LT1203 LINER [Linear Technology], LT1203 Datasheet
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LT1203
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LT1203 Summary of contents
Page 1
... The LT1203 and LT1205 outputs are protected against shorts to ground. The LT1203/LT1205 are manufactured using Linear Technology’s proprietary complementary bipolar process. The LT1203 is available in both the 8-lead PDIP and SO package while the LT1205 is available in the 16-lead narrow body SO package. V RED ...
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... Operating Temperature Range ............... – Storage Temperature Range ................ – 150 C Junction Temperature (Note 5) ............................ 150 C Lead Temperature (Soldering, 10 sec)................. 300 ORDER PART NUMBER V INO GND LT1203CN8* V IN1 – LT1203CS8 IN2 GND V S8 PART MARKING IN3 – V 1203 16-LEAD PLASTIC SOIC T JMAX CONDITIONS ...
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... Differential Phase (Note 11) Insertion Loss The denotes specifications which apply over the specified temperature range. Note 1: The analog inputs (pins 1, 3 for the LT1203, pins for the LT1205) are protected against ESD and overvoltage with internal SCRs. CONDITIONS V = 15V, V ...
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... LT1203/LT1205 Note 2: The digital inputs (pins 5, 6 for the LT1203, pins 9, 10, 13, 14 for the LT1205) are protected against ESD and overvoltage with internal SCRs. For inputs 6V the SCR will not fire. Voltages above 6V will fire the SCR and the DC current should be limited to 50mA. To turn off the SCR the pin voltage must be reduced to less than 2V or the current reduced to less than 10mA ...
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... Supply Current vs Supply Voltage (Enabled) 9.6 LT1203 125° 25° 9.2 –55° 8.8 8.4 8.0 7 SUPPLY VOLTAGE (±V) LT1203/05 • TPC10 LT1203/LT1205 Crosstalk Rejection vs Frequency – ±15V 25°C – –50 – – 37.5 S –80 R ...
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... Output Voltage vs Input Voltage ±15V 25° –1 –2 –3 –4 4 –5 – 4 – –2 –1 INPUT VOLTAGE (V) LT1203/05 • TPC16 to V Select Time IN1 LT1203/05 • TPC18 INO IN1 LT1203/05 • TPC14 ...
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... It is not necessary to use equal value supplies however, the output offset voltage will change. The offset will change about 300 V per volt of supply mismatch. The LT1203/LT1205 have a very wide bandwidth yet are tolerant of power supply bypassing. The power supplies should be by- passed with a 0 ...
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... The slight rise time degradation at the RGB MUX output is due to the bandwidth of the LT1260 current feedback amplifier used to drive the 75 cable. In Figure 2b, the LT1203 switches to an input at zero at the end of the first pixel and removes the following pixels. LT1203/05 • AI03 ...
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... U LT1203/05 • F02a Figure 4. RGB MUX Frequency Response of Demonstration Board #041 Input Expansion The output impedance of the LT1203/LT1205 is typically 20 when enabled and 10M selected. This high disabled output impedance allows the output of many LT1205s to be shorted together to form large crosspoint arrays. With their outputs shorted to- gether, shoot-through current is low because the “ ...
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... LT1203/LT1205 041A LOGIC ENABLE R11 U1 R7 R12 R13 R14 Figure 3. Demo Board #041 Layout V – ...
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... CH3 CH4 CH5 CH6 CH7 CH8 CH9 CH10 CH11 CH12 CH13 CH14 CH15 LT1203/05 • F05 OUTPUT 11 ...
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... Crosstalk Rejection is 85dB at 10MHz when a shorted input is routed to all outputs. To obtain this level of performance it is necessary to follow techniques similar to 100 LT1203/05 • AI06 16-to-1 MUX Response V = ±15V 100 1. –2 –4 – 100 FREQUENCY (MHz) LT1203/05 • AI07 ...
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... U6 D LT1254 13 – R15 820 R8 R16 10k 820 TRUTH TABLE SELECT LOGIC SELECT LOGIC OUTPUT 2 OUTPUT 3 OUTPUT 0 J5 OUTPUT 1 J6 OUTPUT 4.7 F OUTPUT 3 J8 INPUT CHANNEL CH0 CH1 CH2 CH3 LT1203/05 • F06 13 ...
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... A. –100 –120 100 200 LT1203/05 • AI08 4 4 Crosspoint, Switching Channel 0 to Channel 2 CHANNEL CHANNEL Crosspoint, All Hostile Rejection V = ±5V S – 100 –60 – 100 FREQUENCY (MHz) LT1203/05 • AI09 5V 0V LT1203/05 • AI10 ...
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... TYP 0.045 ± 0.015 (1.143 ± 0.381) 0.100 ± 0.010 (2.540 ± 0.254) LT1203/LT1205 2V – V – –2V LT1203/05 • SS MAX 6 5 0.250 ± 0.010 (6.350 ± 0.254 0.130 ± 0.005 (3.302 ± 0.127) 0.125 0.020 (3.175) MIN (0.508) MIN 0.018 ± ...
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... LT1203/LT1205 PACKAGE DESCRIPTIO 0.010 – 0.020 45 (0.254 – 0.508) 0.008 – 0.010 (0.203 – 0.254) 0.016 – 0.050 0.406 – 1.270 *THESE DIMENSIONS DO NOT INCLUDE MOLD FLASH OR PROTRUSIONS. MOLD FLASH OR PROTRUSIONS SHALL NOT EXCEED 0.006 INCH (0.15mm). 0.010 – 0.020 45 (0.254 – 0.508) 0.008 – ...