Flash Sale 22 Ghz Balanced Photoreceiver Module Instant 70% Discount [cBLGoewg]
The Optilab BPR-22-M is a 22 GHz balanced photo receiver module. This cost-effective receiver module operates under a single +5V power supply and can provide users with a turn key solution for applications such as balanced photo detection and 43 Gbit
Secure Shopping
100% Safe Guarantee
Free Shipping
On orders over $30
Money-Back
30-Day Guarantee
Flash Sale 22 Ghz Balanced Photoreceiver Module Instant 70% Discount [cBLGoewg]
The Optilab BPR-22-M is a 22 GHz balanced photo receiver module. This cost-effective receiver module operates under a single +5V power supply and can provide users with a turn key solution for applications such as balanced photo detection and 43 Gbit/s DQPSK receiver. With a single, differential linear trans-impedance/ variable gain amplifier (TIA/VGA), BPR-22-M offers two gain control modes: manual and automatic. In manual mode, BPR-22-M provides a linear conversion gain of 1500 V/A. In automatic mode, the gain is automatically adjusted to deliver a constant differential output voltage up to 1200 mV. It also includes a peak detector output for closed loop control of a front-end optical demodulator. An excellent electrical and optical phase propagation is achieved by a total skew of lower than 5 ps between the balanced signal paths.
Please contact +1 (602)-343-1496 or email [email protected] for more info.
Features:
➤ Dual optical input balanced photodiode
➤ Differential RF output, Linear high gain TIA
➤ Built-in DC block for AC coupling
➤ Near ideal matching response
➤ High common mode rejection ratio
➤ Very low skew
➤ Auto / Manual gain control mode
➤ Input Protection
Applications:
➤ Balanced linear receiver up to 22 GHz
➤ 22 G analog RF link
➤ Low noise analog heterodyne detection
➤ 43 Gbit/s DQPSK receiver
Datasheet
What Our Customers Say
Absolutely no complaints!
A great product, it's as simple as that.
- Maci T..
Absolutely no complaints!
Brilliant engineering and execution.
- Sadie B..
Absolutely no complaints!
So glad I found this. It's perfect.
- Kayden G..