CDVI DGLIEWLC User manual

DGLIEWLC
INSTALLATION MANUAL
Outdoor Flush mount Proximity Card Readers - Wiegand
Gama: Control de accesos centralizado
MANUAL DE INSTALACIÓN
Lector de tarjetas empotrable para exterior - Wiegand
Range: Integrated Access Control /
ESPAÑOL
ES
ENGLISH
EN

2
3] ELEMENTOS INCLUIDOS
Varistor Herramienta
Diax®
DGLIWLC 1 1
1] PRESENTACIÓN DE PRODUCTO
2] NOTAS Y RECOMENDACIONES
Recomendaciones de instalación
Para asegurar el sistema, no se olvide de instalar
un varistor en paralelo a cada uno de los
dispositivos de cierre.
Cable recomendado
Cable de 4 pares trenzado 6/10º.
Entorno
Si el lector está en un entorno cercano al mar o
en un ambiente salino, se recomienda barnizar los
bornes para prevenir la oxidación.
Fuentes de alimentación recomendadas
ADC335, ARD12 y BS60.
ANTIVANDÁLICO
Wiegand 26, 30 o 44 bits.
Conexión directa a control de
accesos o a controlador de puerta
INTBUSW.
Electrónica sellada con resina
epoxi.
Señalización visual y sonora.
Acero inoxidable
Dimensiones (A x A x P): 110 x 110 x 47 mm.
Empotramiento (A x A x P): 90 x 90 x 45 mm.
Tecnología: 125 kHz.
Protocolos: Marin / HD.
Alimentación: 12 Vcc.
Consumo: 100 mA.
Conforme a directiva europea R&TTE 99/5/CE y sus
normas armonizadas: ETS 301 489 y ETS
300-330-1-Ed
2001. Conforme a las normas CEM aplicables:
EN 50133, EN 50130-4.
ES
DGLPWLC - DGLPFNWLC - DGLIWLC - DGLIFWLC
Lector de tarjetas empotrable en acero inox. - Wiegand
MANUAL DE INSTALACIÓN
110
110
10,50
8910,50
45,502
245,50
10,5089
10,50
IP53
-30°C a +60°C
Certicado FCC CFR 47
conforme parte 15
Certicado CE
Certicado R&TTE
WEEE
Test de vibraciones

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ES
DGLIEWLC
Lector de tarjetas empotrable en acero inox. - Wiegand
MANUAL DE INSTALACIÓN
31 2 4
ON
OFF/OFF
26 bits
ON
Modo Centaur
OFF
Pull up 5V
ON/OFF
30 bits
OFF
Modo CDVI
ON
Pull up 12V
OFF/ON
44 bits
ON/ON
No usado
Puede controlar el buzzer
y los LED a través del
lector o un dispositivo
externo.
Pulls up 12 V o 5V
Para salidas de colector abierto,
existen dos posibilidades
:
El controlador o sistema de
accesos gestiona los LED y el
buzzer para programar otras
opciones.
Al presentar una tarjeta se
activa el LED naranja y se
emite un pitido. El controlador
CENTAUR puede gestionar los
LED y el buzzer para progra-
mar otras opciones.
Seleccione la tensión de salida
en función de la instalación
.
POSICIONAMIENTOS
DIPSWITCH 1 Y 2
POSICIONAMIENTO
DIPSWITCH 3
POSICIONAMIENTO
DIPSWITCH 4
4] ESQUEMA DE CABLEADO
Bornero (8 puntos)
+
Alimentación 12 Vcc
-0 V
HClock
D0 Data 0
D1 Data 1
BBuzzer
VLED verde
RLED rojo

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6] FORMATO DE SALIDA WIEGAND 26, 30 Y 44 BITS
Cronogramas
Salidas en colector abierto con pull ups internos de 1 K a +5 o +12 V según posición del dipswitch ST4.
Formato Wiegand 26 bits
Formato de 26 bits hexadecimal. La comunicación se efectúa por una conexión Wiegand de 26 bits
(señales: DATA1, DATA0 y CLOCK) en la que la trama se descompone de la siguiente manera:
1 - Primera paridad: 1 bit – paridad par de los primeros 12 bits.
Código del tag: 6 mitades de byte que representan los últimos 6 dígitos del código (4 bit = 1 dígito).
Cada byte se transmite desde el bit 7 al bit 0.
2 - Segunda paridad: 1 bit – paridad impar de los últimos 12 bits.
Bit 1 Bit 2 a bit 25 Bit 26
Paridad par de bit 2 a bit 13 Datos (24 bits)
Paridad impar de bit 14 a bit 25
Ejemplo: para una tarjeta donde el código hexadecimal es 0100166A37.
1 0001 0110 0110 1010 0011 0111 0
Paridad 1 1 6 6 A 3 7 Paridad 2
El código que se transmite en hexadecimal es 166A37.
Paridad 1: “0” si el número de 1 desde el bit 2 al bit 13 es par.
“1” si el número de 1 desde el bit 2 al bit 13 es impar.
Paridad 2: “0” si el número de 1 desde el bit 14 al bit 25 es impar.
“1” si el número de 1 desde el bit 14 al bit 25 es par.
Lógica 0
\DATA1
\CLOCK
\DATA0
50 μs 50 μs
2ms 2ms
Lógica 1
ES
DGLIEWLC
Lector de tarjetas empotrable en acero inox. - Wiegand
MANUAL DE INSTALACIÓN

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Formato Wiegand 30 bits
Formato de 30 bits hexadecimal. La comunicación se efectúa por una conexión Wiegand de 30 bits
(señales: DATA1, DATA0 y CLOCK) en la que la trama se descompone de la siguiente manera:
1 - Primera paridad: 1 bit – paridad par de los primeros 14 bits.
Código del tag: Se forma con 7 mitades de un byte.
Cada byte se transere desde el bit 7 al bit 0.
2 - Segunda paridad: 1 bit – paridad impar de los últimos 14 bits.
Bit 1 Bit 2 a bit 29 Bit 30
Paridad par de bit 2 a bit 15 Datos (28 bits) Paridad impar de bit 16 a bit 29
Ejemplo A: para una tarjeta cuyo código decimal es 689905 (en hexadecimal: A86F1).
1 0000 0000 1010 0110 0110 1111 0001 0
Paridad 1 0 0 A 8 6 F 1 Paridad 2
El código que se transmite en hexadecimal es 00A86F1.
Ejemplo B: para una tarjeta cuyo código en hexadecimal es 0100166A37
1 0000 0000 0001 0001 0110 1011 0110 1
Paridad 1 0 0 6 6 A 3 7 Paridad 2
El código que se transmite en hexadecimal es 0166A37.
Paridad 1: «0» si el número de 1 desde el bit 2 al bit 15 es par.
«1» si el número de 1 desde el bit 2 al bit 15 es impar.
Paridad 2: «0» si el número de 1 dede el bit 16 al bit 29 es impar.
«1» si el número de 1 desde el bit 16 al bit 29 es par.
Formato Wiegand 44 bits
Formato de 44 bits hexadecimal. La comunicación se efectúa por una conexión Wiegand de 44 bits (señales:
DATA1, DATA0 y CLOCK) en la que la trama se descompone de la siguiente manera:
Datos: SN de 10 dígitos en hexadecimal (MSByte en primer lugar).
Cada dígito en hexadecimal = 4 bit (MSBit en primer lugar).
LRC : 4 bit = O restringido entre los dígitos de los datos (MSBit en primer lugar).
Bit 1 a bit 40 Bit 41 a bit 44
SN de la tarjeta, MSBit primero LRC
Ejemplo A: para una tarjeta EM cuyo código en hexadecimal es 01001950C3.
0000 0000 0000 0000 0001 1001 0101 0000 1100 0011 0011
01001950C33
El código que se transmite en hexadecimal es 01001950C3.
ES
DGLIEWLC
Lector de tarjetas empotrable en acero inox. - Wiegand
MANUAL DE INSTALACIÓN

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7] NOTAS
ES
DGLIEWLC
Lector de tarjetas empotrable en acero inox. - Wiegand
MANUAL DE INSTALACIÓN

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EN
DGLIEWLC
Flush mount Stainless steel Proximity Card Readers - Wiegand
INSTALLATION MANUAL
3] MOUNTING KIT
Varistor Diax®
Tool
DGLIWLC 1 1
1] PRODUCTS OVERVIEW
2] RAPPELS ET RECOMMANDATIONS
Important
To protect the device from back - emf do not forget
to mount the varistor on the lock in parallel.
Recommended cables
4 twisted pairs 0.6 MM.
Environment
When in a humid area or close to a sea shore,
we recommend applying a varnish on the terminals
to avoid oxidation.
Suggested power supplies
ARD12 & BS60. These products must be powered
in 12Vdc and the power supply should be certied
EN60950-1:2006/A11:2009 standards and should
be designed to be a low power supply source.
HIGH RESISTANCE
TO VANDALISM
26, 30 or 44 bits Wiegand outputs.
Direct connection to the controller
or with the door controller (INTBUSW).
PCB sealed in epoxy.
Audible and visual feedback.
Stainless steel.
Dimensions (L x W x D): 110 x 110 x 47mm.
Back box (L x W x D): 90 x 90 x 45mm.
Technology: 125 kHz.
Multi card protocol reader.
Input voltage: 12V dc.
Consumption: 100mA.
Complies with European R&TTE directive 99/5/EC
and harmonised standards: ETS 301 489 and ETS
300-330-1-Ed 2001. Complies with applicable EMC
standards: EN 50133, EN 50130-4.
IP53
-30°C to +60°C
Certication FCC CFR 47
part 15 compliance
CE Certication
R&TTE certication
WEEE
Environmental
tests: vibrations
110
110
10,50
8910,50
45,502
245,50
10,5089
10,50

8
31 2 4
ON
OFF/OFF
26 bits
ON
Centaur Mode
OFF
Pull up 5V
ON/OFF
30 bits
OFF
CDVI Mode
ON
Pull up 12V
OFF/ON
44 bits
ON/ON
Non allocated
The buzzer and the LED’s
can be controlled by the
reader or by an external
device.
Pulls up 12 V or 5V
Open collector outputs:
The controller or the audio entry
system can manage the LED
and the buzzer to program
other operations.
In standard, when a card or
a tag is placed within the reader
the orange LED is activated
and the buzzer emit a tone.
The Centaur controller can
manage the LED and the buzzer
to program other operations.
Select the output voltage
according to the installation.
DIPSWITCH 1 & 2
POSITIONNING
DIPSWITCH 3
POSITIONNING
DIPSWITCH 4
POSITIONNING
EN
DGLIEWLC
Flush mount Stainless steel Proximity Card Readers - Wiegand
4] WIRING DIAGRAM
INSTALLATION MANUAL
Terminal (8 pins)
+Input voltage 12VDC
-0V
HClock
D0 Data 0
D1 Data 1
BBuzzer
VGreen LED
RRed LED

EN
DGLIEWLC
Flush mount Stainless steel Proximity Card Readers - Wiegand
INSTALLATION MANUAL
9
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6] OUTPUT FORMATS 26, 30 ET 44 BITS WIEGAND
Chronograms
Open collector output with internal pulls up 1K at +5V or +12V according the ST4 position.
26-bit Wiegand Output
Format 26-bit hexadecimal. The output format is 26-bit Wiegand (Signals: DATA1, DATA0 and CLOCK)
The frame is made of 26-bit and built as follow:
1 - First parity: 1-bit – even parity for the rst 12-bit
Code of the badge: 6 half byte represent the last 6 digit of the code (4bit = 1 digit of a code)
Each byte is transferred from bit 7 to bit 0.
2 - Second parity: 1-bit – odd parity for the last 12-bit
Bit 1 Bit 2 to bit 25 Bit 26
Even Parity on bit 2 to bit 13 Data (24 bit) Odd Parity on bit 14 to bit 25
Example: code of the badge is 0100166A37.
1 0001 0110 0110 1010 0011 0111 0
Parity 1 1 6 6 A 3 7 Parity 2
The code transmitted is in hexadecimal format 166A37
Parity 1: 0 if the number of 1 in bit 2 to bit 13 is even
1 if the number of 1 in bit 2 to bit 13 is odd
Parity 2: 0 if the number of 1 in bit 14 to bit 25 is odd
1 if the number of 1 in bit 14 to bit 25 is even
0 logic
\DATA1
\CLOCK
\DATA0
50 μs 50 μs
2ms 2ms
1 logic

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DGLIEWLC
Flush mount Stainless steel Proximity Card Readers - Wiegand
INSTALLATION MANUAL EN
30-bit Wiegand Output
Signals output in open collectors with pull up in 30-bit hexadecimal format. The output format from the
proximity reader is 30-bit wiegand (Signal: DATA1, DATA0 and CLOCK) and is structured as follow:
1 - First parity : 1 bit – even parity for the rst 14-bit
Code : A code is formed from 7 half byte.
Each byte is transferred from bit 7 to bit 0.
2 - Second parity: 1 bit – odd parity for the last 14-bit
Bit 1 Bit 2 à bit 29 Bit 30
Even Parity from bit 2 to bit 15
Data (28-bit)
Odd Parity from bit 16 to bit 29
Example A : Temic card decimal code: 689905 (in hexadecimal: A86F1).
1 0000 0000 1010 0110 0110 1111 0001 0
Parity 1 0 0 A 8 6 F 1 Parity 2
The code number of the card is 00A86F1 in hexadecimal
Example B : EM badge hexadecimal code: 0100166A37
1 0000 0000 0001 0001 0110 1011 0110 1
Parity 1 0 0 6 6 A 3 7 Parity 2
The code transmitted is in hexadecimal format 0166A37
Parity 1 : 0 if the number of 1 in bit 2 to bit 15 is even
1 if the number of 1 in bit 2 to bit 15 is odd
Parity 2 : 0 if the number of 1 in bit 16 to bit 29 is odd
1 if the number of 1 in bit 16 to bit 29 is even.
44- bit Wiegand Format Output
44-bit hexadecimal format. The output format from the proximity reader is 44-bit (Signal: DATA1, DATA0
and CLOCK) and is structured as follow:
1 - Data: 10 digit code number hexadecimal MSByte rst . Each hexadecimal digit = 4 bit, MSBit rst
2 - LRC : 4 bit = or restricted in between the digit of the data, MSBit rst.
Bit 1 à bit 40 Bit 41 à bit 44
Data MSBit rst LRC
Example A : EM badge hexadecimal code: 01001950C3.
0000 0000 0000 0000 0001 1001 0101 0000 1100 0011 0011
01001950C33
The code number of the card is: 01001950C3 in hexadecimal code.

DGLIEWLC
Flush mount Stainless steel Proximity Card Readers - Wiegand
INSTALLATION MANUAL EN
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7] NOTES
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Referencia:
Extranet:
Creator of electronic access solutions
cdvigroup.com
CDVI
FRANCE + EXPORT
Phone: +33 (0)1 48 91 01 02
Fax: +33 (0)1 48 91 21 21
CDVI AMERICAS
[CANADA - USA]
Phone: +1 (450) 682 7945
Fax: +1 (450) 682 9590
CDVI BENELUX
[BELGIUM - NETHERLAND - LUXEMBOURG]
Phone: +32 (0) 56 73 93 00
Fax: +32 (0) 56 73 93 05
CDVI
SUISSE
Phone: +41 (0)21 882 18 41
Fax: +41 (0)21 882 18 42
CDVI
CHINA
Phone: +86 (0)10 62414516
Fax: +86 (0)10 62414519
CDVI IBÉRICA
[SPAIN - PORTUGAL]
Phone: +34 (0)935 390 966
Fax: +34 (0)935 390 970
CDVI
ITALIA
Phone: +39 0331 97 38 08
Fax: +39 0331 97 39 70
CDVI
MAROC
Phone: +212 (0)5 22 48 09 40
Fax: +212 (0)5 22 48 34 69
CDVI SWEDEN
[SWEDEN - DENMARK - NORWAY - FINLAND]
Phone: +46 (0)31 760 19 30
Fax: +46 (0)31 748 09 30
CDVI UK
[UNITED KINGDOM - IRELAND]
Phone: +44 (0)1628 531300
Fax: +44 (0)1628 531003
CDVI Group
FRANCE (Headquarter/Siège social)
Phone: +33 (0)1 48 91 01 02
Fax: +33 (0)1 48 91 21 21
All the information contained within this document (photos, drawing, features, specications and dimensions)
could be perceptibly different and can be changed without prior notice.
Toda información contenida en este documento (diagramas, fotos, dimensiones o características) pueden ser diferentes y
cambiar sin previo aviso.
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