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Panasonic EXC DataSheet

No. Partie # Fabricant Description Fiche Technique
1
AN8021NS

Panasonic Semiconductor
External excitation flyback AC-DC switching power supply controller

• Supports operation at switching frequencies up to 700 kHz and achieves a 35 ns output rise time and a 25 ns output fall time.
• Extremely low pre-startup current consumption of 70 µA (typical) allows a significantly smaller startup resistor to be u
Datasheet
2
KX-TGA107EXC

Panasonic
Digital Cordless Phone Service Manual
Datasheet
3
EXCML

Panasonic
Chip Beas Cores
l Effective noise suppression for Power line and high speed signal line. l Easy pattern layout on PC Board without jointing the ground pattern. l Available for flow soldering and re-flow soldering. Type: EXCCL, EXCML l Low DC Resistance 3 to 8 mil o
Datasheet
4
EXC24CE360UP

Panasonic
Common mode Noise Filters

● Elimination of radiation noises from high-speed differential transmissions
● Strong multilayer structure, excellent reflow resistance and high mounting reliability
● Magnetic shield type with no leakage
● High-Q impedance : EXC24CF
● Small and thin
Datasheet
5
AN8026

Panasonic Semiconductor
Self-excited RCC pseudo-resonance type AC-DC switching power supply controller
0.3 +0.1
  –0.05
• Operating supply voltage range: 3.0±0.3 Stop voltage (8.6 V typical) to 34 V SIP009-P-0000C
• Output block employs the totem pole system.
• Power MOSFET can be directly driven. (output peak current: ±1 A maximum)
• Small pre-start
Datasheet
6
EXC28BA121U

Panasonic Semiconductor
Chip Bead Array

● Space saving
● SSOP package (0.5 mm pitch) compatibility
● Small size and lightweight Type: EXC28BB
● Suitable for high speed signals (over 50 MHz)
● Excellent cross talk characteristics (100 MHz:<-25 dB) Type: EXC28BA
● Reduces waveform ringing n
Datasheet
7
EXC28BB121U

Panasonic Semiconductor
Chip Bead Array

● Space saving
● SSOP package (0.5 mm pitch) compatibility
● Small size and lightweight Type: EXC28BB
● Suitable for high speed signals (over 50 MHz)
● Excellent cross talk characteristics (100 MHz:<-25 dB) Type: EXC28BA
● Reduces waveform ringing n
Datasheet
8
EXCCET222U

Panasonic
Chip EMI Filters

● Rated current (2 A max.)
● Eight capacitance values in a wide range, r elated to the noise frequency
● Suitable for narrow pitch insertion
● Suitable for applications requiring thin design
■ Recommended Applications
● Digital equipment such as P
Datasheet
9
EXCCET103U

Panasonic
Chip EMI Filters

● Rated current (2 A max.)
● Eight capacitance values in a wide range, r elated to the noise frequency
● Suitable for narrow pitch insertion
● Suitable for applications requiring thin design
■ Recommended Applications
● Digital equipment such as P
Datasheet
10
EXC24CH500U

Panasonic
Common mode Noise Filters

● Small and thin type, built-in filter circuit (L 1.25 mm×W 1.00 mm×H 0.50 mm)
● Suppression of high frequency noise with little influence of waveform rounding on signal transmission, achieved by setting high cut-off frequency between 6 and 10 GHz
● S
Datasheet
11
EXC24CH900U

Panasonic
Common mode Noise Filters

● Small and thin type, built-in filter circuit (L 1.25 mm×W 1.00 mm×H 0.50 mm)
● Suppression of high frequency noise with little influence of waveform rounding on signal transmission, achieved by setting high cut-off frequency between 6 and 10 GHz
● S
Datasheet
12
EXC24CF900U

Panasonic
Common mode Noise Filters

● Elimination of radiation noises from high-speed differential transmissions
● Strong multilayer structure, excellent reflow resistance and high mounting reliability
● Magnetic shield type with no leakage
● High-Q impedance : EXC24CF
● Small and thin
Datasheet
13
EXC24CE201U

Panasonic
Common mode Noise Filters

● Elimination of radiation noises from high-speed differential transmissions
● Strong multilayer structure, excellent reflow resistance and high mounting reliability
● Magnetic shield type with no leakage
● High-Q impedance : EXC24CF
● Small and thin
Datasheet
14
EXC24CE121U

Panasonic
Common mode Noise Filters

● Elimination of radiation noises from high-speed differential transmissions
● Strong multilayer structure, excellent reflow resistance and high mounting reliability
● Magnetic shield type with no leakage
● High-Q impedance : EXC24CF
● Small and thin
Datasheet
15
EXC24CE900U

Panasonic
Common mode Noise Filters

● Elimination of radiation noises from high-speed differential transmissions
● Strong multilayer structure, excellent reflow resistance and high mounting reliability
● Magnetic shield type with no leakage
● High-Q impedance : EXC24CF
● Small and thin
Datasheet
16
EXC24CE

Panasonic
Common mode Noise Filters

● Elimination of radiation noises from high-speed differential transmissions
● Strong multilayer structure, excellent reflow resistance and high mounting reliability
● Magnetic shield type with no leakage
● High-Q impedance : EXC24CF
● Small and thin
Datasheet
17
EXC24CF

Panasonic
Common mode Noise Filters

● Elimination of radiation noises from high-speed differential transmissions
● Strong multilayer structure, excellent reflow resistance and high mounting reliability
● Magnetic shield type with no leakage
● High-Q impedance : EXC24CF
● Small and thin
Datasheet
18
EXC24CH

Panasonic
Common mode Noise Filters

● Small and thin type, built-in filter circuit (L 1.25 mm×W 1.00 mm×H 0.50 mm)
● Suppression of high frequency noise with little influence of waveform rounding on signal transmission, achieved by setting high cut-off frequency between 6 and 10 GHz
● S
Datasheet
19
AN8028

Panasonic Semiconductor
Self-excited RCC pseudo-resonance type AC-DC switching power supply controller
0.3 +0.1
  –0.05
• Operating supply voltage range: 3.0±0.3 Stop voltage (8.6 V typical) to 34 V SIP009-P-0000C
• Output block employs the totem pole system.
• Power MOSFET can be directly driven. (output peak current: ±1 A maximum)
• Small pre-start
Datasheet
20
AN8029

Panasonic Semiconductor
Self-excited RCC pseudo-resonance type AC-DC switching power supply controller

• Operating supply voltage range: 3.0±0.3 Stop voltage (8.6 V typical) to 34 V SIP009-P-0000C
• Output block employs the totem pole system.
• Power MOSFET can be directly driven. (output peak current: ±1 A maximum)
• Small pre-start operating curren
Datasheet



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