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Resistor flanged

Resistentor langedor unus est e communibus passivis in gyrationibus electronicis adhibitis, quae munus aequationis circuit. Efficit stabilis operandi circuitionis, aptando valorem resistentiae in gyro ad consequendam aequabilem statum currentis vel intentionis.Magni ponderis munus agit in machinis electronicis et communicationis.

In circuitu, si resistentiae valor instat, inaequale erit distributio currentis vel intentionis, ducens ad instabilitatem circuitionis.Resistentor flanged aequare potest distributionem currentis vel intentionis, resistentiam in circuitu aptando.Statera resistor LABIUM valorem resistentiae aptat in ambitu ad aequabiliter distribuendum currentem vel intentionem in unoquoque genere, ita aequabilitatem operationis circa gyrationis assequendum.


Product Detail

Product Tags

Resistor flanged

Ratum potentia: 10-800W;

Materiae subiectae: BeO, AlN, Al2O3

Resistentia nominalis valor: 100 Ω (10-3000 Ω libitum)

Resistentia tolerantiae: ± 5%, ± 2%, ± 1%

Temperatus coefficiens: < 150ppm/℃

Operatio temperatus: -55~+150

LABIUM coating: nickel vel argentum plating ad libitum

ROHS vexillum: Obsequium

Applicabilis vexillum: Q/RFTYTR001-2022

Plumbea longitudo: L prout specificatur in sheet specifica (can esse nativus secundum mos requisita)

Flange Mount Resistor FIG 1,2

Data Sheet

Potestas
W
capacitas
PF@100Ω
Dimension(unit:mm) Substratum Material Configurationis Data Sheet(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 FIG2 RFTXXN-10RM7750
1.2 / BeO FIG2 RFTXX-10RM7750
Potestas
W
capacitas
PF@100Ω
Dimension(unit:mm) Substratum Material Configurationis Data Sheet(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 FIG2 RFTXXN-20RM0904
1.2 / BeO FIG2 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 FIG1 RFTXXN-20RM1104
1.2 / BeO FIG1 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 FIG1 RFTXXN-20RM1304
1.2 / BeO FIG1 RFTXX-20RM1304
Potestas
W
capacitas
PF@100Ω
Dimension(unit:mm) Substratum Material Configurationis Data Sheet(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 FIG2 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 FIG1 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 FIG2 RFTXXN-30RM1306
2.6 / BeO FIG2 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 FIG2 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 FIG1 RFTXXN-30RM2006
2.6 / BeO FIG1 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 FIG1 RFTXX-30RM2006F
Potestas
W
capacitas
PF@100Ω
Dimension(unit:mm) Substratum Material Configurationis Data Sheet(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 FIG2 RFTXXN-60RM1306
2.6 / BeO FIG2 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 FIG2 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 FIG1 RFTXXN-60RM2006
2.6 / BeO FIG1 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 FIG1 RFTXX-60RM2006F
Potestas
W
capacitas
PF@100Ω
Dimension(unit:mm) Substratum Material Configurationis Data Sheet(PDF)
A B C D E H G W L J Φ
100 2.6 16.0 6.0 10.0 6.0 1.5 2.5 3.3 1.0 5.0 / 3.2 BeO FIG2 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 FIG1 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 FIG1 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 FIG1 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 FIG4 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 FIG3 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 FIG1 RFTXX-100RM2510
4.0 4.5 5.3 / FIG1 RFTXX-100RM2510B
Flange Mount Resistor FIG 3,4,5

Potestas
W

Capacitance
PF@100Ω
Dimensiones(unit:mm) Substratum
Materia
Configurationis Data Sheet(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 FIG1 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 FIG4 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 FIG3
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 FIG1 RFTXX-150RM2510
Potestas
W
Capacitance
PF@100Ω
Dimensiones(unit:mm) Substratum Material Configurationis Data Sheet(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 FIG3 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 FIG1 RFTXX-250RM2510
4.0 10.0 3.0 4.5 5.3 2.4 6.0 / 3.5 BeO FIG1 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 FIG1 RFTXX-250RM2710
Potestas
W
Capacitance
PF@100Ω
Dimensiones(unit:mm) Substratum Material Configurationis Data Sheet(PDF)
A B C D E H G W L J Φ
300 5.0 24.8 10.0 18.4 12.0 3.0 4.0 4.8 2.4 6.0 / 3.5 BeO FIG1
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 FIG1
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 FIG1 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 FIG1 RFTXX-300RM2813K
Potestas
W
Capacitance
PF@100Ω
Dimensiones(unit:mm) Substratum Material Configurationis Data Sheet(PDF)
A B C D E H G W L J Φ
400 8.5 32.0 12.7 22.0 12.7 3.0 4.5 5.5 2.4 6.0 / 4.0 BeO FIG1 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 FIG1 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 FIG1
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 FIG1 RFTXX-400RM2813K
Potestas
W
Capacitance
PF@100Ω
Dimensiones(unit:mm) Substratum Material Configurationis Data Sheet(PDF)
A B C D E H G W L J Φ
500 8.5 32.0 12.7 22.0 12.7 3.0 4.5 5.5 2.4 6.0 / 4.0 BeO FIG1 RFTXX-500RM3213
2.0 9.0 10.0 2.4 6.0 / 4.0 BeO FIG1 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 FIG1
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 FIG5 RFTXX-500RM4826
600 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 FIG5 RFTXX-600RM4826
800 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 FIG5 RFTXX-800RM4826

Overview

Resistentes flanged late adhiberi possunt in libratis amplificibus, pontibus libratis et systematibus communicationis.
Resistentia valor resistoris flanged eligendus est secundum certas circumscriptiones requisita et notas notas.
In genere, valor resistentiae debet aequare proprietati resistentiae valori gyri ad operandum stateram et stabilem suam operationem.
Potestas flange mons resistor eligi debet secundum potentiam circuitus postulant.
In genere, potestas resistentis maior esse debet quam maxima potestas circuii, ut operationem suam normalem curet.
LABIUM flanged resistor coadunatur glutino et resistor plumbi duplex.
LABIUM ad institutionem in circuitu destinatur et melius caloris dissipationem resistentibus in usu praebere potest.

Resistentor flanged unus est e communibus passivis in circuitibus electronicis adhibitis, quae munus habet in circuitibus aequandis.
Resistentiae valorem aptat in circuitione ad aequabilem statum currentis vel intentionis consequendum, ut inde stabilem operationem circuitionis obtineat.
Magni ponderis munus agit in machinis electronicis et communicationis.
In ambitu, si resistentiae valor inaequalis est, current vel voltatio inaequale distribuetur, ducens ad circuitionis instabilitatem.
Resistentor flanged aequare potest distributionem currentis vel intentionis, resistentiam in circuitu aptando.
LABIUM reluctans resistor valorem resistentiae in ambitu adaequat ut trans varios ramos current vel voltages aequaliter distribuat, inde aequabilem operationem circumeundi assequendum.
Resistetorium plumbeum flangum late adhiberi potest in libratis ampliationibus, pontibus libratis, systematibus communicationis
Resistentia valor duplex plumbi LABRICAE seligi debet secundum certas circumscriptiones requisita et notas notas.
In genere, valor resistentiae debet aequare proprietati resistentiae valoris gyri ad stateram et stabilem operationem in circuitu curare.
Potestas flanged resistor eligi debet secundum potentiam circuitus requisita.
In genere, potestas resistentis maior esse debet quam maxima potestas circuii, ut operationem suam normalem curet.
Resistor flanged cum glutino LABIUM et duplex plumbum resistor congregatur.
LABIUM ad institutionem in circuitibus destinatur et melius calori dissipationem resistentibus in usu praebere potest.
Societas nostra etiam flanges et resistores secundum specifica requisita emptoris mos est.


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