TDK-Lambda CN B110 DC-DC Converter, 24V dc/ 4.2A Output, 43 To 160 V dc Input, 100.8W, Through Hole, +100°C Max Temp
- RS Stock No.:
- 589-946
- Mfr. Part No.:
- CN100B110-24
- Brand:
- TDK-Lambda
Subtotal (1 unit)*
£122.97
(exc. VAT)
£147.56
(inc. VAT)
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- Shipping from 29 April 2026
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Units | Per unit |
---|---|
1 + | £122.97 |
*price indicative
- RS Stock No.:
- 589-946
- Mfr. Part No.:
- CN100B110-24
- Brand:
- TDK-Lambda
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
---|---|---|
Brand | TDK-Lambda | |
Output Voltage | 24V dc | |
Input Voltage Range | 43 To 160 V dc | |
Power Rating | 100.8W | |
Input Voltage Nominal | 43 To 160 V dc | |
Output Current | 4.2A | |
Mounting Type | Through Hole | |
Series | CN B110 | |
Minimum Temperature | -40°C | |
Maximum Temperature | +100°C | |
Select all | ||
---|---|---|
Brand TDK-Lambda | ||
Output Voltage 24V dc | ||
Input Voltage Range 43 To 160 V dc | ||
Power Rating 100.8W | ||
Input Voltage Nominal 43 To 160 V dc | ||
Output Current 4.2A | ||
Mounting Type Through Hole | ||
Series CN B110 | ||
Minimum Temperature -40°C | ||
Maximum Temperature +100°C | ||
- COO (Country of Origin):
- CN
The TDK-Lambda DC-DC converters are rugged quarter and half brick 50 to 300W CN-B110 series of isolated DC-DC converters operate from a very wide 43 to 160V input. With an input to baseplate isolation of 2,500Vac and 3,000Vac input to output, the series is designed for use on 72V or 110V nominal input rail power systems. In addition, the baseplate cooled modules meet the rolling stock IEC 61373 Category 1, Class B shock / vibration standards. The series is also designed to meet EN 45545-2 (Fire protection on railway vehicles) and EN 50155(1) (Electronic equipment in railroad vehicles) in certified systems.
Supports 72V and 110V input rail systems
Less board area needed
Easier system compliance
Simplified system testing
Can be paralleled for higher power applications
Greater useable power
Less board area needed
Easier system compliance
Simplified system testing
Can be paralleled for higher power applications
Greater useable power