
ルネサスの高性能耐放射線強化PWMコントローラは、ブースト、フライバック、絶縁出力構成、電圧または電流モードのスイッチング電源など、広範囲の電力変換アプリケーションに適しています。
Topology |
VDD1 (V) |
Operating Freq (Max) (MHz) |
Duty Cycle (Max) (%) |
No-Load Operating Current |
UVLO Rising (V) |
Outputs (#) |
Phase of Outputs |
High Dose Rate (HDR) (krad (Si)) |
Low Dose Rate (LDR) (krad (Si)) |
DSEE (SEL, SEB, etc.) (MeV*cm2/mg) |
Lead Count (#) |
Pkg. Type |
Temp. Range |
DLA SMD |
SMD URL |
Qualification Level |
Models Available |
|
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
型名 | ||||||||||||||||||
Radiation Hardened High-speed, Dual Output PWM | Voltage or Current Mode | 12 - 30 | 0.5 | 50 | .036 | 8.4 | 2 | Out of Phase | 300 | , SEL free | 16 | CFP, SBDIP | -55 to 125°C | 5962F9955802V9A, 5962F9955802VEC, 5962F9955802VXC | 5962-99558 | QML Class V (Space) | ||
Radiation Hardened High-speed, Dual Output PWM | Voltage or Current Mode | 12 - 30 | 0.5 | 50 | .036 | 8.4 | 2 | Out of Phase | 300 | , SEL free | 16 | CFP, DIE, SBDIP | -55 to 125°C | 5962F9955801QEC, 5962F9955801QXC, 5962F9955801V9A and more... |
5962-02511 | QML Class Q (Military), QML Class V (Space) | iSIM | |
Single Event and Total Dose Hardened, High-speed, Dual Output PWMs | Voltage or Current Mode | 12 - 20 | 0.5 | 50 | .025 | 8.6 | 2 | Out of Phase | 300 | , SEL free | 16, 20 | CFP, DIE, PDS, SBDIP | -55 to 125°C | 5962F0251101QEC, 5962F0251101QXC, 5962F0251101V9A and more... |
5962-02511 | QML Class Q (Military), QML Class V (Space) | iSIM | |
Single Event and Total Dose Hardened, High-speed, Dual Output PWMs | Voltage or Current Mode | 12 - 20 | 0.5 | 50 | .025 | 8.6 | 2 | Out of Phase | 300 | 50 | , SEL free | 16, 20 | CFP, SBDIP | -55 to 125°C | 5962F0251105V9A, 5962F0251105VEC, 5962F0251105VXC | 5962-02511 | QML Class Q (Military), QML Class V (Space) | iSIM |
Single Event and Total Dose Hardened, High-speed, Dual Output PWMs | Voltage or Current Mode | 12 - 20 | 0.5 | 50 | .025 | 8.6 | 2 | Out of Phase | 300 | , SEL free | 16, 20 | CFP, SBDIP | -55 to 125°C | 5962F0251103QEC, 5962F0251103QXC, 5962F0251103V9A and more... |
5962-02511 | QML Class Q (Military), QML Class V (Space) | iSIM | |
Single Event Radiation Hardened High Speed, Current Mode PWM | Current Mode | 12 - 20 | 0.5 | 50 | .017 | 8.8 | 1 | 300 | 50 | , SEL free | 8, 18 | CFP, DIE, SBDIP | -55 to 125°C | 5962F0150902V9A, 5962F0150902VPC, 5962F0150902VXC | 5962-01509 | QML Class V (Space) | ||
High Speed, Current Mode PWM | Current Mode | 12 - 20 | 0.5 | 50 | .017 | 8.8 | 1 | 300 | 50 | , SEL free | 8, 18 | CFP, SBDIP | -55 to 125°C | 5962F0150901QPC, 5962F0150901QXC, 5962F0150901VPC, 5962F0150901VXC | 5962-01509 | QML Class Q (Military), QML Class V (Space) | ||
Single Event and Total Dose Hardened, High-Speed, Dual Output PWMs | Voltage or Current Mode | 12 - 20 | 0.5 | 100 | .025 | 8.6 | 2 | In Phase | 300 | , SEL free | 16, 20 | CFP, DIE, SBDIP | -55 to 125°C | 5962F0251102QEC, 5962F0251102QXC, 5962F0251102VEC, 5962F0251102VXC | 5962-02511 | QML Class Q (Military), QML Class V (Space) | iSIM | |
Single Event and Total Dose Hardened, High-Speed, Dual Output PWMs | Voltage or Current Mode | 12 - 20 | 0.5 | 100 | .025 | 8.6 | 2 | In Phase | 300 | , SEL free | 16, 20 | CFP, SBDIP | -55 to 125°C | 5962F0251104QEC, 5962F0251104QXC, 5962F0251104V9A and more... |
5962-02511 | QML Class Q (Military), QML Class V (Space) | iSIM | |
Radiation Hardened Single/Dual Phase Current Mode PWM Controller | 1.5 | 97 | 0.012 | 4.2 | 2 | Out of Phase | 100 | 75 | SEL free | 24 | CFP, DIE | -55 to 125°C | QML Class V (Space) | |||||
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 100 | .0029 | 7 | 1 | 50 | 43 | 8 | CFP, DIE, SBDIP | -55 to 125°C | 5962L0724909V9A, 5962L0724909VPC, 5962L0724909VXC | 5962-07249 | QML Class V (Space) | |||
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 50 | .0029 | 7 | 1 | 50 | 43 | 8 | CFP, DIE, SBDIP | -55 to 125°C | 5962L0724910V9A, 5962L0724910VPC, 5962L0724910VXC | 5962-07249 | QML Class V (Space) | |||
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 100 | .0029 | 8.4 | 1 | 50 | 43 | 8 | CFP, DIE, SBDIP | -55 to 125°C | 5962L0724911V9A, 5962L0724911VPC, 5962L0724911VXC | 5962-07249 | QML Class V (Space) | |||
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 50 | .0029 | 8.4 | 1 | 50 | 43 | 8 | CFP, DIE, SBDIP | -55 to 125°C | 5962L0724912V9A, 5962L0724912VPC, 5962L0724912VXC | 5962-07249 | QML Class V (Space) | |||
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 100 | .0029 | 7 | 1 | 100 | 50 | 43 | 8 | CFP, SBDIP | -55 to 125°C | 5962R0724905V9A, 5962R0724905VPC, 5962R0724905VXC | 5962-07249 | QML Class V (Space) | iSIM, PSPICE | |
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 100 | .0029 | 7 | 1 | 100 | 43 | 8 | CFP, DIE, SBDIP | -55 to 125°C | 5962R0724901QPC, 5962R0724901QXC, 5962R0724901V9A and more... |
5962-07249 | QML Class Q (Military), QML Class V (Space) | iSIM, PSPICE | ||
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 50 | .0029 | 7 | 1 | 100 | 50 | 43 | 8 | CFP, SBDIP | -55 to 125°C | 5962R0724906V9A, 5962R0724906VPC, 5962R0724906VXC | 5962-07249 | QML Class V (Space) | iSIM, PSPICE | |
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 50 | .0029 | 7 | 1 | 100 | 43 | 8 | CFP, DIE, SBDIP | -55 to 125°C | 5962R0724902QPC, 5962R0724902QXC, 5962R0724902V9A and more... |
5962-07249 | QML Class Q (Military), QML Class V (Space) | iSIM, PSPICE | ||
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 100 | .0029 | 8.4 | 1 | 100 | 100 | 43 | 8 | CFP, SBDIP | -55 to 125°C | 5962R0724907V9A, 5962R0724907VPC, 5962R0724907VXC | 5962-07249 | QML Class V (space) | ISIM, PSPICE | |
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 100 | .0029 | 8.4 | 1 | 100 | 43 | 8 | CFP, DIE, SBDIP | -55 to 125°C | 5962R0724903QPC, 5962R0724903QXC, 5962R0724903V9A and more... |
5962-07249 | QML Class Q (Military), QML Class V (Space) | iSIM, PSPICE | ||
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 50 | .0029 | 8.4 | 1 | 100 | 50 | 43 | 8 | CFP, SBDIP | -55 to 125°C | 5962R0724908V9A, 5962R0724908VPC, 5962R0724908VXC | 5962-07249 | QML Class V (Space) | iSIM, PSPICE | |
Radiation Hardened, High Performance Industry Standard Single-Ended Current Mode PWM Controller | Current Mode | 9 - 13.2 | 1 | 50 | .0029 | 8.4 | 1 | 100 | 43 | 8 | CFP, DIE, PDS, SBDIP | -55 to 125°C | 5962R0724904QPC, 5962R0724904QXC, 5962R0724904V9A and more... |
5962-07249 | QML Class Q (Military), QML Class V (Space) | iSIM, PSPICE |
Over the past 19 years, the space industry has placed a higher value on understanding the effects that long-term, low dose radiation can have on ICs. Intersil's radiation testing specialist Nick van Vonno discusses why this shift has occurred and what we are doing to address this change.
There are many different types of radiation, and indeed Intersil addresses two of these. Intersil addresses total dose testing which is basically gamma rays. Okay, and at both high and low dose rate, as we'll get into later. Intersil also addresses single event effects of a fairly broad range, and those are typically addressed by heavy ion testing.
Low dose rate testing, you have to contrast this really in order to understand this. You have to look historically at how total dose testing which is done with gamma rays, how that's been performed. Historically this has been performed at what we call high dose rate, and typically to put this in some numbers, that would run somewhere in the range of 50rad to 300rad/s.
Low dose rate, on the other hand, is a much, much slower dose rate. The generally accepted number, and the one we perform our work in, is 0.01rad/s. You see how far that's away from 300rad a second. And that can also be expressed as 10mrad/s if you'd like.
Now why are we goofing with that? And the answer is that the low dose rate is what happens in space. Dose rates in space are almost uniformly low to the order of 10mrad/s. Low dose rate radiation testing has been a, let's call it a hot topic in silicon advanced research since about 1992, okay? In 1992, some researchers out at Mich research came up with a very unusual finding which showed that certain parts that looked very good at high dose rate degrade with amazing rapidity, orders and orders of magnitude, worse at low dose rate. And so, that was not a fully intuitive result, and indeed it had to be repeated, and in the intervening 19 years there is a very large amount of work that's been done on low dose rate effects. And, as we've learned about how different parts react in low dose rate, we've, as an industry, we've swung over more towards a low dose rate testing emphasis rather than a high dose rate testing emphasis.
![]() |
ルネサス、AMDの宇宙用VersalアダプティブSoC向けにパワーマネジメントICのリファレンスデザインパックを提供開始 | ニュース | 2023年7月19日 |