Transcription of MCP6H01/2/4 Data Sheet - Microchip Technology
1 MCP6H01/2/4 . MHz, 16V Op Amps Features: Description: Input Offset Voltage: mV (typical) Microchip 's MCP6H01/2/4 family of operational amplifi- Quiescent Current: 135 A (typical) ers (op amps) has a wide supply voltage range of Common Mode Rejection Ratio: 100 dB (typical) to 16V and rail-to-rail output operation. This family is unity gain stable and has a gain bandwidth product of Power Supply Rejection Ratio: 102 dB (typical). MHz (typical). These devices operate with a Rail-to-Rail Output single-supply voltage as high as 16V, while only Supply Voltage Range: drawing 135 A/amplifier (typical) of quiescent current. - Single-Supply Operation: to 16V The MCP6H01/2/4 family is offered in single - Dual-Supply Operation: to 8V ( mcp6h01 ), dual (MCP6H02) and quad (MCP6H04).
2 Gain Bandwidth Product: MHz (typical) configurations. All devices are fully specified in Slew Rate: s (typical) extended temperature range from -40 C to +125 C. Unity Gain Stable Extended Temperature Range: -40 C to +125 C. Package Types No Phase Reversal mcp6h01 . SC70-5, SOT 23-5. Applications: VOUT 1 5 VDD. Automotive Power Electronics VSS 2. Industrial Control Equipment VIN+ 3 4 VIN . Battery Powered Systems mcp6h01 MCP6H02. Medical Diagnostic Instruments SOIC SOIC. 8 NC 8 VDD. Design Aids: NC 1 VOUTA 1. VIN 2 7 VDD VINA 2 7 VOUTB. SPICE Macro Models VIN+ 3 6 VOUT VINA+ 3 6 VINB . FilterLab Software VSS 4 5 NC VSS 4 5 VINB+. MAPS ( Microchip Advanced Part Selector). Analog Demonstration and Evaluation Boards mcp6h01 MCP6H02.
3 Application Notes 2x3 TDFN 2x3 TDFN. NC 1 8 NC VOUTA 1 8 VDD. Typical Application VIN 2 VINA 2. EP 7 VDD EP 7 VOUTB. VIN+ 3 9 9. R1 R2 6 VOUT VINA+ 3 6 VINB . V1 VREF VSS 4 5 NC VSS 4 5 VINB+. VDD. MCP6H04. VOUT SOIC, TSSOP. mcp6h01 VOUTA 1 14 VOUTD. VINA 2 13 VIND . VINA+ 3 12 VIND+. V2 VDD 4 11 VSS. R2 VINB+ 5 10 VINC+. R1. VINB 6 9 VINC . Difference Amplifier VOUTB 7 8 VOUTC. * Includes Exposed Thermal Pad (EP); see Table 3-1. 2010-2011 Microchip Technology Inc. DS22243D-page 1. MCP6H01/2/4 . NOTES: DS22243D-page 2 2010-2011 Microchip Technology Inc. MCP6H01/2/4 . ELECTRICAL CHARACTERISTICS. Absolute Maximum Ratings . VDD Notice: Stresses above those listed under Absolute Current at Input 2 mA Maximum Ratings may cause permanent damage to the device.
4 This is a stress rating only and functional operation of Analog Inputs (VIN+, VIN-) ..VSS to VDD + the device at those or any other conditions above those All Other Inputs and Outputs ..VSS to VDD + indicated in the operational listings of this specification is not Difference Input VSS implied. Exposure to maximum rating conditions for extended Output Short-Circuit periods may affect device reliability. Current at Output and Supply Pins .. 65 mA See Input Voltage Limits . Storage C to +150 C. Maximum Junction Temperature (TJ)..+150 C. ESD protection on all pins (HBM; MM) 2 kV; 200V. DC ELECTRICAL SPECIFICATIONS. Electrical Characteristics: Unless otherwise indicated, VDD = + to +16V, VSS = GND, TA = +25 C, VCM = VDD/2 , VOUT VDD/2, VL = VDD/2 and RL = 10 k to VL.
5 (Refer to Figure 1-1). Parameters Sym Min Typ Max Units Conditions Input Offset Input Offset Voltage VOS + mV. Input Offset Drift with Temperature VOS/ TA V/ C TA = -40 C to +125 C. Power Supply Rejection Ratio PSRR 87 102 dB. Input Bias Current and Impedance Input Bias Current IB 10 pA. IB 600 pA TA = +85 C. IB 10 25 nA TA = +125 C. Input Offset Current IOS 1 pA. Common Mode Input Impedance ZCM 1013||6 ||pF. Differential Input Impedance ZDIFF 1013||6 ||pF. Common Mode Common Mode Input Voltage Range VCMR VSS VDD V. Common Mode Rejection Ratio CMRR 78 93 dB VCM = to , VDD = 82 98 dB VCM = to , VDD = 5V. 84 100 dB VCM = to , VDD = 15V. Open-Loop Gain DC Open-Loop Gain (Large Signal) AOL 95 115 dB < VOUT <(VDD.)
6 2010-2011 Microchip Technology Inc. DS22243D-page 3. MCP6H01/2/4 . DC ELECTRICAL SPECIFICATIONS (CONTINUED). Electrical Characteristics: Unless otherwise indicated, VDD = + to +16V, VSS = GND, TA = +25 C, VCM = VDD/2 , VOUT VDD/2, VL = VDD/2 and RL = 10 k to VL. (Refer to Figure 1-1). Parameters Sym Min Typ Max Units Conditions Output high -Level Output Voltage VOH V VDD = input overdrive V VDD = 5V. input overdrive V VDD = 15V. input overdrive Low-Level Output Voltage VOL V VDD = V input overdrive V VDD = 5V. V input overdrive V VDD = 15V. V input overdrive Output Short-Circuit Current ISC 27 mA VDD = 45 mA VDD = 5V. 50 mA VDD = 15V. Power Supply Supply Voltage VDD 16 V Single-supply operation 8 V Dual-supply operation Quiescent Current per Amplifier IQ 125 175 A IO = 0, VDD = VCM = VDD/4.
7 130 180 A IO = 0, VDD = 5V. VCM = VDD/4. 135 185 A IO = 0, VDD = 15V. VCM = VDD/4. AC ELECTRICAL SPECIFICATIONS. Electrical Characteristics: Unless otherwise indicated, TA = +25 C, VDD = + to +16V, VSS = GND, VCM = VDD/2 - , VOUT VDD/2, VL = VDD/2, RL = 10 k to VL and CL = 60 pF. (Refer to Figure 1-1). Parameters Sym Min Typ Max Units Conditions AC Response Gain Bandwidth Product GBWP MHz Phase Margin PM 57 C G = +1V/V. Slew Rate SR V/ s Noise Input Noise Voltage Eni 12 Vp-p f = Hz to 10 Hz Input Noise Voltage Density eni 35 nV/ Hz f = 1 kHz 30 nV/ Hz f = 10 kHz Input Noise Current Density ini fA/ Hz f = 1 kHz DS22243D-page 4 2010-2011 Microchip Technology Inc. MCP6H01/2/4 . TEMPERATURE SPECIFICATIONS.
8 Electrical Characteristics: Unless otherwise indicated, VDD = + to +16V and VSS = GND. Parameters Sym Min Typ Max Units Conditions Temperature Ranges Operating Temperature Range TA -40 +125 C Note 1. Storage Temperature Range TA -65 +150 C. Thermal Package Resistances Thermal Resistance, 5L-SC70 JA 331 C/W. Thermal Resistance, 5L-SOT-23 JA 256 C/W. Thermal Resistance, 8L-2x3 TDFN JA 41 C/W. Thermal Resistance, 8L-SOIC JA C/W. Thermal Resistance, 14L-SOIC JA C/W. Thermal Resistance, 14L-TSSOP JA 100 C/W. Note 1: The internal junction temperature (TJ) must not exceed the absolute maximum specification of +150 C. Test Circuits CF. The circuit used for most DC and AC tests is shown in pF.
9 Figure 1-1. This circuit can independently set VCM and VOUT (refer to Equation 1-1). Note that VCM is not the circuit's common mode voltage ((VP + VM)/2), and that RG RF. VOST includes VOS plus the effects (on the input offset 100 k 100 k . error, VOST) of temperature, CMRR, PSRR and AOL. VP VDD/2. VDD. VIN+. EQUATION 1-1: CB1 CB2. G DM = RF RG MCP6H0X 100 nF 1 F. V CM = V P + V DD 2 2. VOST = VIN VIN+ VIN . VOUT = V DD 2 + V P V M + V OST 1 + G DM VM VOUT. Where: RG RF RL CL. 100 k 100 k 10 k 60 pF. GDM = Differential Mode Gain (V/V). VCM = Op Amp's Common Mode (V). Input Voltage CF. pF VL. VOST = Op Amp's Total Input Offset (mV). Voltage FIGURE 1-1: AC and DC Test Circuit for Most Specifications.
10 2010-2011 Microchip Technology Inc. DS22243D-page 5. MCP6H01/2/4 . NOTES: DS22243D-page 6 2010-2011 Microchip Technology Inc. MCP6H01/2/4 . TYPICAL PERFORMANCE CURVES. Note: The graphs and tables provided following this note are a statistical summary based on a limited number of samples and are provided for informational purposes only. The performance characteristics listed herein are not tested or guaranteed. In some graphs or tables, the data presented may be outside the specified operating range ( , outside specified power supply range) and therefore outside the warranted range. Note: Unless otherwise indicated, TA = +25 C, VDD = + to +16V, VSS = GND, VCM = VDD/2 - , VOUT VDD/2, VL = VDD/2, RL = 10 k to VL and CL = 60 pF.
