| Manufacturer | Part # | Datasheet | Description |

JMK Inc.
|
AA-1280-2 |
32Kb/1P |
compact, single phase, device with very good common mode and differential mode insertion loss |
| AA-1249-6 |
173Kb/1P |
compact, single phase, device with very good common mode and differential mode insertion loss |
| KK-1328-40 |
32Kb/1P |
This filter delivers high common mode and differential mode insertion loss for DC Power Systems. |
| 0233G |
96Kb/1P |
designed to provide common mode and differential mode filtering for power supply inputs of computer peripheral and other electronic hardware |
| 0221 |
140Kb/1P |
designed to provide common mode and differential mode filtering for power supply inputs of computer peripheral and other electronic hardware |
| 0283E |
202Kb/1P |
The 283 filter is a compact, single phase, high current device with very good common mode and differential mode insertion loss. |
| EF-0926-20 |
186Kb/1P |
The 926 filter is a compact, single phase, high current device with very good common mode and differential mode insertion loss. |
| 0283 |
224Kb/1P |
The 283 filter is a compact, single phase, high current device with very good common mode and differential mode insertion loss. |
| 1151 |
202Kb/1P |
The 1151 filter is a very compact, single phase, high current device with very good common mode and differential mode insertion loss |
| 0220 |
46Kb/1P |
designed to provide common-mode filtering for computer periphereral and other electronic hardware using linear power supplies |
| EF-1233M-12 |
164Kb/1P |
This filter provides very good common mode and differential insertion loss for 12 amp single phase systems |
| KK-1328-32 |
236Kb/1P |
This filter series is intended to very high common mode and differential insertion loss for DC power systems. |
| 0233H |
94Kb/1P |
The H version of the 0233 series filter offers good common and differential mode insertion loss in an extremely small package. |
| ZG-1449-18 |
98Kb/2P |
The JMK ZG-1449-18 audio amplifier is a dual channel audio amplifier capable of functioning in an automotive environment. |