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SE2529L-R 数据表(PDF) 4 Page - SiGe Semiconductor, Inc. |
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SE2529L-R 数据表(HTML) 4 Page - SiGe Semiconductor, Inc. |
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4 / 10 page ![]() SE2529L RangeCharger™ 2.4GHz Power Amplifier 63-DST-01 Rev 2.0 Nov 9/03 4 of 10 Absolute Maximum Ratings These are stress ratings only. Exposure to stresses beyond these maximum ratings may cause permanent damage to, or affect the reliability of the device. Avoid operating the device outside the recommended operating conditions defined below. This device is ESD sensitive. Handling and assembly of this device should be at ESD protected workstations. Symbol Definition Min. Max. Unit VCC Supply Voltage on VCC0, VCC1, VCC2 and OUT/VCC3 -0.3 +3.6 V Vbb Bias Voltage (Vb1, Vb2, Vb3) -0.3 +3.6 V IN RF Input Power +8 dBm TA Operating Temperature Range -40 +85 °C TSTG Storage Temperature Range -40 +150 °C Tj Maximum Junction Temperature +150 °C Recommended Operating Conditions Symbol Parameter Min. Max. Unit VCC Supply Voltage (VCC0, VCC1, VCC2, OUT/VCC3) 3.0 3.6 V TA Ambient Temperature -40 85 °C DC Electrical Characteristics 802.11g DC Electrical Characteristics Conditions: VCC = 3.3V, Vbb = 2.9V TA = 25°C, as measured on SiGe Semiconductors SE2529L-EV1 evaluation board, unless otherwise noted. “802.11g” mode, circuit tuning/biasing optimized for “g” full rate signal. Symbol Parameter Note Min. Typ. Max. Unit ICC Supply Current (POUT = 19 dBm, 54 Mbps OFDM signal, 64QAM) 1 175 200 225 mA ∆IccTEMP Supply Current variation over temperature from TA = 25°C (-40°C < TA < +85°C) 1 ±10 % Notes: (1) ICC refers to the total current into VCC0, VCC1, VCC2 and OUT/Vcc3 802.11b DC Electrical Characteristics Conditions: VCC = 3.3V, Vbb = 2.9V, TA = 25°C, as measured on SiGe Semiconductors SE2529L-EV1 evaluation board, unless otherwise noted. “802.11b” mode, circuit tuning/biasing optimized for “g” full rate signal. Symbol Parameter Note Min. Typ. Max. Unit ICC Supply Current (POUT = 23dBm, 11Mbps CCK signal) 1 240 280 305 mA ∆IccTEMP Supply Current variation over temperature from TA = 25°C (-40°C < TA < +85°C) 1 ±10 % Notes: (1) ICC refers to the total current into VCC0, VCC1, VCC2 and OUT/Vcc3 |
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