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IR2130D の電気的特性と機能

IR2130DのメーカーはInternational Rectifierです、この部品の機能は「3-PHASE DRIVER」です。


製品の詳細 ( Datasheet PDF )

部品番号 IR2130D
部品説明 3-PHASE DRIVER
メーカ International Rectifier
ロゴ International Rectifier ロゴ 




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IR2130D Datasheet, IR2130D PDF,ピン配置, 機能
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PD-60022B
IR2130D
Features
n Hermetic
n Floatingchanneldesignedforbootstrap
operation
Fully operational to +400V
Tolerant to negative transient voltage
dV/dt immune
n Gate drive supply range from 10 to 20V
n Undervoltage lockout for all channels
n Over-current shutdown turns off all six drivers
n Independent half-bridge drivers
n Matched propagation delay for both channels
n Outputs in phase with inputs
Description
The IR2130D is a high voltage, high speed power MOSFET
and IGBT driver with three independent high and low side
referenced output channels. Proprietary HVIC technology
enables ruggedized monolithic construction. Logic inputs
are compatible with 5V CMOS or LSTTL outputs. A ground-
referenced operational amplifier provides analog feedback
of bridge current via an external current sense resistor. A
current trip function which terminates all six outputs is also
derived from this resistor.
3-PHASE DRIVER
Product Summary
VOFFSET
400V max.
IO+/-
200 mA / 420 mA
VOUT
10 - 20V
ton/off (typ.) 675 & 425 ns
Deadtime (typ.)
0.9 µs
An open drain FAULT signal indicates if an over-
current or undervoltage shutdown has occurred.
The output driverhgre a high pulse current
buffer stage designed for minimum driver cross-con
duction. Propagation delays are matched to simplify
use at high frequencies. The floating channels can
be used to drive N-channel power MOSFETs or
IGBTs in the high side configuration which operate
up to 400 volts.
Absolute Maximum Ratings
Absolute Maximum Ratings indicate sustained limits beyond which damage to the device may occur. All voltage param-
eters are absolute voltages referenced to Vso. The Thermal Resistance and Power Dissipation ratings are measured
under board mounted and still air conditions.
Symbol
Parameter
Min. Max. Units
VB1,2,3
VS1,2,3
VHO1,2,3
VCC
VSO
VLO1,2,3
VIN
VFLT
VCAO
VCA-
dVS/dt
PD
RthJA
Tj
TS
TL
High Side Floating Supply Absolute Voltage
High Side Floating Supply Offset Voltage
High Side Output Voltage
Low Side Fixed Supply Voltage
Low Side Driver Return
Low Side Output Voltage
Logic Input Voltage (HIN, LIN & SD)
Fault Output Voltage
Operational Amplifier Output Voltage
Operational amplifier Inverting Input Voltage
Allowable Offset Supply Voltage Transient (Fig. 16)
Package Power Dissipation @ TA< = 25°C (Fig. 19)
Thermal Resistance, Junction to Ambient
Junction Temperature
Storage Temperatue
Lead Temperature (Soldering, 10 seconds)
Weight
-0.3
VSO - 5
VS1,2,3 - 0.3
-0.3
VS1,2,3 + 20
VSO + 400
VS1,2,3 + 0.3
20
-5
VSO - 0.3
-0.3
-0.3
-0.3
-0.3
VCC + 0.3
VCC + 0.3
VCC + 0.3
VCC + 0.3
VCC + 0.3
VCC + 0.3
50
— 1.5
— 70
-55 125
-55 150
— 300
6.1 (typical)
V
V/nS
W
°C/W
°C
g
www.irf.com
1
3/1/00

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IR2130D pdf, ピン配列
IR2130D
Static Electrical Characteristics
VBIAS (VCC, VBS1, 2, 3) = 15V, VSO1, 2, 3 = VSS unless otherwise specified. The VIN, VTH and IIN parameters are
referenced to VSS and are applicable to all six logic input leads: HIN1, 2, 3 & LIN1, 2, 3. The VO and IO parameters are
referenced to VSO1, 2, 3.
Tj = 25°C Tj=55-125°C
Symbol
Parameter
Min. Typ. Max. Min. Max. Units Test Conditions
ILK
IQBS
Offset Supply Leakage Currents
Quiescent VBS Supply Current
50 — 500
µA
VB = VS=400V
— 15 30 — 45
VIN = 0V or 5V
IQCC
IIN+
IIN-
IITRIP+
IITRIP-
Quiescent VCC Supply Current
Logic “1” Input Bias Current(OUT= HI) —
Logic “0” Input Bias Current(OUT=LO) —
“High” ITRIP Bias Current
“Low” ITRIP Bias Current
3.0 4.0 — 6.0 mA
450 650 — 1050
225 400 — — µA
75 150 — —
— 100 — 170 nA
VIN = 0V or 5V
VIN = 0V
VIN = 5V
ITRIP = 5V
ITRIP =0V
VIN,IH Logic “0” Input Voltage( OUT = LO ) —
— — 2.2 —
V
VIN,IL Logic “1” Input Voltage ( OUT = HI ) — — — — 0.8
VIT,TH+ ITRIP Input Positive Going Threshold 400 490 580 350 580 mV
VOS Amplifier Input Offset Voltage
— — 30 — — mV VSO = CA- = 0.2V
Ron,FLT
ICA-
VCCUV+
FAULT- Low On Resistance
CA- Input Bias Current
VCC Supply Undervoltage Positive
— 55 75 — 150
— 0.5 4.0 — 4.0 nA
8.3 9.0 10.6 8.0 10.7
CA- = 2.5V
Going Threshold
VCCUV- VCC Supply Undervoltage Negative
8.0
8.7 10.5 7.7 10.5
V
Going Threshold
VBSUV+ VBS Supply Undervoltage Positive
7.5 8.4 9.2 —
Going Threshold
VBSUV- VBS Supply Undervoltage Negative 7.1 8.0 8.8 — —
Going Threshold
V
IO+ Output High Short Circuit Pulsed
200 250 — — —
VOUT = VIN- = 0V
Current
PW <= 10µS
IO- Output Low Short Circuit Pulsed
Current
420 500 — — — mA VOUT =15, VIN-=5V
PW <= 10µS
VOH,Amp Amplifier High Level Output Voltage 5.0 5.2 5.4 4.9 5.6
V CA- = 0V, VSO =1V
VOL,Amp Amplifier Low Level Output Voltage — 2.5 20 — 20 mV CA- = 1V, VSO =0V
ISRC,Amp Amplifier Output Source Current
ISNK,Amp Amplifier Output Sink Current
2.3 4.0
1.0 2.1
— 1.5 —
— 0.5 —
mA CA- = 0V, VSO =1V, CAO=4V
CA- = 1V, VSO =0V,CAO=2V
CMRR Amplifier Common Mode Rejection 60 80 — — —
Ratio
CA- =VSO =0.1V & 5V
PSRR
Amplifier Power Supply Rejection
Ratio
55 75 — — — dB CA- = VSO =0.2V
VCC = 10V & 20V
VOH High Level Output Voltage
VOL Low Level Output Voltage
— — 100 — 100
VIN- = 0V, IO = 0A
mV
— — 100 — 100
VIN- = 5V, IO = 0A
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3


3Pages


IR2130D 電子部品, 半導体
IR2130D
3V
0V
+
CA-
-
VS0
15V
VCC
VSS
CAO
50 pF
T1
3V 90%
T2
V
0V 10%
V V
SR+ = T1
SR- = T2
Figure 7. Operational Amplifier Slew Rate
Measurement
15V
VS0 +
CA-
-
VCC
VSS
+
0.2V
20k
1k
CAO
VOS =
VCAO
21
- 0.2V
Figure 8. Operational Amplifier Input Offset Voltage
Measurement
-
CA-
+
VS0
15V
VCC
VSS
CAO
Measure VCAO1 at VS0 = 0.1V
VCAO2 at VS0 = 5V
CMRR = -20*LOG
(VCAO1-0.1V) - (VCAO2-5V)
4.9V
(dB)
Figure 9. Operational Amplifier Common Mode Rejection
Ratio Measurements
1.50
VCC
VS0 +
CA-
-
+
0.2V
20k
1k
VSS
CAO
Measure VCAO1 at VCC = 10V
VCAO2 at VCC = 20V
PSRR = -20*LOG
VCAO1 - VCAO2
(10V) (21)
Figure 10. Operational Amplifier Power Supply Rejection
Ratio Measurements
1.50
1.20
Max.
0.90
Typ.
0.60
Min.
0.30
1.20
Max.
0.90
Typ.
0.60
Min.
0.30
0.00
-50
-25
0 25 50 75
Temperature (°C)
100
Figure 11A. Turn-On Time vs. Temperature
6
125
0.00
10 12 14 16 18
VBIAS Supply Voltage (V)
Figure 11B. Turn-On Time vs. Voltage
20
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共有リンク

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