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Wireless Cabinet Analysis Sensor

475.00€ *
Content: 1 Piece

Prices plus VAT plus shipping costs

Delivery time 15 Workdays

  • E_17610
  • Analysis of cabinet thermal properties and airflow
All In One Wireless Cabinet Sensor The Wireless Cabinet Analysis Sensor (W-CAS) features a... more
Product information "Wireless Cabinet Analysis Sensor"

All In One Wireless Cabinet Sensor

The Wireless Cabinet Analysis Sensor (W-CAS) features a cabinet thermal map for detecting hot spots, differential pressure sensor for analysis of airflow and 2x dry contact inputs for door security sensors. Powered by USB, or 4x AA rechargeable batteries and using AKCP Wireless Wall Penetrating Technology data is collected and sent to one of our wireless sensor gateways. A wired version of the W-CAS is also available for use with the sensorProbeX+ base units.

Thermal Maps

Cabinet thermal maps consist of 2 strings of 3x Temp and 1x Hum sensor. Monitor the temperature at the front and rear of the cabinet, top, middle and bottom. The △T value, front to rear temperature differential is calculated and displayed with animated arrows in AKCPro Server cabinet rack map views.

Differential Pressure

There should always be a positive pressure at the front of the cabinet, to ensure that air from hot and cold aisles are not mixing. As air travels from areas of high pressure to low pressure, it is imperative for efficient cooling to check that there is a higher pressure at the front of the cabinet and lower pressure at the rear.

Door Contacts

I/O dry contact inputs can be used to monitor the front and rear doors of the cabinet, or alternatively alarm outputs from a UPS or other rack mounted equipment.

Rack Maps and Containment Views

The L-DCIM runs AKCPro Server. Dedicated rack maps displaying W-CAS sensor data can be configured to give visual representation of each rack in your data center. If you are running a hot/cold aisle containment, then containment views can also be configured to give a sectional view of your racks and containment aisles.

Related links to "Wireless Cabinet Analysis Sensor"
 
BOS L-DPTHM Diff Pressure and Temperature and Humidity Thermal Map
Dimension : 86mm X 111mm X 63mm
Mounting : Desktop, Wallmount, Din rail, Magnetic
Power source : 4xAA Internal recheargeable NiMH batteries or via micro-USB port
Power Consumption : TBD
Status Indication : LED indication for Connectivity
LED indication for Status
ComponentsA8 : Manufactured using highly integrated, low power surface mount technology to ensure long term reliability.
Operating Environment : Temperature : Min. -35° C – Max.80° C
Humidity: Min. 20% – Max. 80% (Non-Condensing)
 
Environment monitoring
 
LoRa (R) Radio
Regional plans
- EU868 : 863~870Mhz
Max TX Power +14dBm
Duty Cycle 1%
- US915: 903~915Mhz
Max TX Power +17dBm
- AS923 : 923~925Mhz
Max TX Power +14dBm
Duty Cycle 1%
- KR920 (Korea) : 922~923Mhz
Max TX Power +14dBm
Duty Cycle 1%
- IL917 (Israel) : 915~917Mhz
Max TX Power +14dBm
Duty Cycle 1%
Certification : FCC Part15C, CE EN300220-2
Temperature : 6x Temperature sensor values
3x Differential Temperature sensor values
Measurement Range : -40°C to +75°C
-40°F to +167°F
Measurement Resolution : 0.1°C increments
0.2°F increments
Measurement Accuracy Maximum ±0.3 at -40ºC, minimum ±0.3 at +25ºC and ±0.3 at +75ºC
Maximum ±0.6 at -40ºF, minimum ±0.6 at +25ºC and ±0.6 at +167ºF
Humidity : 2x Humidity sensor values
Measurement range : 0 to 100% Relative humidity
Resolution : 1%RH increments, 0.01%RH sensor reading
Accuracy at : 25°C ±2%RH
Differential Pressure : 1x Differential Pressure value
Measurement range : ± 125 Pa (±0.5 inH2O / ±1.25 mbar)
Resolution : 0.01 Pa increments
Accuracy at : 25°C ±0.5%
Dry Contact : 1x Discrete Dry Contact inputs
InputA49 : Switch type dry contact input: open or close
Edge counters
TypeA51 : - Isolated (5 to 24V DC/AC)
- 5V pull-up, non-isolated
Important Note : Note 1: for 5V pull-up non-isolated, they all share the same ground.
Care should be taken on grounding when connecting th inputs to the dry contacts
Note 2: for 5V pull-up non-isolated, don’t apply any voltage to the dry contact inputs
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