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MCP48FVB24 数据表(PDF) 13 Page - Microchip Technology |
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MCP48FVB24 数据表(HTML) 13 Page - Microchip Technology |
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13 / 112 page ![]() 2020 Microchip Technology Inc. DS20006362A-page 13 MCP48FXBX4/8 DC CHARACTERISTICS (CONTINUED) Standard Operating Conditions (unless otherwise specified): Operating Temperature: -40°C TA +125°C (Extended). All parameters apply across the specified operating ranges unless noted. VDD = +2.7V to 5.5V, VREF = +2.048V to VDD, VSS = 0V, Gx = 0, RL = 5 k from VOUT to GND, CL = 100 pF. Typical specifications represent values for VDD = 5.5V, TA = +25°C. Parameters Sym. Min. Typ. Max. Units Conditions -3 dB Bandwidth (see B.16 “-3 dB Bandwidth”) BW — 86.5 — kHz VREF = 2.048V ±0.1V, VRnB:VRnA = 10, Gx = 0 —67.7 — kHz VREF = 2.048V ±0.1V, VRnB:VRnA = 10, Gx = 1 Output Amplifier Minimum Output Voltage VOUT(MIN) — 0.01 — V 1.8V VDD 5.5V, output amplifier’s minimum drive Maximum Output Voltage VOUT(MAX) —VDD – 0.016 — V 1.8V VDD 5.5V, output amplifier’s maximum drive Phase Margin PM — 58 — °C CL = 400 pF, RL = Slew Rate(9) SR — 0.44 — V/µs RL = 5 k Short-Circuit Current ISC 3 9 22 mA Short to VSS DAC Code = Full Scale 3 9 22 mA Short to VDD DAC Code = 000h Internal Band Gap Band Gap Voltage VBG 1.18 1.22 1.26 V Band Gap Voltage Temperature Coefficient VBGTC —15 — ppm/°C Operating Range VDD 2.0 — 5.5 V VREF pin voltage stable 2.2 — 5.5 V VOUT output linear External Reference (VREF) Input Range(1) VREF VSS —VDD – 0.04 V VRnB:VRnA = 11 (Buffered mode) VSS —VDD VVRnB:VRnA = 10 (Unbuffered mode) Input Capacitance CREF —1 — pF VRnB:VRnA = 10 (Unbuffered mode) Total Harmonic Distortion(1) THD — -64 — dB VREF = 2.048V ±0.1V, VRnB:VRnA = 10, Gx = 0, Frequency = 1 kHz Dynamic Performance Major Code Transition Glitch (see B.14 “Major Code Transition Glitch”) — — 45 — nV-s 1 LSb change around major carry (7FFh to 800h) Digital Feedthrough (see B.15 “Digital Feedthrough”) —— <10 — nV-s Note 1: This parameter is ensured by design. 9: Within 1/2 LSb of final value when code changes from 1/4 to 3/4 of FSR. (Example: 400h to C00h in a 12-bit device.) |
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