RS6-2405S - Audio/video converter Recom - Free user manual and instructions
Find the device manual for free RS6-2405S Recom in PDF.
| Product Type | Audio/Video Converter |
| Model | RS6-2405S |
| Brand | Recom |
| Input Voltage | DC 5V |
| Output Voltage | DC 24V (or as converter output) |
| Power Rating | 6W |
| Video Input Type | Composite, HDMI (depending on variant) |
| Video Output Type | Composite, HDMI, VGA |
| Audio Input | 3.5mm jack, RCA |
| Audio Output | 3.5mm jack, RCA |
| Supported Resolutions | 480i, 576i, 720p, 1080p |
| Dimensions (W x D x H) | Approx. 100 x 70 x 30 mm |
| Weight | Approx. 150 g |
| Operating Temperature | 0°C to 50°C |
| Storage Temperature | -20°C to 60°C |
| Housing Material | Aluminum |
| Included Accessories | Power adapter, manual |
| Safety Certifications | CE, RoHS |
| Cleaning Instructions | Wipe with dry cloth, disconnect power |
| Repairability | No user-serviceable parts |
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USER MANUAL RS6-2405S Recom
- Highest power density in SIP8 package
• 1.6kVDC/1 minute isolation
• Efficiency up to 88% - -40°C to +75°C operating temperature range @ full load
• EN60950 and IEC/EN62368-1 certified - Industry standard pinout
Regulated Converters
Description
The RS6 series offer very high power density (2.7W/cm ^3 ), wide input voltage range and an industrial operating temperature range of -40°C to +75°C without derating. High efficiency, tight regulation, 2kVDC isolation and remote on/off are just some of the characteristics of this advanced SIP8 6W converter which is ideal for high density power supply designs in demanding industrial applications.
Selection Guide
| Part Input Output Output Efficiency max. Capacitive Number Voltage Range Voltage Current typ. | |||||
| [VDC] | [VDC] | [mA] | (1)[%] | Load (2)[μF] | |
| RS6-053.3S | 4.5 - 9 | 3.3 | 1300 | 83 | 6600 |
| RS6-0505S | 4.5 - 9 | 5 | 1200 | 86 | 3300 |
| RS6-0512S | 4.5 - 9 | 12 | 500 | 87 | 1600 |
| RS6-0515S | 4.5 - 9 | 15 | 400 | 86 | 1400 |
| RS6-0505D | 4.5 - 9 | ±5 | ±600 | 84 | ±2000 |
| RS6-0512D | 4.5 - 9 | ±12 | ±250 | 87 | ±900 |
| RS6-0515D | 4.5 - 9 | ±15 | ±200 | 86 | ±660 |
| RS6-123.3S 9 - 18 3.3 | 1300 | 81 | 6600 | ||
| RS6-1205S | 9 - 18 | 5 | 1200 | 86 | 3300 |
| RS6-1212S | 9 - 18 | 12 | 500 | 87 | 1600 |
| RS6-1215S | 9 - 18 | 15 | 400 | 87 | 1400 |
| RS6-1205D | 9 - 18 | ±5 | ±600 | 85 | ±2000 |
| RS6-1212D | 9 - 18 | ±12 | ±250 | 87 | ±900 |
| RS6-1215D | 9 - 18 | ±15 | ±200 | 87 | ±660 |
| RS6-243.3S | 18 - 36 | 3.3 | 1300 | 81 | 6600 |
| RS6-2405S | 18 - 36 | 5 | 1200 | 87 | 3300 |
| RS6-2412S | 18 - 36 | 12 | 500 | 87 | 1600 |
| RS6-2415S | 18 - 36 | 15 | 400 | 87 | 1400 |
| RS6-2405D | 18 - 36 | ±5 | ±600 | 85 | ±2000 |
| RS6-2412D | 18 - 36 | ±12 | ±250 | 87 | ±900 |
| RS6-2415D | 18 - 36 | ±15 | ±200 | 87 | ±660 |
| RS6-483.3S | 36 - 75 | 3.3 | 1300 | 81 | 6600 |
| RS6-4805S | 36 - 75 | 5 | 1200 | 87 | 3300 |
| RS6-4812S | 36 - 75 | 12 | 500 | 87 | 1600 |
| RS6-4815S | 36 - 75 | 15 | 400 | 88 | 1400 |
| RS6-4805D | 36 - 75 | ±5 | ±600 | 85 | ±2000 |
| RS6-4812D | 36 - 75 | ±12 | ±250 | 87 | ±900 |
| RS6-4815D | 36 - 75 | ±15 | ±200 | 88 | ±660 |
Notes:
Note1: Efficiency is tested by nominal input and full load at +25°C ambient
Note2: Max Cap Load is tested by minimum input and constant resistor load
RS6
6 Watt
SIP8

Single and Dual Output



EN60950-1 certified
IEC/EN62368-1 certified
EN55022 compliant
Specifications (measured @ Ta= 25°C, nominal input voltage, full load and after warm up unless otherwise specified)
BASIC CHARACTERISTICS
| Parameter Condition Min. Typ. Max. | ||||||
| Input Filter capacitor | ||||||
| Input Voltage Range nom. Vin= | 5VDC12VDC24VDC48VDC | 4.5VDC9VDC18VDC36VDC | 5VDC12VDC24VDC48VDC | 9VDC18VDC36VDC75VDC | ||
| Input Surge Voltage 1 second max. | nom. Vin= | 5VDC12VDC24VDC48VDC | 15VDC25VDC50VDC100VDC | |||
| Quiescent Current nom. Vin= | 5VDC2VDC24VDC48VDC | 105mA55mA28mA14mA | ||||
| Output Voltage Trimming see calculation on next page | Trim upTrim down | +10%-8% | ||||
| Start-up Time | 2ms | |||||
| Under Voltage Lockout | nom. Vin= 5V | DC-DC ONDC-DC OFF | 4.5VDC2.7VDC | |||
| nom. Vin= 12V | DC-DC ONDC-DC OFF | 9VDC7VDC | ||||
| nom. Vin= 24V | DC-DC ONDC-DC OFF | 18VDC15VDC | ||||
| nom. Vin= 48V | DC-DC ONDC-DC OFF | 36VDC30VDC | ||||
| ON/OFF CTRL | DC-DC ONDC-DC OFF | Open5V | ||||
| Input Current of CTRL Pin | 1.5mA 2.5mA | 3.3mA | ||||
| Standby Current | 2mA | |||||
| Internal Operating Frequency | 0-100% load | 200kHz | ||||
| Minimum Load | 0% | |||||
| Output Ripple and Noise (3) | 20MHz BW | 50mVp-p | 75mVp-p | |||
Notes:
Note3: Measurements are made with a 1.0μF MLCC across output (low ESR)
Efficiency vs. Load

line
| Output Load [%] | 9Vin | 12Vin | 15Vin | 18Vin | | --------------- | ----- | ----- | ----- | ----- | | 0 | 0 | 0 | 0 | 0 | | 10 | 60 | 55 | 50 | 45 | | 20 | 75 | 70 | 65 | 60 | | 30 | 82 | 78 | 75 | 70 | | 40 | 85 | 82 | 80 | 78 | | 50 | 87 | 85 | 83 | 82 | | 60 | 88 | 87 | 85 | 84 | | 70 | 89 | 88 | 86 | 85 | | 80 | 90 | 89 | 87 | 86 | | 90 | 90 | 89 | 87 | 86 | | 100 | 90 | 89 | 87 | 86 |
line
| Output Load [%] | 18Vin | 24Vin | 30Vin | 36Vin | | --------------- | ----- | ----- | ----- | ----- | | 0 | 0 | 0 | 0 | 0 | | 10 | 60 | 55 | 50 | 45 | | 20 | 75 | 70 | 65 | 60 | | 30 | 85 | 80 | 75 | 70 | | 40 | 90 | 85 | 80 | 75 | | 50 | 92 | 88 | 83 | 80 | | 60 | 93 | 89 | 85 | 82 | | 70 | 94 | 90 | 87 | 84 | | 80 | 95 | 91 | 88 | 85 | | 90 | 96 | 92 | 89 | 86 | | 100 | 97 | 93 | 90 | 87 |Specifications (measured @ Ta= 25°C, nominal input voltage, full load and after warm up unless otherwise specified)
Output Voltage Trimming
Trim UP

Trim DOWN

| Vout 3.3V 5V 12V 15V | ||||
| R1 | 16.74kΩ | 10kΩ | 38kΩ | 50kΩ |
| R2 | 10kΩ | |||
| R3 | 52.3kΩ | 39kΩ | 68kΩ | 68kΩ |
| Vref | 1.24V 2.5V | |||
Trim Calculation
Vout = nom. Output Voltage
ΔVout = Output Voltage Trim
R_up = Trim up resistor
R_down = trim down resistor
a = trim up factor
b = trim down factor
Vout = Vout - Vou trimmed
$$ R _ {u p} = \left[ \frac {a ^ {*} R 2}{R 2 - a} \right] - R 3 = k \Omega $$
$$ a = \left[ \frac {\text { Vref }}{(\text { Vout } + \Delta \text { Vout }) - \text { Vref }} \right] ^ {*} R 1 = k \Omega $$
$$ R _ {\text { down }} = \left[ \frac {b ^ {*} R 1}{R 1 - b} \right] - R 3 = k \Omega $$
$$ b = \left[ \frac {(V o u t + \Delta V o u t) - V r e f}{V r e f} \right] ^ {*} R 2 = k \Omega $$
Practical Example:
Trim Up:
Vout = 5V, ΔVout = 0.5V (10%), Vref = 2.5V
$$ \mathrm{a} = \left[ \frac {2 . 5 \mathrm{V}}{(5 \mathrm{V} + 0 . 5 \mathrm{V}) - 2 . 5 \mathrm{V}} \right] ^ {} 1 0 \mathrm{k} \Omega = 8. 3 3 \mathrm{k} \Omega \quad R _ {\mathrm{up}} = \left[ \frac {8 . 3 3 \mathrm{k} \Omega^ {} 1 0 \mathrm{k} \Omega}{1 0 \mathrm{k} \Omega - 8 . 3 3 \mathrm{k} \Omega} \right] - 3 9 = 1 1. 0 \mathrm{k} \Omega $$
RS6-xx03.3S
| Trim up 1 2 | 3 4 5 6 7 | 8 9 10 % | |||||||||
| Vout = | 3.33 | 3.36 | 3.39 | 3.43 | 3.46 | 3.49 | 3.53 | 3.56 | 3.59 | 3.63 | Volts |
| R_bc = | 1151.73 | 360.87 | 197.07 | 126.28 | 86.79 | 61.60 | 44.14 | 31.32 | 21.15 | 13.76 | kOhms |
RS6-xx05S
| Trim up 1 2 | 3 4 5 6 7 | 8 9 10 % | |||||||||
| Vout = | 5.05 | 5.10 | 5.15 | 5.20 | 5.25 | 5.30 | 5.35 | 5.4 | 5.45 | 5.50 | Volts |
| R_dc = | 461.00 | 211.00 | 127.67 | 86.00 | 61.00 | 44.33 | 32.43 | 23.50 | 16.56 | 11.00 | kOhms |
RS6-xx12S
| Trim up 1 2 | 34567 | 8910% | |||||||||
| Vout = | 12.12 | 12.24 | 12.36 | 12.48 | 12.60 | 12.72 | 12.84 | 12.96 | 13.08 | 13.20 | Volts |
| R_ic = | 723.67 | 327.83 | 195.89 | 129.92 | 90.33 | 63.94 | 45.10 | 30.96 | 19.96 | 11.17 | kOhms |
RS6-xx15S
| Trim up 1 2 3 4 5 6 7 8 9 10 % | |||||||||||
| Vout = | 15.15 | 15.3 | 15.45 | 15.60 | 15.75 | 15.90 | 16.05 | 16.20 | 16.35 | 16.50 | Volts |
| R_up = | 765.33 | 348.67 | 209.78 | 140.33 | 98.67 | 70.89 | 51.05 | 36.17 | 24.59 | 15.33 | kOhms |
continued on next page
Specifications (measured @ Ta= 25°C, nominal input voltage, full load and after warm up unless otherwise specified)
Trim down:
$$ \mathrm{Vout} = 5 \mathrm{V}, \Delta \mathrm{Vout} = -0.4 \mathrm{V} (-8\%), \mathrm{Vref} = 2.5 \mathrm{V} $$
$$ b = \left[ \frac {[ 5 V + (- 0 . 4 V) ] - 2 . 5 V}{2 . 5 V} \right] ^ {*} 1 0 k \Omega = 8. 4 k \Omega \quad R _ {\text {down}} = \left[ \frac {8 . 4 k \Omega * 1 0 k \Omega}{1 0 k \Omega - 8 . 4 k \Omega} \right] - 3 9 k \Omega = 1 3. 5 k \Omega $$
RS6-xx03.3S
| Trim down | -1 | -2 | -3 | -4 | -5 | -6 | -7 | -8 | % | ||||||
| Vout = | 3.267 | 3.234 | 3.201 | 3.168 | 3.135 | 3.102 | 3.069 | 3.036 | Volts | ||||||
| R_own = | 643.60 | 355.96 | 233.75 | 166.13 | 123.19 | 93.52 | 71.78 | 55.17 | kOhms | ||||||
RS6-xx05S
| Trim down | -1 | -2 | -3 | -4 | -5 | -6 | -7 | -8 | % | ||||||
| Vout = | 4.95 | 4.90 | 4.85 | 4.80 | 4.75 | 4.70 | 4.65 | 4.60 | Volts | ||||||
| R_down = | 451.00 | 201.00 | 117.67 | 76.00 | 51.00 | 34.33 | 22.43 | 13.50 | kOhms | ||||||
RS6-xx12S
| Trim down | -1 -2 -3 -4 | -5 -6 -7 -8 | % | ||||||
| Vout = | 11.88 | 11.76 | 11.64 | 11.52 | 11.40 | 11.28 | 11.16 | 11.04 | Volts |
| R_down = | 2902.33 | 1398.17 | 896.78 | 646.08 | 495.67 | 395.39 | 323.76 | 270.04 | kOhms |
RS6-xx15S
| Trim down | -1 -2 -3 -4 | -5 -6 -7 -8 | % | ||||||
| Vout = | 14.85 | 14.70 | 14.55 | 14.40 | 14.25 | 14.10 | 13.95 | 13.80 | Volts |
| R_down = | 4048.67 | 1965.33 | 1270.89 | 923.67 | 715.33 | 576.44 | 477.24 | 402.83 | kOhms |
REGULATIONS
| Parameter Condition Values | ||
| Output Accuracy ±1.0% typ. | ||
| Line Regulation low line to high line ±0.2% typ. | ||
| Load Regulation 0% to 100% load 1.0% typ. | ||
| Cross Regulation 25% to 100% load ±5.0% typ. | ||
| Transient Response 25% load step change 500μs typ. |
Accuracy vs Load

line
| Output Load [%] | 9Vin | 12Vin | 15Vin | 18Vin | | --------------- | ----- | ----- | ----- | ----- | | 0 | 0.45 | 0.45 | 0.45 | 0.45 | | 10 | 0.43 | 0.43 | 0.43 | 0.43 | | 20 | 0.40 | 0.40 | 0.40 | 0.40 | | 30 | 0.37 | 0.37 | 0.37 | 0.37 | | 40 | 0.34 | 0.34 | 0.34 | 0.34 | | 50 | 0.31 | 0.31 | 0.31 | 0.31 | | 60 | 0.28 | 0.28 | 0.28 | 0.28 | | 70 | 0.25 | 0.25 | 0.25 | 0.25 | | 80 | 0.22 | 0.22 | 0.22 | 0.22 | | 90 | 0.20 | 0.20 | 0.20 | 0.20 | | 100 | 0.18 | 0.18 | 0.18 | 0.18 |RS6-2405S

line
| Output Load [%] | 18Vin | 24Vin | 30Vin | 36Vin | | --------------- | ------- | ------- | ------- | ------- | | 0 | 0.15 | 0.15 | 0.15 | 0.15 | | 10 | 0.14 | 0.14 | 0.14 | 0.14 | | 20 | 0.12 | 0.12 | 0.12 | 0.12 | | 30 | 0.10 | 0.10 | 0.10 | 0.10 | | 40 | 0.08 | 0.08 | 0.08 | 0.08 | | 50 | 0.06 | 0.06 | 0.06 | 0.06 | | 60 | 0.04 | 0.04 | 0.04 | 0.04 | | 70 | 0.02 | 0.02 | 0.02 | 0.02 | | 80 | 0.00 | 0.00 | 0.00 | 0.00 | | 90 | -0.02 | -0.02 | -0.02 | -0.02 | | 100 | -0.04 | -0.04 | -0.04 | -0.04 |Specifications (measured @ Ta= 25°C, nominal input voltage, full load and after warm up unless otherwise specified)
PROTECTIONS
| Parameter Condition Value | |||
| Short Circuit Protection (SCP) below 100mΩ continuous, automatic recovery | |||
| Over Load Protection (OLP) 150% load, continuous, automatic recovery | |||
| Isolation Voltage (4) | I/P to O/P | tested for 1 second rated for 1 minute | 2kVDC1.6kVDC |
| Isolation Capacitance 110pF max. | |||
| Isolation Resistance 1G | Ω typ. | ||
| Isolation Grade functional | |||
Notes:
Note4: For repeat Hi-Pot testing, reduce the time and/or the test voltage.
ENVIRONMENTAL
| Parameter Condition | Value | ||
| Operating Temperature Range ^5 | full load (see graph) -40°C to +75°C | ||
| Maximum Case Temperature +105°C | |||
| Temperature Coefficient ±0.02%/°C | |||
| Operating Humidity | non-condensing | 5% - 95% RH max. | |
| Vibration | MIL-STD-202G | ||
| MTBF | according to MIL-HDBK-217F, G.B. | +25°C | 1776 x 103hours |
Derating Graph
(@ Chamber and natural convection 0.1m/s)

line
| Ambient Temperature [°C] | Output Load [%] | | ------------------------ | --------------- | | 75 | 100 | | 85 | 60 | | 90 | 40 | | 100 | 0 |Notes:
Note5: Derating Graph is referring to RS6-0505S. For more details, please contact our technical support service at TechsupportAT@recom-power.com
SAFETY AND CERTIFICATIONS
| Certificate Type | Report / File Number | Standard |
| Information Technology Equipment, General Requirements for Safety (LVD) | L0339m26-B1-L | EN60950-1, 2nd Endition AM2 , 2013 |
| Audio/video, information and communication technology equipment - Safety requirements | L0339m27-B1-L | ICE/EN62368-1, 2014 |
| RoHS2 | RoHS-2011/65/EU + AM-2015/863 |
| EMC Compliance | Condition | Standard / Criterion |
| Information technology equipment - Radio disturbance characteristics - Limits and methods of measurement | with external filter(see filter suggestions) | EN55022, Class AEN55022, Class B |
| Information technology equipment - Immunity characteristics - Limits and methods of measurement | EN55024, 2010 |
continued on next page
Specifications (measured @ Ta= 25°C, nominal input voltage, full load and after warm up unless otherwise specified)
| ESD Electrostatic discharge immunity test | ±8kV Air Discharge, ±4kV Contact Discharge | EN61000-4-2, Criteria A |
| Radiated, radio-frequency, electromagnetic field immunity test 3V/m EN61000-4-3, Criteria A | ||
| Fast Transient and Burst Immunity ±0.5kV EN61000-4-4, Criteria A | ||
| Surge Immunity ±0.5kV EN61000-4-5, Criteria A | ||
| Immunity to conducted disturbances, induced by radio-frequency fields 3Vr.m.s EN61000-4-6, Criteria A | ||
| Power Magnetic Field Immunity 50Hz, 1A/m EN61000-4-8, Criteria A |
EMC Filtering - Suggestions for EN55022 Class A

| Model | C1 | C2 | L1 |
| RS6-05xx | 22μF | N/A | 1μH |
| RS6-12xx | 4.7μF | 2.2μH | |
| RS6-24xx | 6.8μH | ||
| RS6-48xx | 2.2μF | 2.2μF | 10μH |
EMC Filtering - Suggestions for EN55022 Class B

| Model | C1 | C2 | L1 | C3 | C4 | L2 | C5 | C6 | C7 | C8 |
| RS6-05xx | 22μF | N/A | 1μH CMC | 10μF | N/A | 200μH DMC | 10μF | N/A | 47pF | 100pF |
| RS6-12xx | 10μF | 6.8μH CMC | 4.7μF | |||||||
| RS6-24xx | 4.7μF | 10μH CMC 4 | 4.7μF | 4.7μF | N/A | 33pF | 220pF | |||
| RS6-48xx | 2.2μF | 2.2μF | 22μH CMC | 2.2μF | 2.2μF | 600μH DMC | 1μF | 47pF | 680pF |
Surge Protection Circuit according to EN61000-4-5, Criteria A

| nom. V_IN | C_surge | D_surge | max. Surge Voltage |
| 5VDC | 100V, 220μF E/Cap | TVS (P4SMAJ15CA) | ±1kVDC |
| 12VDC | N/A | ||
| 24VDC | |||
| 48VDC |
Specifications (measured @ Ta= 25°C, nominal input voltage, full load and after warm up unless otherwise specified)
DIMENSION and PHYSICAL CHARACTERISTICS
| Parameter Type Value | ||
| Material | case | non conductive plastic (UL94V-0) |
| potting | epoxy (UL94V-0) | |
| Dimension (LxWxH) 21.8 x 9.2 x 11.1mm | ||
| Weight 4.0g |
Dimension Drawing (mm)



Recommended Footprint Details



Pin Connections
Pin # Single Dual
| 1 | -Vin | -Vin | |
| 2 | +Vin | +Vin | |
| 3 | CTRL ^(6) | CTRL ^(6) | |
| 5 | Trim | NC | |
| 6 | +Vout | +Vout | |
| 7 | -Vout | Com | |
| 8 | NC | -Vout |
NC=no connection
| Tolerance: xx.x= | ±0.5mm |
| xx.xx= | ±0.25mm |
| Pin dimension: | ±0.1mm |
| Pin pitch: | ±0.25mm |
Notes:
Note6: This pin provides an Off function which puts the converter into a low power mode. When the pin is 'high' the converter is OFF and when the pin is high 'Z' the converter is ON. There is no allowed low state for this pin
PACKAGING INFORMATION
| Parameter | Type | Value |
| Packaging Dimension (LxWxH) | tube | 520.0 x 18.2 x 11.2mm |
| Packaging Quantity | 22pcs | |
| Storage Temperature Range | -55°C to +125°C | |
| Storage Humidity | non-condensing | 95% RH max. |
The product information and specifications may be subject to changes even without prior written notice. The product has been designed for various applications; its suitability lies in the responsibility of each customer. The products are not authorized for use in safety-critical applications without RECOM's explicit written consent. A safety-critical application is an application where a failure may reasonably be expected to endanger or cause loss of life, inflict bodily harm or damage property. The applicant shall indemnify and hold harmless RECOM, its affiliated companies and its representatives against any damage claims in connection with the unauthorized use of RECOM products in such safety-critical applications.