B57164K0332J053

B57164K0332J053
Mfr. #:
B57164K0332J053
Produttore:
EPCOS / TDK
Descrizione:
Thermistors - NTC K 164/3.3 K/J53 5% NTC Thermisto
Ciclo vitale:
Nuovo da questo produttore.
Scheda dati:
B57164K0332J053 Scheda dati
Consegna:
DHL FedEx Ups TNT EMS
Pagamento:
T/T Paypal Visa MoneyGram Western Union
ECAD Model:
Attributo del prodotto
Valore attributo
Tags
B57164K0332, B57164K03, B57164K0, B57164K, B5716, B571, B57
Service Guarantees

We guarantee 100% customer satisfaction.

Quality Guarantees

We provide 90-360 days warranty.

If the items you received were not in perfect quality, we would be responsible for your refund or replacement, but the items must be returned in their original condition.
Our experienced sales team and tech support team back our services to satisfy all our customers.

we buy and manage excess electronic components, including excess inventory identified for disposal.
Email us if you have excess stock to sell.

Email: [email protected]

Step1: Vacuum Packaging with PL
Step1:
Vacuum Packaging with PL
Step2: Anti-Static Bag
Step2:
Anti-Static Bag
Step3: Packaging Boxes
Step3:
Packaging Boxes
Parte # Mfg. Descrizione Azione Prezzo
B57164K0332J053
DISTI # B57164K0332J053-ND
TDK EpcosTHERM NTC 3.3KOHM 3950K DISC
RoHS: Compliant
Min Qty: 3000
Container: Tape & Reel (TR)
Temporarily Out of Stock
  • 3000:$0.3561
B57164K0332J053
DISTI # 871-B57164K0332J053
TDK EpcosNTC Thermistors NTC THERMISTOR K 164/3.3 K/J535 %
RoHS: Compliant
0
  • 1:$0.9100
  • 10:$0.6910
  • 100:$0.4940
  • 500:$0.3830
  • 1000:$0.3300
  • 3000:$0.3080
  • 9000:$0.2820
  • 24000:$0.2710
Immagine Parte # Descrizione
B57164K0683J000

Mfr.#: B57164K0683J000

OMO.#: OMO-B57164K0683J000

NTC Thermistors 68 Ohms 4600 3%
B57164K0101K000

Mfr.#: B57164K0101K000

OMO.#: OMO-B57164K0101K000-EPCOS

THERMISTOR NTC 100OHM 3200K DISC
B57164K0154K000

Mfr.#: B57164K0154K000

OMO.#: OMO-B57164K0154K000-EPCOS

THERM NTC 150KOHM 4600K DISC
B57164K0152K052

Mfr.#: B57164K0152K052

OMO.#: OMO-B57164K0152K052-EPCOS

Thermistors - NTC K 164/1.5 K/K 52 10%
B57164K0333J052

Mfr.#: B57164K0333J052

OMO.#: OMO-B57164K0333J052-EPCOS

Thermistors - NTC K 164/33 K/J52 5% NTC Thermisto
B57164K0681K000

Mfr.#: B57164K0681K000

OMO.#: OMO-B57164K0681K000-EPCOS

Thermistors - NTC K 164/680/K 10% NTC Thermisto
B57164K0479K000

Mfr.#: B57164K0479K000

OMO.#: OMO-B57164K0479K000-EPCOS

Thermistors - NTC K164/4.7/K 10% NTC Thermisto
B57164K220K

Mfr.#: B57164K220K

OMO.#: OMO-B57164K220K-1150

Thermistors - NTC 22 Ohms 2900 3%
B57164K0470J000

Mfr.#: B57164K0470J000

OMO.#: OMO-B57164K0470J000-EPCOS

NTC Thermistors 47 Ohms 3000 3%
B57164K0153J000

Mfr.#: B57164K0153J000

OMO.#: OMO-B57164K0153J000-EPCOS

THERMISTOR, NTC, 15K, RADIAL LEADED
Disponibilità
Azione:
Available
Su ordine:
1000
Inserisci la quantità:
Il prezzo attuale di B57164K0332J053 è solo di riferimento, se si desidera ottenere il prezzo migliore, inviare una richiesta o inviare un'e-mail diretta al nostro team di vendita [email protected]
Prezzo di riferimento (USD)
Quantità
Prezzo unitario
est. Prezzo
1
0,41 USD
0,41 USD
10
0,39 USD
3,86 USD
100
0,37 USD
36,59 USD
500
0,35 USD
172,75 USD
1000
0,33 USD
325,20 USD
Iniziare con
Prodotti più recenti
  • B82724J8 Ring Core Chokes
    EPCOS' B82724J8 current-compensated ring core powerline double chokes are designed for frequency converters and power supplies.
  • Current Sense Transformers
    TDK Corporation presents two series of EPCOS SMT current sense transformers for power electronics, the B78417A and B78419A series.
  • RA Series Multilayer Film Capacitors
    Cornell Dubilier’s RA series multilayer film capacitors for high-frequency RFI/EMI suppression, ignition pulse forming, and motor controllers.
  • Ultra-Robust, Industrial-Grade X2 Capacitors
    TDK and EPCOS offer their ultra-robust, industrial-grade X2 capacitors for applications such as X2 class, for interference suppression, and "across the line."
  • IEC Inlet Filters
    EPCOS' B8477* series is also available as versions for medical applications with a maximum leakage current of 2 µA and are designed for maximum ambient temperatures.
Top