logo

ON Semiconductor SNU DataSheet

No. parte # Fabricante Descripción Hoja de Datos
1
FOD4116

Fairchild Semiconductor
6-Pin DIP Snubberless Zero-Cross Triac Drivers

• 300 mA On-State Current
• Zero-Voltage Crossing
• High Blocking Voltage
  – 600 V (FOD410, FOD4116)
  – 800 V (FOD4108, FOD4118)
• High Trigger Sensitivity
  – 1.3 mA (FOD4116, FOD4118)
  – 2 mA (FOD410, FOD4108)
• High Static dv/dt (10,000 V/ȝs)
• Safety
Datasheet
2
FOD4108

Fairchild Semiconductor
6-Pin DIP Snubberless Zero-Cross Triac Drivers

• 300 mA On-State Current
• Zero-Voltage Crossing
• High Blocking Voltage
  – 600 V (FOD410, FOD4116)
  – 800 V (FOD4108, FOD4118)
• High Trigger Sensitivity
  – 1.3 mA (FOD4116, FOD4118)
  – 2 mA (FOD410, FOD4108)
• High Static dv/dt (10,000 V/ȝs)
• Safety
Datasheet
3
FOD4118

Fairchild Semiconductor
6-Pin DIP Snubberless Zero-Cross Triac Drivers

• 300 mA On-State Current
• Zero-Voltage Crossing
• High Blocking Voltage
  – 600 V (FOD410, FOD4116)
  – 800 V (FOD4108, FOD4118)
• High Trigger Sensitivity
  – 1.3 mA (FOD4116, FOD4118)
  – 2 mA (FOD410, FOD4108)
• High Static dv/dt (10,000 V/ȝs)
• Safety
Datasheet
4
FOD410

Fairchild Semiconductor
6-Pin DIP Snubberless Zero-Cross Triac Drivers

• 300 mA On-State Current
• Zero-Voltage Crossing
• High Blocking Voltage
  – 600 V (FOD410, FOD4116)
  – 800 V (FOD4108, FOD4118)
• High Trigger Sensitivity
  – 1.3 mA (FOD4116, FOD4118)
  – 2 mA (FOD410, FOD4108)
• High Static dv/dt (10,000 V/ȝs)
• Safety
Datasheet
5
SNUF6401

ON Semiconductor
6-Channel EMI Filter
Benefits http://onsemi.com MARKING DIAGRAM 1 12 1 DFN12 CASE 506AD 64 01 MG G
• ±15 kV ESD Protection on each channel (IEC61000−4−2 Contact
• R/C Values of 100 W and 17 pF deliver Exceptional S21 Performance


• Characteristics of 110 MHz f3dB and
Datasheet
6
FOD4208

Fairchild Semiconductor
6-Pin DIP Snubberless Random Phase Triac Drivers

• 300 mA On-State Current
• High Blocking Voltage
  – 600 V (FOD420, FOD4216)
  – 800 V (FOD4208, FOD4218)
• High Trigger Sensitivity
  – 1.3 mA (FOD4216, FOD4218)
  – 2 mA (FOD420, FOD4208)
• High Static dv/dt (10,000 V/μs)
• Safety and Regulatory Approvals
Datasheet
7
SNUP2114UCMR6T1G

ON Semiconductor
Transient Voltage Suppressors
http://onsemi.com SOT−553 CASE 463B VP TSOP−6 CASE 318G
 Low Capacitance 0.8 pF
 S Prefix for Automotive and Other Applications Requiring Unique














 Site and Control Change Requirements AEC−Q101 Qualified and PPAP Capa
Datasheet
8
AN1048D

ON Semiconductor
RC Snubber Networks
improves noise immunity and high temperature blocking stability at the expense of increased trigger and holding current. External resistors are optional for nonsensitive SCRs and TRIACs. They should be comparable in size to the internal shorting resi
Datasheet
9
FOD4218

Fairchild Semiconductor
6-Pin DIP Snubberless Random Phase Triac Drivers

• 300 mA On-State Current
• High Blocking Voltage
  – 600 V (FOD420, FOD4216)
  – 800 V (FOD4208, FOD4218)
• High Trigger Sensitivity
  – 1.3 mA (FOD4216, FOD4218)
  – 2 mA (FOD420, FOD4208)
• High Static dv/dt (10,000 V/μs)
• Safety and Regulatory Approvals
Datasheet
10
FOD420

Fairchild Semiconductor
6-Pin DIP Snubberless Random Phase Triac Drivers

• 300 mA On-State Current
• High Blocking Voltage
  – 600 V (FOD420, FOD4216)
  – 800 V (FOD4208, FOD4218)
• High Trigger Sensitivity
  – 1.3 mA (FOD4216, FOD4218)
  – 2 mA (FOD420, FOD4208)
• High Static dv/dt (10,000 V/μs)
• Safety and Regulatory Approvals
Datasheet
11
FOD4216

Fairchild Semiconductor
6-Pin DIP Snubberless Random Phase Triac Drivers

• 300 mA On-State Current
• High Blocking Voltage
  – 600 V (FOD420, FOD4216)
  – 800 V (FOD4208, FOD4218)
• High Trigger Sensitivity
  – 1.3 mA (FOD4216, FOD4218)
  – 2 mA (FOD420, FOD4208)
• High Static dv/dt (10,000 V/μs)
• Safety and Regulatory Approvals
Datasheet
12
AN1048

ON Semiconductor
RC Snubber Networks
improves noise immunity and high temperature blocking stability at the expense of increased trigger and holding current. External resistors are optional for nonsensitive SCRs and TRIACs. They should be comparable in size to the internal shorting resi
Datasheet



logo    Desde 2024. D4U Semiconductor.   |   Contáctenos   |   Política de Privacidad