MI-27T-IX-F4 [VICOR]

CONVERT DC/DC 165VIN 6.5VOUT 75W;
MI-27T-IX-F4
型号: MI-27T-IX-F4
厂家: VICOR CORPORATION    VICOR CORPORATION
描述:

CONVERT DC/DC 165VIN 6.5VOUT 75W

文件: 总7页 (文件大小:390K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
DC-DC Converters  
MI-200  
50 to 100 Watts  
Features & Benefits  
Packaging Options  
Inputs:  
Standard: Slotted baseplate  
„28VDC per MIL-STD-704D/E/F  
„155VDC per MIL-STD-1399A  
„270VDC per MIL-STD-704D/E/F  
SlimMod: Flangeless baseplate, option suffix: - S  
Example: MI - 2XX - XX - S  
Single output: 2 – 48VDC  
Up to 23W/in3  
FinMod: Finned heat sink, option suffix:  
- F1, -F2, -F3 and - F4  
MIL-STD-810 environments  
Up to 90% efficiency  
Remote sense  
Examples:  
MI - 2XX - XX -F1, 0.25in fins, longitudinal  
MI - 2XX - XX -F2, 0.50in fins, longitudinal  
MI - 2XX - XX -F3, 0.25in fins, transverse  
MI - 2XX - XX -F4, 0.50in fins, transverse  
Current limit  
OVP and thermal shut down  
Converter Selection Chart  
Power boosters for  
higher power outputs  
MI-2  
Semi-custom modules available, consult factory.  
ZCS power architecture  
Low-noise FM control  
Input Voltage  
Size: 4.6 x 2.4 x 0.5in  
[116,8 x 61,0 x 12,7mm]  
Nominal  
2 = 28V  
Range  
Transient [a]  
60V  
Notes  
[b]  
18 – 50V  
28VDC input per MIL-STD 704D/E/F  
155VDC input per MIL-STD-1399A  
270VDC input per MIL-STD-704D/E/F  
5 = 155V  
6 = 270V  
7 = 165V  
100 – 210V  
125 – 400V  
100 – 310V  
230V  
Product Highlights  
[c]  
475V  
The MI-200 family of DC-DC converters is  
designed for applications utilizing distributed  
power architectures. Based on Vicor  
VI-200 / VI-J00 family of zero-current  
switching, component level DC-DC converters,  
the MI-200 family offers exceptional  
n/a  
[a] Transient voltage for 1 second.  
[b] 16V operation at 75% load.  
[c] MI-26Z-xV, MI-26Y-xV rated at 75%  
load from 125 – 150VIN  
Product Grade Temperature (°C)  
Operating  
Storage  
performance in terms of power density,  
efficiency, noise, ease of use and reliability.  
I
= 40 to +85  
= 55 to +85  
I = 55 to +100  
M = 65 to +100  
M
Output Voltage  
Fully encapsulated in Vicor industry-standard  
package, the MI-Series meets MIL-STD-810  
environmental requirements for humidity,  
fungus, salt-fog, explosive atmosphere,  
acceleration, vibration and shock.  
Overtemperature shut down 95°C typical  
(recycle power to restart)  
Z = 2.0V  
Y = 3.3V  
0 = 5.0V  
X = 5.2V  
W = 5.5V  
V = 5.8V  
T = 6.5V [d]  
R = 7.5V [d]  
M = 10V  
1 = 12V  
P = 13.8V  
2 = 15V  
N = 18.5V  
3 = 24V  
L = 28V  
J = 36V  
K = 40V  
4 = 48V  
Output Power/Current VOUT  
Standard features, such as wide output  
trimming/programming, current limiting,  
remote sense, output inhibit, and latching  
OVP and OTP combine to offer the highest  
degree of protection, versatility and reliability  
for power systems.  
≥5V  
= 50W  
= 75W  
<5V  
= 10A  
= 15A  
Y
X
Y
X
W = 100W  
W = 20A  
V
= —  
V = 30A  
For additional output power,  
100W and 75W booster modules available  
Change (MI-2xx-xx) to (MI-Bxx-xx)  
[d] 75W max power for 28V input  
MI-200 DC-DC Converters  
Page 1 of 7  
Rev 1.8  
02/2020  
MI-200  
Converter Specifications  
(Typical at TBP =25°C, nominal line and 75% load, unless otherwise specified)  
Input Specifications  
Parameter  
nrush charge  
Min  
Typ  
Max  
Units  
Test Conditions  
I
120x10–6  
200x10–6  
Coulombs  
Nominal line  
Input reflected  
ripple current – pp  
10%  
IIN  
Nominal line, full load  
VIN  
30+20Log  
(
(
)
)
dB  
120Hz, nominal line  
2400Hz, nominal line  
VOUT  
VIN  
Input ripple rejection  
20+20Log  
dB  
VOUT  
No load power dissipation  
1.35  
2
Watts  
Output Characteristics  
Parameter  
Min  
Typ  
0.5%  
0.05%  
0.2%  
0.01  
Max  
1%  
Units  
VNOM  
Test Conditions  
Setpoint accuracy  
0.2%  
0.5%  
0.02  
VNOM  
LL to HL, 10% to Full Load  
LL to HL, No Load to 10%  
Over rated temperature  
Load/line regulation  
VNOM  
Output temperature drift  
Long term drift  
% / °C  
0.02  
100  
%/1K hours  
mV  
150  
Whichever is greater  
20MHz bandwidth  
Output ripple – pp  
1.0%  
1.5%  
VNOM  
VNOM  
[a]  
Trim range  
50%  
0.5  
110%  
Total remote  
sense compensation  
Volts  
[b]  
OVP set point  
115%  
105%  
20%  
125%  
135%  
125%  
130%  
VNOM  
INOM  
INOM  
latching  
Current limit  
Automatic restart  
[c]  
Short circuit current  
[a] 10V to 15V outputs, standard trim range 10%. Consult factory for wider trim range.  
3.3V output trim range 2.20 to 3.63V  
[b] No over temperature or voltage protection in booster modules  
[c] Output voltages of 5V or less incorporate foldback current limiting; outputs of 10V and above provide constant current limiting.  
Note: The permissible load current must never be exceeded during normal, abnormal or test conditions. For additional output related application information,  
please refer to output connections on page 5.  
Control Pin Specifications  
Parameter  
Min  
Typ  
50  
Max  
Units  
Ohms  
Ohms  
Volts  
Volts  
mA  
Test Conditions  
Gate out impedance  
Gate in impedance  
Gate in open circuit voltage  
Gate in low threshold  
Gate in low current  
Power sharing accuracy  
1000  
6
Use open collector  
0.65  
0.95  
6
1.05  
MI-200 DC-DC Converters  
Page 2 of 7  
Rev 1.8  
02/2020  
MI-200  
Converter Specifications (Cont.)  
(Typical at TBP =25°C, nominal line and 75% load, unless otherwise specified)  
Dielectric Withstand Characteristics  
Parameter  
Min  
3,000  
500  
Typ  
Max  
Units  
VRMS  
VRMS  
VRMS  
pF  
Test Conditions  
Input to output  
Baseplate earthed  
Output to baseplate  
Input to baseplate  
Input to output capacitance  
1,500  
50  
75  
Thermal Characteristics  
Parameter  
Min  
Typ  
Max  
Units  
Test Conditions  
Efficiency  
80 – 90%  
Baseplate to sink  
thermal impedance  
0.07  
95  
°C/Watt  
°C  
With thermal pads  
[d]  
Thermal shutdown  
(Drivers only)  
Cool and recycle power  
to restart  
90  
105  
[d] No over temperature or voltage protection in booster modules  
Enviornmental – MIL-STD-810D  
Parameter  
Min  
70,000  
86/240  
9
Typ  
Max  
Units  
Test Conditions  
Procedure II  
Altitude - method 500.2  
Humidity - method 507.2  
Acceleration - method 513.3  
Vibration - method 514.3  
Shock - method 516.3  
feet  
%/hours  
Procedure I, cycle 1  
Procedure II  
g
g
g
20  
Procedure I, category 6  
Procedure I  
40  
Reliability – MIL-HDBK-217F (MI-22L-MW)  
Parameter  
Min  
Typ  
3,552  
639  
Max  
Units  
Test Conditions  
25°C Ground Benign: G.B.  
50°C Naval Sheltered: N.S.  
1,000 hours  
1,000 hours  
65°C Airborne Inhabited  
Cargo: A.I.C.  
501  
1,000 hours  
Mechanical Specifications  
Parameter  
Min  
Typ  
Max  
Units  
Test Conditions  
7.2  
205  
7.3  
208  
7.4  
210  
Ounces  
Grams  
Weight  
MI-200 DC-DC Converters  
Page 3 of 7  
Rev 1.8  
02/2020  
MI-200  
Converter Specifications (Cont.)  
Product Grade Specifications  
Parameter  
I-Grade  
M-Grade  
Storage temperature  
Operating temperature (baseplate)  
Power cycling burn-in  
–55°C to +100°C  
–40°C to +85°C  
12 hours, 29 cycles  
–65°C to +100°C  
–55°C to +85°C  
96 hours, 213 cycles  
Temperature cycled with power off  
17°C per minute rate of change  
12 cycles  
–65°C to +100°C  
12 cycles  
–65°C to +100°C  
Test data supplied at these temperatures[e]  
–40°C, +80°C  
2 years  
–55°C, +80°C  
2 years  
Warranty  
Environmental compliance  
MIL-STD-810  
MIL-STD-810  
Derating  
NAVMAT P-4855-1A  
NAVMAT P-4855-1A  
[e] Test data available for review or download from vicorpower.com  
Maximum Capacitance, Rated Output Voltage <5V  
Rated VOUT (V)  
2 to <3  
IOUT Rating (A)  
CMAX (µF)  
1500  
IOUT Rating (A)  
>10 to 40  
CMAX (µF)  
5000  
≤10  
≤10  
3 to <5  
1000  
>10 to 40  
5000  
Maximum Capacitance, Rated Output Voltage ≥5V  
Rated VOUT (V)  
5 to <7.5  
7.5 to <10  
10 to <28  
≥28  
POUT Rating (W)  
CMAX (µF)  
1000  
400  
POUT Rating (W)  
>50 to 100  
CMAX (µF)  
1500  
700  
≤50  
≤50  
≤50  
≤50  
>50 to 100  
400  
>50 to 100  
500  
150  
>50 to 100  
250  
Enviornmental Qualifications  
Parameter  
Qualification  
MIL-STD-810D, Method 500.2, Procedure III, explosive decompression (40K ft.).  
A
ltitude  
MIL-STD-810D, Method 500.2, Procedure II, 40,000ft., 1000 – 1500ft./min. to 70,000ft., unit functioning  
MIL-STD-810C, Method 511.1, Procedure I  
Explosive Atmosphere  
Vibration  
MIL-STD-810D, Method 514.3, Procedure I, category 6, helicopter, 20g  
MIL-STD-810D, Method 514.3 random: 10 – 300Hz @ 0.02g2/Hz, 2000Hz @ 0.002g2/Hz, 3.9 total Grms  
3 hrs/axis. Sine: 30Hz @ 20g, 60Hz @ 10g, 90Hz @ 6.6g, 120Hz @ 5.0g, 16.0 total Grms, 3 axes  
MIL-STD-810E, Method 514.4, Table 514.4-VII, 6db/octave, 7.7G rms, 1hr/axis  
MIL-STD-810D, Method 516.3, Procedure I, functional shock, 40g  
MIL-STD-202F, Method 213B, 18 pulses, 60g, 9msec  
Shock  
MIL-STD-202F, Method 213B, 75g, 11ms saw tooth shock  
MIL-STD-202F, Method 207A, 3 impacts / axis, 1, 3, 5 feet  
Acceleration  
Humidity  
Solder Test  
Fungus  
MIL-STD-810D, Method 513.3, Procedure II Operational test, 9g for 1 minute along 3 mutually perpendicular axes  
MIL-STD-810D, Method 507.2, Procedure I, cycle I, 240 hrs, 88% relative humidity  
MIL-STD-202, Method 208, 8hr. aging  
MIL-STD-810C, Method 508.1  
MI-200 DC-DC Converters  
Page 4 of 7  
Rev 1.8  
02/2020  
MI-200  
Basic Module Operation  
C2a  
C2b  
C1a  
C1b  
F1  
C3  
+IN  
–IN  
ZeSrwoitCcuhrinregnt+OUT  
Converter  
–OUT  
400  
C3 (µF) =  
VIN Minimum  
Figure 1 — Basic module operation requires fusing, grounding, bypassing capacitors.* See Design Guide & Applications Manual.  
Output Connections and Considerations  
Storage  
The permissible load current[e] must never be exceeded during  
Vicor products, when not installed in customer units, should  
normal, abnormal or test conditions. Converters subject to  
be stored in ESD safe packaging in accordance with  
ANSI/ESD S20.20, “Protection of Electrical and Electronic  
dynamic loading exceeding 25% of rated current must be  
reviewed by Vicor Applications Engineering to ensure that the  
Parts, Assemblies and Equipment” and should be maintained  
converter will operate properly.  
in a temperature controlled factory/warehouse environment  
Under dynamic load, light load, or no load conditions, the  
converter may emit audible noise. Converters that utilize remote  
sense may require compensation circuitry to offset the phase  
lag caused by the external output leads and load impedance.  
Remote Sense leads must be protected for conditions such as  
lead reversal, noise pickup, open circuit, or excessive output lead  
resistance between the sense point and the converters output  
terminals. For applications that may draw more than the rated  
current, a fast acting electronic circuit breaker must be utilized  
to protect the converter. Under no circumstance should the  
rated current be exceeded. Utilizing or testing of current limit or  
short circuit current will damage the converter. Ensure that the  
total output capacitance connected to the converter does not  
exceed the limits on Page 4.  
not exposed to outside elements controlled between the  
temperature ranges of 15ºC and 38ºC. Humidity shall not be  
condensing, no minimum humidity when stored in an ESD  
compliant package.  
Nominal Power Rating  
[e] Permissible load current:  
Nominal VOUT  
MI-200 DC-DC Converters  
Page 5 of 7  
Rev 1.8  
02/2020  
MI-200  
Mechanical Drawing  
4.60  
(116,8)  
3.60  
.50  
0.080 (2,0) Dia (2) places  
(91,4)  
(12,7)  
1.80  
Solder plate over copper alloy 
(45,7)  
.30±.015  
(7,6)±(0,38)  
Pin #  
1
Function  
+In  
2
Gate In  
Gate Out  
-In  
4
9
3
4
3
8
7
6
2.10  
1.40  
5
+Out  
VI-200  
MI-200  
(35,6)  
1.00  
(53,3)  
.70  
(25,4)  
6*  
7*  
8*  
9
+Sense  
Trim  
2
(17,8)  
.40  
(10,2)  
1
5
.35±.015  
(8,9)±(0,38)  
-Sense  
-Out  
* Do not connect on booster modules  
FULL R  
.15  
R
.15  
(3,8)  
(3,8)  
Product ID  
this surface  
.040 (1,0) Dia (7) places  
.
Solder plate over copper alloy 
2.40  
(61,0)  
.30  
4.20  
1.75  
(7,6) Min  
.22  
(106,7)  
Max.  
(44,5)  
(5,6) MIN  
.50  
(12,7)  
+.030 (0,76)  
-.000 (0)  
.01  
.12  
Aluminum Base  
(3,0)  
Note: For alternate package options refer to the mechanical drawing page of vicorpower.com  
MI-200 DC-DC Converters  
Page 6 of 7  
Rev 1.8  
02/2020  
MI-200  
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/vi-200_vi-j00 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.  
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  
©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.  
MI-200 DC-DC Converters  
Page 7 of 7  
Rev 1.8  
02/2020  

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