The FLC Electronics F10A is a single-channel, broadband linear amplifier engineered for laboratory and industrial applications demanding precise high-voltage signal amplification. With a fixed gain of 10×, it accepts input signals up to ±10 V and delivers bipolar output spanning −100 V to +100 V, making it ideal for driving piezo actuators, MEMS devices, OLEDs, and liquid crystal displays. The amplifier maintains linear operation from DC through approximately 1 MHz at maximum voltage swing, with a slew rate of 400 V/µs and output impedance below 0.1 Ω in linear mode.
## Technical Specifications
• **Gain:** 10.0066 ± 0.18% at DC
• **Input Voltage Range:** ±10 V maximum
• **Output Voltage Range:** −100 V to +100 V (bipolar)
• **Output Current (Continuous):** 185 mA with current limiting
• **Maximum Output Power:** Approximately 30 W
• **Bandwidth:** DC to ~1 MHz (at maximum Vpp)
• **Slew Rate:** 400 V/µs (factory setting, adjustable on request)
• **Input Impedance:** 1 MΩ || 30 pF
• **Output Impedance:** < 0.1 Ω (linear mode)
• **Dimensions:** 112 mm (H) × 255 mm (W) × 316 mm (D)
• **Weight:** 4 kg
• **Power Supply:** 100/110 V or 220/230 V, 50/60 Hz (3.15 A or 2 A slow fuse, respectively)
• **Operating Temperature:** 0°C to 30°C
• **Storage Temperature:** 0°C to 60°C
## Key Features
• Fixed 10× voltage gain enabling ±10 V source to generate ±100 V output
• Capacitive load capability limited by slew rate—approximately 400 pF at factory setting (cable capacitance included)
• Current-limiting circuit protects against accidental short circuits
• High input impedance (1 MΩ) minimizes source loading
• Isolated BNC output connector for safety compliance
• Input protection via 15 mA micro-fuse; spare included
## Typical Applications
• Piezoelectric actuator driving
• MEMS device control
• OLED panel testing and operation
• Liquid crystal display characterization
• General-purpose high-voltage signal amplification
## Compatibility & Integration
Accepts resistive and small capacitive loads. Can drive small (mH) inductances in series with resistance but cannot drive purely inductive loads. Output signal monitoring via oscilloscope is recommended. Manufactured in Poland.



























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