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Op Amps. MCP6H94 Datasheet

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Op Amps. MCP6H94 Datasheet






MCP6H94 Amps. Datasheet pdf. Equivalent




MCP6H94 Amps. Datasheet pdf. Equivalent





Part

MCP6H94

Description

12V Op Amps



Feature


MCP6H91/2/4 10 MHz, 12V Op Amps Feature s: • Input Offset Voltage: ±1 mV (ty pical) • Quiescent Current: 2 mA (typ ical) • Common Mode Rejection Ratio: 98 dB (typical) • Power Supply Reject ion Ratio: 94 dB (typical) • Rail-to- Rail Output • Supply Voltage Range: - Single-Supply Operation: 3.5V to 12V - Dual-Supply Operation: ±1.75V to ±6V • Gain Bandwidth Product: 10 MHz.
Manufacture

Microchip

Datasheet
Download MCP6H94 Datasheet


Microchip MCP6H94

MCP6H94; (typical) • Slew Rate: 10 V/µs (typi cal) • Unity Gain Stable • Extended Temperature Range: -40°C to +125°C No Phase Reversal Applications: • Automotive Power Electronics • Indus trial Control Equipment • Battery Pow ered Systems • Medical Diagnostic Ins truments Design Aids: • SPICE Macro Models • FilterLab® Software • MAP S (Microchip Advanced Part Selector) • Analo.


Microchip MCP6H94

g Demonstration and Evaluation Boards Application Notes Typical Applicatio n R1 V1 R2 VDD VREF MCP6H91 VOUT V2 R1 R2 Difference Amplifier Descri ption: Microchip’s MCP6H91/2/4 family of operational amp .


Microchip MCP6H94

.

Part

MCP6H94

Description

12V Op Amps



Feature


MCP6H91/2/4 10 MHz, 12V Op Amps Feature s: • Input Offset Voltage: ±1 mV (ty pical) • Quiescent Current: 2 mA (typ ical) • Common Mode Rejection Ratio: 98 dB (typical) • Power Supply Reject ion Ratio: 94 dB (typical) • Rail-to- Rail Output • Supply Voltage Range: - Single-Supply Operation: 3.5V to 12V - Dual-Supply Operation: ±1.75V to ±6V • Gain Bandwidth Product: 10 MHz.
Manufacture

Microchip

Datasheet
Download MCP6H94 Datasheet




 MCP6H94
MCP6H91/2/4
10 MHz, 12V Op Amps
Features:
• Input Offset Voltage: ±1 mV (typical)
• Quiescent Current: 2 mA (typical)
• Common Mode Rejection Ratio: 98 dB (typical)
• Power Supply Rejection Ratio: 94 dB (typical)
• Rail-to-Rail Output
• Supply Voltage Range:
- Single-Supply Operation: 3.5V to 12V
- Dual-Supply Operation: ±1.75V to ±6V
• Gain Bandwidth Product: 10 MHz (typical)
• Slew Rate: 10 V/µs (typical)
• Unity Gain Stable
• Extended Temperature Range: -40°C to +125°C
• No Phase Reversal
Applications:
• Automotive Power Electronics
• Industrial Control Equipment
• Battery Powered Systems
• Medical Diagnostic Instruments
Design Aids:
• SPICE Macro Models
• FilterLab® Software
• MAPS (Microchip Advanced Part Selector)
• Analog Demonstration and Evaluation Boards
• Application Notes
Typical Application
R1
V1
R2
VDD
VREF
MCP6H91
VOUT
V2
R1
R2
Difference Amplifier
Description:
Microchip’s MCP6H91/2/4 family of operational
amplifiers (op amps) has a wide supply voltage range
of 3.5V to 12V and rail-to-rail output operation. This
family is unity gain stable and has a gain bandwidth
product of 10 MHz (typical). These devices operate
with a single-supply voltage as high as 12V, while only
drawing 2 mA/amplifier (typical) of quiescent current.
The MCP6H91/2/4 family is offered in single
(MCP6H91), dual (MCP6H92) and quad (MCP6H94)
configurations. All devices are fully specified in
extended temperature range from -40°C to +125°C.
Package Types
MCP6H91
SOIC
NC 1
VIN– 2
VIN+ 3
VSS 4
8 NC
7 VDD
6 VOUT
5 NC
MCP6H92
SOIC
VOUTA 1
VINA– 2
VINA+ 3
VSS 4
8 VDD
7 VOUTB
6 VINB
5 VINB+
MCP6H91
2x3 TDFN
MCP6H92
2x3 TDFN
NC 1
8 NC VOUTA 1
8 VDD
VIN2 EP 7 VDD VINA2 EP 7 VOUTB
VIN+ 3 9 6 VOUT VINA+ 3 9 6 VINB
VSS 4
5 NC
VSS 4
5 VINB+
MCP6H94
SOIC, TSSOP
VOUTA 1
VINA– 2
VINA+ 3
VDD 4
VINB+ 5
VINB6
VOUTB 7
14 VOUTD
13 VIND
12 VIND+
11 VSS
10 VINC+
9 VINC
8 VOUTC
* Includes Exposed Thermal Pad (EP); see Table 3-1.
2012 Microchip Technology Inc.
DS25138B-page 1




 MCP6H94
MCP6H91/2/4
NOTES:
DS25138B-page 2
2012 Microchip Technology Inc.




 MCP6H94
MCP6H91/2/4
1.0 ELECTRICAL
CHARACTERISTICS
1.1 Absolute Maximum Ratings †
VDD – VSS.......................................................................13.2V
Current at Input Pins......................................................±2 mA
Analog Inputs (VIN+, VIN-)††.............VSS – 1.0V to VDD + 1.0V
All Other Inputs and Outputs ............VSS – 0.3V to VDD + 0.3V
Difference Input Voltage..........................................VDD – VSS
Output Short-Circuit Current...................................continuous
Current at Output and Supply Pins ..............................±65 mA
Storage Temperature.....................................-65°C to +150°C
Maximum Junction Temperature (TJ)...........................+150°C
ESD protection on all pins (HBM; MM) 2 kV; 200V
† Notice: Stresses above those listed under “Absolute
Maximum Ratings” may cause permanent damage to
the device. This is a stress rating only and functional
operation of the device at those or any other conditions
above those indicated in the operational listings of this
specification is not implied. Exposure to maximum
rating conditions for extended periods may affect
device reliability.
†† See Section 4.1.2, Input Voltage Limits.
DC ELECTRICAL SPECIFICATIONS
Electrical Characteristics: Unless otherwise indicated, VDD = +3.5V to +12V, VSS = GND, TA = +25°C,
VCM = VDD/2 - 1.4V, VOUT VDD/2, VL = VDD/2 and RL = 10 kto VL. (Refer to Figure 1-1).
Parameters
Sym.
Min. Typ. Max. Units
Conditions
Input Offset
Input Offset Voltage
VOS -4 ±1 +4 mV
Input Offset Drift with Temperature VOS/TA — ±2.5 — µV/°C TA = -40°C to +125°C
Power Supply Rejection Ratio
PSRR
75
94
— dB
Input Bias Current and Impedance
Input Bias Current
Input Offset Current
Common Mode Input Impedance
Differential Input Impedance
Common Mode
IB
IOS
ZCM
ZDIFF
— 10 — pA
— 400 — pA TA = +85°C
— 9 25 nA TA = +125°C
— ±1 — pA
— 1013||6 — ||pF
— 1013||6 — ||pF
Common Mode Input Voltage Range VCMR VSS – 0.3 — VDD – 2.5 V
Common Mode Rejection Ratio
CMRR
75
91
— dB VCM = -0.3V to 1.0V,
VDD = 3.5V
80 97 — dB VCM = -0.3V to 2.5V,
VDD = 5V
80 98 — dB VCM = -0.3V to 9.5V,
VDD = 12V
Open-Loop Gain
DC Open-Loop Gain (Large Signal)
AOL
95 115 — dB 0.2V < VOUT <(VDD – 0.2V)
2012 Microchip Technology Inc.
DS25138B-page 3



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