Sensor Options Chart (continued)

FOOD

AMOUNT

PROCEDURE

Ground Meat

.25 - 2.0 lb

Use this setting to cook ground beef or

 

 

turkey as patties or in a casserole to be

 

 

added to other ingredients. Place patties on

 

 

a microwave-safe rack and cover with wax

 

 

paper. Place ground meat in a casserole and

 

 

cover with wax paper or plastic wrap. When

 

 

microwave oven stops, turn patties over or

 

 

stir meat in casserole to break up large

 

 

pieces. Re-cover and touch Start/Touch On.

 

 

After cooking, let stand, covered, for 2 to 3

 

 

minutes.

Poultry: Boneless .5 - 2.0 lb

Use boneless breast of chicken or turkey.

 

 

Cover with vented plastic wrap. Touch

 

 

Poultry, number 1 and Start/Touch On pads.

 

 

When microwave oven stops, rearrange. Re-

 

 

cover and touch Start/Touch On pad. After

 

 

cooking, let stand, covered, 3 to 5 minutes.

 

 

Poultry should be 160˚F.

Bone-in

.5 - 3.0 lb

Arrange pieces with meatiest portions

 

 

toward outside of glass dish or microwave

 

 

safe rack. Cover with vented plastic wrap.

 

 

Touch Poultry, number 2 and Start/Touch On

 

 

pads. After cooking, let stand, covered, 3 to

 

 

5 minutes. Dark meat should be 180˚F and

 

 

white meat should be 170˚F.

Fish/Seafood

.25 - 2.0 lb

Arrange in ring around shallow glass dish

 

 

(roll fillet with edges underneath). Cover with

 

 

vented plastic wrap. After cooking, let stand,

 

 

covered for 3 minutes.

22

Page 22
Image 22
Viking VMOS201AR, VMOS200BT, VMOS201SS, VMOS200BK, VMOS200WH, VMOS201IB, VMOS200SS manuel dutilisation Sensor Options Chart

VMOS200SS, VMOS201, VMOS200BT, VMOS200, VMOS201AR specifications

The Viking VMOS200, DMOS200, CDMOS200, and CVMOS200 are advanced products designed for telecommunications and power management applications. Each model showcases unique features and technologies that make them stand out in their respective fields.

The VMOS200 is built on the vertical MOSFET technology, allowing for optimized performance in high-power applications. This device excels in switching capabilities and minimizing conduction losses, leading to improved efficiency. The VMOS200 is ideal for use in power amplifiers and high-frequency applications, where reliable performance and thermal stability are crucial. Its rugged design ensures that it can withstand harsh environments, making it a preferred choice for industrial and aerospace applications.

Next, the DMOS200 employs a double-diffused MOSFET technology, which enhances its thermal performance and power handling capabilities. This model is particularly effective in low-voltage applications where efficiency is paramount. The DMOS200 features a low on-resistance characteristic, allowing for reduced energy loss during operation. Its fast switching speed enables high-frequency operation, making it suitable for RF amplifiers and motor drives.

The CDMOS200 introduces a charge-balanced design, optimizing the allocation of charge carriers within the device to minimize heat generation and improve efficiency. This model is tailored for demanding applications in communications where signal integrity and power efficiency are critical. With its high breakdown voltage and robust construction, the CDMOS200 can handle more demanding operational conditions, making it popular in cellular and satellite communication systems.

Lastly, the CVMOS200 combines the advantages of vertical and charge-balanced technologies, offering a versatile solution for a broad range of applications. This hybrid design provides high efficiency, exceptional reliability, and enhanced thermal management. The CVMOS200 is particularly well-suited for switching power supplies and audio amplification. Its compact footprint allows for integration into space-constrained designs while maintaining high performance.

In summary, the Viking series of devices—VMOS200, DMOS200, CDMOS200, and CVMOS200—offer a range of features, technologies, and characteristics tailored to meet the demands of modern power electronics and telecommunications. With their robust designs, high efficiency, and adaptability to various applications, these devices are integral components for engineers and designers looking to create cutting-edge technological solutions.