APPROVAL SHEET
PART No. FM400X PRODUCT PASSIVATED SILICON
RECTIFIER
QUANTITY S/R No.
CUSTOMER :
COMPANY:
CUSTOMER P/N:
USED IN:
CONTENT
1. SPEC DIMENSION AND PRODUCT CHARACTERISTIC CURVES
2. STANDARD PACKAGE
3. ATTACHMENT INFORMATION
PREP. BY: Ada_zhang DATE: 2011-06-18
APPR. BY: Richard Liu DATE: 2011-06-18
CUSTOMER SIGN BACK:
SURFACE MOUNT
GLASS PASSIVATED SILICON RECTIFIER
VOLTAGE RANGE 50 to 1000 Volts CURRENT 1.0 Ampere
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
Ratings at 25 oC ambient temperature unless otherwise specified.
resistive or inductive load.
FM4007
THRU
FM4001
MAXIMUM RATINGS
(@ TA=25
OC unless otherwise noted)
ELECTRICAL CHARACTERISTICS
(@TA=25
OC unless otherwise noted)
RATINGS
Maximum Recurrent Peak Reverse Voltage
Maximum RMS Voltage
Maximum DC Blocking Voltage
Maximum Average Forward Rectified Current
at Ambient Temperature
Peak Forward Surge Current 8.3 ms single half sine-wave
superimposed on rated load (JEDEC method)
Typical Thermal Resistance (Note 1)
Current Squarad Time
Typical Junction Capacitance (Note 2)
SYMBOL
V
RRM
V
DC
I
FSM
I
2t
C
J
T
STG
V
RMS
UNITS
Volts
Volts
Volts
Amps1.0
30
3.7
15
Amps
A2/Sec
0
C/W
0
C/W
0
C
Storage Temperature Range
Rq
JA
Typical Thermal Resistance (Note 1) 27
80
30
Rq
JL
I
O
pF
Operating Temperature Range T
J
FM4001
50
150
-55 to + 150
0
C
FM4002 FM4003 FM4004 FM4005 FM4006
100 200 400 600
35 70 140 280 420
50 100 200 400 600
FM4007
FM4001 FM4002 FM4003 FM4004 FM4005 FM4006 FM4007
800 1000
800 1000
560 700
2009-09
REV:B
CHARACTERISTICS
Maximum Average Reverse Current
at Rated DC Blocking Voltage
V
F
SYMBOL
I
R
mA
Maximum Instantaneous Forward Voltage at 1.0A DC Volts
5.0
100
@T
A
= 25
o
C
@T
A
= 100
o
CmA
UNITS
1.1
NOTES : 1. Thermal Resistance :Mounted on PCB.
2. Measured at 1 MHz and applied reverse voltage of 4.0 volts.
3. "Fully ROHS compliant","100% Sn plating (Pb-free)".
FEATURES
* Glass passivated device
* Ideal for surface mounted applications
* Low leakage current
* Metallurgically bonded construction
* Mounting position: Any
* Weight: 0.057 gram
* Epoxy : Device has UL flammability classification 94V-0
MECHANICAL DATA
DO-214AC
Dimensions in inches and (millimeters)
0.091 ( 2.31 )
0.067 ( 1.70 )
0.012 ( 0.305 )
0.006 ( 0.152 )
0.008 ( 0.203 )
0.004 ( 0.102 )
0.059 ( 1.50 )
0.035 ( 0.89 )
0.209 ( 5.31 )
0.185 ( 4.70 )
0.180 ( 4.57 )
0.160 ( 4.06 )
0.110 ( 2.79 )
0.086 ( 2.18 )
0.067 (1.70 )
0.051 (1.29 )
PERCENT OF RATED PEAK REVERSE VOLTAGE, (%)
INSTANTANEOUS FORWARD VOLTAGE, (V)
INSTANTANEOUS FORWARD CURRENT, (mA)
Lead Temperature (OC)
0
0.01
1.0
0.1
10
100
1000
AVERAGE FORWARD CURRENT, (A)
CJ, JUNCTION CAPACITANCE, (pF)
0
0.5
1.0
1.5
2.0
20 40 60 80 100 120 140
175125 1505025 75 1000
0 0.5 1.0 2.5 3.5 4.0 4.52.0
0.1
1.0
10
20
1.5 3.0 5.0
RATING AND CHARACTERISTICS CURVES ( FM4001 THRU FM4007 )
FIG.3 TYPICAL INSTANTANEOUS FORWARD
CHARACTERISTICS
FIG.1 TYPICAL FORWARD CURRENT
DERATING CURVE
FIG.2 TYPICAL REVERSE
CHARACTERISTICS
REVERSE VOLTAGE, (V)
INSTANTANEOUS REVERSE CURRENT, (A)
0.1
1
8
6
4
2
10
20
40
400.4 1.0 4 10 80
FIG.4 TYPICAL JUNCTION CAPACITANCE
NUMBER OF CYCLES AT 60Hz
PEAK FORWARD SURGE CURRENT, (A)
1
10
0
15
25
30
20
2 4 6 8 10 20 40 80 100
FIG.5 MAXIMUM NON-REPETITIVE FORWARD
SURGE CURRENT
Single Phase Half Wave 60Hz
Resistive or Inductive Load
0.375" (9.5mm) Lead Length
T
J
= 25 OC
Pulse width=300mS
1% Duty Cycle
T
J
= 25 OC
8.3mS Single Half Sine-Wave
JEDEC Method
T
A
= 25 OC
T
A
= 75 OC
T
A
= 100 OC
Mounting Pad Layout
Dimensions in inches and (millimeters)
0.066MIN.
(1.68 MIN.)
0.208
0.074 MAX.
(1.88 MAX.)
0.060 MIN.
(1.52 MIN.)
(
5.28) REF
Marking Description
V Y W W
A X
Cathode Band
Part No.
Year – code
(Y:Last digit of year)
Voltage-code
1-------50V 5-------600V
2-------100V 6-------800V
3-------200V 7-------1000V
4-------400V
Week – code
(WW:01~52)
PACKAGING OF DIODE AND BRIDGE RECTIFIERS
REEL PACK
PACKAGE GROSS
WEIGHT(Kg)
EA PER
REEL
COMPONENT
SPACE(mm)
TAPE SPACE
(mm)
CARTON SIZE
(mm) (mm)
EA PER
CARTON
REEL DIA
SMA
SMA
1,500
5,000
--- ---
--- --- 330
178 390*205*310
355*360*350
48,000
80,000
8.40
14.20
-T
-W
PACKING
CODE
1. REEL
Packing D
Code (mm)
-T 178
-W 330
2. CARTON
Packing L W H
Code (mm) (mm) (mm)
-T 390 205 310
-W 355 360 350
D
REEL TAPING SPECIFICATIONS FOR
A
E
F
d
P1
P0
W
B
P
SURFACE MOUNT DEVICES-FLAT MELF
DW1
D2D1
( SMA/SMB/SMC )
T
MAX. 3oMAX. 3o
A
RC
Fig.: Configuration of FLAT MELF TAPING
(SMA/SMB/SMC)
ITEM SYMBOL DO214AC (SMA) mm(inch) DO214AA (SMB) mm(inch) DO214AB (SMC) mm(inch)
Carrier width
Carrier length
Carrier depth
Sprocket hole
Reel outside diameter
Reel inner diameter
Feed hole diameter
Strocket hole position
Punch hole position
Punch hole pitch
Sprocket hole pitch
Embossment center
Totall tape thickness
Tape width
Reel width
A
B
C
d
D
D1
D2
E
F
P
P0
P1
T
W
W1
2.6 0.15 (0.102 0.006)
5.15 0.15 (0.203 0.006)
2.3 0.15 (0.091 0.006)
1.5 0.1 (0.059 0.004)
178 2.0 (7.0 0.079)
50 Min.
13 0.5 (0.512 0.020)
1.5 0.1 (0.059 0.004)
5.65 0.05 (0.222 0.002)
4.0 0.1 (0.157 0.004)
4.0 0.1 (0.157 0.004)
2.0 0.1 (0.079 0.004)
0.30 0.05 (0.012 0.002)
12.0 0.2 (0.472 0.008)
16.8 2.0 (0.661 0.079)
3.65 0.1 (0.144 0.004)
5.69 0.1 (0.224 0.004)
2.67 0.1 (0.105 0.004)
1.5 0.1 (0.059 0.004)
178 2.0 (7.0 0.079)
50 Min.
13 0.5 (0.512 0.020)
1.5 0.1 (0.059 0.004)
5.65 0.05 (0.222 0.002)
8.0 0.1 (0.315 0.004)
4.0 0.1 (0.157 0.004)
2.0 0.1 (0.079 0.004)
0.6 Max.
12.0 0.2 (0.472 0.008)
16.8 2.0 (0.661 0.079) 24.0 2.0 (0.945 0.079)
16.0 0.2 (0.630 0.008)
0.6 Max.
4.0 0.1 (0.157 0.004)
4.0 0.1 (0.157 0.004)
8.0 0.1 (0.315 0.004)
7.65 0.05 (0.301 0.002)
1.5 0.1 (0.059 0.004)
13 0.5 (0.512 0.020)
50 Min.
178 2.0 (7.0 0.079)
1.5 0.1 (0.059 0.004)
2.5 0.1 (0.098 0.004)
8.30 0.1 (0.327 0.004)
6.0 0.1 (0.236 0.004)
Note: 1.Devices are packed in accordance with EIA standard RS-481-A and specification given above.
2.Available on 7 inch ( 1500 ct. ) or 13 inch ( 5000 ct. ) diameter reels.
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specification herein, to make corrections, modifications, enhancements or other
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lity for any errors or inaccuracies. Data sheet specifications and its information
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ers which may be included on RECTRON data sheets and/ or specifications ca-
n and do vary in different applications and actual performance may vary over ti-
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