Jantxv2N3637/TR

Jantxv2N3637/TR
Mfr. #:
Jantxv2N3637/TR
Manufacturer:
Microchip / Microsemi
Description:
Bipolar Transistors - BJT
Lifecycle:
New from this manufacturer.
Datasheet:
Jantxv2N3637/TR Datasheet
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union
ECAD Model:
Product Attribute
Attribute Value
Manufacturer:
Microchip
Product Category:
Bipolar Transistors - BJT
RoHS:
N
Technology:
Si
Mounting Style:
Through Hole
Package / Case:
TO-205AD-3
Transistor Polarity:
PNP
Configuration:
Single
Collector- Emitter Voltage VCEO Max:
175 V
Collector- Base Voltage VCBO:
175 V
Emitter- Base Voltage VEBO:
5 V
Collector-Emitter Saturation Voltage:
0.3 V
Maximum DC Collector Current:
1 A
Minimum Operating Temperature:
- 65 C
Maximum Operating Temperature:
+ 200 C
DC Current Gain hFE Max:
300 at - 50 mA, - 10 V
Brand:
Microchip / Microsemi
DC Collector/Base Gain hfe Min:
55 at 100 uA, 10 V
Pd - Power Dissipation:
5 W
Product Type:
BJTs - Bipolar Transistors
Factory Pack Quantity:
1
Subcategory:
Transistors
Tags
JANTXV2N3637, JANTXV2N36, Jantxv2N3, JANTXV2, JANTXV, JANTX, JANT, JAN
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
Image Part # Description
JANTXV2N5237S

Mfr.#: JANTXV2N5237S

OMO.#: OMO-JANTXV2N5237S

Bipolar Transistors - BJT Power BJT
JANTXV2N3498L

Mfr.#: JANTXV2N3498L

OMO.#: OMO-JANTXV2N3498L

Bipolar Transistors - BJT Small-Signal BJT
JANTXV2N5681

Mfr.#: JANTXV2N5681

OMO.#: OMO-JANTXV2N5681

Bipolar Transistors - BJT Power BJT
Jantxv2N2907A/TR

Mfr.#: Jantxv2N2907A/TR

OMO.#: OMO-JANTXV2N2907A-TR

Bipolar Transistors - BJT
Jantxv2N3810U/TR

Mfr.#: Jantxv2N3810U/TR

OMO.#: OMO-JANTXV2N3810U-TR

Bipolar Transistors - BJT
Jantxv2N2904AL

Mfr.#: Jantxv2N2904AL

OMO.#: OMO-JANTXV2N2904AL

Bipolar Transistors - BJT Small-Signal BJT
JANTXV2N2329A

Mfr.#: JANTXV2N2329A

OMO.#: OMO-JANTXV2N2329A

SCRs SCR
JANTXV2N6768

Mfr.#: JANTXV2N6768

OMO.#: OMO-JANTXV2N6768

MOSFET
Jantxv2N2219A/TR

Mfr.#: Jantxv2N2219A/TR

OMO.#: OMO-JANTXV2N2219A-TR-1190

Bipolar Transistors - BJT
Jantxv2N1613L

Mfr.#: Jantxv2N1613L

OMO.#: OMO-JANTXV2N1613L-MICROSEMI

Bipolar Transistors - BJT Power BJT
Availability
Stock:
Available
On Order:
5500
Enter Quantity:
Current price of Jantxv2N3637/TR is for reference only, if you want to get best price, please submit a inquiry or direct email to our sales team [email protected]
Reference price (USD)
Quantity
Unit Price
Ext. Price
100
$27.48
$2 748.00
250
$25.22
$6 305.00
500
$24.00
$12 000.00
Start with
Newest Products
  • QT600 Development Kit
    Microchip's QT600 development kit is a complete touch development kit for buttons, sliders, and wheels which supports both QTouch and QMatrix™ acquisition methods.
  • DSC63xx MEMS Oscillators
    Microchip Technology's DSC63xx series are ultra-small, ultra-low power MEMS oscillators with spread spectrum.
  • 8-bit PIC® MCUs with Core Independent Periphe
    Microchip's 8-bit PIC MCUs are self-sustaining, CPU free, and offer significant BOM savings as a replacement for off-board discrete components.
  • LoRa® Wireless RF Transceiver Modules
    Microchip’s RN2903 and RN248 LoRa technology transceiver modules provide an easy to use, low-power solution for long-range wireless data transmission.
  • Compare Jantxv2N3637/TR
    Jantxv2N3637 vs Jantxv2N3637TR vs Jantxv2N3637L
  • SAM4L Series Microcontrollers
    Microchip's SAM4L microcontrollers feature picoPower® technology and provide highly efficient signal processing.
Top