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TSA1002 bảng dữ liệu(PDF) 14 Page - STMicroelectronics |
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TSA1002 bảng dữ liệu(HTML) 14 Page - STMicroelectronics |
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14 / 20 page ![]() Obsolete Product(s) - Obsolete Product(s) TSA1002 14/20 DRIVING THE ANALOG INPUT Differential inputs The TSA1002 has been designed to obtain optimum performances when being differentially driven. An RF transformer is a good way to achieve such performances. Figure 3 describes the schematics. The input signal is fed to the primary of the transformer, while the secondary drives both ADC inputs. Figure 3 : Differential input configuration with transformer The common mode voltage of the ADC (INCM) is connected to the center-tap of the secondary of the transformer in order to bias the input signal around this common voltage, internally set to 0.57V. The INCM is decoupled to maintain a low noise level on this node. Our evaluation board is mounted with a 1:1 ADT1-1WT transformer from Minicircuits. You might also use a higher impedance ratio (1:2 or 1:4) to reduce the driving requirement on the analog signal source. For example, with internal references, each analog input can drive a 1Vpp amplitude input signal, so the resultant differential amplitude is 2Vpp. Figure 4 : AC-coupled differential input Figure 4 represents the biasing of a differential input signal in AC-coupled differential input configuration. Both inputs VIN and VINB are centered around the common mode voltage, that can be let internal or fixed externally. Figure 5 shows a DC-coupled configuration with forced INCM to the DC analog input (mid-voltage) while VREFM is connected to ground and VREFP is let internal (1V); we achieve a 2Vpp differential amplitude. Figure 5 : DC-coupled 2Vpp differential analog input Single-ended input configuration The single-ended input configuration of the TSA1002 requires particular biasing and driving. The structure being fully differential, care has to be taken in order to properly bias the inputs in sin- gle ended mode. Figure 6 summarizes the link from the differential configuration to the sin- gle-ended one; a wrong configuration is also pre- sented. - With differential driving, both inputs are centered around the INCM voltage. - The transition to single-ended configuration implies to connect the unused input (VINB for instance) to the DC component of the single input (Vin) and also to the input common mode in order to be well balanced. The mid-code is achieved at the crossing between VIN and VINB, therefore inputs are conveniently biased. - Unlikely other structures of converters in which the unused input can be grounded; in our case it will end with unbalanced inputs and saturation of the internal amplifiers leading to a non respect of the output codes. TSA1002 VIN VINB INCM 50 Ω 100pF 330pF 4.7uF 10nF Analog source 1:1 ADT1-1 50 Ω 10nF TSA1002 VIN VINB INCM 33pF 100k Ω 100k Ω 50 Ω 10nF common mode TSA1002 VIN VINB INCM 330pF 4.7uF 10nF analog DC AC+DC VREFP VREFM VREFP-VREFM = 1 V DC analog |
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