Altitude Operating Conditions

The characteristics in the table below apply to the modules BMX DAI 1614, BMX DAI 1614H, and BMX DAI 16142 for use at altitude up to 2000 m (6560 ft). When the modules operate above 2000 m (6560 ft), apply additional derating.

For detailed information, refer to chapter Operating and Storage Conditions.

General Characteristics

This table presents the general characteristics for the BMX DAI 1614 and BMX DAI 1614H modules:

Module type

100...120 VAC inputs

Operating temperature

BMX DAI 1614

0...60 ºC (32...140 ºF)

BMX DAI 1614H

-25...70 ºC (-13...158 ºF)

Nominal input values

Voltage

100...120 VAC

Current

10.1 mA (max) @ 47...53 Hz

11.9 mA (max) @ 57...63 Hz

Frequency

50/60Hz

Threshold input values

At 1

Voltage

≥ 79 V

Current

≥ 2 mA

At 0

Voltage

≤ 20 V

Current

≤ 1 mA

Frequency

47...63 Hz

Peak of current on enabling (at nominal U)

190 mA

Max channel input voltage

132 Vrms @ 63 Hz

Input impedance

at nominal U and f = 55 Hz

14 kΩ

Response time

Activation

10 ms

Deactivation

20 ms

Input type

Capacitive

Input type in compliance with IEC 61131-2 standard

Type 1

2-wire / 3-wire proximity sensor compatibility (IEC 60947-5-2 standard compliant)

2-wire (AC)

Reliability

MTBF for continuous operation in hours at ambient temperature 30 °C (86 °F)

970 000

Fuse type

Internal

None

External

Fast blow fuse of 0.25 A

Dielectric strength

Channel to X-bus

1780 V actual, 50 / 60 Hz for 1 min.

Channel to channel

1780 V actual, 50 / 60 Hz for 1 min.

Resistance of insulation

Channel to X-bus

>10 MΩ (below 500 VDC)

Channel to channel

>10 MΩ (below 500 VDC)

Sensor voltage: monitoring threshold

OK

> 85 V

Error

< 40 V

Sensor voltage: monitoring response time at 24 V (-15% ... +20%)

on appearance

20 ms < T < 50 ms

on disappearance

5 ms < T < 15 ms

Power consumption 3.3 V

typical

76 mA

maximum

126 mA

Open wire detection: current threshold

Ok

> 0.3 mA

Error

< 0.2 mA

Open wire shunt resistor recommendation

NOTE: The external shunt resistor is only required when the leakage current of the sensor (at OFF state) is less than 0.3 mA. Detailed resistor calculation is provided in the section Open Wire Detection Function.

200 KΩ (1W)

Power dissipation

4.3 W max.

This table presents the general characteristics for the BMX DAI 16142 module:

Module type

100...120 VAC inputs

Operating temperature

BMX DAI 16142

0...60 ºC (32...140 ºF)

Nominal input values

Voltage

100...120 VAC

Current

10.1 mA (max) @ 47...53 Hz

11.9 mA (max) @ 57...63 Hz

Frequency

50/60Hz

Threshold input values

At 1

Voltage

≥ 85 V @ 47...53 Hz

≥ 70 V @ 57...63 Hz

Current

≥ 4 mA

At 0

Voltage

≤ 55 V @ 47...53 Hz

≤ 48 V @ 57...63 Hz

Current

≤ 3 mA

Frequency

47...63 Hz

Peak of current on enabling (at nominal U)

190 mA

Max channel input voltage

132 Vrms @ 63 Hz

Input impedance

at nominal U

13.0 to 16.2 kΩ @ 47...53 Hz

11.0 to 13.4 kΩ @ 57...63 Hz

Response time

Activation

10 ms

Deactivation

20 ms

Input type

Capacitive

Input type in compliance with IEC 61131-2 standard

No type @ 47...53 Hz

Type 1 @ 57...63 Hz

2-wire / 3-wire proximity sensor compatibility (IEC 60947-5-2 standard compliant)

2-wire (AC)

Reliability

MTBF for continuous operation in hours at ambient temperature 30 °C (86 °F)

970 000

Fuse type

Internal

None

External

Fast blow fuse of 0.25 A

Dielectric strength

Channel to X-bus

1780 V actual, 50 / 60 Hz for 1 min.

Channel to channel

1780 V actual, 50 / 60 Hz for 1 min.

Resistance of insulation

Channel to X-bus

> 10 MΩ (below 500 VDC)

Channel to channel

> 10 MΩ (below 500 VDC)

Sensor voltage: monitoring threshold

OK

> 98 V @ 47...53 Hz

> 85 V @ 57...63 Hz

Error

< 40 V

Sensor voltage: monitoring response time at 24 V (-15% ... +20%)

on appearance

20 ms < T < 50 ms

on disappearance

5 ms < T < 15 ms

Power consumption 3.3 V

typical

76 mA

maximum

126 mA

Open wire detection: current threshold

Ok

> 0.3 mA

Error

< 0.2 mA

Open wire shunt resistor recommendation

NOTE: The external shunt resistor is only required when the leakage current of the sensor (at OFF state) is less than 0.3 mA. Detailed resistor calculation is provided in the section Open Wire Detection Function.

200 KΩ (1W)

Power dissipation

4.3 W max.