Optimizing DC-DC converter stability: AC and transient analysis in simulations of source impedance effects
Learn how to optimize DC-DC converter stability through AC analysis in the frequency-domain and transient analysis in the time-domain
The IAM (Input Attenuator Module) is a component-level, DC-input front-end filter designed to occupy minimum board space while providing maximum protection for today's sophisticated electrical systems. The IAM in combination with 24, 48 and 300VDC input modules, provides a highly-efficient, high-density power system with outputs from 1 to 95VDC and power up to 400W (expandable to 800W). Your system will benefit from the small size, efficiency and inherent reliability of Vicor component-level converters, while meeting the toughest demands of telecommunications and industrial power applications.
Filter Products
| Part Number | Data Sheet | Input (V) | Temperature | Power (W) | RoHS Compliant | Add to cart / view details | ||
|---|---|---|---|---|---|---|---|---|
|
VI-AWW-EU
|
![]() |
Part Number: VI-AWW-EU | Data Sheet: |
Input (V):
18 – 36
|
Temperature:
–10°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
No
|
View details |
|
VI-A11-CU
|
![]() |
Part Number: VI-A11-CU | Data Sheet: |
Input (V):
21 – 32
|
Temperature:
–25°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
No
|
View details |
|
VI-AWW-CU
|
![]() |
Part Number: VI-AWW-CU | Data Sheet: |
Input (V):
18 – 36
|
Temperature:
–25°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
No
|
View details |
|
VI-A11-IU
|
![]() |
Part Number: VI-A11-IU | Data Sheet: |
Input (V):
21 – 32
|
Temperature:
–40°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
No
|
View details |
|
VI-AWW-IU
|
![]() |
Part Number: VI-AWW-IU | Data Sheet: |
Input (V):
18 – 36
|
Temperature:
–40°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
No
|
View details |
|
VI-A11-MU
|
![]() |
Part Number: VI-A11-MU | Data Sheet: |
Input (V):
21 – 32
|
Temperature:
–55°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
No
|
View details |
|
VI-AWW-MU
|
![]() |
Part Number: VI-AWW-MU | Data Sheet: |
Input (V):
18 – 36
|
Temperature:
–55°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
No
|
View details |
|
VE-A11-EU
|
![]() |
Part Number: VE-A11-EU | Data Sheet: |
Input (V):
21 – 32
|
Temperature:
–10°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
Yes
|
View details |
|
VE-AWW-CU
|
![]() |
Part Number: VE-AWW-CU | Data Sheet: |
Input (V):
18 – 36
|
Temperature:
–25°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
Yes
|
View details |
|
VE-A11-IU
|
![]() |
Part Number: VE-A11-IU | Data Sheet: |
Input (V):
21 – 32
|
Temperature:
–40°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
Yes
|
View details |
|
VE-AWW-IU
|
![]() |
Part Number: VE-AWW-IU | Data Sheet: |
Input (V):
18 – 36
|
Temperature:
–40°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
Yes
|
View details |
|
VE-A11-MU
|
![]() |
Part Number: VE-A11-MU | Data Sheet: |
Input (V):
21 – 32
|
Temperature:
–55°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
Yes
|
View details |
|
VE-AWW-MU
|
![]() |
Part Number: VE-AWW-MU | Data Sheet: |
Input (V):
18 – 36
|
Temperature:
–55°C to +100°C
|
Power (W):
200
|
RoHS Compliant:
Yes
|
View details |
|
VI-A66-EQ
|
![]() |
Part Number: VI-A66-EQ | Data Sheet: |
Input (V):
200 – 400
|
Temperature:
–10°C to +100°C
|
Power (W):
400
|
RoHS Compliant:
No
|
View details |
|
VI-A33-CQ
|
![]() |
Part Number: VI-A33-CQ | Data Sheet: |
Input (V):
42 – 60
|
Temperature:
–25°C to +100°C
|
Power (W):
400
|
RoHS Compliant:
No
|
View details |
|
VI-ANN-CQ
|
![]() |
Part Number: VI-ANN-CQ | Data Sheet: |
Input (V):
36 – 76
|
Temperature:
–25°C to +100°C
|
Power (W):
400
|
RoHS Compliant:
No
|
View details |
|
VI-A66-CQ
|
![]() |
Part Number: VI-A66-CQ | Data Sheet: |
Input (V):
200 – 400
|
Temperature:
–25°C to +100°C
|
Power (W):
400
|
RoHS Compliant:
No
|
View details |
|
VI-A33-IQ
|
![]() |
Part Number: VI-A33-IQ | Data Sheet: |
Input (V):
42 – 60
|
Temperature:
–40°C to +100°C
|
Power (W):
400
|
RoHS Compliant:
No
|
View details |
|
VI-ANN-IQ
|
![]() |
Part Number: VI-ANN-IQ | Data Sheet: |
Input (V):
36 – 76
|
Temperature:
–40°C to +100°C
|
Power (W):
400
|
RoHS Compliant:
No
|
View details |
|
VI-A66-IQ
|
![]() |
Part Number: VI-A66-IQ | Data Sheet: |
Input (V):
200 – 400
|
Temperature:
–40°C to +100°C
|
Power (W):
400
|
RoHS Compliant:
No
|
View details |
|
VI-A66-MQ
|
![]() |
Part Number: VI-A66-MQ | Data Sheet: |
Input (V):
200 – 400
|
Temperature:
–55°C to +100°C
|
Power (W):
400
|
RoHS Compliant:
No
|
View details |
|
VE-ANN-CQ
|
![]() |
Part Number: VE-ANN-CQ | Data Sheet: |
Input (V):
36 – 76
|
Temperature:
–25°C to +100°C
|
Power (W):
400
|
RoHS Compliant:
Yes
|
View details |
|
VE-A66-CQ
|
![]() |
Part Number: VE-A66-CQ | Data Sheet: |
Input (V):
200 – 400
|
Temperature:
–25°C to +100°C
|
Power (W):
400
|
RoHS Compliant:
Yes
|
View details |
High surge withstand
Input polarity protection
Logic disable
Expansion output for arrays (up to 800W)
Optimizing DC-DC converter stability: AC and transient analysis in simulations of source impedance effects
Learn how to optimize DC-DC converter stability through AC analysis in the frequency-domain and transient analysis in the time-domain
Powering AI Processors using a 48V Factorized Power Architecture™
Using a 48V Factorized Power Architecture™ to overcome traditional multiphase limitations and drastically cut I²R thermal losses for high-demand loads
11 ways to fine tune your high-voltage-to-48V power conversion
Converting high-voltage to 48V DC slashes cabling costs and weight, significantly boosting energy efficiency across data centers and industrial systems
Achieving seamless interoperability and long-term upgradeability
Understand which specifications to look for and what tradeoffs will be acceptable, to choose products that best fit your design requirements
Legacy DC-DC converters supporting traditional designs


