+150V 1A LINEAR AMPLIFIER

 

 

SUMMARY OF TECHNICAL DATA

Output

max

+150 V (unipolar)

Bandwidth

Power

DC to ca 60 kHz; DC to ca 30kHz at 100nF load

Bandwidth

Small signal

DC to ca 250 kHz

Amplification

-

20 times, fixed (other available on request)

Load

type

resistive || capacitive

Impedance

input

100 kohm || 30 pF

output

ca 2 ohm in the linear mode

Voltage

input

nominal +10V

absolute maximum

30 V peak

Current

output

1A continuous

Slew Rate

output

ca 20 V/µs

Operating Ambient Temperature

0°C to 30°C

Storage Temperature

0°C to 60°C

Relative Humidity

up to 90% (operation), 30% to 50% (storage)

Power Requirements

100/110 V or 220/230 V, 50/60 Hz

Fuse

100/110 V: 3.15 A (slow), 220/230 V: 2 A (slow)

Dimensions (H/W/L)

102 x 257 x 262 (mm)

Weight

5.5 kg

Country of Origin

Sweden

Data sheet (pdf)

 

INPUT AMPLITUDE

The input amplitude should normally be kept within 0..+10 V and not exceed ±20 V. The input protection network will limit the signal amplitude to the range -1V..+10V and is equipped with a microfuse rated at 15 mA, which will be blown if the input voltage exceeds ca 30 V. Spare fuse is provided inside the instrument case. The input protection network effectively cuts accidental spikes and overshoots.

Replacement fuses can be obtained from FLC Electronics AB or from resellers of Littefuse. The part code is 272.015

If a negative voltage is applied to the input it will be output up to ca -10V.

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LOAD

The amplifier is intended to drive resistive and/or capacitive load. Small inductive load is also allowed (except purely inductive load). The maximum capacitive load depends on the slew rate of the amplifier and on max output current. The performance data given here correspond to adjustment for 100nF load.

The continuous output current limit is 1A. The output is equipped with a current limiting circuit which withstands accidental short-circuits. It, however, does not constitute sufficient protection against prolonged short-circuiting or overload.

The amplifier may be overheated when the output is short-circuited for a longer time or its ventilation is obstructed.

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FREQUENCY RESPONSE

The graph below shows full-scale frequency response of P150 amplifier for 1nF and 100nF load, respectively.

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page revised March 31, 2006