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SG 1 1 1 1 1 1 1 3 3 3 3 3 3 3 2 2 2 2 2 2 2 4 4 4 4 4 4 4 4 6 6 6 6 6 6 6 5 5 5 5 5 5 5
PARAMETER Quiescent current Input offset voltage Input offset voltage Input offset voltage Input bias current, +IN Input bias current, –IN Input offset current Quiescent current Input offset voltage Input offset voltage Input offset voltage Input bias current, +IN Input bias current, –IN Input offset current Quiescent current Input offset voltage Input offset voltage Input offset voltage Input bias current, +IN Input bias current, –IN Input offset current Output voltage, IO = 5A Output voltage, IO = 80mA Output voltage, IO = 2A Current limits Stability/noise Slew rate Open loop gain Common mode rejection Output voltage, IO = 5A Output voltage, IO = 80mA Output voltage, IO = 2A Stability/noise Slew rate Open loop gain Common mode rejection Output voltage, IO = 3A Output voltage, IO = 80mA Output voltage, IO = 2A Stability/noise Slew rate Open loop gain Common mode rejection
SYMBOL IQ VOS VOS VOS +IB –IB IOS IQ VOS VOS VOS +IB –IB IOS IQ VOS VOS VOS +IB –IB IOS VO VO VO ICL EN SR AOL CMR VO VO VO EN SR AOL CMR VO VO VO EN SR AOL CMR
TEMP. POWER 25°C 25°C 25°C 25°C 25°C 25°C 25°C –55°C –55°C –55°C –55°C –55°C –55°C –55°C 125°C 125°C 125°C 125°C 125°C 125°C 125°C 25°C 25°C 25°C 25°C 25°C 25°C 25°C 25°C –55°C –55°C –55°C –55°C –55°C –55°C –55°C 125°C 125°C 125°C 125°C 125°C 125°C 125°C ±40V ±40V ±10V ±45V ±40V ±40V ±40V ±40V ±40V ±10V ±45V ±40V ±40V ±40V ±40V ±40V ±10V ±45V ±40V ±40V ±40V ±18V ±45V ±30V ±17V ±40V ±40V ±40V ±15V ±18V ±45V ±30V ±40V ±40V ±40V ±15V ±14.3V ±45V ±30V ±40V ±40V ±40V ±15V
TEST CONDITIONS VIN = 0, AV = 100, RCL = .1Ω VIN = 0, AV = 100 VIN = 0, AV = 100 VIN = 0, AV = 100 VIN = 0 VIN = 0 VIN = 0 VIN = 0, AV = 100, RCL = .1Ω VIN = 0, AV = 100 VIN = 0, AV = 100 VIN = 0, AV = 100 VIN = 0 VIN = 0 VIN = 0 VIN = 0, AV = 100, RCL = .1Ω VIN = 0, AV = 100 VIN = 0, AV = 100 VIN = 0, AV = 100 VIN = 0 VIN = 0 VIN = 0 RL = 2.07Ω RL = 500Ω RL = 12Ω RL = 12Ω, RCL = 1Ω RL = 100Ω, AV = 1, CL = .33nF RL = 500Ω RL = 500Ω, F = 10Hz RL = 500Ω, F = DC, VCM = ±9V RL = 2.07Ω RL = 500Ω RL = 12Ω RL = 100Ω, AV = 1, CL = .33nF RL = 500Ω RL = 500Ω, F = 10Hz RL = 500Ω, F = DC, VCM = ±9V RL = 2.07Ω RL = 500Ω RL = 12Ω RL = 100Ω, AV = 1, CL = .33nF RL = 500Ω RL = 500Ω, F = 10Hz RL = 500Ω, F = DC, VCM = ±9V
MIN
MAX 30 ±6 ±12 ±7 ±30 ±30 ±30 75 ±11.2 ±17.2 ±12.2 ±115 ±115 ±115 30 ±12.5 ±18.5 ±13.5 ±70 ±70 ±70
UNITS mA mV mV mV nA nA nA mA mV mV mV nA nA nA mA mV mV mV nA nA nA V V V A mV V/µs dB dB V V V mV V/µs db dB V V V mV V/µs dB dB
10 40 24 .6 2 96 74 10 40 24 2 96 74 6.3 40 24 2 96 74
.89 1 10
1 10
1 10
BURN IN CIRCUIT
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These components are used to stabilize device due to poor high frequency characteristics of burn in board. Input signals are calculated to result in internal power dissipation of approximately 2.1W at case temperature = 125°C.
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This data sheet has been carefully checked and is believed to be reliable, however, no responsibility is assumed for possible ORDERS or omissions. All specifications prodlit@apexmicrotech.com APEX MICROTECHNOLOGY CORPORATION • TELEPHONE (520) 690-8600 • FAX (520) 888-3329 •inaccuracies(520) 690-8601 • EMAILare subject to change without notice. PA10MU REV L JULY 2002 © 2002 Apex Microtechnology Corp.
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