Part Number Hot Search : 
1209S MA3F749 TLC4066 KSD07L 85NS160 LBH5020 B3022BD1 LBH5020
Product Description
Full Text Search
 

To Download MGH2812SZES Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 FEATURES
* * * * * * *
-55 to +125C operation 12 to 50 VDC input Fully Isolated Magnetic feedback Fixed frequency 370 kHz typical Topology - Current Mode Flyback 80 V for up to 120 ms transient protection (70 V for 15 V single and dual models) * Inhibit function * Indefinite short circuit protection * Up to 79% efficiency
DC/DC CONVERTERS 28 VOLT INPUT
MGH SERIES 1.5 WATT
MODELS
VDC OUTPUT SINGLE 5 12 15 DUAL 5 12 15
Size (max.): 1.010 x 0.880 x 0.250 inches (25.65 x 22.35 x 6.35 mm) Shown with "Gull Wing" lead option, also available with straight leads. See Section B8, case B, for dimensions and options. Weight: 12 grams maximum Screening: Standard, ES, or 883 (Class H). See Section C2 for screening options, see Section A5 for ordering information.
DESCRIPTION
The MGH SeriesTM of DC/DC converters delivers 1.5 watts of output power in a labor saving surface mount package. The wide input voltage range of 12 to 50 VDC accepts the varying voltages of military, aerospace, or space applications. Single output converters feature outputs of 5, 12, or 15 volts while dual output models feature outputs of 5, 12, or 15 volts. Transient protection of 80 volts for up to 120 milliseconds exceeds the requirements of MIL-STD-704A for the 5 and 12 volt single and dual models. The 15 volt single and dual converters will withstand transients of up to 70 volts for up to 120 milliseconds.
PROTECTION FEATURES
Undervoltage lockout prevents the MGH Series converters from operating below approximately 8 VDC input voltage to keep system current levels smooth, especially during initialization or re-start operations. All models include a soft-start function to prevent large current draw and minimize overshoot. The MGH Series of converters also provide short circuit protection by limiting the current to approximately 125% of full load.
MIL-STD-461
Use Interpoint's FMGA-461 EMI filter to pass the CE03 requirements of MIL-STD-461C.
CONVERTER DESIGN
MGH Series DC/DC converters incorporate a continuous flyback topology with a constant switching frequency of approximately 370 kHz. Output voltage regulation is accomplished on the primary side using current-mode pulse width modulation (PWM). Regulation is affected by the output load; refer to the specifications tables for more information. For dual output models, up to 80% of the total load may be on one output providing the other output carries a minimum of 20% of the total load. The dual models can be used at double the output voltage by connecting the load between positive and negative outputs, leaving the common unconnected. As an example the MGH2805D (5 volt dual output) can be used as a 10 VDC output.
SURFACE MOUNT PACKAGE
MGH DC/DC converters can be surface mounted with pick-andplace equipment or manually. It is recommended that the case be attached with flexible epoxy adhesive or silicone which is thermally conductive (>1 watt /meter/K). Internal components are soldered with SN96 (melting temperature 221C) to prevent damage during reflow. Maximum reflow temperature for surface mounting the MGH converter is 220C for a maximum of 30 seconds. SN60, 62, or 63 are the recommended types of solder. Hand soldering should not exceed 300C for 10 seconds per pin. The hermetically sealed metal cases are available in two different lead configurations. See Section B8, case B.
INHIBIT FUNCTION
When an open collector TTL logic low is applied to the inhibit terminal, pin 18, the converter shuts down and lowers the output voltage to near zero and input current to as low 2.3 mA. Leaving the terminal open or applying an open collector TTL logic high will enable the converter.
B2-93
MGH SERIES 1.5 WATT
ABSOLUTE MAXIMUM RATINGS
Input Voltage * 12 to 50 V Output Power * 1.5 watts Capacitive Load * 200 F single output models * 100 F each output, dual output models Lead Soldering Temperature * Reflow 220C 30 sec. max SN60, 62 or 63 recommended solder * Hand solder 300C 10 sec. max per lead Storage Temperature Range (Case) * -65C to +150C
DC/DC CONVERTERS
INHIBIT
Inhibit: TTL Open Collector * Logic low (output disabled) Logic low voltage 0.8 V Inhibit pin current 1 mA max * Referenced to input common * Logic high (output enabled) open collector
TYPICAL CHARACTERISTICS
Output Voltage Temperature Coefficient * 100 ppm/C typical Input to Output Capacitance * 100 to 170 pF typical Undervoltage Lockout * 8 V input typical Current Limit * 125% of full load typical Isolation * 100 megohm minimum at 500 V Conversion Frequency (kHz) * 25C 300 min, 370 typ, 450 max * -55C to +125C 270 min, 370 typ, 470 max Inhibit Pin Voltage (unit enabled) * 7 to 12 V
RECOMMENDED OPERATING CONDITIONS
Input Voltage Range * 12 to 50 VDC continuous * 80 V for 120 msec transient (70 V for 15 V single and dual models) Case Operating Temperature (Tc) * -55C to +125C full power * -55C to +135C absolute Derating Output Power/Current * Linearly from 100% at 125C to 0% at 135 C
Electrical Characteristics: 25C Tc, 28 VDC Vin, 100% load, unless otherwise specified.
SINGLE OUTPUT MODELS PARAMETER OUTPUT VOLTAGE1 OUTPUT CURRENT OUTPUT POWER OUTPUT RIPPLE VOLTAGE LINE REGULATION LOAD REGULATION CONDITIONS Tc = 25C Tc = -55C TO +125C VIN = 12 to 50 VDC VIN = 12 to 50 VDC 10 kHz - 2 MHz Tc = -55C TO +125C VIN = 12 to 50 VDC Tc = -55C TO +125C 10% TO FULL LOAD Tc = -55C TO +125C 50% TO FULL LOAD Tc = -55C TO +125C INPUT VOLTAGE NO LOAD TO FULL INPUT CURRENT CONTINUOUS TRANSIENT 120 ms NO LOAD Tc = -55C TO +125C FULL LOAD Tc = -55C TO +125C INHIBITED Tc = -55C TO +125C INPUT RIPPLE CURRENT2 EFFICIENCY LOAD FAULT3, 4 10k Hz - 10 MHz Tc = -55C TO +125C Tc = 25C Tc = -55C TO +125C POWER DISSIPATION Tc = -55C TO +125C RECOVERY Tc = --55C TO +125C TRANSIENT Tc = -55C TO +125C RECOVERY Tc = -55C TO +125C TRANSIENT Tc = -55C TO +125C RECOVERY Tc = -55C TO +125C DELAY Tc = -55C TO +125C OVERSHOOT Tc = -55C TO +1 25C MIN 4.95 4.80 0 0 -- -- -- -- -- -- -- -- 12 0 -- -- -- -- -- -- -- -- 72 69 -- -- -- -- -400 -500 -- -- -400 -500 -- -- -- -- -- -- MGH2805S TYP 5 5 -- -- 45 65 35 40 350 380 100 115 28 -- 5.5 6.0 70 73 2.3 2.4 100 130 77 75 1.3 1.4 3.0 3.5 185 185 125 125 170 180 0.75 0.75 7 10 0 0 MAX 5.05 5.20 300 1.5 150 300 100 120 700 800 200 300 50 80 10 11 74 78 3.2 3.5 200 250 -- -- 2.0 2.3 12 15 400 500 500 600 400 500 3.0 4.0 20 40 100 150 MIN 11.88 11.52 0 0 -- -- -- -- -- -- -- -- 12 0 -- -- -- -- -- -- -- -- 74 72 -- -- -- -- -700 -800 -- -- -900 -1000 -- -- -- -- -- -- MGH2812S TYP 12 12 -- -- 50 70 60 70 600 640 145 160 28 -- 6.0 6.5 68 70 2.3 2.4 100 150 79 77 2.0 2.2 3.5 3.5 350 380 130 130 400 400 0.6 0.6 7 10 0 0 MAX 12.12 12.48 125 1.5 200 300 200 250 1300 1400 300 400 50 80 10 12 72 74 3.2 3.5 200 250 -- -- 3.2 3.5 15 20 700 800 500 600 900 1000 2.5 3.0 20 40 250 350 MIN 14.85 14.40 0 0 -- -- -- -- -- -- -- -- 12 0 -- -- -- -- -- -- -- -- 74 72 -- -- -- -- -700 -800 -- -- -750 -850 -- -- -- -- -- -- MGH2815S TYP 15 15 -- -- 35 50 70 80 700 760 165 185 28 -- 6.0 6.5 68 70 2.3 2.4 100 150 79 77 2.3 2.5 4.0 4.0 350 380 140 180 400 450 0.47 0.5 7 10 0 0 MAX 15.15 15.60 100 1.5 150 250 300 350 1500 1600 350 450 50 70 11 12 72 74 3.2 3.5 200 250 -- -- 3.7 4.0 18 20 700 800 600 750 750 850 2.0 2.5 20 40 300 450 mA p-p % W ms mV pk s mV pk ms ms mV pk mA UNITS VDC mA W mV p-p mV
mV
VDC V
STEP LOAD RESPONSE5 50 %-100%- 50% STEP LINE RESPONSE5 12 TO 50 TO 12 VIN START-UP 0 TO 28 VDC
Notes 1. Specified at 50% of full load. 2. Lin = 2 H 3. Max. duration of short circuit: 25C- 90 seconds; 125C - 30 seconds.
4. Load fault is a short circuit (<50 mohms). Recovery into resistive full load. 5. Input step transition 10 s.Recovery is time to settle to within 1% of Vout final value.
B2-94
DC/DC CONVERTERS
DUAL OUTPUT MODELS PARAMETER OUTPUT VOLTAGE1 OUTPUT CURRENT2 OUTPUT POWER OUTPUT RIPPLE VOLTAGE +VOUT -VOUT LINE REGULATION3 LOAD REGULATION3, 4 10% TO FULL LOAD -55C TO +125C 50% TO FULL LOAD -55C TO +125C CROSS REGULATION5 INPUT VOLTAGE NO LOAD TO FULL INPUT CURRENT -VOUT CONTINUOUS TRANSIENT 120 ms NO LOAD Tc = -55C TO +125C FULL LOAD Tc = -55C TO +125C INHIBITED Tc = -55C TO +125C INPUT RIPPLE6 CURRENT EFFICIENCY LOAD FAULT7,8 10 kHz - 10 MHz Tc = -55C TO +125C Tc = 25C Tc = -55C TO +125C POWER DISSIPATION Tc = -55C TO +125C RECOVERY Tc = -55C TO +125C STEP LOAD RESPONSE 9 Vout 50 %-100%- 50% STEP LINE RESPONSE19 Vout 12 TO 50 TO 12 VIN START-UP 0 TO 28 VDC, Vout TRANSIENT Tc = -55C TO +125C RECOVERY -55C TO +125C TRANSIENT Tc = -55C TO +125C RECOVERY Tc = -55C TO +125C DELAY Tc = -55C TO +125C OVERSHOOT Tc = -55C TO +125C -- 12 0 -- -- -- -- -- -- -- -- 73 70 -- -- -- -- -300 -400 -- -- -250 -300 -- -- -- -- -- -- -- 28 -- 5.0 6.0 69 72 2.3 2.4 100 130 77 75 1.4 1.6 3.7 3.8 130 140 100 100 125 130 0.6 0.6 8 10 0 0 400 50 80 10 12 73 77 3.2 3.5 200 250 -- -- 2.2 2.5 15 20 300 400 400 500 250 300 2.5 3.0 25 45 100 150 -- 12 0 -- -- -- -- -- -- -- -- 73 70 -- -- -- -- -600 -700 -- -- -500 -600 -- -- -- -- -- -- -- 28 -- 7.5 8.0 70 71 2.3 2.4 115 150 77 75 2.5 2.7 3.2 3.2 250 260 165 165 240 250 0.9 0.9 8 10 0 0 500 50 80 13 14 73 77 3.2 3.5 200 250 -- -- 3.8 4.2 15 20 600 700 700 800 500 600 3.0 4.0 25 45 250 350 -- 12 0 -- -- -- -- -- -- -- -- 72 69 -- -- -- -- -600 -700 -- -- -500 -600 -- -- -- -- -- -- -- -- -- -- 300 350 80 100 600 700 200 300 -- -- -- -- 550 570 115 130 1100 1200 250 350 -- -- -- -- CONDITIONS Tc = 25C Tc = -55C TO +125C VIN = 12 to 50 VDC VIN = 12 to 50 VDC 10 kHz - 2 MHz Tc = -55C TO +125C 10 kHz - 2 MHz Tc = -55C TO +125C VIN = 12 to 50 VDC Tc = -55C TO +125C MIN 4.95 4.80 0 0 -- -- -- -- -- -- MGH2805D TYP 5 5 150 -- 35 50 35 50 10 20 MAX 5.05 5.20 240 1.5 150 250 150 250 50 100 MIN 11.88 11.52 0 0 -- -- -- -- -- -- MGH2812D TYP 12 12 62.5 -- 35 40 35 40 100 110 MAX 12.12 12.48 100 1.5 150 250 150 250 300 400 MIN 14.85 14.40 0 0 -- -- -- -- -- --
MGH SERIES 1.5 WATT
MGH2815D TYP 15 15 50 -- 30 35 30 35 165 180 600 630 125 135 -- 28 -- 7.5 8.0 71 72 2.3 2.4 90 120 76 74 2.7 3.0 4.0 4.0 250 270 50 50 220 230 0.6 0.7 8 10 0 0 MAX 15.15 15.60 80 1.5 150 250 150 250 500 650 1300 1400 300 400 500 50 70 13 14 74 78 3.2 3.5 200 250 -- -- 4.1 4.5 15 20 600 700 200 300 500 600 3.0 4.0 25 45 750 900 mA p-p % W ms mV pk s mV pk ms ms mV pk mA V mV p-p UNITS VDC mA W
Electrical Characteristics: 25C Tc, 28 VDC Vin, 100% load, unless otherwise specified.
mV
mV VDC V
Notes: 1. Specified at 50% load. 2. Max. spec indicates 80% of the converter's total available power. This 80% is available from either output. 3. Specification applies to both + and -Vout. 4. Although no minimum load is required, at no load the output voltage may increase up to 15%. 5. Cross regulation is specified as the effect on -Vout for the following percentages of total output power: +Po = 20% and -Po = 80% to +Po=80% and -Po=20%
6. 7. 8. 9.
Lin = 2 H. Max. duration of short circuit: 25C - 90 seconds; 125C - 30 seconds. Load fault is a short circuit (<50 mohms). Recovery into resistive full load. Input step transition 10 s.Recovery is time to settle to within 1% of Vout final value.
B2-95
MGH SERIES 1.5 WATT
Positive Input
DC/DC CONVERTERS
+ +Vin Inhibit Shutdown PWM Controller FB + +Vout + Input Common Case Ground Output Common Negative Output Positive Output
Dual models only
FIGURE 1: BLOCK DIAGRAM
PIN OUT Pin 1 2 3 4, 5 6, 7 8, 9 10, 11 12 13, 14 15, 16, 17 18 Single Output Positive Input No connection Input Common Positive Output Case Ground Output Common Case Ground No connection No connection No connection Inhibit Dual Output Positive Input No connection Input Common Positive Output Case Ground Output Common Case Ground No connection Negative Output No connection Inhibit
SMD NUMBERS
STANDARD MICROCIRCUIT DRAWING (SMD) 5962-9569601HXC 5962-9569701HXC 5962-9569801HXC 5962-9570201HXC 5962-9570301HXC 5962-9570401HXC MGH SERIES SIMILAR PART MGH2805S/883 MGH2812S/883 MGH2815S/883 MGH2805D/883 MGH2812D/883 MGH2815D/883
For exact specifications for an SMD product, refer to the SMD drawing. Call your Interpoint representative for status on the MGH SMD releases. See Section A3, SMDs, for more information.
To meet specified performance, all pins must be connected except "No Connection" pins.
1 2 3 4 5 6 7 8 9
TOP VIEW MGH
18 17 16 15 14 13 12 11 10
MODEL NUMBERING KEY
MGH Base Model Input Voltage Output Voltage Number of Outputs (S = single, D = dual) Gull Wing Lead Option (Straight leaded case has no designator in this position.) Screening (Standard screening has no designator in this position.) 28 12 S Z / ES
Differently colored glass bead around pin one or dimple in header (bottom or side of case) indicates pin one. Cover marking is oriented with pin one at the upper right corner. See Section B8, case B, for dimensions and "gull-wing" option.
FIGURE 2: PIN OUT
B2-96
DC/DC CONVERTERS
90 80 12 VOLT EFFICIENCY 70 EFFICIENCY 28 VOLT 60 50 40 30 0.25 0.5 0.75 1 1.25 1.5 1.75 0 ALL 5 VOLT MODELS OUTPUT POWER 50 VOLT 70 28 VOLT 60 50 VOLT 50 40 30 0.25 0.5 0.75 0 OUTPUT POWER EFFICIENCY 90 80 12 VOLT 70 60 50 40 28 VOLT 90 80 12 VOLT
MGH SERIES 1.5 WATT
Typical Performance Curves: 25C Tc , 28 VDC Vin, 100% load, unless otherwise specified.
50 VOLT
1 1.25 1.5 1.75 12 & 15 V SINGLES
30 0.25 0.5 0.75 1 1.25 1.5 1.75 0 12 & 15 V DUAL MODELS OUTPUT POWER
EFFICIENCY vs LINE & LOAD
EFFICIENCY vs LINE & LOAD
EFFICIENCY vs LINE & LOAD
FIGURE 3
FIGURE 4
FIGURE 5
0
20 V / div.
20 ATTENUATION (dB) 40 60 80
Vin
50 VDC FULL LOAD TO HALF LOAD 100 mV / div. 12 VDC
100 mV / div.
Vout
HALF LOAD TO FULL LOAD
100
10 1 60 FREQUENCY (kHz) MGH2815S - Representative of all models 200 s / div. MGH2805S 500 s / div. MGH2805S
LINE TRANSIENT RESPONSE
LOAD TRANSIENT RESPONSE
AUDIO REJECTION
FIGURE 6
FIGURE 7
FIGURE 8
20V/div.
20 V / div.
Vin
Vin 50 VDC 12 VDC 200 mV / div.
+VOUT FULL LOAD TO HALF LOAD -VOUT HALF LOAD TO FULL LOAD
200 mV / div.
2V/div.
+Vout -Vout 200 s / div. MGH2815D
Vout
6 0 2 4 8 10 12 14 16 18 TIME (ms) MGH2805S Representative of all 5 volt models
-VOUT FULL LOAD TO HALF LOAD +VOUT HALF LOAD TO FULL LOAD 500 s / div. MGH2815D
TURN-ON INTO FULL LOAD
LINE TRANSIENT RESPONSE
LOAD TRANSIENT RESPONSE
FIGURE 9
FIGURE 10
FIGURE 11
B2-97
MGH SERIES 1.5 WATT
DC/DC CONVERTERS
4 -5 Vout VOLTAGE CHANGE (%) 4 Vout VOLTAGE CHANGE (%) 5 2 12 15
Typical Performance Curves: 25C Tc , 28 VDC Vin, 100% load, unless otherwise specified.
20V/div.
Vin
2
-15 -12
0
0 V for -Vout
5V/div.
-Vout
+Vout
+15 +12 +5
0
-2
-2
0 V for +Vout 0 5 10 15 20 25 30 35 40 45 TIME (ms) MGH2815D Also representative of MGH2812S & D and MGH2815S -4
90/10 70/30 50/50 30/70 10/90
TURN-ON INTO FULL LOAD
OUTPUT LOAD (%)
DUAL
90% TO 10% LOAD ON +V 10% TO 90% LOAD ON -V
-4 10 50 20 30 40 OUTPUT LOAD (%) DUAL 50% LOAD +V; 50% TO 10% LOAD -V AND 50% LOAD -V; 50% TO 10% LOAD +V
CROSS REGULATION
CROSS REGULATION
FIGURE 12
FIGURE 13
FIGURE 14
120 100 Vout NOMINAL % 80 60 SAFE OPERATING AREA 40 20 0 0 TRIP POINT 125%
20
40 60 80 100 120 140 160 % OF FULL LOAD
OUTPUT VOLTAGE vs. OUTPUT LOAD
FIGURE 15
B2-98
22622-001-DTS Rev A DQ# 1033 All technical information is believed to be accurate, but no responsibility is assumed for errors or omissions. Interpoint reserves the right to make changes in products or specifications without notice. MGH Series is a trademark of Interpoint. Copyright (c) 1998 - 1999 Interpoint. All rights reserved.
CASES
Differently colored glass bead around pin one or dimple in header (bottom or side of case) indicates pin one.
CASE B
TOP VIEW CASE B FMGA EMI Filter: Screening - Standard, ES, or 883 MGH Series: Screening - Standard, ES, or 883
0.900 (22.86) 0.800 (20.32) 0.700 (17.78) 0.600 (15.24) 0.500 (12.70) 0.400 (10.16) 0.300 ( 7.62) 0.200 ( 5.08) 0.100 ( 2.54) 0.000 0.000 1 2 3 4 5 6 7 8 9 18 17 16 15 14 13 12 11 10
CASE B TOP VIEW See Figure 6 for pin configurations.
1.010 max (25.65)
(This view shows straight leads.)
0.015 (0.38)
0.880 max (22.35) Cover marking is oriented with pin one at the upper right corner. Materials Header Kovar/Nickel/Gold Cover Kovar/Nickel Pins Kovar/Nickel/Gold, matched glass seal Case dimensions in inches (mm) Tolerance 0.005 (0.13) for three decimal places 0.01 (0.3) for two decimal places unless otherwise specified CAUTION Maximum reflow temperature is 220C for a maximum of 30 seconds. SN60, SN62, or SN63 are the recommended types of solder. See below for Solder Mask instructions. Hand soldering should not exceed 300C for 10 seconds per pin.
0.010 (0.25)
Differently colored glass bead around pin one or dimple in header (bottom or side of case) indicates pin one. Cover marking is oriented with pin one at the upper right corn
1.870 ref. (47.50)
0.08 (2.0) 0.250 max. (6.35)
0.50 (12.7)
Straight Leads Seam seal
1.140 ref. (28.96)
0.135 ref. (3.43) 1 0.010 (0.25)
1 Gull wing leads are solder dipped. Lead dimensions are prior to solder dip. 0.010 (0.25) Bottom of case to bottom of lead
Gull Wing Leads Option
0.055 (1.40)
FIGURE 5: CASE B MAXIMUM DIMENSIONS
0.070 (1.78) 0.08 (2.0)
FIGURE 6: CASE B
Solder Mask Notes 1. Pad dimensions are for the solder mask opening. Lead common to each other can be connected underneath as desired. 2. Ground pins should be connected to the center pad for improved grounding. 3. Center pad should not have a solder mask. Solder, copper, or Au/Ni plate are preferred over solder for adhesive attach. 4. Solder coat to solder down converter. 5. If less rotation of case is desired, make the pad width 0.020inches (0.51 mm). Pad length can be extended 0.010 inches (0.25 mm) towards the case body and as-desired dimension away from the case body. 6. Do not exceed 220C as measured on the body of the converter (top or bottom). 7. Attach the body of the case to the board with a thermally conductive adhesive or SN60, 62, or 63 solder. The adhesive can be electrically conductive as well. It can be applied as an underfill post solder or dispensed and cured prior or during solder.
0.075 (1.91) 0.060 (1.52) 0.870 (22.10) 0.030 (0.76)
1.000 (25.40) 0.100 (2.54) 16X
0.100 (2.54) 4X
FIGURE 7: CASE B SOLDER MASK
Note: Although every effort has been made to render the case drawings at actual size, variations in the printing process may cause some distortion. Please refer to the numerical dimensions for accuracy.
B8-7
QA SCREENING 125C PRODUCTS
125C PRODUCTS
TEST (125C Products) PRE-CAP INSPECTION Method 2017, 2032 TEMPERATURE CYCLE (10 times) Method 1010, Cond. C, -65C to 150C Method 1010, Cond. B, -55C to 125C CONSTANT ACCELERATION Method 2001, 3000 g Method 2001, 500 g BURN-IN Method 1015, 160 hours at 125C 96 hours at 125C case (typical) FINAL ELECTRICAL TEST MIL-PRF-38534, Group A Subgroups 1 through 6: -55C, +25C, +125C Subgroups 1 and 4: +25C case HERMETICITY TESTING Fine Leak, Method 1014, Cond. A Gross Leak, Method 1014, Cond. C Gross Leak, Dip (1 x 10-3) FINAL VISUAL INSPECTION Method 2009 STANDARD /ES /883 (Class H)* yes yes yes
no no
no yes
yes no
no no
no yes
yes no
no no
no yes
yes no
no yes
no yes
yes no
no no yes
yes yes no
yes yes no
yes
yes
yes
Test methods are referenced to MIL-STD-883 as determined by MIL-PRF-38534. *883 products are built with element evaluated components and are 100% tested and guaranteed over the full military temperature range of -55C to +125C. Applies to the following products MOR Series MHD Series MFLHP Series MHV Series MFL Series MHF+ Series MHP Series MHF Series** MTR Series MGA Series MQO Series** MSA Series MGH Series MCH Series FM-704A EMI Filter FMD**/FME EMI Filter FMC EMI Filter FMH EMI Filter FMGA EMI Filter FMSA EMI Filter HUM Modules** LCM Modules** LIM Modules
**MFLHP Series, MQO Series, MHF Series, FMD EMI Filters, Hum Modules, and LCM Modules do not offer `883" screening.
C2-10


▲Up To Search▲   

 
Price & Availability of MGH2812SZES

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X