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STMicroelectronics
TSM104A
TSM104A is QUAD OPERATIONAL AMPLIFIER AND PROGRAMMABLE VOLTAGE REFERENCE manufactured by STMicroelectronics.
DESCRIPTION The TSM104 is a monolithic IC that includes four op-amps and an adjustable shunt voltage reference. This device is offering space and cost saving in many applications like power supply management or data acquisition systems. PIN CONNECTIONS ORDER CODES Part number TSM104I/AI Temperature Range -40o C, +105o C Package N - D - Output 1 Inverting Input 1 Non-inve rting Input 1 1 2 3 4 Output 4 Inverting Input Non-inve rting Input 4 + - Non-inve rting Input 2 Inverting Input 2 Non-inve rting Input 3 Inverting Input 3 Output 2 Adjust Output 3 Cathode February1999 1/9 TSM104/A ABSOLUTE MAXIMUM RATINGS Symbol VCC Vid Vi Toper Tj R thja Parameter Supply Voltage Differential Input Voltage Input Voltage Operating Free-air Temperature Range Maximum Junction Temperature Thermal Resistance Juction to Ambient (SO package) Value 36 36 -0.3 to 36 -55 to +125 150 150 Unit V V V o C o C o C/W ELECTRICAL CHARACTERISTICS VCC+ = 5V, VCC- = 0V, Tamb = 25o C (unless otherwise specified) Symbol ICC Parameter Total Supply Current, excluding current in the Voltage Reference + VCC = 5V, no load Tmin. < Tamb < Tmax + VCC = 30V, no load Tmin. < Tamb < Tmax Min Typ Max Unit m A 2.4 4 2/9 TSM104/A OPERATIONAL AMPLIFIERS VCC+ = 5V, VCC- = Ground, VO = 1.4V, Tamb = 25o C (unless otherwise specified) Symbol Vio Parameter Input Offset Voltage o TSM104, Tamb = 25 C Tmin. ≤ Tamb ≤ Tmax. TSM104A, Tamb = 25o C Tmin. ≤ Tamb ≤ Tmax. Input Offset Voltage Drift Input Offset Current Tmin. ≤ Tamb ≤ Tmax. Input Bias Current Tmin. ≤ Tamb ≤ Tmax. Large Signal Voltage Gain VCC = 15V, R L = 2k VO = 1.4V to 11.4V Tmin. ≤ Tamb ≤ Tmax. Supply Voltage Rejection Ratio VCC = 5V to 30V Input Voltage Mode Voltage Range VCC = +30V - see note 1 Tmin. ≤ Tamb ≤ Tmax. mon Mode Rejection Ratio Tmin. ≤ Tamb ≤ Tmax. Output Current Source Vo = 2V, V CC = +15V, Vid = +1V Short Circuit to Ground VCC = +15V Output Current Sink Vid = -1V, VCC = +15V, Vo =...