Potentia aestimata: 10-800W;
Materiae substrati: BeO, AlN, Al₂O₃
Resistentia nominalis valor: 100 Ω (10-3000 Ω optional)
Tolerantia resistentiae: ± 5%, ± 2%, ± 1%
Coefficiens temperaturae: <150ppm/℃
Temperatura operationis: -55~+150℃
Tegumentum flangis: nickel vel argentum ad libitum
ROHS norma: Obsequens cum
Norma applicabilis: Q/RFTYTR001-2022
Longitudo plumbi: L ut in scheda specificationis specificatur (secundum requisita emptoris aptari potest)
| Potestas W | capacitas PF@100Ω | Dimensiones (unitas: mm) | Materia Substrati | Configuratio | Scheda Datorum (PDF) | ||||||||||
| A | B | C | D | E | H | G | W | L | J | Φ | |||||
| 10 | 2.4 | 7.7 | 5.0 | 5.1 | 2.5 | 1.5 | 2.5 | 3.5 | 1.0 | 4.0 | / | 3.1 | AlN | FIGURA II | RFTXXN-10RM7750 |
| 1.2 | / | BeO | FIGURA II | RFTXX-10RM7750 | |||||||||||
| Potestas W | capacitas PF@100Ω | Dimensiones (unitas: mm) | Materia Substrati | Configuratio | Scheda Datorum (PDF) | ||||||||||
| A | B | C | D | E | H | G | W | L | J | Φ | |||||
| 20 | 2.3 | 9.0 | 4.0 | 7.0 | 4.0 | 0.8 | 1.8 | 2.6 | 1.0 | 4.0 | / | 2.0 | AlN | FIGURA II | RFTXXN-20RM0904 |
| 1.2 | / | BeO | FIGURA II | RFTXX-20RM0904 | |||||||||||
| 2.3 | 11.0 | 4.0 | 7.6 | 4.0 | 0.8 | 1.8 | 2.6 | 1.0 | 3.0 | / | 2.0 | AlN | FIGURA I | RFTXXN-20RM1104 | |
| 1.2 | / | BeO | FIGURA I | RFTXX-20RM1104 | |||||||||||
| 2.3 | 13.0 | 4.0 | 9.0 | 4.0 | 0.8 | 1.8 | 2.6 | 1.0 | 4.0 | 2.0 | AlN | FIGURA I | RFTXXN-20RM1304 | ||
| 1.2 | / | BeO | FIGURA I | RFTXX-20RM1304 | |||||||||||
| Potestas W | capacitas PF@100Ω | Dimensiones (unitas: mm) | Materia Substrati | Configuratio | Scheda Datorum (PDF) | ||||||||||
| A | B | C | D | E | H | G | W | L | J | Φ | |||||
| 30 | 1.2 | 9.0 | 4.0 | 7.0 | 4.0 | 0.8 | 1.8 | 2.6 | 1.0 | 4.0 | / | 2.0 | BeO | FIGURA II | RFTXX-30RM0904 |
| 1.2 | 13.0 | 4.0 | 9.0 | 4.0 | 0.8 | 1.8 | 2.6 | 1.0 | 4.0 | / | 2.0 | BeO | FIGURA I | RFTXX-30RM1304 | |
| 2.9 | 13.0 | 6.0 | 10.0 | 6.0 | 1.5 | 2.5 | 3.3 | 1.0 | 5.0 | / | 3.2 | AlN | FIGURA II | RFTXXN-30RM1306 | |
| 2.6 | / | BeO | FIGURA II | RFTXX-30RM1306 | |||||||||||
| 1.2 | 13.0 | 6.0 | 10.0 | 6.0 | 1.5 | 5.0 | 5.9 | 1.0 | 5.0 | / | 3.2 | BeO | FIGURA II | RFTXX-30RM1306F | |
| 2.9 | 20.0 | 6.0 | 14.0 | 6.0 | 1.5 | 2.5 | 3.3 | 1.0 | 5.0 | / | 3.2 | AlN | FIGURA I | RFTXXN-30RM2006 | |
| 2.6 | / | BeO | FIGURA I | RFTXX-30RM2006 | |||||||||||
| 1.2 | 20.0 | 6.0 | 14.0 | 6.0 | 1.5 | 5.0 | 5.9 | 1.0 | 5.0 | / | 3.2 | BeO | FIGURA I | RFTXX-30RM2006F | |
| Potestas W | capacitas PF@100Ω | Dimensiones (unitas: mm) | Materia Substrati | Configuratio | Scheda Datorum (PDF) | ||||||||||
| A | B | C | D | E | H | G | W | L | J | Φ | |||||
| 60W | 2.9 | 13.0 | 6.0 | 10.0 | 6.0 | 1.5 | 2.5 | 3.3 | 1.0 | 5.0 | / | 3.2 | AlN | FIGURA II | RFTXXN-60RM1306 |
| 2.6 | / | BeO | FIGURA II | RFTXX-60RM1306 | |||||||||||
| 1.2 | 13.0 | 6.0 | 10.0 | 6.0 | 1.5 | 5.0 | 5.9 | 1.0 | 5.0 | / | 3.2 | BeO | FIGURA II | RFTXX-60RM1306F | |
| 2.9 | 20.0 | 6.0 | 14.0 | 6.0 | 1.5 | 2.5 | 3.3 | 1.0 | 5.0 | / | 3.2 | AlN | FIGURA I | RFTXXN-60RM2006 | |
| 2.6 | / | BeO | FIGURA I | RFTXX-60RM2006 | |||||||||||
| 1.2 | 20.0 | 6.0 | 14.0 | 6.0 | 1.5 | 5.0 | 5.9 | 1.0 | 5.0 | / | 3.2 | BeO | FIGURA I | RFTXX-60RM2006F | |
| Potestas W | capacitas PF@100Ω | Dimensiones (unitas: mm) | Materia Substrati | Configuratio | Scheda Datorum (PDF) | ||||||||||
| A | B | C | D | E | H | G | W | L | J | Φ | |||||
| centum | 2.6 | 16.0 | 6.0 | 10.0 | 6.0 | 1.5 | 2.5 | 3.3 | 1.0 | 5.0 | / | 3.2 | BeO | FIGURA II | RFTXX-100RM1306 |
| 2.1 | 20.0 | 6.0 | 14.0 | 8.9 | 1.5 | 3.0 | 3.5 | 1.0 | 5.0 | / | 3.2 | AlN | FIGURA I | RFTXXN-100RJ2006B | |
| 2.1 | 16.0 | 6.0 | 13.0 | 8.9 | 1.0 | 2.5 | 3.0 | 1.0 | 5.0 | / | 2.1 | AlN | FIGURA I | RFTXXN-100RJ1606B | |
| 3.9 | 22.0 | 9.5 | 14.2 | 6.35 | 1.5 | 2.5 | 3.3 | 1.4 | 6.0 | / | 4.0 | BeO | FIGURA I | RFTXX-100RM2295 | |
| 5.6 | 16.0 | 10.0 | 13.0 | 10.0 | 1.5 | 2.5 | 3.3 | 2.4 | 6.0 | / | 3.2 | BeO | FIGURA IV | RFTXX-100RM1610 | |
| 5.6 | 23.0 | 10.0 | 17.0 | 10.0 | 1.5 | 2.5 | 3.3 | 2.4 | 6.0 | / | 3.2 | BeO | FIGURA III | RFTXX-100RM2310 | |
| 5.6 | 24.8 | 10.0 | 18.4 | 10.0 | 3.0 | 4.0 | 5.0 | 2.4 | 6.0 | / | 3.5 | BeO | FIGURA I | RFTXX-100RM2510 | |
| 4.0 | 4.5 | 5.3 | / | FIGURA I | RFTXX-100RM2510B | ||||||||||
| Potestas | Capacitas PF@100Ω | Dimensiones (unitas: mm) | Substratum Materia | Configuratio | Scheda Datorum (PDF) | ||||||||||
| A | B | C | D | E | H | G | W | L | J | Φ | |||||
| 150W | 3.9 | 22.0 | 9.5 | 14.2 | 6.35 | 1.5 | 2.5 | 3.3 | 1.4 | 6.0 | / | 4.0 | BeO | FIGURA I | RFTXX-150RM2295 |
| 5.6 | 16.0 | 10.0 | 13.0 | 10.0 | 1.5 | 2.5 | 3.3 | 2.4 | 6.0 | / | 3.2 | BeO | FIGURA IV | RFTXX-150RM1610 | |
| 5.6 | 23.0 | 10.0 | 17.0 | 10.0 | 1.5 | 2.5 | 3.3 | 2.4 | 6.0 | / | 3.2 | BeO | FIGURA III | RFTXX-150RM2310 | |
| 5.0 | 24.8 | 10.0 | 18.4 | 10.0 | 3.0 | 4.0 | 5.0 | 2.4 | 6.0 | / | 3.5 | BeO | FIGURA I | RFTXX-150RM2510 | |
| Potestas W | Capacitas PF@100Ω | Dimensiones (unitas: mm) | Materia Substrati | Configuratio | Scheda Datorum (PDF) | ||||||||||
| A | B | C | D | E | H | G | W | L | J | Φ | |||||
| 250 | 5.6 | 23.0 | 10.0 | 17.0 | 10.0 | 1.5 | 3.8 | 3.3 | 2.4 | 6.0 | / | 3.2 | BeO | FIGURA III | RFTXX-250RM2310 |
| 5.6 | 24.8 | 10.0 | 18.4 | 12.0 | 3.0 | 4.0 | 4.8 | 2.4 | 6.0 | / | 3.5 | BeO | FIGURA I | RFTXX-250RM2510 | |
| 4.0 | 10.0 | 3.0 | 4.5 | 5.3 | 2.4 | 6.0 | / | 3.5 | BeO | FIGURA I | RFTXX-250RM2510B | ||||
| 5.0 | 27.0 | 10.0 | 21.0 | 10.0 | 2.5 | 3.5 | 4.3 | 2.4 | 6.0 | / | 3.2 | BeO | FIGURA I | RFTXX-250RM2710 | |
| Potestas W | Capacitas PF@100Ω | Dimensiones (unitas: mm) | Materia Substrati | Configuratio | Scheda Datorum (PDF) | ||||||||||
| A | B | C | D | E | H | G | W | L | J | Φ | |||||
| trecenti | 5.0 | 24.8 | 10.0 | 18.4 | 12.0 | 3.0 | 4.0 | 4.8 | 2.4 | 6.0 | / | 3.5 | BeO | FIGURA I | RFTXX-300RM2510 |
| 4.0 | 24.8 | 10.0 | 18.4 | 10.0 | 3.0 | 4.5 | 5.3 | 2.4 | 6.0 | / | 3.5 | BeO | FIGURA I | RFTXX-300RM2510B | |
| 5.6 | 27.0 | 10.0 | 21.0 | 10.0 | 2.5 | 3.5 | 4.3 | 2.4 | 6.0 | / | 3.2 | BeO | FIGURA I | RFTXX-300RM2710 | |
| 2.0 | 27.8 | 12.7 | 20.0 | 12.7 | 3.0 | 9.0 | 10.0 | 2.4 | 6.0 | / | 4.5 | BeO | FIGURA I | RFTXX-300RM2813K | |
| Potestas W | Capacitas PF@100Ω | Dimensiones (unitas: mm) | Materia Substrati | Configuratio | Scheda Datorum (PDF) | ||||||||||
| A | B | C | D | E | H | G | W | L | J | Φ | |||||
| quadringenti | 8.5 | 32.0 | 12.7 | 22.0 | 12.7 | 3.0 | 4.5 | 5.5 | 2.4 | 6.0 | / | 4.0 | BeO | FIGURA I | RFTXX-400RM3213 |
| 2.0 | 32.0 | 12.7 | 22.0 | 12.7 | 3.0 | 9.0 | 10.0 | 2.4 | 6.0 | / | 4.0 | BeO | FIGURA I | RFTXX-400RM3213K | |
| 8.5 | 27.8 | 12.7 | 20.0 | 12.7 | 3.0 | 4.5 | 5.5 | 2.4 | 6.0 | / | 4.5 | BeO | FIGURA I | RFTXX-400RM2813 | |
| 2.0 | 27.8 | 12.7 | 20.0 | 12.7 | 3.0 | 9.0 | 10.0 | 2.4 | 6.0 | / | 4.5 | BeO | FIGURA I | RFTXX-400RM2813K | |
| Potestas W | Capacitas PF@100Ω | Dimensiones (unitas: mm) | Materia Substrati | Configuratio | Scheda Datorum (PDF) | ||||||||||
| A | B | C | D | E | H | G | W | L | J | Φ | |||||
| quingenti | 8.5 | 32.0 | 12.7 | 22.0 | 12.7 | 3.0 | 4.5 | 5.5 | 2.4 | 6.0 | / | 4.0 | BeO | FIGURA I | RFTXX-500RM3213 |
| 2.0 | 9.0 | 10.0 | 2.4 | 6.0 | / | 4.0 | BeO | FIGURA I | RFTXX-500RM3213K | ||||||
| 8.5 | 27.8 | 12.7 | 20.0 | 12.7 | 3.0 | 4.5 | 5.5 | 2.4 | 6.0 | / | 4.5 | BeO | FIGURA I | RFTXX-500RM2813 | |
| 21.8 | 48.0 | 26.0 | 40.0 | 25.4 | 3.0 | 4.6 | 5.2 | 6.0 | 7.0 | 12.7 | 4.2 | BeO | FIGURA V | RFTXX-500RM4826 | |
| DC | 21.8 | 48.0 | 26.0 | 40.0 | 25.4 | 3.0 | 4.6 | 5.2 | 6.0 | 7.0 | 12.7 | 4.2 | BeO | FIGURA V | RFTXX-600RM4826 |
| DCCC | 21.8 | 48.0 | 26.0 | 40.0 | 25.4 | 3.0 | 4.6 | 5.2 | 6.0 | 7.0 | 12.7 | 4.2 | BeO | FIGURA V | RFTXX-800RM4826 |
Resistores flangati late in amplificatoribus aequilibratis, pontibus aequilibratis, et systematibus communicationis adhiberi possunt.
Valor resistentiae resistoris flangati eligendus est secundum requisita specifica circuitus et proprietates signalis.
In genere, valor resistentiae valori resistentiae propriae circuitus congruere debet ut eius aequilibrium et operatio stabilis servetur.
Potentia resistoris flange positi eligenda est secundum postulationem potentiae circuiti.
In genere, potentia resistoris maior esse debet quam maxima potentia circuitus ut eius operatio normalis fiat.
Resistor flangatus per flangem et resistorem duplicis plumbi soldadura componitur.
Flange ad institutionem in circuitu destinata est et etiam meliorem dissipationem caloris pro resistoribus in usu praebere potest.
Resistor flangatus est unum e componentibus passivis vulgo adhibitis in circuitibus electronicis, quod munus habet circuitus aequandi.
Valorem resistentiae in circuitu adaptat ut statum aequilibratum currentis vel tensionis assequatur, ita stabilem operationem circuiti assequens.
Munus magnum agit in instrumentis electronicis et systematibus communicationis.
In circuitu, cum valor resistentiae inaequalis est, fluxus electricus vel tensio electrica inaequaliter distribuetur, quod ad instabilitatem circuiti ducit.
Resistor flangatus distributionem currentis vel tensionis aequare potest resistentiam in circuitu adaptando.
Resistor aequilibrans flangis valorem resistentiae in circuitu adaptat ut currentem vel tensionem per varios ramos aequaliter distribuat, ita operationem aequilibratam circuitus assequatur.
Resistor plumbeus flangatus late in amplificatoribus aequilibratis, pontibus aequilibratis, et systematibus communicationis adhiberi potest.
Valor resistentiae duplicis filamenti flange secundum requisita specifica circuitus et proprietates signalis eligendus est.
In genere, valor resistentiae valori resistentiae propriae circuitus congruere debet, ut aequilibrium et operatio stabilis circuitus curentur.
Potentia resistoris flangati secundum requisita potentiae circuiti eligenda est.
In genere, potentia resistoris maior esse debet quam maxima potentia circuitus ut eius operatio normalis fiat.
Resistor flangatus per flangem et resistorem duplicis plumbi soldadura componitur.
Flange ad institutionem in circuitibus destinata est et etiam meliorem dissipationem caloris pro resistoribus in usu praebere potest.
Societas nostra etiam flanges et resistores secundum specificas necessitates clientium aptare potest.