collector Control
Special Features
Digital Microprocessor Controlled Circuitry, Easily Programmable, Finger Safe Terminations, Non-Volatile Memory, Universal Voltage Input
Standards
UL, cUL
Supply Voltage
95-265 VAC
Temperature Operating Range
-40 to +66 °C
Type
Dust Collector
Voltage Rating
92 to 265 V

Overview

The DNC-T2003 through DNC-T2032 controls are output sequencers with an ad justable ON TIME, OFF TIME, and LAST OUTPUT. Upon application of power to the L1 and L2 terminals with the high pressure switch co ntacts c losed, the OFF TIME is initiated. At the end o f the preset OFF TIME, output 1will turn on for the preset ON TIME. The control will cycle through all selected outputs until the high and low pressure switch contacts are opened. If the pressure switch contacts open during the ON TIME, the output will complete the active ON cycle. The next time the high pressure switch is closed the next output in the sequence is fired. Pressure monitoring with no hysteresis is achieved by using only a high pressure switch. Placing a jumper across the high pressure input forces the control to run continuously.