Datasheets
PEMH11,315 by:

PEMH11 - 50 V, 100 mA NPN/NPN resistor-equipped double transistor; R1 = 10 kΩ, R2 = 10n kΩ@en-us SOT 6-Pin

Part Details for PEMH11,315 by Nexperia

Results Overview of PEMH11,315 by Nexperia

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PEMH11,315 Information

PEMH11,315 by Nexperia is a Small Signal Bipolar Transistor.
Small Signal Bipolar Transistors are under the broader part category of Transistors.

A transistor is a small semiconductor device used to amplify, control, or create electrical signals. When selecting a transistor, factors such as voltage, current rating, gain, and power dissipation must be considered, with common types. Read more about Transistors on our Transistors part category page.

Price & Stock for PEMH11,315

Part # Distributor Description Stock Price Buy
DISTI # PEMH11,315-ND
DigiKey TRANS PREBIAS 2NPN 50V SOT-666 Min Qty: 8000 Lead time: 8 Weeks Container: Tape & Reel (TR) Limited Supply - Call
  • 8,000 $0.0818
  • 16,000 $0.0749
  • 24,000 $0.0714
  • 40,000 $0.0674
  • 56,000 $0.0651
  • 80,000 $0.0628
$0.0628 / $0.0818 Buy Now
DISTI # PEMH11,315
Avnet Americas Trans Digital BJT NPN 50V 100mA 6-Pin SOT-666 T/R - Tape and Reel (Alt: PEMH11,315) RoHS: Compliant Min Qty: 16000 Package Multiple: 8000 Lead time: 8 Weeks, 0 Days Container: Reel 0
  • 16,000 $0.0584
  • 32,000 $0.0560
  • 48,000 $0.0547
  • 80,000 $0.0538
  • 160,000 $0.0524
$0.0524 / $0.0584 Buy Now
DISTI # 771-PEMH11,315
Mouser Electronics Digital Transistors 50 V, 100 mA NPN/NPN resistor-equipped double transistor, R1 = 4.7 kohm, R2 = 47 kohm RoHS: Compliant 0
Order Now
DISTI # PEMH11,315
Avnet Silica Trans Digital BJT NPN 50V 100mA 6Pin SOT666 TR (Alt: PEMH11,315) RoHS: Compliant Min Qty: 8000 Package Multiple: 8000 Lead time: 10 Weeks, 0 Days Silica - 0
Buy Now
DISTI # PEMH11,315
EBV Elektronik Trans Digital BJT NPN 50V 100mA 6Pin SOT666 TR (Alt: PEMH11,315) RoHS: Compliant Min Qty: 8000 Package Multiple: 8000 Lead time: 10 Weeks, 0 Days EBV - 0
Buy Now

Part Details for PEMH11,315

PEMH11,315 Part Data Attributes

PEMH11,315 Nexperia
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PEMH11,315 Nexperia PEMH11 - 50 V, 100 mA NPN/NPN resistor-equipped double transistor; R1 = 10 kΩ, R2 = 10n kΩ@en-us SOT 6-Pin
Rohs Code Yes
Part Life Cycle Code Active
Ihs Manufacturer NEXPERIA
Part Package Code SOT
Pin Count 6
Manufacturer Package Code SOT666
Reach Compliance Code compliant
ECCN Code EAR99
Factory Lead Time 8 Weeks
Date Of Intro 1999-04-13
Samacsys Manufacturer Nexperia
Additional Feature BUILT IN BIAS RESISTOR RATIO IS 1
Collector Current-Max (IC) 0.1 A
Collector-Emitter Voltage-Max 50 V
Configuration SEPARATE, 2 ELEMENTS WITH BUILT-IN RESISTOR
DC Current Gain-Min (hFE) 30
JESD-30 Code R-PDSO-F6
JESD-609 Code e3
Moisture Sensitivity Level 1
Number of Elements 2
Number of Terminals 6
Package Body Material PLASTIC/EPOXY
Package Shape RECTANGULAR
Package Style SMALL OUTLINE
Peak Reflow Temperature (Cel) 260
Polarity/Channel Type NPN
Surface Mount YES
Terminal Finish TIN
Terminal Form FLAT
Terminal Position DUAL
Time@Peak Reflow Temperature-Max (s) 30
Transistor Application SWITCHING
Transistor Element Material SILICON
Transition Frequency-Nom (fT) 230 MHz

PEMH11,315 Related Parts

PEMH11,315 Frequently Asked Questions (FAQ)

  • A good PCB layout for PEMH11,315 should have a solid ground plane, short and wide traces for power and ground, and a decoupling capacitor (e.g., 100nF) close to the device. This helps reduce EMI and ensures stable operation.

  • The input capacitor value depends on the input voltage, output voltage, and desired output ripple. A general rule of thumb is to use a capacitor with a value between 1uF to 10uF, with a voltage rating at least 1.5 times the input voltage. Consult Nexperia's application notes for more specific guidance.

  • The maximum allowed voltage drop across PEMH11,315 is typically around 2.5V to 3.5V, depending on the specific application and output current. Exceeding this limit may reduce the device's efficiency and reliability.

  • To ensure PEMH11,315 operates within its SOA, monitor the device's junction temperature, output current, and input voltage. Avoid exceeding the maximum ratings for these parameters, and ensure proper thermal management and cooling.

  • For optimal thermal performance, ensure a good thermal interface between the device and the PCB, use a thermal pad or heat sink if necessary, and provide adequate airflow around the device. Consult Nexperia's thermal design guidelines for more information.

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