WiSilica WCA2CS WCA2CS User Manual WCA2CS Ver1 1 090818x

WiSilica, Inc. WCA2CS WCA2CS Ver1 1 090818x

User manual

WISILICA NETWORK LIGHTING | CONTROL SERIES
WISILICA NETWORK LIGHTING | CONTROL SERIES  Table of Contents 1. Block Diagram ..................................................................................................................................................... 3 2. Specifications ....................................................................................................................................................... 3 3. Device Dimensions (mm) ................................................................................................................................ 5 4. Connector Description ..................................................................................................................................... 5 5. Wiring Diagram .................................................................................................................................................. 6 6. Use Cases .............................................................................................................................................................. 6 7. User Precautions ................................................................................................................................................ 7
WISILICA NETWORK LIGHTING | CONTROL SERIES  1. Block Diagram    2.  Specifications    Electrical  Symbol  Min  Typ.  Max.  Unit.  Remarks Input Voltage      Vin  110    277  Vac  Rated Input voltage  Input Current      Iin1    60  100  mA  @ Max RF transmitting  Power consumption     Watt    1.0  3  W  Active Power  Input Frequency      F  50  -  60  Hz    Protection Class      -   Built-in Class II     Suitable for class I and II luminaries Inrush Current          20    A   Surge transient Protection          3  kV  @Line to Line: Bi-Wave Leakage Current            0.5  mA  @Rated input voltage Aux power        12V  120mA    Sensor Interface  UART
WISILICA NETWORK LIGHTING | CONTROL SERIES Analogue Dimming Output  Dimming Output1      Vadimo1  0    10  V  Max output tolerance ±5% Dimming Output2      Vadimo2  0    10  V  Max output tolerance ±5% Output Current            15  mA  For dimming max output  Dimming Range        0    100  %    Dimming Resolution          8    bit  100 steps  Dimming Curve          Linear       Cut Off Voltage          1    V  Programmable     Bluetooth       Frequency Range  2400  2483.5 MHz    TX Power   6 8  dBm Conductive  Frequency Drift(Max)  -25  25 kHz dF2  Frequency Deviation  ±225  ±275 kHz   Carrier Frequency offset   30 150 kHz   TX current    48 mA Total current@ Max Tx power  Receive Frequency   2400  2483 kHz   Rx Current    -37 mA Total Current @Rx Mode  Receiver Sensitivity   -86  -75 dBm                   Environmental  Symbol  Min  Typ.  Max.  Unit.  Remarks Ambient Temperature  ta  -20    50  ºC   Storage Temperature  ts  -20    70  ºC   Relative Humidity        85  %   IP Rating      IP20    -  Indoor use only Dimensions      175*34*30   mm  L x W x H (mm) Net Weight    80  90  100  g  T.B.D               Dimming    Type  Note Dimming Control 1  0 – 10V  Analog
WISILICA NETWORK LIGHTING | CONTROL SERIES  3.  Device Dimensions (mm)   Case Material : 5VA      4.  Connector Description  PIN  SYMBOL  COLOR  DESCRIPTION 1  Neutral Line  Black  AC Input Neutral 2  Neutral Load  Grey  110-277V ~(Line) 3  Line  Yellow  110-277V /5Amps 4 Load Red 110-277V /5Amps   PIN  SYMBOL  COLOR  DESCRIPTION 1  ADC input   Grey  CH1 0 to 10V ADC INPUT  2  ADC input   Grey  CH2 0 to 10V ADC INPUT 3  RX  Grey  UART 4  TX  Grey  UART 5  GND  Grey  12V Ground Output 6  12V  Grey  Supports up to 1.4W  5. Wire Description  PIN  SYMBOL  COLOR  DESCRIPTION 1  CH1+   Purple   CH1 0 to 10V Analog Output  2  CH2+   Blue  CH2 0 to 10V Analog Output 3  GND   Grey  12V Ground output  4 12V  Red 12V
WISILICA NETWORK LIGHTING | CONTROL SERIES  6.  Wiring Diagram       7.  Use Cases  1. Controlling Intensity and CCT of LED bulb      2. Controlling LED bulb with Sensor Inputs     3. Controlling external load upto 5A
WISILICA NETWORK LIGHTING | CONTROL SERIES 8.  User Precautions  • Observe the correct polarity of output terminal. • Avoid input voltage exceeds the maximum rating, which will cause damage to the circuit and result in malfunction • Static electricity or surge voltage may damage the components inside LED Driver, to avoid this please follow the proper anti-electrostatic working process.  9. FCC Statement  • This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: • Reorient or relocate the receiving antenna. • Increase the separation between the equipment and receiver. • Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. • Consult the dealer or an experienced radio/TV technician for help. • Caution: Any changes or modifications to this device not explicitly approved by manufacturer could void your authority to operate this equipment. • This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation.  10. RF Exposure Information • The device has been evaluated to meet general RF exposure requirement. The device can be used in portable exposure condition without restriction.

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