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Fairchild Semiconductor SA6 DataSheet

No. parte # Fabricante Descripción Hoja de Datos
1
FSA6157

Fairchild Semiconductor
Negative-Swing Audio or Video Switch
ƒ 0.8Ω Typical On Resistance (RON) for +2.7V Supply ƒ 0.45Ω Maximum RON Flatness for +2.7V Supply ƒ -3db Bandwidth: > 50MHz ƒ Low ICCT Current Over an Expanded Control Input Range ƒ Packaged in Pb-free 6-Lead MicroPak™ (1.0 x 1.4mm) ƒ Power-Off Prote
Datasheet
2
FSA641

Fairchild Semiconductor
2:1 MIPI Switch

 Switch Type: 2:1
 Signal Types MIPI, DPHY
 VCC: 2.65 to 4.3 V
 Input Signals 0 to VCC
 RON: - 7 Ω Typical HS MIPI - 10 Ω Typical LS MIPI
 ∆RON: 0.75 Ω Typical HS & LS MIPI
 ICC: 1 µA Maximum
 OIRR: -50 dB Typical
 XTALK: -40 dB Typical
 Ba
Datasheet
3
KSA643

Fairchild Semiconductor
PNP Epitaxial Silicon Transistor

• Low Frequency Power Amplifier
• Collector Power Dissipation : PC = 500 mW
• Complement to KSD261
• Suffix “-C” means Center Collector (1. Emitter 2. Collector 3. Base)
• Non Suffix “-C” means Side Collector (1. Emitter 2. Base 3. Collector) 123 St
Datasheet
4
KSA614

Fairchild Semiconductor
Low Frequency Power Amplifier
Datasheet
5
KSA642

Fairchild Semiconductor
Low Frequency Power Amplifier
-100µA, IE=0 IC= -10mA. IB=0 IE = -10µA. IC=0 VCB= -25V, IE=0 VEB= -3V, IC=0 VCE= -1V, IC= -50mA IC= -300mA, IB= -30mA 70 -0.35 Min. -30 -25 -5 -100 -100 400 -0.6 V Typ. Max. Units V V V nA nA * Pulse Test: PW≤350µs, Duty cycle≤2% hFE Classificatio
Datasheet
6
SA60A

Fairchild Semiconductor
Transient Voltage Suppressors





• Glass passivated junction. 500W Peak Pulse Power capability on 10/1000 µs waveform. Excellent clamping capability. Low incremental surge resistance. Fast response time; typically less than 1.0 ps from 0 volts to BV for unidirectional and 5.
Datasheet
7
FSA6157T

Fairchild Semiconductor
Negative-Swing Audio or Video Switch
ƒ ƒ ƒ ƒ ƒ ƒ ƒ ƒ ƒ 0.8Ω Typical On Resistance (RON) for +2.7V Supply 0.45Ω Maximum RON Flatness for +2.7V Supply -3db Bandwidth: > 50MHz Low ICCT Current Over an Expanded Control Input Range Packaged in Pb-free 6-Lead MicroPak™ (1.0 x 1.4mm) Power-Off
Datasheet
8
SA6.0A

Fairchild Semiconductor
Transient Voltage Supressors

• Glass passivated junction.
• 500W Peak Pulse Power capability on 10/1000 µs waveform.
• Excellent clamping capability.
• Low incremental surge resistance.
• Fast response time; typically less than 1.0 ps from 0 volts to BV for unidirectional and 5.
Datasheet
9
SA60CA

Fairchild Semiconductor
Transient Voltage Supressors

• Glass passivated junction.
• 500W Peak Pulse Power capability on 10/1000 µs waveform.
• Excellent clamping capability.
• Low incremental surge resistance.
• Fast response time; typically less than 1.0 ps from 0 volts to BV for unidirectional and 5.
Datasheet
10
SA64CA

Fairchild Semiconductor
Transient Voltage Supressors

• Glass passivated junction.
• 500W Peak Pulse Power capability on 10/1000 µs waveform.
• Excellent clamping capability.
• Low incremental surge resistance.
• Fast response time; typically less than 1.0 ps from 0 volts to BV for unidirectional and 5.
Datasheet
11
FSA644

Fairchild Semiconductor
2:1 MIPI D-PHY (1.5Gbps) 4-Data Lane Switch
Switch Type Signal Types VCC Input Signals RON ∆RON RON_FLAT ICCZ ICC OIRR XTALK Bandwidth Channel-to-Channel Skew CON Operating Temperature Package FSA644UCX Top Mark Ordering Information FSA644BUCX Top Mark Ordering Information SPDT (10x) MIPI, D
Datasheet
12
SA64A

Fairchild Semiconductor
Transient Voltage Suppressors





• Glass passivated junction. 500W Peak Pulse Power capability on 10/1000 µs waveform. Excellent clamping capability. Low incremental surge resistance. Fast response time; typically less than 1.0 ps from 0 volts to BV for unidirectional and 5.
Datasheet
13
SA6V0A

Fairchild Semiconductor
Transient Voltage Suppressors





• Glass passivated junction. 500W Peak Pulse Power capability on 10/1000 µs waveform. Excellent clamping capability. Low incremental surge resistance. Fast response time; typically less than 1.0 ps from 0 volts to BV for unidirectional and 5.
Datasheet
14
SA6V5A

Fairchild Semiconductor
Transient Voltage Suppressors





• Glass passivated junction. 500W Peak Pulse Power capability on 10/1000 µs waveform. Excellent clamping capability. Low incremental surge resistance. Fast response time; typically less than 1.0 ps from 0 volts to BV for unidirectional and 5.
Datasheet
15
FSA66

Fairchild Semiconductor
Low-Voltage UHS Single SPST Normally Open Analog Switch

■ Space-saving SOT23 or SC70 5-lead package
■ Ultra small MicroPak™ leadless package
■ Broad VCC operating range: 1.65V
  –5.5V
■ Rail-to-rail signal handling
■ 5Ω switch connection between two ports
■ Minimal propagation delay through the switch
■ Low
Datasheet
16
FSA642

Fairchild Semiconductor
High-Speed MIPI Switch
ƒ ƒ ƒ ƒ ƒ Low On Capacitance: 7.0pF Typical Low On Resistance: 7.0Ω Typical Wide -3db Bandwidth: > 720MHz 24-Lead UMLP (2.5 x 3.4mm) Package 8kV ESD Rating; >16kV Power/GND ESD Rating Description The FSA642 is a bi-directional, low-power, high-speed
Datasheet
17
FSA66

Fairchild Semiconductor
Low-Voltage UHS Single SPST Normally Open Analog Switch

■ Space-saving SOT23 or SC70 5-lead package
■ Ultra small MicroPak™ leadless package
■ Broad VCC operating range: 1.65V
  –5.5V
■ Rail-to-rail signal handling
■ 5Ω switch connection between two ports
■ Minimal propagation delay through the switch
■ Low
Datasheet
18
SA6.5A

Fairchild Semiconductor
Transient Voltage Supressors

• Glass passivated junction.
• 500W Peak Pulse Power capability on 10/1000 µs waveform.
• Excellent clamping capability.
• Low incremental surge resistance.
• Fast response time; typically less than 1.0 ps from 0 volts to BV for unidirectional and 5.
Datasheet
19
SA60A

Fairchild Semiconductor
Transient Voltage Supressors

• Glass passivated junction.
• 500W Peak Pulse Power capability on 10/1000 µs waveform.
• Excellent clamping capability.
• Low incremental surge resistance.
• Fast response time; typically less than 1.0 ps from 0 volts to BV for unidirectional and 5.
Datasheet
20
SA6.0CA

Fairchild Semiconductor
Transient Voltage Supressors

• Glass passivated junction.
• 500W Peak Pulse Power capability on 10/1000 µs waveform.
• Excellent clamping capability.
• Low incremental surge resistance.
• Fast response time; typically less than 1.0 ps from 0 volts to BV for unidirectional and 5.
Datasheet



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