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 Bulletin PD-20631 rev. A 09/01
113CNQ...A SERIES
SCHOTTKY RECTIFIER New GenIII D-61 Package 110 Amp
Major Ratings and Characteristics Characteristics
IF(AV) Rectangular waveform VRRM range IFSM VF TJ @ tp = 5 s sine @55 Apk, TJ= 125C (per leg) range
Description/Features
The 113CNQ...A center tap Schottky rectifier module series has been optimized for low reverse leakage at high temperature. The proprietary barrier technology allows for reliable operation up to 175 C junction temperature. Typical applications are in switching power supplies, converters, free-wheeling diodes, and reverse battery protection. 175 C TJ operation Center tap module High purity, high temperature epoxy encapsulation for enhanced mechanical strength and moisture resistance Low forward voltage drop High frequency operation Guard ring for enhanced ruggedness and long term reliability
113CNQ...A Units
110 80 to 100 7000 0.67 A V A V
- 55 to 175
C
New fully transfer-mold low profile, small footprint, high current package
Case Styles
113CNQ...A 113CNQ...ASM 113CNQ...ASL
D61-8 www.irf.com
D61-8-SM
D61-8-SL 1
113CNQ...A Series
Bulletin PD-20631 rev. A 09/01
Voltage Ratings
Part number
VR Max. DC Reverse Voltage (V) VRWM Max. Working Peak Reverse Voltage (V)
113CNQ080A
80
113CNQ100A
100
Absolute Maximum Ratings
Parameters
IF(AV) Max. Average Forward Current IFSM EAS IAR * See Fig. 5 (Per Leg) (Per Device)
113CNQ Units
55 110 7000 720 15 1 A mJ A A
Conditions
50% duty cycle @ TC = 150 C, rectangular wave form 5s Sine or 3s Rect. pulse Following any rated load condition and with 10ms Sine or 6ms Rect. pulse rated VRRM applied TJ = 25 C, IAS = 1 Amps, L = 30 mH Current decaying linearly to zero in 1 sec Frequency limited by TJ max. VA = 1.5 x VR typical
Max. Peak One Cycle Non-Repetitive Surge Current (Per Leg) * See Fig. 7 Non-Repetitive Avalanche Energy (Per Leg) Repetitive Avalanche Current (Per Leg)
Electrical Specifications
Parameters
VFM Max. Forward Voltage Drop (Per Leg) * See Fig. 1 (1)
113CNQ Units
0.81 1.00 0.66 0.79 1.0 32 1960 5.5 10000 V V V V mA mA pF nH V/ s @ 55A @ 110A @ 55A @ 110A TJ = 25 C
Conditions
TJ = 25 C TJ = 125 C VR = rated VR
IRM CT LS
Max. Reverse Leakage Current (Per Leg) * See Fig. 2 Typical Series Inductance (1) (Per Leg) Max. Junction Capacitance (Per Leg)
TJ = 125 C
VR = 5VDC (test signal range 100Khz to 1Mhz) 25C Measured lead to lead 5mm from package body
dv/dt Max. Voltage Rate of Change (Rated VR)
Thermal-Mechanical Specifications
Parameters
TJ Tstg Max. Junction Temperature Range Max. Storage Temperature Range
(1) Pulse Width < 300s, Duty Cycle <2%
113CNQ Units
-55 to 175 -55 to 175 0.5 0.25 0.30 7.8 (0.28) Min. Max. 12 (10) 24 (20) C C
Conditions
RthJC Max. Thermal Resistance Junction to Case (Per Leg) RthJC Max. Thermal Resistance Junction to Case (Per Package) RthCS Typical Thermal Resistance, Case to Heatsink (D61-8 Only) wt T Approximate Weight MountingTorque (D61-8 Only)
C/W DC operation C/W DCoperation
* See Fig. 4
C/W Mounting surface , smooth and greased Device flatness < 5mls g (oz.) Kg-cm (*) (Ibf-in)
(*) Recommended hardware 3M stainless screw
2
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113CNQ...A Series
Bulletin PD-20631 rev. A 09/01
1000
1000
Tj = 175C
100
Reverse Current - I R (mA)
150C 125C
10
100C
1 0.1
75C 50C 25C
Instantaneous Forward Current - I F (A)
100
0.01 0.001
0 20 40 60 80 100
Reverse Voltage - VR (V) Fig. 2 - Typical Values Of Reverse Current Vs. Reverse Voltage (Per Leg)
10000
10
Tj = 175C Tj = 125C Tj = 25C
Junction Capacitance - C T (p F)
Tj = 25C
1000
1 0 0.5 1 1.5 2 2.5
Forward Voltage Drop - VFM (V) Fig. 1 - Max. Forward Voltage Drop Characteristics (Per Leg)
100 0 20 40 60 80 Reverse Voltage - VR (V)
Fig. 3 - Typical Junction Capacitance Vs. Reverse Voltage (Per Leg)
100
1
Thermal Impedance - Z thJC (C/W)
0.1
D = 0.75 D = 0.50 D = 0.33 D = 0.25 D = 0.20 Single Pulse (Thermal Resistance)
PDM
t1 t2
0.01
Notes: 1. Duty factor D = t 1 / t 2 2. Peak Tj = Pdm x ZthJC + Tc
0.001 0.00001
0.0001
0.001
0.01
0.1
1
10
t1 , Rectangular Pulse Duration (Seconds) Fig. 4 - Max. Thermal Impedance ZthJC Characteristics (Per Leg)
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3
113CNQ...A Series
Bulletin PD-20631 rev. A 09/01
180
Allowable Case Temperature (C) Average Power Loss (Watts)
60 50 40 30 20 10 0
170 160 150 140
Square wave (D = 0.50) 130 80% Rated Vr applied DC
D = 0.75 D = 0.50 D = 0.33 D = 0.25 D = 0.20 RMS Limit DC
120 see note (2) 110 0 10 20 30 40 50 60 70 80 90
Average Forward Current - IF(AV) (A) Fig. 5 - Max. Allowable Case Temperature Vs. Average Forward Current (Per Leg)
0
10 20 30 40 50 60 70 Average Forward Current - IF(AV) (A)
80
Fig. 6 - Forward Power Loss Characteristics (Per Leg)
10000
Non-Repetitive Surge Current - I FSM (A)
1000
At Any Rated Load Condition And With Rated Vrrm Applied Following Surge
100 10 100 1000 10000 Square Wave Pulse Duration - tp (microsec)
Fig. 7 - Max. Non-Repetitive Surge Current (Per Leg)
L HIGH-SPEED SWITCH FREE-WHEEL DIODE 40HFL40S02 Vd = 25 Volt
DUT
IRFP460 Rg = 25 ohm
+
CURRENT MONITOR
Fig. 8 - Unclamped Inductive Test Circuit
(2) Formula used: TC = TJ - (Pd + PdREV) x RthJC ; Pd = Forward Power Loss = IF(AV) x VFM @ (IF(AV) / D) (see Fig. 6); PdREV = Inverse Power Loss = VR1 x IR (1 - D); IR @ VR1 = 80% rated VR
4
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113CNQ...A Series
Bulletin PD-20631 rev. A 09/01
Outline Table
Outline D61-8
Dimensions are in millimeters and (inches)
Outline D61-8-SM
Dimensions are in millimeters and (inches)
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5
113CNQ...A Series
Bulletin PD-20631 rev. A 09/01
Outline Table
Outline D61-8-SL
Dimensions are in millimeters and (inches)
Marking Information
INTERNATIONAL RECTIFIER LOGO
PART NUMBER
THIS IS A 113CNQ100A WITH LOT CODE 89 09 ASSEMBLED ON WW 45, 2000 IN THE ASSEMBLY LINE "A" ASSEMBLY LOT CODE
113CNQ100A 89 09 045A DATE CODE YEAR 0 = 2000 WEEK 45 LINE A
6
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113CNQ...A Series
Bulletin PD-20631 rev. A 09/01
Data and specifications subject to change without notice. This product has been designed and qualified for Industrial Level. Qualification Standards can be found on IR's Web site.
IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, USA Tel: (310) 252-7105 TAC Fax: (310) 252-7309 Visit us at www.irf.com for sales contact information. 09/01
www.irf.com
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