Recom RHV2 DC-DC Converter, 24V dc/ 84mA Output, 5 → 24 V dc Input, 2W, Through Hole, +85°C Max Temp -40°C Min

Bulk discount available

Subtotal (1 tube of 10 units)*

£191.23

(exc. VAT)

£229.48

(inc. VAT)

Add to Basket
Select or type quantity
In Stock
  • 1 unit(s) ready to ship
Need more? Click ‘Check delivery dates’ to find extra stock and lead times.
Tube(s)
Per Tube
Per unit*
1 - 4£191.23£19.123
5 - 9£185.49£18.549
10 - 24£179.76£17.976
25 - 49£174.02£17.402
50 +£168.29£16.829

*price indicative

RS Stock No.:
199-5105
Mfr. Part No.:
RHV2-2424S/R20
Brand:
Recom
Find similar products by selecting one or more attributes.
Select all

Brand

Recom

Output Voltage

24V dc

Input Voltage Range

5 → 24 V dc

Power Rating

2W

Input Voltage Nominal

24 V dc

Output Current

84mA

Mounting Type

Through Hole

Isolated

Yes

Isolation Voltage

20kV

Length

45mm

Width

15mm

Series

RHV2

Load Regulation

0.1

Minimum Temperature

-40°C

Efficiency

0.78

Maximum Temperature

+85°C

COO (Country of Origin):
TW

RECOM DC-DC Converter, 200mV Pk-Pk Ripple and Noise, 20kV Isolation Voltage - RHV2 series - RHV2-2424S/R20


Keep your people and your kit safe using this isolated DC-DC converter from RECOM. It takes an input of 5 to 24V DC and outputs a steady 24V DC supply. This prevents voltage spikes from the input affecting the load. Thanks to a very high isolation of 20kV DC, it's suitable for use with high-voltage industrial applications. An operating temperature range of 40°C to +85°C means this converter is well suited to use in harsh industrial environments.

Features & Benefits


• Unregulated converter provides a constant amount of power
• Load regulation of 0.1 and line regulation of 0.012, with ripple and noise of 200 mV Pk-Pk, gives you a steady supply
• Compact SiP package measures 45 (L) x 15mm (W)
• Through-hole mounting style achieves a robust connection with your PCB

Applications


• X-ray equipment
• HVAC dust-extraction systems
• High vacuum monitoring

What's a SiP?


A SiP, or system-in-package, stacks several integrated circuits on top of each other. This enables designers to fit complex systems into a small footprint, saving you space when building your installation.

Related links