LTF5022T
Abstract: LTF5022 LTF5022T-101MR45-LC LTF5022T-1R2N4R2-LC LTF5022T-1R5N3R6-LC LTF5022T-4R7N2R0-LC LTF5022T-101MR45 LTF5022T-100M1R4-LC LTF5022T-2R2N3R2 LTF5022T-4R7N2R0
Text: TDK Equivalent Circuit Model Library Dec. 16, 2009 Model Type: Simple Model Inductors / LTF5022 Series Circuit Diagram Circuit Parameters Part No. L1[uH] R1[ohm] C1[pF] R2[ohm] LTF5022T-1R2N4R2-LC 1.2 2900 0.493 0.0230 LTF5022T-1R5N3R6-LC 1.5 3800 0.976 0.0280
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LTF5022
LTF5022T-1R2N4R2-LC
LTF5022T-1R5N3R6-LC
LTF5022T-1R8N3R6-LC
LTF5022T-2R2N3R2-LC
LTF5022T-3R3N2R5-LC
LTF5022T-4R7N2R0-LC
LTF5022T-6R8N1R6-LC
LTF5022T-100M1R4-LC
LTF5022T-220MR98-LC
LTF5022T
LTF5022T-101MR45-LC
LTF5022T-1R2N4R2-LC
LTF5022T-1R5N3R6-LC
LTF5022T-4R7N2R0-LC
LTF5022T-101MR45
LTF5022T-100M1R4-LC
LTF5022T-2R2N3R2
LTF5022T-4R7N2R0
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Untitled
Abstract: No abstract text available
Text: Engineering Development Model Voltage Controlled Oscillator ROS-EDR6572 Important Note This model has been designed, built and tested in our engineering department. Performance data represents model capability. At present it is a non-catalog model. On request, we can supply a
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CK605
ROS-EDR6572
ROS-EDR6572
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Abstract: No abstract text available
Text: Engineering Development Model Voltage Controlled Oscillator ROS-ED9404/1 Important Note This model has been designed, built and tested in our engineering department. Performance data represents model capability. At present it is a non-catalog model. On request, we can supply a
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CK605
ROS-ED9404/1
ROS-ED9404/1
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Abstract: No abstract text available
Text: Engineering Development Model Voltage Controlled Oscillator ROS-ED10804/2 Important Note This model has been designed, built and tested in our engineering department. Performance data represents model capability. At present it is a non-catalog model. On request, we can supply a
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CK605
ROS-ED10804/2
ROS-ED10804/2
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Untitled
Abstract: No abstract text available
Text: Engineering Development Model Voltage Controlled Oscillator ROS-ED8976/3 Important Note This model has been designed, built and tested in our engineering department. Performance data represents model capability. At present it is a non-catalog model. On request, we can supply a
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CK605
ROS-ED8976/3
ROS-ED8976/3
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Untitled
Abstract: No abstract text available
Text: Engineering Development Model Low Pass Filter RLPF-EDU0983 Surface Mount Important Note This model has been designed, built and tested in our engineering department. Performance data represents model capability. At present it is a non-catalog model. On request, we can supply a
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RLPF-EDU0983
CK605
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Untitled
Abstract: No abstract text available
Text: Engineering Development Model Voltage Controlled Oscillator ROS-ED9929/1 Important Note This model has been designed, built and tested in our engineering department. Performance data represents model capability. At present it is a non-catalog model. On request, we can supply a
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CK605
ROS-ED9929/1
ROS-ED9929/1
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Untitled
Abstract: No abstract text available
Text: Engineering Development Model Voltage Controlled Oscillator ROS-ED10114/1 Important Note This model has been designed, built and tested in our engineering department. Performance data represents model capability. At present it is a non-catalog model. On request, we can supply a
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CK605
ROS-ED10114/1
ROS-ED10114/1
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Abstract: No abstract text available
Text: Engineering Development Model Frequency Mixer MBA-EE7756/3 Level 4 LO Power +4 dBm Important Note This model has been designed, built and tested in our engineering department. Performance data represents model capability. At present it is a non-catalog model. On request, we can supply a
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MBA-EE7756/3
MBA-EE7756/3
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Abstract: No abstract text available
Text: Engineering Development Model Level 19 LO Power +19 dBm Frequency Mixer HJK-ED9133/1 Important Note This model has been designed, built and tested in our engineering department. Performance data represents model capability. At present it is a non-catalog model. On request, we can supply a
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HJK-ED9133/1
TTT167
HJK-ED9133/1
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Abstract: No abstract text available
Text: Engineering Development Model Level 17 LO Power +17 dBm Frequency Mixer HJK-ED11928/1 Important Note This model has been designed, built and tested in our engineering department. Performance data represents model capability. At present it is a non-catalog model. On request, we can supply a
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HJK-ED11928/1
TTT167
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22ZM14D
Abstract: 27ZM20D 47ZM14D 27ZM14D hokuriku 101103 IP Semiconductors A/27ZM20D
Text: Low Voltage, High Energy Type Model No. ZM Low Voltage High Energy Type Model No. ZM radial type Model No. ZM MNR varistor made it available to have lower varistor voltage. Conventionally lowest varistor voltage was 18V, Model No. ZM realized it as low as 8V, by means of researching of material composition
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8V47V)
22ZM20D
27ZM20D
33ZM20D
39ZM20D
47ZM20D
0-610-2A
22ZM14D
47ZM14D
27ZM14D
hokuriku
101103
IP Semiconductors A/27ZM20D
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QD30
Abstract: RD20 RD30 SD20 SD30 NDK oscillators
Text: SIMPLE PACKAGED CRYSTAL OSCILLATORS 3800 SERIES • Model 3824A ■ Main applications: Communications equipment. ■ Features 8 Sine wave output. 8 Wide frequency range covering high frequency. 8 Low power consumption 3829A ■ Specification Model 3824A Spec. Code
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214E-01
Abstract: 0603LS
Text: Document 298 SPICE Model – 0603LS This lumped-element SPICE model data simulates the frequency-dependent behavior of Coilcraft ferrite surface mount inductors within the frequency range shown in the accompanying table. The equivalent lumped element model schematic is
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0603LS
87E-05
07E-05
34E-05
20E-05
54E-05
21E-04
15E-04
30E-04
214E-01
0603LS
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Untitled
Abstract: No abstract text available
Text: SPICE Device Model SiR862DP Vishay Siliconix N-Channel 25 V D-S MOSFET DESCRIPTION CHARACTERISTICS The attached SPICE model describes the typical electrical characteristics of the n-channel vertical DMOS. The subcircuit model is extracted and optimized over the - 55 °C
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SiR862DP
18-Jul-08
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Untitled
Abstract: No abstract text available
Text: Document 158 SPICE Model – 0805HQ This lumped-element SPICE model data simulates the frequency-dependent behavior of Coilcraft RF surface mount inductors from 1 MHz to the upper frequency limit shown in the accompanying table. The equivalent lumped element model schematic is
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0805HQ
0805HQ
0805HQ-2N5
0805HQ-5N6
0805HQ-6N2
0805HQ-12N
0805HQ-16N
0805HQ-18N
0805HQ-20N
0805HQ-27N
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1008HT-7N2
Abstract: 1008HT
Text: Document 158 SPICE Model – 1008HT This lumped-element SPICE model data simulates the frequency-dependent behavior of Coilcraft RF surface mount inductors from 1 MHz to the upper frequency limit shown in the accompanying table. The equivalent lumped element model schematic is
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1008HT
1008HT-82N
1008HT-R10
1008HT-R12
1008HT-R14
1008HT-R15
1008HT-R18
1008HT-R22
1008HT-R24
1008HT-R27
1008HT-7N2
1008HT
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SPICE
Abstract: models
Text: SPICE MODELS SPICE Model – xx336RAF This lumped-element SPICE model data simulates the frequency-dependent behavior of Coilcraft RF surface mount inductors from 1 MHz to the upper frequency limit shown in the accompanying table. The equivalent lumped element model schematic is
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xx336RAF
17E-04
44E-04
72E-04
84E-04
96E-04
98E-04
32E-04
SPICE
models
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SPICE
Abstract: models
Text: SPICE MODELS SPICE Model – xx413RAF This lumped-element SPICE model data simulates the frequency-dependent behavior of Coilcraft RF surface mount inductors from 1 MHz to the upper frequency limit shown in the accompanying table. The equivalent lumped element model schematic is
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xx413RAF
38E-04
60E-04
76E-04
06E-04
18E-04
63E-04
21E-04
11E-04
SPICE
models
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Untitled
Abstract: No abstract text available
Text: SPICE Device Model SiR862DP www.vishay.com Vishay Siliconix N-Channel 25 V D-S MOSFET DESCRIPTION CHARACTERISTICS The attached SPICE model describes the typical electrical characteristics of the n-channel vertical DMOS. The subcircuit model is extracted and optimized over the - 55 °C
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SiR862DP
2002/95/EC.
2002/95/EC
2011/65/EU.
JS709A
02-Oct-12
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SPICE
Abstract: models coilcraft spice 270 ohm resistor
Text: Document 158 SPICE Model – 0805HQ This lumped-element SPICE model data simulates the frequency-dependent behavior of Coilcraft RF surface mount inductors from 1 MHz to the upper frequency limit shown in the accompanying table. The equivalent lumped element model schematic is
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0805HQ
intQ-16N
0805HQ-18N
0805HQ-20N
0805HQ-27N
0805HQ-30N
0805HQ-39N
0805HQ-48N
0805HQ-51N
90E-06
SPICE
models
coilcraft spice
270 ohm resistor
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SPICE
Abstract: models 0805HT 432E-04
Text: Document 158 SPICE Model – 0805HT This lumped-element SPICE model data simulates the frequency-dependent behavior of Coilcraft RF surface mount inductors from 1 MHz to the upper frequency limit shown in the accompanying table. The equivalent lumped element model schematic is
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0805HT
intT-82N
0805HT-R10
0805HT-R12
0805HT-R15
0805HT-R18
0805HT-R22
0805HT-R27
0805HT-R33
0805HT-R39
SPICE
models
0805HT
432E-04
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Untitled
Abstract: No abstract text available
Text: Document 158 SPICE Model – 0805HT This lumped-element SPICE model data simulates the frequency-dependent behavior of Coilcraft RF surface mount inductors from 1 MHz to the upper frequency limit shown in the accompanying table. The equivalent lumped element model schematic is
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0805HT
04E-06
22E-05
36E-05
11E-05
50E-05
34E-05
86E-05
14E-05
74E-05
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Untitled
Abstract: No abstract text available
Text: SPICE Device Model SiZ918DT www.vishay.com Vishay Siliconix Dual N-Channel 30 V D-S MOSFETs DESCRIPTION CHARACTERISTICS The attached SPICE model describes the typical electrical characteristics of the n-channel vertical DMOS. The subcircuit model is extracted and optimized over the 55 °C
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SiZ918DT
2011/65/EU
2002/95/EC.
2002/95/EC
2011/65/EU.
12-Mar-12
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