Neumann TLM 170 R

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Description

The Modern Reference

The TLM 170 R is a truly universal microphone for even the most demanding recording situations. It combines technical excellence with the smoothness and flexibility of a large-diaphragm capsule. The TLM 170 R offers an exceptionally even response in five directional patterns. The latter may be remote controlled via the optional N248 PSU.

A Milestone in Modern Recording

The TLM 170 R may be Neumann’s most universal microphone. Over an enormous dynamic range, it offers a remarkably linear frequency response, both on- and off-axis, in each of its five polar patterns. Thus, the TLM 170 R is able to capture the natural sound of any source, including its room ambiance, without imparting a sonic imprint of its own. Additionally, the microphone’s directionality may be remote controlled via the optional N248 PSU.

Ahead of Its Time

The TLM 170 R was conceived with high resolution in mind. As early as 1983 it achieved an enormous dynamic range of 130 dB. It was the first microphone to use Neumann’s fet 100 technology with a transformerless output stage ensuring sonic transparency and powerful bass transmission, even at highest signal levels.

Its sonic transducer is no less impressive. The K89 dual-diaphragm capsule offers high linearity in every sense: smooth frequency response, fast transient response, and frequency-independent polar patterns. Even the diffuse field response remains uncolored for all polar patterns, which is crucial in reverberant environments.

Truly Universal

The TLM 170 R is an excellent microphone for orchestral recordings and may be used both as a main microphone and as a spot mic. At the same time, the TLM 170 R is a superb microphone for vocals and speech, capturing the human voice in its natural beauty.

With a self-noise of only 14 dB, the TLM 170 R can be used for delicate sounds without adding unwanted hiss. At the same time, it can handle extremely loud sources of 154 dB SPL using the –10 dB pre-attenuation switch. A second switch activates a 100 Hz low cut. Five polar patterns may be selected via a rotary switch: Omni, wide cardioid, cardioid, hyper-cardioid, and figure-8.

In the sixth position, patterns may be remote-controlled from the optional N248 PSU. No special cables are required as pattern control works via Neumann’s voltage sensing scheme: The phantom voltage is varied within the permissible ±4 V range of the P48 standard. The TLM 170 R sets its pattern according to the absolute voltage, while other microphones remain unaffected.

There may be no such thing as a perfect microphone, but the TLM 170 R comes fairly close:
It combines the sonic precision and linearity of a small diaphragm microphone with the smoothness and flexible pattern control of a classic large diaphragm microphone.

  • Versatile studio workhorse for vocals and instruments
  • High dynamic range: 130 dB
  • Very low self-noise
  • Even frequency response for all 5 polar patterns
  • Remote control option for pattern selection

DATA

Acoustical operating principle Pressure gradient transducer
Directional Pattern Omnidirectional, wide angle cardioid, cardioid, hypercardioid, figure-8
Frequency Range 20 Hz … 20 kHz
Sensitivity at 1 kHz into 1 kohm 8 mV/Pa ± 1 dB
Rated Impedance 50 ohms
Rated load impedance 1 kohms
Equivalent noise level, CCIR 1 26 dB
Equivalent noise level, A-weighted 2 14 dB-A
Maximum SPL for THD 0.5% 3 144 dB
Maximum SPL for THD 0.5% with preattenuation 4 154 dB
Signal-to-noise ratio, CCIR (re. 94 dB SPL) 5 68 dB
Signal-to-noise ratio, A-weighted (re. 94 dB SPL) 6 80 dB
Maximum output voltage 10 dBu
Supply voltage (P48, IEC 61938) 48 V ± 4 V
Current consumption (P48, IEC 61938) 3 mA
Matching connector XLR 3 F
Weight 625 g
Diameter 60 mm
Length 152 mm
1) according to IEC 60268-1; CCIR-weighting acccording to CCIR 468-3, quasi peak; A-weighting according to IEC 61672-1, RMS
2) according to IEC 60268-1; CCIR-weighting acccording to CCIR 468-3, quasi peak; A-weighting according to IEC 61672-1, RMS
3) measured as equivalent el. input signal
4) measured as equivalent el. input signal
5) according to IEC 60268-1; CCIR-weighting acccording to CCIR 468-3, quasi peak; A-weighting according to IEC 61672-1, RMS
6) according to IEC 60268-1; CCIR-weighting acccording to CCIR 468-3, quasi peak; A-weighting according to IEC 61672-1, RMS

Additional information

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