TES 1 Series Soldering and reflow considerations Lead free wave solder profile Specifications can be changed without notice! Make sure you are using the latest documentation, downloadable at www.tracopower.com Application note: TES1-soldering-considerations, page 1 of 1, rev.: 6.
TES 1 Series Testing Setup Input reflected-ripple current measurement test setup Component L C Component 4.7 µH 220 µH (ESR <1.0 Ohm at 100 kHz) Value — Aluminium Electrolytic Capacitor Peak-to-peak output ripple & noise measurement test setup +Vin +Out Single Output DC / DC Converter -Vin Cout -Out +Vin Copper Strip Resistive Scope Load Copper Strip +Out Copper Strip Cout Dual Output DC / DC Converter Com.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-0510 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 4.5V 40 5V 5.5V 30 20 40 60 80 100 % of Full Load 65 60 4.5 5.0 5.5 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-0511 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 4.5V 40 5V 5.5V 30 20 40 60 80 100 65 60 4.5 % of Full Load 5.0 5.5 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-0519 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 4.5V 40 5V 5.5V 30 20 40 60 80 100 65 60 4.5 % of Full Load 5.0 5.5 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-0512 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 4.5V 40 5V 5.5V 30 20 40 60 80 100 65 60 4.5 % of Full Load 5.0 5.5 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-0513 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 4.5V 40 5V 5.5V 30 20 40 60 80 100 65 60 4.5 % of Full Load 5.0 5.5 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-0521 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 4.5V 40 5V 5.5V 30 20 40 60 80 100 % of Full Load 65 60 4.5 5.0 5.5 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-0522 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 4.5V 40 5V 5.5V 30 20 40 60 80 100 65 60 4.5 % of Full Load 5.0 5.5 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-0523 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 4.5V 40 5V 5.5V 30 20 40 60 80 100 65 60 4.5 % of Full Load 5.0 5.5 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-1210 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 10.8V 40 12V 13.2V 30 20 40 60 80 100 % of Full Load 65 60 10.8 12.0 13.2 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-1211 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 10.2V 40 12V 13.2V 30 20 40 60 80 100 % of Full Load 65 60 10.8 12.0 13.2 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-1219 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 10.8V 40 12V 13.2V 30 20 40 60 80 100 % of Full Load 65 60 10.8 12.0 13.2 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-1212 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 10.8V 40 12V 13.2V 30 20 40 60 80 100 % of Full Load 65 60 10.8 12.0 13.2 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-1213 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 10.8V 40 12V 13.2V 30 20 40 60 80 100 % of Full Load 65 60 10.8 12.0 13.2 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-1221 models. 90 100 85 80 Efficiency(%) Efficiency(%) 90 70 60 50 80 75 70 10.8V 40 12V 13.2V 30 20 40 60 80 100 % of Full Load 65 60 10.8 12.0 13.2 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-1222 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 10.8V 40 12V 13.2V 30 20 40 60 80 100 % of Full Load 65 60 10.8 12.0 13.2 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-1223 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 10.8V 40 12V 13.2V 30 20 40 60 80 100 % of Full Load 65 60 10.8 12.0 13.2 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-2410 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 21.6V 40 24V 26.4V 30 20 40 60 80 100 % of Full Load 65 60 21.6 24.0 26.4 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-2411 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 21.6V 40 24V 26.4V 30 20 40 60 80 100 % of Full Load 65 60 21.6 24.0 26.4 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-2419 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 21.6V 40 24V 26.4V 30 20 40 60 80 100 % of Full Load 65 60 21.6 24.0 26.4 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-2412 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 21.6V 40 24V 26.4V 30 20 40 60 80 100 % of Full Load 65 60 21.6 24.0 26.4 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-2413 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 21.6V 40 24V 26.4V 30 20 40 60 80 100 % of Full Load 65 60 21.6 24.0 26.4 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-2421 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 21.6V 40 24V 26.4V 30 20 40 60 80 100 % of Full Load 65 60 21.6 24.0 26.4 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-2422 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 21.6V 40 24V 26.4V 30 20 40 60 80 100 % of Full Load 65 60 21.6 24.0 26.4 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Characteristic Curves All test conditions are at 25°C. The figures are identical for all TES 1-2423 models. 90 90 85 Efficiency(%) Efficiency(%) 80 70 60 50 80 75 70 21.6V 40 24V 26.4V 30 20 40 60 80 100 % of Full Load 65 60 21.6 24.0 26.4 Input Voltage(V) Efficiency vs. Output Current Efficiency vs. Input Voltage at full load Typical Output Ripple and Noise.
TES 1 Series Packing information Single output 184.0 13.8 11.0 unit : mm 10 PCS per TUBE Dual output 184.0 13.8 11.0 unit : mm 10 PCS per TUBE Specifications can be changed without notice! Make sure you are using the latest documentation, downloadable at www.tracopower.com Application note: TES1-packing-information, page 1 of 1, rev.: 2.
TES 1 Series Solder Pad Layout Suggested Solder Pad Layout Single output Dual output 7.62 [0.30] 7.62 [0.30] 1.7 [0.07] 1.7 [0.07] 10.6 [0.42] 10.6 [0.42] 2.54 [0.10] 2.54 [0.10] 1.0 [0.04] 1.0 [0.04] All dimensions in mm (inches) Toleracne: x.x ±0.5mm (x.xx ±0.02“) x.xx ±0.25mm (x.xxx ±0.01“) Pin pitch tolerance: ±0.25mm (±0.01“) Pin dimension tolerance: ±0.1mm (±0.004“) Specifications can be changed without notice! Make sure you are using the latest documentation, downloadable at www.