MFM1714VD2KD2F4M00

MFM1714VD2KD2F4M00

  • 厂商:

    VICOR(怀格)

  • 封装:

    -

  • 描述:

    270VVINMFMFILTERMODULE-CHA

  • 数据手册
  • 价格&库存
MFM1714VD2KD2F4M00 数据手册
HV MFM™ Filter MFM1714xD2KD2F4yzz High-Voltage MIL-COTS Input Filter Module Features & Benefits Product Description • 270V nominal input The MFM DCM™ Filter is a DC front-end module that provides EMI filtering and transient protection. The MFM DCM Filter enables designers using Vicor 270V nominal input voltage VIA™ or ChiP™ [a] modules to meet conducted emission/conducted susceptibility per MIL-STD-461E/F/G; and input transients per MIL-STD-704F. The MFM DCM Filter accepts an input voltage of 160 – 420VDC (270V nominal input ) and delivers output power up to 640W. • 99% efficiency • EMI filtering „„MIL-STD-461E/F/G, selected CE and CS tests • Input transient protection „„MIL-STD-704F normal and abnormal transients • Envronmental qualification „„MIL-STD-810 „„MIL-STD-202 • Low M-Grade temperature rating, providing operation down to –55°C • Output power up to 640W • Available in chassis and PCB mount • Small size „„1.76 x 1.40 x 0.36in [44.6 x 35.5 x 9.2mm] Size: 1.76 x 1.40 x 0.36in [44.6 x 35.5 x 9.2mm] Typical Applications • Defense • Aerospace Compatible Products • High input voltage DCM3714 VIA™ [a] • High input voltage ChiP [a] DCM Additional components are required for EMI filtering and transient suppression, when used with ChiP™ package modules. Part Ordering Information Part Number MFM1714BD2KD2F4M04 MFM1714BD2KD2F4M08 MFM1714VD2KD2F4M00 HV MFM™ Filter Page 1 of 16 Package Type Product Grade Option Field 04 = Short Pin B = Board VIA M = –55 to 100°C V = Chassis VIA 08 = Long Pin 00 = Chassis Rev 1.5 03/2020 MFM1714xD2KD2F4yzz Typical Application [b] MFM F 160 – 420V Source +IN RIN_D DCM3714 VIA™ +IN +OUT VDDE EN TR –SENSE +SENSE EMI GND CIN –IN +OUT –OUT –IN COUT-EXT L O A D –OUT earth ground Alternate configuraon CIN_1 DCM3714 VIA™ with a MFM input filter, to meet the MIL-STD-461E/F/G requirements Parts List for Typical Application F Littelfuse 0487 Series rated 8A Cooper/Bussman PC-Tron Series, fast acting fuses rated 5A RIN_D Vishay Dale CRCW25123R30FKEG, 3.3Ω, 1W CIN [b] TDK Corporation C5750X6S2W225K250KA, 5 x 2.2µF (11µF) Parts List for Alternate Configuration CIN_1 [c] Rubycon 450QXW100MEFC16X35, 100µF, 450V [b] A minimum load of 10% is required to meet the conducted emissions CE102 for input voltages in the range of 270 – 420VDC. For EMI test report, contact Vicor Applications. [c] No minimum load is required to meet CE102 with C IN_1 = 100µF. HV MFM™ Filter Page 2 of 16 Rev 1.5 03/2020 MFM1714xD2KD2F4yzz Pin Configuration +OUT +IN EMI GND –IN –OUT MFM1714 Filter – Chassis (Lug) Mount – Terminals Up –IN –OUT EMI GND +IN +OUT MFM1714 Filter – PCB Mount – Pins Down Note: These pin drawings are not to scale. Pin Descriptions Signal Name Type +IN INPUT POWER Positive input power terminal –IN INPUT POWER RETURN Negative input power terminal EMI GND EMI GROUND EMI ground terminal +OUT OUTPUT POWER Positive output power terminal –OUT OUTPUT POWER RETURN Negative output power terminal HV MFM™ Filter Page 3 of 16 Function Rev 1.5 03/2020 MFM1714xD2KD2F4yzz Absolute Maximum Ratings The absolute maximum ratings below are stress ratings only. Operation at or beyond these maximum ratings can cause permanent damage to the device. Electrical specifications do not apply when operating beyond rated operating conditions. Parameter Comments Min Max Unit Input Voltage (+IN to –IN) Continuous –0.5 460.0 V Output Voltage (+OUT to –OUT) Continuous –0.5 460.0 V 2121 VDC Dielectric Withstand (Input/Output to EMI GND/Case) Storage Temperature M-Grade –65 125 °C Internal Operating Temperature M-Grade –55 125 °C 4 A 4 [0.45] in.lbs [N.m] Average Output Current Input/Output Pin Torque and Mounting Torque Electrical Specifications Specifications apply over all line and load conditions, unless otherwise noted; boldface specifications apply over the temperature range of –55°C ≤ TCASE ≤100°C (M-Grade); all other specifications are at TCASE = 25°C unless otherwise noted. Attribute Symbol Conditions / Notes Min Typ Max Unit 160 270 420 V 4 A Continuous, over all line conditions 640 W @270V, 2.37A, 100°C baseplate 0.80 VDC 99 % Power Input / Output Specification Input Voltage Range Maximum Output Current  [d] Rated Output Power  [d] VIN IOUT_MAX POUT Internal Voltage Drop Efficiency [d] η Continuous operation Continuous, at VOUT = 160V (IOUT = POUT/VIN) Full load, low line, high temperature 99.4 99.6 Full load, nominal line, high temperature 99.7 99.8 % Full load, high line, high temperature 99.8 99.9 % One MFM for each DCM™ even if the total power of the DCM is below POUT maximum value. HV MFM™ Filter Page 4 of 16 Rev 1.5 03/2020 MFM1714xD2KD2F4yzz EMI/EMC Standard Test Procedure Notes MIL-STD-461E/F/G Conducted Emmisions Conducted Susceptibility CE101 Figure CE101-4, Navy ASW & Army Aircraft, Curve #1 (above 28VDC) CE102 Figure CE102-1, Basic curve + 10dB limit relaxation for all applications CS101 Figure CS101, Curve #1, for all applications (above 28VDC) MIL-HDBK-704-7 MIL-STD-704F normal transients From table HDC105-III: overvoltage 330VDC for 20ms duration, undervoltage 200VDC for 50ms duration MIL-STD-704F abnormal transients From table HDC302-III: overvoltage 350VDC for 50ms duration, undervoltage 180VDC for 50ms duration Transient Immunity HV MFM™ Filter Page 5 of 16 Rev 1.5 03/2020 MFM1714xD2KD2F4yzz Typical Characteristics 1 Attenuation (dB) -20 2 -Common Mode -Differential Mode -40 -60 -80 f/Hz Atten./dB Cursor 1 100.000k -40.030 Cursor 2 1.000M -76.273 C2-C1 900.000k -36.242 -100 104 105 106 107 Frequency (Hz) Output Impedance Magnitude (dBΩ) Figure 1 — Attenuation (dB) vs. frequency (Hz), input leads are terminated with LISN impedances 25Ω for common mode, 100Ω for differential mode 1 40 2 20 0 -20 f/Hz Mag./dB Cursor 1 39.587k 37.956 Cursor 2 1.686M -42.183 C2-C1 1.646M -80.139 -40 102 103 104 105 106 107 Frequency (Hz) Figure 2 — Output Impedance (dBΩ) vs. frequency (Hz) plot looking back into the output terminals of the MFM with shorted input terminals HV MFM™ Filter Page 6 of 16 Rev 1.5 03/2020 MFM1714xD2KD2F4yzz Typical Conducted Emissions CE101 peak scans with MFM1714VD2KD2F4M00 and DCM3714VD2K26E0M01 or DCM3714VD2K31E0T01, in either condition: –OUT connected to GND or –OUT floating. 50Ω Termination on Signal Output Port (One for Each LISN) DCM3714 VIA™ DC + Power Supply – LISN Screen Room/ Filters +IN CIN +OUT +IN +OUT –IN –OUT HV MFM –IN LISN Load COUT –OUT EMI GND Current Probe EMI Receiver Figure 3 — A typical test setup for conducted emissions CE101 is shown above. A current probe is used to measure and plot the variations in the current through the RED and BLACK leads at various load conditions. ResBW 37.71 dB A INPUT 2 140 Det Marker 1 [T1] Att 10 dB Meas T 626.00000000 Hz 100 Hz 1 kHz MA Trd 100 Hz 20 ms Unit 1 [T1] 130 CE101RED 100 Hz 20 ms Unit 1 [T1] CE101RED dB A 10 dB kHzA 58.43 626.00000000 Hz SGL 110 CE101-41 1MA 100 90 80 80 70 70 60 60 50 50 1 40 1MA 100 90 1 40 30 30 20 20 10 10 19.Oct 2018 14:36 30 Hz 0 10 kHz Title: Peak Comment B: "" Date: 19.OCT.2018 Att 10 dB 14:36:48 Marker 1 [T1] INPUT 2 140 89.24 dB A 30.00000000 Hz 100 Hz Det ResBW Meas T 1 kHz 130 19.Oct 2018 14:15 30 Hz 10 kHz Title: Peak Comment B: "" Date: 19.OCT.2018 Figure 4 — Peak scan for the RED lead with CIN = 11µF, RIN_D = 3.3Ω COUT = 2200µF, 0% load, VIN = 160V MA Trd 100 Hz 20 ms Unit 1 [T1] 14:15:19 Figure 5 — Peak scan for the RED lead with CIN = 11µF, RIN_D = 3.3Ω COUT = 2200µF, 100% load, VIN = 160V CE101BLK Att 10 dB dB A Marker 1 [T1] INPUT 2 140 10 dB kHzA 89.24 30.00000000 Hz 87.35 dB A 30.00000000 Hz 100 Hz Det ResBW Meas T 1 kHz 130 SGL 120 MA Trd 100 Hz 20 ms Unit 1 [T1] CE101BLK dB A 10 dB kHzA 87.35 30.00000000 Hz SGL 120 110 CE101-41 110 CE101-41 1MA 100 1MA 100 1 90 901 80 80 70 70 60 60 50 50 40 40 30 30 20 20 10 0 1 kHz MA Trd 100 Hz 120 110 CE101-41 0 Meas T 626.00000000 Hz 130 SGL 120 ResBW 58.43 dB A INPUT 2 140 10 dB kHzA 37.71 626.00000000 Hz Det Marker 1 [T1] Att 10 dB dB A 10 19.Oct 2018 15:47 30 Hz Title: Peak Comment B: "" Date: 19.OCT.2018 19.Oct 2018 15:54 30 Hz Title: Peak Comment B: "" Date: 19.OCT.2018 15:47:35 Figure 6 — Peak scan for the BLACK lead with CIN = 11µF, RIN_D = 3.3Ω COUT = 2200µF, 0% load, VIN = 160V HV MFM™ Filter Page 7 of 16 0 10 kHz 10 kHz 15:54:30 Figure 7 — Peak scan for the BLACK lead with CIN = 11µF, RIN_D = 3.3Ω COUT = 2200µF, 100% load, VIN = 160V Rev 1.5 03/2020 MFM1714xD2KD2F4yzz Typical Conducted Emissions (Cont.) CE101 peak scans with MFM1714VD2KD2F4M00 and DCM3714VD2K26E0M01 or DCM3714VD2K31E0T01, in either condition: –OUT connected to GND or –OUT floating. Det Att 10 dB ResBW INPUT 2 140 Meas T 100 Hz MA Trd CE101 Marker 1 [T1] 100 Hz 20 ms Unit 1 kHz 140 10 kHz 100 Hz Det MA Trd ResBW 20 ms Unit 1 kHz 110 CE101-41 dB A 10 kHz 78.74 dB A 1 [T1] 1.36000000 kHz 2 [T1] 120 SGL CE101 100 Hz Meas T 130 120 61.33 dB A 5.00000000 kHz SGL 110 CE101-41 1MA 100 1MA 100 90 90 80 80 70 70 60 60 50 50 40 40 30 30 20 20 10 1 2 10 18.Nov 2016 14:43 30 Hz Date: 0 10 kHz 18.NOV.2016 14:43:53 Det Att 10 dB ResBW INPUT 2 140 Meas T 100 Hz 18.Nov 2016 14:39 30 Hz Date: Figure 8 — Peak scan for the RED lead with CIN_1 = 100µF, COUT = 2000µF, 0% load 1 kHz MA Trd Att 10 dB 81.16 dB A 1.84000000 kHz INPUT 2 dB A 140 10 kHz 120 14:39:33 Marker 1 [T1] CE101 100 Hz 20 ms Unit 10 kHz 18.NOV.2016 Figure 9 — Peak scan for the RED lead with CIN_1 = 100µF, COUT = 2000µF, 100% load 100 Hz Det ResBW Meas T 1 kHz MA Trd 20 ms Unit 1 [T1] dB A 10 kHz 81.16 dB A 1.84000000 kHz 2 [T1] 120 SGL CE101 100 Hz 130 130 62.40 dB A 5.00000000 kHz SGL 110 CE101-41 110 CE101-41 1MA 100 1MA 100 90 90 1 80 80 70 70 2 60 60 50 50 40 40 30 30 20 20 10 10 0 1.36000000 kHz INPUT 2 130 0 78.74 dB A Att 10 dB dB A 0 18.Nov 2016 14:21 30 Hz Date: 10 kHz 18.NOV.2016 HV MFM™ Filter Page 8 of 16 Date: 14:21:58 Figure 10 — Peak scan for the BLACK lead with CIN_1 = 100µF, COUT = 2000µF, 0% load 18.Nov 2016 14:25 30 Hz 10 kHz 18.NOV.2016 14:25:55 Figure 11 — Peak scan for the BLACK lead with CIN_1 = 100µF, COUT = 2000µF, 100% load Rev 1.5 03/2020 MFM1714xD2KD2F4yzz Typical Conducted Emissions (Cont.) CE102 peak scans with MFM1714VD2KD2F4M00 and DCM3714VD2K26E0M01 or DCM3714VD2K31E0T01, –OUT connected to GND, –OUT is floating. 50Ω Termination DCM3714 VIA™ DC + Power Supply – LISN Screen Room/ Filters +IN CIN +OUT +IN +OUT -IN -OUT HV MFM –IN LISN COUT –OUT Load EMI GND 20dB Attenuator EMI Reciever Figure 12 — A typical test setup for conducted emissions CE102 is shown above. A 50Ω termination is used for LISN and voltage across the RED and BLACK leads are measured at various load conditions. Det Att 10 dB ResBW INPUT 2 120 Meas T 100 kHz MA Trd 10 kHz 20 ms Unit 1 MHz CE102RED Meas T 100 kHz MA Trd 10 kHz 20 ms Unit 1 MHz CE102BLK dB V 10 MHz 110 SGL 100 CE102270 90 SGL 100 CE102270 90 1MA 80 80 70 70 60 60 50 50 40 40 30 30 20 20 10 1MA 10 19.Oct 2018 10:19 10 kHz 0 10 MHz Title: Peak Comment B: "" Date: 19.OCT.2018 10:19:10 Det Att 10 dB ResBW INPUT 2 120 Meas T 100 kHz 19.Oct 2018 10:21 10 kHz 10 MHz Title: Peak Comment B: "" Date: 19.OCT.2018 Figure 13 — Peak scan for the RED lead with CIN = 11µF, RIN_D = 3.3Ω COUT = 2200µF, 0% load, VIN = 160V MA Trd 10 kHz 20 ms Unit 1 MHz 10:21:40 Figure 14 — Peak scan for the RED lead with CIN = 11µF, RIN_D = 3.3Ω COUT = 2200µF, 100% load, VIN = 160V CE102RED Det Att 10 dB dB V ResBW INPUT 2 120 10 MHz 110 Meas T 100 kHz MA Trd 10 kHz 20 ms Unit 1 MHz CE102BLK dB V 10 MHz 110 SGL 100 CE102270 90 SGL 100 CE102270 90 1MA 80 80 70 70 60 60 50 50 40 40 30 30 20 20 10 0 ResBW INPUT 2 120 10 MHz 110 0 Det Att 10 dB dB V 1MA 10 19.Oct 2018 10:13 10 kHz Title: Peak Comment B: "" Date: 19.OCT.2018 0 10 MHz 10:13:39 Figure 15 — Peak scan for the BLACK lead with CIN = 11µF, RIN_D = 3.3Ω COUT = 2200µF, 0% load, VIN = 160V 19.Oct 2018 10:25 10 kHz Title: Peak Comment B: "" Date: 19.OCT.2018 10 MHz 10:25:27 Figure 16 — Peak scan for the BLACK lead with CIN = 11µF, RIN_D = 3.3Ω COUT = 2200µF, 100% load, VIN = 160V Note: A minimum load of 10% is required to meet the conducted emissions CE102 for input voltages in the range of 270 – 420VDC. For EMI test report, contact Vicor Applications. HV MFM™ Filter Page 9 of 16 Rev 1.5 03/2020 MFM1714xD2KD2F4yzz Typical Conducted Emissions (Cont.) CE102 peak scans with MFM1714VD2KD2F4M00 and DCM3714VD2K26E0M01 or DCM3714VD2K31E0T01, –OUT connected to GND, –OUT is floating. Marker 1 [T1] 68.32 dB V Att 10 dB 133.20000000 kHz INPUT 2 120 Det ResBW Meas T 100 kHz MA Trd Marker 1 [T1] CE102RED Att 10 dB 10 kHz 20 ms Unit 1 MHz 1 [T1] dB V 120 10 MHz 68.32 dB V SGL 100 CE102270 MA Trd ResBW 100 kHz 20 ms Unit 1 MHz 1 [T1] dB V 10 MHz 47.38 dB V 718.00000000 kHz 2 [T1] 43.38 dB V 2.87000000 MHz SGL 100 CE102270 3 [T1] 39.64 dB V 5.02200000 MHz 1MA 1MA 80 80 70 1 70 60 60 1 50 50 2 40 40 3 30 30 20 20 10 10 0 18.Oct 2016 14:43 10 kHz Date: 10 MHz 18.OCT.2016 14:43:36 Marker 1 [T1] 69.34 dB V Att 10 dB INPUT 2 120 132.80000000 kHz 100 kHz 10 MHz Det ResBW Meas T MA Trd CE102BLK 14:51:53 Marker 1 [T1] 10 kHz Att 10 dB 20 ms Unit 1 MHz 1 [T1] 18.OCT.2016 Figure 18 — Peak scan for the RED lead with CIN_1 = 100µF, COUT = 2000µF, 100% load dB V INPUT 2 120 10 MHz 69.34 dB V 132.80000000 kHz 110 18.Oct 2016 14:51 10 kHz Date: Figure 17 — Peak scan for the RED lead with CIN_1 = 100µF, COUT = 2000µF, 0% load 90 47.71 dB V 718.00000000 kHz Det MA Trd ResBW Meas T 100 kHz dB V 10 MHz 47.71 dB V 2 [T1] 42.53 dB V 2.86600000 MHz SGL 3 [T1] 39.52 dB V 5.01800000 MHz 90 80 20 ms Unit 718.00000000 kHz 100 CE102270 1MA CE102BLK 10 kHz 1 MHz 1 [T1] 110 SGL 100 CE102270 1MA 80 1 70 70 60 60 50 50 40 40 30 30 20 20 1 2 10 0 CE102RED 10 kHz Meas T 90 90 0 Det 110 133.20000000 kHz 110 47.38 dB V 718.00000000 kHz INPUT 2 3 10 18.Oct 2016 14:45 10 kHz Date: 0 10 MHz 18.OCT.2016 14:45:22 Figure 19 — Peak scan for the BLACK lead with CIN_1 = 100µF, COUT = 2000µF, 0% load 18.Oct 2016 14:54 10 kHz Date: 10 MHz 18.OCT.2016 14:54:17 Figure 20 — Peak scan for the BLACK lead with CIN_1 = 100µF, COUT = 2000µF, 100% load Note: No minimum load is required to meet CE102 with CIN_1 = 100µF. HV MFM™ Filter Rev 1.5 Page 10 of 16 03/2020 MFM1714xD2KD2F4yzz General Characteristics Specifications apply over all line and load conditions, TINT = 25°C, unless otherwise noted; boldface specifications apply over the temperature range of the specified product grade. Attribute Symbol Conditions / Notes Min Typ Max Unit Mechanical Length L 44.6 [1.76] mm [in] Width W 35.5 [1.39] mm [in] Height H 9.22 [0.36] mm [in] Volume Vol 14.5 [0.88] cm3 [in3] Mass (Weight) M 30 [1.06] g [oz] Pin Material C145 copper, 1/2 hard Underplate Low-stress ductile Nickel 50 100 Palladium 0.8 6 Soft Gold 0.12 2 Pin Finish Flatness 00@ HV MFM™ Filter Rev 1.5 Page 13 of 16 03/2020 MFM1714xD2KD2F4yzz Board-Mount Outline Drawing 1.76 44.60 .88 22.30 .11 2.892 1.17 29.720 1.40 35.50 TOP VIEW (COMPONENT SIDE) .37±.015 9.30±.381 SEATING PLANE .080 2.032 (5) PL. DIM 'L'±.015 (5) PL. DIM 'L' SHORT LONG 1.396±.020 35.458±.508 .698±.020 17.729±.508 +IN .474±.020 12.029±.508 (2) PL. +OUT EMI GND .947±.020 24.058±.508 -IN .111±.020 2.825±.508 (2) PL. -OUT .15 3.86 (2) PL. BOTTOM VIEW 1.396±.003 35.452±.076 .698±.003 17.726±.076 -IN -OUT EMI GND .474±.003 12.029±.076 (2) PL. .947±.003 24.058±.076 +IN +OUT .120±.003 3.048±.076 PLATED THRU .030 [.762] ANNULAR RING (5) PL. .172±.003 4.369±.076 PLATED THRU .064 [1.626] ANNULAR RING (2) PL. .111±.003 2.831±.076 RECOMMENDED HOLE PATTERN (COMPONENT SIDE) 81/(6627+(5:,6(63(&,),('',0(16,216$5(,1&+>00@ HV MFM™ Filter Rev 1.5 Page 14 of 16 03/2020 1.170±.003 29.720±.076 .120 [3.026] .199 [5.042] MFM1714xD2KD2F4yzz Revision History Revision Date Description 1.0 02/13/17 Initial release n/a 1.1 06/15/17 Updated product image 7, 8 1.2 07/26/17 Added fuse recommendation for typical application & remvoed MOV Updated internal operting temperature Updated note on CE scans for –OUT floating Updated MTBF rating 2 4 7, 8 9 1.3 07/24/18 Updated mechanical drawings 11, 12 1.4 10/26/18 Updated typical application Updated typical conducted emissions 2 7 – 10 1.5 03/31/20 Updated MIL-STD-461 to the latest revision 1, 2, 5 Note: pages added in Rev 1.4 HV MFM™ Filter Rev 1.5 Page 15 of 16 03/2020 Page Number(s) MFM1714xD2KD2F4yzz Vicor’s comprehensive line of power solutions includes high density AC-DC and DC-DC modules and accessory components, fully configurable AC-DC and DC-DC power supplies, and complete custom power systems. Information furnished by Vicor is believed to be accurate and reliable. However, no responsibility is assumed by Vicor for its use. Vicor makes no representations or warranties with respect to the accuracy or completeness of the contents of this publication. Vicor reserves the right to make changes to any products, specifications, and product descriptions at any time without notice. Information published by Vicor has been checked and is believed to be accurate at the time it was printed; however, Vicor assumes no responsibility for inaccuracies. Testing and other quality controls are used to the extent Vicor deems necessary to support Vicor’s product warranty. Except where mandated by government requirements, testing of all parameters of each product is not necessarily performed. Specifications are subject to change without notice. Visit http://www.vicorpower.com/mil-cots-dc-dc/mfm-filter-module for the latest product information. Vicor’s Standard Terms and Conditions and Product Warranty All sales are subject to Vicor’s Standard Terms and Conditions of Sale, and Product Warranty which are available on Vicor’s webpage (http://www.vicorpower.com/termsconditionswarranty) or upon request. Life Support Policy VICOR’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS PRIOR WRITTEN APPROVAL OF THE CHIEF EXECUTIVE OFFICER AND GENERAL COUNSEL OF VICOR CORPORATION. As used herein, life support devices or systems are devices which (a) are intended for surgical implant into the body, or (b) support or sustain life and whose failure to perform when properly used in accordance with instructions for use provided in the labeling can be reasonably expected to result in a significant injury to the user. A critical component is any component in a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system or to affect its safety or effectiveness. Per Vicor Terms and Conditions of Sale, the user of Vicor products and components in life support applications assumes all risks of such use and indemnifies Vicor against all liability and damages. Intellectual Property Notice Vicor and its subsidiaries own Intellectual Property (including issued U.S. and Foreign Patents and pending patent applications) relating to the products described in this data sheet. No license, whether express, implied, or arising by estoppel or otherwise, to any intellectual property rights is granted by this document. Interested parties should contact Vicor’s Intellectual Property Department. The products described on this data sheet are protected by the following U.S. Patents Numbers: Patents Pending. Contact Us: http://www.vicorpower.com/contact-us Vicor Corporation 25 Frontage Road Andover, MA, USA 01810 Tel: 800-735-6200 Fax: 978-475-6715 www.vicorpower.com email Customer Service: custserv@vicorpower.com Technical Support: apps@vicorpower.com ©2017 – 2020 Vicor Corporation. All rights reserved. The Vicor name is a registered trademark of Vicor Corporation. All other trademarks, product names, logos and brands are property of their respective owners. HV MFM™ Filter Rev 1.5 Page 16 of 16 03/2020
MFM1714VD2KD2F4M00 价格&库存

很抱歉,暂时无法提供与“MFM1714VD2KD2F4M00”相匹配的价格&库存,您可以联系我们找货

免费人工找货
MFM1714VD2KD2F4M00
  •  国内价格 香港价格
  • 1+4788.650581+620.29773

库存:5