GBU2510-G datasheet pdf and Diodes - Bridge Rectifiers product details from Comchip Technology stock available on our website
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GBU2510-G Datasheet
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Specifications
Name
Value
Type
Parameter
Factory Lead Time
12 Weeks
Mount
Through Hole
Mounting Type
Through Hole
Package / Case
4-SIP, GBU
Diode Element Material
SILICON
Operating Temperature
-55°C~150°C TJ
Packaging
Tube
Published
2012
Part Status
Active
Moisture Sensitivity Level (MSL)
1 (Unlimited)
Number of Terminations
4
ECCN Code
EAR99
Additional Feature
UL RECOGNIZED
Technology
Standard
Peak Reflow Temperature (Cel)
NOT SPECIFIED
[email protected] Reflow Temperature-Max (s)
NOT SPECIFIED
JESD-30 Code
R-PSFM-T4
Number of Elements
4
Configuration
BRIDGE, 4 ELEMENTS
Diode Type
Single Phase
Current - Reverse Leakage @ Vr
10μA @ 1000V
Voltage - Forward (Vf) (Max) @ If
1V @ 12.5A
Max Reverse Leakage Current
10μA
Max Surge Current
350A
Output Current-Max
25A
Current - Average Rectified (Io)
25A
Number of Phases
1
Voltage - Peak Reverse (Max)
1kV
Breakdown Voltage-Min
1000V
RoHS Status
ROHS3 Compliant
Lead Free
Lead Free
Pricing & Ordering
Quantity
Unit Price
Ext. Price
1
$4.990440
$4.99044
10
$4.707962
$47.07962
100
$4.441474
$444.1474
500
$4.190070
$2095.035
1000
$3.952896
$3952.896
GBU2510-G Product Details
GBU2510-G Overview
Basically, it is a 4-SIP, GBU package-type electronic component.Observe the reverse leakage current and do not allow it to exceed zero.Bridge rectifier is mounted using the Through Hole method.Its normal operation is ensured by operating at a temperature of -55°C~150°C TJ.In terms of maximum output voltage, it can support 25A.A surge current should not exceed 350A and should be monitored.
GBU2510-G Features
4-SIP, GBU package operating at a temperature of -55°C~150°C TJ the maximum output voltage of 25A
GBU2510-G Applications
There are a lot of Comchip Technology GBU2510-G applications of bridge rectifiers.
Fuse-in-glass diodes design
Military, hybrid vehicles and power supplies
Working peak reverse voltages 200 to 1 ,000 volts
Aviation – Standby power distribution, resistive heating