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HA17301P

Hitachi Semiconductor
Part Number HA17301P
Manufacturer Hitachi Semiconductor
Description Quad Operational Amplifier
Published Mar 22, 2005
Detailed Description HA17301P Quad Operational Amplifier Description The HA17301P is an internal-compensation quad operational amplifier tha...
Datasheet PDF File HA17301P PDF File

HA17301P
HA17301P


Overview
HA17301P Quad Operational Amplifier Description The HA17301P is an internal-compensation quad operational amplifier that operates on a single-voltage power supply.
Typical applications for the HA17301P include waveform generators, voltage regulators, logic circuits, and voltage-controlled oscillators.
Features • • • • Wide operating temperature range Single-voltage power supply operation Internal phase compensation Low input bias current Pin Arrangement Vin(+)2 Vin(+)1 Vin(−)1 Vout1 Vout2 Vin(−)2 GND 1 2 3 4 5 6 − − + 14 VCC 13 Vin(+)3 1 + − 12 Vin(+)4 11 Vin(−)4 10 Vout4 4 2 + + 3 9 Vout3 − 7 8 Vin(−)3 (Top view) HA17301P Circuit Structure (1/4) VCC Vout Vin(−) Vin(+) GND 2 HA17301P Absolute Maximum Ratings (Ta = 25°C) Item Power-supply voltage Noninverting input current Sink current Source current Allowable power dissipation* Operating temperature Storage temperature Symbol VCC Ir Io sink Io source PT Topr Tstg Ratings 28 5 50 50 625 –20 to +75 –55 to +125 Unit V mA mA mA mW °C °C Note: This is the allowable value up to Ta = 50°C for the HA17301P.
Derate by 8.
3 mW/°C above that temperature.
Electrical Characteristics (VCC = +15 V, RL = 5.
0 kΩ, Ta = 25°C) Item Voltage gain Supply current Symbol AVD I CO I CG Input bias current Current mirror gain Output source current I IB AI Io source Min 1,000 — — — 0.
80 3 — Output sink current Output voltage Io sink VOH VOL(inv) VOL(non) Input resistance Slew rate Bandwidth Phase margin Power-supply rejection ratio Channel separation Rin SR BW φm PSRR CS 0.
5 13.
5 — — 0.
1 — — — — — Typ 1,400 7.
7 8.
3 80 0.
94 13 10 0.
75 13.
9 0.
04 0.
55 1.
0 0.
2 2.
6 87 63 63 Max — 10 14 300 1.
16 — — — — 0.
1 — — — — — — — Unit V/V mA mA nA A/A mA mA mA V V V MΩ V/ µs MHz deg dB dB f = 100 Hz f = 1.
0 kHz Inverting input driven Non inverting input driven Inverting input only CL = 100 pF, RL = 5.
0 kΩ AVD = 1 Non inverting input open Non inverting input grounded RL = ∞ Ir = 200 µA VOH = 0.
4 V VOH = 9.
0 V VOL = 0.
4 V Test Conditions 3 ...



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