- Manufacturer Part Number : ADL5306ACPZ-R2
- Manufacturer : AD
- Description : 60 dB-RANGE (100 nA-100 µA) Low-Cost Logarithmic Converter IC
- Series : ADL5306
- Reference Price : USD 4.176
- Our Price : We have a better price, contact us by email
- Product Type : RF Power Detectors
- Function : Log Detectors
- Current Suggest : Production
- Status : Production
- ROHS Status : ROHS Compliant (Lead Free)
- Package Type : 16-Lead LFCSP (3mm x 3mm w/ EP)
- Pins : 16
- MFG Package Case : CP-16-3
- Part Type : REEL
- Standard Packing Type : Reel
- Standard Packing Quantity : 250
- Working Temperature : -40 to 85C
- Other Part Number : ADL5306ACPZ-R2
- Shipping methods : DHL FEDEX UPS TNT
- Delivery Time : Ship within 1 day.
- Manufacturer Production time : 6-8 weeks (Normally have stocks)
- Weight : 0.001KG
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The ADL5306 is a low cost micro-miniature logarithmic converter optimized for the determination of optical power in fiber-optic systems. It uses an advanced implementation of a classic translinear (junction-based) technique to provide a large dynamic range in a versatile and easily-used form. A single supply voltage of between 3 V and 5.5 V is adequate; dual supplies may optionally be used. The low quiescent current (typically 5 mA) permits use in battery-operating applications
The input current IPD of 100 nA to 100 µA applied to the INPT pin is the collector current of an optimally-scaled NPN transistor, which converts this current to a voltage (its VBE) with a precise logarithmic relationship. A second such converter is used to handle the reference current, IREF, applied to pin IREF. These input nodes are biased slightly above ground (0.5 V). This is generally acceptable for photodiode applications where the anode does not need to be grounded. Similarly, this bias voltage is easily accounted for in generating IREF. The output of the logarithmic front-end is available at pin VLOG.
At least one model within this product family is in production and available for purchase. The product is appropriate for new designs but newer alternatives may exist.