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Part : MS27500E12F35P Supplier : Amphenol Aerospace Manufacturer : Farnell element14 Stock : - Best Price : £150.86 Price Each : £174.06
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Part : MS27500E12F4P Supplier : Amphenol Aerospace Manufacturer : Farnell element14 Stock : - Best Price : £156.0700 Price Each : £180.08
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500E-12

Catalog Datasheet MFG & Type PDF Document Tags

MGV050-18

Abstract: varactor diode SPICE model Spice Models for Metelics GaAs Abrupt Varactor Diodes Example circuit using MGV05-18 model .DC V1 .2 .6 .1 .PRINT DC V(2) V1 1 0 0 R1 1 2 1000 D1 2 0 MGV .MODEL MGV D (IS=50.0E-12 N=2.0 CJO=0.6E-12 VJ=1.1 M=0.46 XTI=3.0 EG=1.42 + TT=3.0E-9 BV=22.0 IBV=10.0E-6 RS=0.2) .END Part Number Cj0 min pF Cj0 max pF MGV050-18 0.51 0.71 MGV050-20 1.02 1.24 MGV050-22 1.83 2.23 MGV050-24 2.74 3.35 MGV050-26 3.65 4.47 IS=50e-12 to 0.23e-9 N=1.9 to 2.2
Metelics
Original
varactor diode SPICE model MGV050 50E-12

LT1007

Abstract: 000E-12 * rplb 7 131 le5 cl 80 91 200e-12 d4a 60 141 dm3 rxcl 91 90 50 d4b 141 14 dm3 cxcl 91 90 500e-12 gnl 0
-
OCR Scan
LT1007 000E-16 000E-12 5030e 000E-19 000E-20 6315E 625E-03 0000E-16 7857E 6233E

OP27

Abstract: 0p27 500e-12 gnl 0 8 60 4 c2 8 98 4.000e-12 ve 6 14 3.0909 rxc2 8 98 4.00k rnla 60 4 le4 cxc2 1 98 27 .
-
OCR Scan
OP-27 OP227 OP27 0p27 op27 spice OP227 spice 0093E-16 OOOE-16 5030E-05 9E-12

ATP301

Abstract: ATP301 SPICE PARAMETER Pch MOS FET model : BSIM3V3.2 Parameter Value LEVEL 8 VERSION 3.2 VTH0 -2.61 NLX 1.70E-07 DVT2 -0.01 UB 1.00E-21 AGS 2.00 RDSW 1.06E+07 WINT 0 NFACTOR 0.60 CDSCD 0 PCLM 0.00 DROUT 0.96 PVAG 0.01 MOBMOD 1 CAPMOD 3 CGDO 5.00E-12 CGDL 2.90E-10 CLC 3.0E-09 DLC -3.00E-07 ACDE 1.0 MJ 0.50 NJ 1.00 KT1 -1.00 AT 3.3E+04 Temp = L = W= AD = RG = RB = Date : Parameter TNOM K1 DVT0 U0 VSAT A1 PRWG LINT CIT ETA0
SANYO Electric
Original
00E-21 00E-12 0E-09 00E-07 5417124E-6 5417124E-12

OCXO mti 220

Abstract: 220-0103 Term Stability dF/dV dF/dL 3.00E-11 5.00E-12 2.00E-11 3.00E-11 2.00E-11 1.00E-11
MTI-Milliren Technologies
Original
OCXO mti 220 220-0103 mti ocxo ocxo mti 220-0116 ocxo 10MHz 12v 0E-08 00E-09 00E-08 20E-06 00E-06

AN-132

Abstract: OP-470 R9 15 99 46.8E6 RIO 15 50 46.8E6 C3 15 99 500E-12 C4 15 50 500E-12 G3 99 15 POLYM) 12 29
-
OCR Scan
AN-132 OP-470

AN-132

Abstract: OP-470 G17 34 99 99 28 3.33E-3 C3 15 99 500E-12 G18 50 34 28 50 3.33E-3 C4 15 50 500E-12 V5 30 34 1.3 G3
-
OCR Scan
ad11990

2516 memory

Abstract: 2516 Frequency Phase Error CDC516 (typical) (Vcc= 3.3V, Ta=25 deg. C) 500E-12 400E-12 Phase Error [s] 300E-12 200E-12 100E-12 000E+0 -100E-12 -200E-12 -300E-12 -400E-12 -500E-12 -600E-12 35 55
Texas Instruments
Original
CDC2516 2516 memory 2516 abstract for 4g technology CDC2509 CDC2510 SLMA003A

INA110E

Abstract: E/INA110E CDIF 1 2 6.0PF * .MODEL DX D(IS=1.0E-24) .MODEL QX NPN(IS=800.0E-18 BF=500) .MODEL JX PJF(IS=5.00E-12
-
Original
INA110E E/INA110E 00E-6 110E 0E-18 151E-12 889E-9 653E3

spectra physics

Abstract: ps 929 shown in Figure 6. 1.50E-11 t corr (ti ) 5.00E-12 Jitter 1.00E-11 t DDJ (ti ) 0.00E+00 tCXJ (ti ) -5.00E-12 -1.00E-11 -1.50E-11 0 128 256 384 512 640 768 896
Altera
Original
spectra physics ps 929 CP-01064-1

eao LAMP MAX 48V

Abstract: ISL6651 and can be calculated with Equation 10. Vramp = BGREF x dt /(R_RA x 500E-12) (V) (EQ. 10 , 4.01 x R_RESDLY / k + 13 Vramp = BGREF/(R_RA x 500E-12) x dt < Vclamp-200mV-Vramp < BGREF and slightly
Intersil
Original
eao LAMP MAX 48V ISL6651 ISL6551 FN9066 TB389 ISO9000

bf185

Abstract: Lambda Sensor RPS3 72 73 1.59E6 CPS3 72 73 500E-12 RPS4 73 98 15.9 * * INTERNAL VOLTAGE REFERENCE * EREF 98 0
Analog Devices
Original
OP186 bf185 Lambda Sensor sensor Nox OP181 OP186GRT 1E-12 54E-6 32E-12 10E-6 17E-6
Abstract: IE-5 CPS 2 50 71 IE-5 EPSY 98 72 PO L Y (2) (70,0) (0,71) 0 11 RPS3 72 73 1 .59E6 CP S3 72 73 500E-12 -
OCR Scan
0P186 OPI86 100E3 452E3 50E-15 1E-14

12v to Amplifier 200w circuit diagrams

Abstract: 12v center tap transformer 500E-12) (V) synchronous rectifiers. When using these drive schemes, the user should understand the , ns 7 Vramp = BGREF/(R_RA x 500E-12) x dt V - Resonant Delay R_RESDLY Ramp Adjust
Intersil
Original
12v to Amplifier 200w circuit diagrams 12v center tap transformer 12v to Amplifier 200w schematic diagrams flyback 200w zvs flyback driver 399K

ICL6551

Abstract: 12v center tap transformer Equation 10. Vramp = BGREF x dt /(R_RA x 500E-12) (V) · Share Support (SHARE, CS_COMP) - The unit with , R_RESDLY / k + 13 ns 7 R_RA Vramp = BGREF/(R_RA x 500E-12) x dt V 9 Resonant Delay
Intersil
Original
MO-220 ICL6551 transformer 12V 12v center tap AN1002 HIP2100 ISL6550 ISL6551IB PUB95
Abstract: be calculated with Equation 10. Vramp = BGREF x dt /(R_RA x 500E-12) (V) â'¢ Share Support (SHARE , tRESDLY = 4.01 x R_RESDLY/kâ"¦ + 13 ns 7 Vramp = BGREF/(R_RA x 500E-12) x dt V - Intersil
Original

ICL6551

Abstract: R_RA resistor and can be calculated with Equation 10. Vramp = BGREF x dt /(R_RA x 500E-12) (V) (EQ. 10 , / k, where M=11.4 tRESDLY = 4.01 x R_RESDLY / k + 13 Vramp = BGREF/(R_RA x 500E-12) x dt < Vclamp
Intersil
Original

98dx

Abstract: AD706 DX R7 12 98 2.45E9 D7 99 28 DX C3 12 98 500E-12 D8 99 29 DX G1 98 12 5 6 1.634E-3 D9 50 28 DY
-
OCR Scan
OP-297 LT1013 AD706 AD708 OP-221 LM158 98dx
Abstract: dt /(R_RA x 500E-12) (V) (EQ. 10) synchronous rectifiers. When using these drive schemes, the user , 500E-12) x dt < Vclamp-200mV-Vramp < BGREF and slightly higher than Vclamp 1.263V ±2%, 399k pull-up, No Intersil
Original

200w power amplifier PCB layout

Abstract: zvs flyback driver be calculated with Equation 10. Vramp = BGREF x dt /(R_RA x 500E-12) (V) · Share Support (SHARE , R_RESDLY/k + 13 ns 7 Vramp = BGREF/(R_RA x 500E-12) x dt V - Resonant Delay R_RESDLY
Intersil
Original
200w power amplifier PCB layout ISL6551AB
Abstract: Spice Models for Metelics GaAs Abrupt Varactor Diodes Example circuit using MGV05-18 model .DC V1 .2 .6 .1 .PRINT DC V(2) V1 1 0 0 R1 1 2 1000 D1 2 0 MGV .MODEL MGV D (IS=50.0E-12 N=2.0 CJO=0.6E-12 VJ=1.1 M=0.46 XTI=3.0 EG=1.42 + TT=3.0E-9 BV=22.0 IBV=10.0E-6 RS=0.2) .END Part Number Cj0 min pF Cj0 max pF MGV050-18 0.51 0.71 MGV050-20 1.02 1.24 MGV050-22 1.83 2.23 MGV050-24 2.74 3.35 MGV050-26 3.65 4.47 IS=50e-12 to 0.23e-9 N=1.9 to 2.2 -
OCR Scan
E151897

SMD code 175

Abstract: shown in Figure 6. 1.50E-11 t corr (ti ) 5.00E-12 Jitter 1.00E-11 t DDJ (ti ) 0.00E+00 tCXJ (ti ) -5.00E-12 -1.00E-11 -1.50E-11 0 128 256 384 512 640 768 896
-
Original
SMD code 175

82m marking

Abstract: Term Stability dF/dV dF/dL 3.00E-11 5.00E-12 2.00E-11 3.00E-11 2.00E-11 1.00E-11
KAMAYA Electric
Original
82m marking
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