IP2005APBF International Rectifier, IP2005APBF Datasheet - Page 9

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IP2005APBF

Manufacturer Part Number
IP2005APBF
Description
IC PWR BLOCK SYNC BUCK 40A LGA
Manufacturer
International Rectifier
Series
iPOWIR™r
Type
Step-Down (Buck)r
Datasheet

Specifications of IP2005APBF

Internal Switch(s)
Yes
Synchronous Rectifier
Yes
Number Of Outputs
1
Voltage - Output
0.8 ~ 5.5 V
Current - Output
40A
Frequency - Switching
250kHz ~ 1.5MHz
Voltage - Input
6.5 ~ 13.2 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
Power Block (LGA)
Power - Output
9.3W
Package
LGA - 7.7 x 7.7
Circuit
Power Stage
Iout (a)
40
Switch Freq (khz)
250 - 1500
Input Range (v)
6.5 - 13.2
Output Range (v)
0.8 - 5.5
Ocp Otp Uvlo Pre-bias Soft Start And
UVLO (no OVP OCP OTP nor Soft Start)
Pbf
PbF Option Available
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
IP2005APBF
Manufacturer:
TOSHIBA
Quantity:
68
Part Number:
IP2005APBF
Manufacturer:
IR
Quantity:
20 000
www.irf.com
Calculating Power Loss and SOA for Different Operating Conditions
To calculate Power Loss for a given set of operation conditions, the following procedure
should be followed:
Power Loss Procedure
1.Determine the maximum current for each iP2005A and obtain the maximum power loss
from Figure 1
2.Use the normalized curves to obtain power loss values that match the operating conditions
in the application
3.The maximum power loss under the application conditions is then the product of the power
loss from Figure 1 and the normalized values.
To calculate the Safe Operating Area (SOA) for a given set of operating conditions,
SOA Procedure
1.Determine the maximum PCB and CASE temperature at the maximum operating current
for each iP2005A
2.Use the normalized curves to obtain SOA temperature adjustments that match the
operating conditions in the application
3.Then, add the sum of the SOA temperature adjustments to the T
2
Design Example
Operating Conditions:
Output Current = 30A
Switching Freq = 750kHz Inductor = 0.2µH
Calculating Maximum Power Loss:
the following procedure should be followed:
(Figure 1)
(Figure 3)
(Figure 4)
(Figure 5)
(Figure 6)
Calculated Maximum Power Loss ≈ 9.0W x 0.95 x 1.0 x 1.026 x 0.87 ≈ 7.63W
Input Voltage = 10V
Maximum power loss = 9.0W
Normalized power loss for input voltage ≈ 0.95
Normalized power loss for output voltage ≈ 1.0
Normalized power loss for output inductor ≈ 1.026
Normalized power loss for switch frequency ≈ 0.87
2/8/2008
Output Voltage = 1.3V
Drive Voltage (V
X
iP2005APbF
axis intercept in Figure
DD
) = 5V
PD-60325
9

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